WO2016192042A1 - Small Cell与M2M系统融合的网络架构以及相关方法和相关设备 - Google Patents
Small Cell与M2M系统融合的网络架构以及相关方法和相关设备 Download PDFInfo
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- WO2016192042A1 WO2016192042A1 PCT/CN2015/080592 CN2015080592W WO2016192042A1 WO 2016192042 A1 WO2016192042 A1 WO 2016192042A1 CN 2015080592 W CN2015080592 W CN 2015080592W WO 2016192042 A1 WO2016192042 A1 WO 2016192042A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/70—Services for machine-to-machine communication [M2M] or machine type communication [MTC]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
- H04W4/029—Location-based management or tracking services
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W84/00—Network topologies
- H04W84/02—Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
- H04W84/04—Large scale networks; Deep hierarchical networks
- H04W84/042—Public Land Mobile systems, e.g. cellular systems
- H04W84/045—Public Land Mobile systems, e.g. cellular systems using private Base Stations, e.g. femto Base Stations, home Node B
Definitions
- the present invention relates to the field of communications, and in particular, to a network architecture and related methods and related devices for a small cell (Small Cell) and a Machine to Machine (M2M) system.
- Small Cell Small Cell
- M2M Machine to Machine
- the object of the Small Cell service may be a user terminal, that is, an object that can be understood as a Small Cell service may be a human, and an M2M system device deployed indoors, such as a home appliance, an electrical device controller, or an environment detecting device, etc.
- the objects of the service can all include people. It can be seen that the service objects of the Small Cell and the M2M system deployed indoors have commonalities, so that the fusion of the Small Cell and the M2M system is an urgent technical problem to be solved.
- the invention provides a network architecture and a related method and related equipment for merging a Small Cell and an M2M system, and can realize integration of a Small Cell and an M2M system.
- the present invention provides a network architecture in which a Small Cell and an M2M system are integrated, and the architecture includes: a Small Cell in a Small Cell system and an M2M platform device in an M2M system, where:
- the Small Cell is connected to the service interface of the M2M platform device by using the first interface, and the Small Cell transmits the service data in the M2M system by using the first interface and the M2M platform device, and when the service is When the data needs to be sent to the user terminal covered by the Small Cell, the Small Cell sends the service data to the user terminal.
- the service data includes a geographical location letter interest
- the Small Cell is further configured to detect geographic location information of the user terminal, and send the geographic location information to the M2M platform device by using the first interface;
- the M2M platform device is further configured to send the geographic location information to an application server, where the application server generates a control command of the M2M device according to the geographic location information;
- the M2M platform device receives the control command sent by the application server, and sends the control command to the M2M device through the M2M gateway device, where the M2M device executes the control command.
- the M2M device includes a current control M2M device, where:
- the application server is specifically configured to select an M2M device that needs to be controlled by the geographic location information as the current control M2M device, and generate a control command corresponding to the geographical location information according to a preset control policy as the current control. Control commands for M2M devices.
- the service data includes detection result information that needs to notify a user
- the M2M device is further configured to detect a preset object to obtain a detection result, and send the detection result to an application server;
- the detection result information is sent to the M2M platform device;
- the M2M platform device is further configured to send the detection result information to the Small Cell by using the service interface;
- the Small Cell is further configured to send, to the user terminal, a prompt message that includes content of the detection result information.
- the user terminal includes a current notification user terminal, where:
- the application server is further configured to select a user terminal corresponding to the M2M device as the current notification user terminal;
- the M2M platform device is specifically configured to send, by using the service interface, the detection result information to a Small Cell that covers the current notification user terminal.
- the application server is specifically configured to select a user terminal that is bound to the M2M device in advance as the current Notifying the user terminal;
- the application server is specifically configured to select, as the current notification user terminal, a user terminal whose distance between the geographic location and the geographic location of the M2M device is within a preset distance.
- the small cell is further connected to the M2M device in the M2M system by using a second interface,
- the Small Cell provides network access to the M2M device through the second interface.
- the present invention provides a method for controlling an Internet of Things M2M device, including:
- the small cell small cell detects the geographical location information of the user terminal covered by the Small Cell;
- the application server Transmitting the geographic location information to the M2M platform device by using the first interface that is connected to the service interface of the M2M platform device, so that the M2M platform device sends the geographical location information to the application server,
- the application server generates a control command of the M2M device according to the geographic location information, and receives, by the M2M platform device, the control command sent by the application server, and sends the control to the M2M device by using an M2M gateway device. a command to cause the M2M device to execute the control command.
- the method further includes:
- the small cell sends the geographical location information to the M2M platform device by using a first interface that is connected to the service interface of the M2M platform device, including:
- the Small Cell sends the geographic location information to the M2M platform device through the communication connection.
- the method further includes:
- the Small Cell is connected to the M2M device by using a second interface, where the Small Cell provides network access to the M2M device through the second interface.
- the present invention provides a method for controlling an Internet of Things M2M device, including:
- the M2M platform device receives through a service interface connected to the first interface of the small base station Small Cell Geographic location information sent by the Small Cell, where the geographic location information is geographic location information of the user terminal that the Small Cell detects the Small Cell coverage;
- the M2M platform device sends the geographical location information to an application server, and the application server generates a control command of the M2M device according to the geographical location information;
- the M2M platform device receives the control command sent by the application server, and sends the control command to the M2M device by using an M2M gateway device, so that the M2M device executes the control command.
- the method further includes:
- the M2M platform device establishes the service interface, and establishes a communication connection with the first interface of the Small Cell through the service interface;
- the M2M platform device receives the geographical location information sent by the Small Cell by using a service interface that is connected to the first interface of the Small Cell Small Cell, and includes:
- the M2M platform device receives the geographical location information sent by the Small Cell through the communication connection.
- the present invention provides a message prompting method, including:
- the IoT M2M platform device receives the detection result information sent by the application server, where the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, and the detection result is the M2M device.
- the method further includes:
- the M2M platform device establishes the service interface, and establishes a communication connection with the first interface of the Small Cell through the service interface;
- the M2M platform device sends the detection result information to the Small Cell by using a service interface that is connected to the first interface of the Small Cell Small Cell, and includes:
- the M2M platform device sends the detection result information to the Small Cell through the communication connection.
- the present invention provides a message prompting method, including:
- the small cell small cell receives the detection result information sent by the M2M platform device by using the first interface connected to the service interface of the IoT M2M platform device, where the detection result information is sent by the M2M platform device receiving application server, a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is a detection result obtained by the M2M device detecting the preset object;
- the Small Cell sends a prompt message containing the content of the detection result information to the user terminal covered by the Small Cell.
- the method further includes:
- the first cell receives the detection result information sent by the M2M platform device by using the first interface connected to the service interface of the IoT M2M platform device, including:
- the Small Cell receives the detection result information sent by the M2M platform device through the communication connection.
- the method further includes:
- the Small Cell is connected to the M2M device by using a second interface, where the Small Cell provides network access to the M2M device through the second interface.
- the present invention provides a small base station, a small cell, including: a detecting unit and a sending unit, where:
- the detecting unit is configured to detect geographical location information of the user terminal covered by the Small Cell;
- the sending unit is configured to send the geographical location information to the M2M platform device by using a first interface that is connected to a service interface of the M2M platform device, so that the M2M platform device sends the geographic location information to an application.
- a server the application server generates a control command of the M2M device according to the geographic location information, and receives, by the M2M platform device, the control command sent by the application server, and sends the control command to the M2M device by using an M2M gateway device.
- the control command causes the M2M device to execute the control command.
- the Small Cell further includes:
- the sending unit is configured to send the geographic location information to the M2M platform device by using the communication connection.
- the Small Cell further includes:
- a connecting unit configured to connect to the M2M device by using the second interface, where the Small Cell provides network access to the M2M device by using the second interface.
- the present invention provides an Internet of Things (M2M) platform device, including: a first receiving unit, a first sending unit, a second receiving unit, and a second sending unit, where:
- the first receiving unit is configured to receive geographical location information sent by the Small Cell by using a service interface that is connected to the first interface of the small cell Small Cell, where the geographic location information is that the Small Cell detects the Small Geographical location information of the user terminal covered by the Cell;
- the first sending unit is configured to send the geographic location information to an application server, where the application server generates a control command of the M2M device according to the geographic location information;
- the second receiving unit is configured to receive the control command sent by the application server
- the second sending unit is configured to send the control command to the M2M device by using an M2M gateway device, so that the M2M device executes the control command.
- the M2M platform device further includes:
- the first receiving unit is configured to receive, by using the communication connection, the geographic location information sent by the Small Cell.
- the present invention provides an M2M platform device, including: a receiving unit and a sending unit, where:
- the receiving unit is configured to receive the detection result information sent by the application server, where the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is The detection result obtained by the M2M device detecting the preset object;
- the sending unit is configured to connect to a service interface that is connected to the first interface of the small cell Small Cell Sending the detection result information to the Small Cell, so that the Small Cell sends a prompt message containing the content of the detection result information to the user terminal covered by the Small Cell.
- the M2M platform device further includes:
- the sending unit is configured to send the detection result information to the Small Cell by using the communication connection.
- the present invention provides a small base station, a small cell, including: a receiving unit and a sending unit, where:
- the receiving unit is configured to receive the detection result information sent by the M2M platform device by using a first interface that is connected to the service interface of the IoT M2M platform device, where the detection result information is that the M2M platform device receives the application server.
- the sending unit is configured to send, to the user terminal covered by the Small Cell, a prompt message that includes content of the detection result information.
- the Small Cell further includes:
- the receiving unit is configured to receive, by using the communication connection, detection result information sent by the M2M platform device.
- the Small Cell further includes:
- a connecting unit configured to connect to the M2M device by using the second interface, where the Small Cell provides network access to the M2M device by using the second interface.
- the present invention provides a small base station, a small cell, including: a processor, a network interface, a memory, and a communication bus, wherein the communication bus is configured to implement connection communication between the processor, the network interface, and the memory,
- the processor executes a program stored in the memory for implementing the following method:
- the program executed by the processor further includes:
- the geographic location information is transmitted to the M2M platform device over the communication connection.
- the program executed by the processor further includes:
- the present invention provides an Internet of Things (M2M) device, including: a processor, a network interface, a memory, and a communication bus, wherein the communication bus is configured to implement connection communication between the processor, the network interface, and the memory.
- M2M Internet of Things
- the processor executes a program stored in the memory for implementing the following method:
- the program executed by the processor further includes include:
- the program executed by the processor to receive the geographical location information sent by the Small Cell by using a service interface connected to the first interface of the small cell Small Cell, including:
- the present invention provides an Internet of Things (M2M) platform device, including: a processor, a network interface, a memory, and a communication bus, wherein the communication bus is configured to implement a connection between the processor, the network interface, and the memory.
- M2M Internet of Things
- the processor executes a program stored in the memory for implementing the following method:
- the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is that the M2M device performs the preset object Detecting the test results;
- the program executed by the processor further includes:
- the detection result information is sent to the Small Cell through the communication connection.
- the present invention provides a small base station, a small cell, comprising: a processor, a network interface, a memory, and a communication bus, wherein the communication bus is used to implement connection communication between the processor, the network interface, and the memory.
- the processor executes a program stored in the memory for implementing the following method:
- the detection result information sent by the M2M platform device, where the detection result information is the M2M platform setting
- the detection result that is sent by the application server and is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is a detection result obtained by the M2M device detecting the preset object;
- the program executed by the processor further includes:
- the program executed by the processor to receive the detection result information sent by the M2M platform device by using the first interface connected to the service interface of the IoT M2M platform device includes:
- the network architecture in which the Small Cell and the M2M system are integrated includes: a Small Cell Small Cell and an M2M platform device in the M2M system, where: the Small Cell is connected to a service interface of the M2M platform device through a first interface, The Small Cell transmits the service data in the M2M system to the M2M platform device by using the first interface, and when the service data needs to be sent to the user terminal covered by the Small Cell, the Small Cell will The service data is sent to the user terminal.
- the Small Cell and the M2M system can be integrated.
- the services of the Small Cell and the M2M system include people, the integration of the Small Cell and the M2M system can provide services to users more quickly and conveniently.
- FIG. 1 is a schematic structural diagram of a network architecture in which a Small Cell and an M2M system are integrated according to an embodiment of the present invention
- FIG. 2 is a network frame in which another Small Cell and an M2M system are integrated according to an embodiment of the present invention. Schematic diagram of the structure;
- FIG. 3 is a schematic flowchart of a method for controlling an M2M device according to an embodiment of the present invention
- FIG. 4 is a schematic flowchart diagram of another method for controlling an M2M device according to an embodiment of the present invention.
- FIG. 5 is a schematic flowchart of a message prompting method according to an embodiment of the present invention.
- FIG. 6 is a schematic flowchart diagram of another message prompting method according to an embodiment of the present disclosure.
- FIG. 7 is a schematic structural diagram of a Small Cell according to an embodiment of the present invention.
- FIG. 8 is a schematic structural diagram of another Small Cell according to an embodiment of the present invention.
- FIG. 9 is a schematic structural diagram of an M2M platform device according to an embodiment of the present invention.
- FIG. 10 is a schematic structural diagram of another M2M platform device according to an embodiment of the present disclosure.
- FIG. 11 is a schematic structural diagram of another M2M platform device according to an embodiment of the present invention.
- FIG. 12 is a schematic structural diagram of another M2M platform device according to an embodiment of the present disclosure.
- FIG. 13 is a schematic structural diagram of another Small Cell according to an embodiment of the present invention.
- FIG. 14 is a schematic structural diagram of another Small Cell according to an embodiment of the present invention.
- FIG. 15 is a schematic structural diagram of another Small Cell according to an embodiment of the present invention.
- 16 is a schematic structural diagram of another M2M platform device according to an embodiment of the present invention.
- FIG. 17 is a schematic structural diagram of another M2M platform device according to an embodiment of the present disclosure.
- FIG. 18 is a schematic structural diagram of another Small Cell according to an embodiment of the present invention.
- FIG. 1 is a schematic structural diagram of a network architecture in which a Small Cell and an M2M system are integrated according to an embodiment of the present invention.
- the architecture includes: a Small Cell 11 and an M2M system in a Small Cell system.
- M2M platform device 12 where:
- the Small Cell 11 is connected to the service interface of the M2M platform device 12 through the first interface, and the Small Cell 11 transmits the service data in the M2M system through the first interface and the M2M platform device 12, and when the service data needs to be sent to The user terminal 13 covered by the Small Cell 11 The Small Cell sends the service data to the user terminal 13.
- the Small Cell 11 may be a Small Cell deployed indoors.
- the Small Cell 11 is not a Small Cell deployed indoors.
- the Small Cell 11 may also be deployed outdoors.
- the first interface of the Small Cell 11 and the service interface of the M2M platform device 12 may be pre-established logical interfaces.
- the connection of the Small Cell 11 to the service interface of the M2M platform device 12 through the first interface may be that the Small Cell 11 uses the first interface to connect to the service interface of the M2M platform device 12 to connect to the network.
- the Small Cell 11 and the M2M platform device 12 can establish a local area network connection through the above two interfaces; in addition, the Small Cell 11 and the M2M platform device 12 can pass the above.
- Two interfaces establish an internet connection.
- connection between the Small Cell 11 and the M2M platform device 12 is directly established through the foregoing two interfaces, so that the Small Cell 11 and the M2M platform device 12 can directly communicate without going through the core network and using node network resources. Improve data transfer efficiency.
- the service data in the M2M system may be any service in the M2M system, for example, input service data of the M2M system, or output service data of the M2M system.
- the service data detected by the Small Cell 11 is input to the M2M system, and the M2M system performs corresponding control management according to the input; or the service data in the M2M system may be the service data transmitted by the M2M system to the Small Cell 11, for example, the M2M system.
- the service data collected in the middle is used as an input of the Small Cell 11, and the Small Cell 11 performs corresponding operations on the user terminal according to the input.
- the Small Cell and the M2M system may be integrated under the network architecture, or the Small Cell system and the M2M system may be integrated, and the service objects of the two include the user (person), thereby being integrated in the
- the network architecture can provide better and faster service for users, and because the above network architecture does not need to transmit service data through the core network, thereby saving network resources.
- the network architecture of the Small Cell and the M2M system is: the Small Cell and the M2M platform device in the M2M system, where: the Small Cell is connected to the service interface of the M2M platform device by using the first interface, Small Cell transmits the service data in the M2M system to the M2M platform device through the first interface, and when the service data needs When sent to the user terminal covered by the Small Cell, the Small Cell sends the service data to the user terminal.
- the Small Cell and the M2M system can be integrated.
- the integration of the Small Cell and the M2M system can provide services to users more quickly and conveniently.
- FIG. 2 is a schematic structural diagram of another network architecture in which a Small Cell and an M2M system are integrated according to an embodiment of the present invention.
- the method includes: a Small Cell 21, a Small Cell 21 covered user terminal 22, and an M2M.
- the Small Cell 21 is connected to the service interface of the M2M platform device 23 through the first interface;
- the Small Cell 21 is configured to detect the geographic location information of the user terminal 22, and send the geographic location information to the M2M platform device 23 through the first interface;
- the M2M platform device 23 is configured to send the geographical location information to the application server 26, and the application server 26 generates a control command of the M2M device 25 according to the geographical location information;
- the M2M platform device 23 receives the control command sent by the application server 26, and sends the control command to the M2M device 25 through the M2M gateway device 24;
- the M2M device 25 is for executing the control command.
- the M2M device 25 may be an M2M terminal, for example, an indoor household appliance or an outdoor electrical appliance.
- the M2M device 25 may also be a controller that controls the M2M terminal, such as: electrical equipment, access control, or smoke.
- the M2M device 25 may also be a sensor such as a smoke sensor, a fire sensor or an access sensor. Additionally, the M2M device 25 may refer to one or more M2M devices.
- the Small Cell 21 sends the detected geographic location information of the user terminal 22 to the M2M platform device 23, and then sends it to the application server 26 by the M2M platform device 23, so that the application server 26 can generate the location information according to the geographic location information.
- the control command for example, when the geographic location information indicates that there is no user at the location of the M2M device 25, the application server 26 can generate a control command to shut down the M2M device. For example: turn off the lights or turn off the air conditioner and other control commands.
- the M2M device 25 receives the above control command, the command is executed, so that the Small Cell 21 can be implemented as An input in the M2M system that controls devices in the M2M system based on the input.
- the data detected by the Small Cell 21 can be used as an input in the M2M system, in this embodiment, some sensors can be reduced in the M2M system, for example, for the switch of the home appliance, the sensor that does not need to detect the user in and out can be detected. Instead, the location information of the user terminal detected by the Small Cell 21 is used for control. For example, when the Small Cell 21 detects that the user terminal enters the location of the M2M device 25, the application server 26 can generate and control the M2M device 25 to turn on the electric light or the air conditioner. Terminal control commands, which can reduce the cost of the M2M system. ,
- the control command generated by the application server 26 may be a control command for a specific M2M device, and the specific M2M device may be defined as a current control M2M device that needs to be currently controlled.
- the application server 26 may be specifically configured to select an M2M device that needs to be controlled by the geographic location information as the current control M2M device, and generate a control command corresponding to the geographical location information according to a preset control policy. Current control commands for controlling M2M devices.
- the geographical location information detected by the Small Cell 21 indicates that there is no user at the location of the M2M device A, and there are a large number of users at the location where the M2M device B is located, so that the application server 26 can generate a control command for controlling the M2M device A to turn off the lights, and of course A control command is generated to control the M2M device B to turn on more lights.
- the foregoing control policy may be pre-generated, for example, the user presets, and the control policy may include a correspondence between the geographic location information and the control command, that is, the control command may generate a control command corresponding to the different geographical location information.
- the control command of the M2M device to turn off the appliance may be generated; or when the user of the M2M device exists in the location, and the appliance controlled by the M2M device is not turned on, the control of the M2M device to turn on the appliance may be generated. command.
- the M2M device 25 can also be used to detect a preset object to obtain a detection result, and send the detection result to the application server 26;
- the detection result information is sent to the M2M platform device 23;
- the M2M platform device 23 is further configured to send the detection result information to the Small Cell 21 by using the service interface;
- the Small Cell 21 is further configured to send a prompt message containing the content of the detection result information to the user terminal.
- the M2M device 25 can detect the preset object, for example, detecting objects such as smoke, access control, fire alarm, and the like, and sending the detection result to the application server 26, and the application server 26 can determine it.
- the detection result information can be sent to the M2M platform device 23, so that the M2M platform device 23 can send the detection result information to the Small Cell 21, and the Small Cell 21 sends the detection to the user terminal.
- the user terminal that receives the prompt message may be a specific user terminal, and the specific user terminal may define a current notification user terminal that needs to be notified.
- the application server 26 may also be used to select the M2M device. User terminal as the current notification user terminal;
- the M2M platform device 23 is specifically configured to send the detection result information to the Small Cell 21 that covers the current notification user terminal by using the service interface. In this way, the above prompt message can be sent to the current notification user terminal.
- the M2M platform device 23 may be configured to send, by using the service interface, the detection result information to the Small Cell 21 that is currently notified by the user terminal.
- the application server 26 may be specifically configured to select a user terminal that is bound to the M2M device in advance as the current notification user terminal. For example, when the M2M device 25 detects an alarm such as an access control or a fire alarm, it can pass through a security guard or an administrator.
- an alarm such as an access control or a fire alarm
- the application server 26 may be specifically configured to select, as the current notification user terminal, a user terminal whose distance between the geographic location and the geographic location of the M2M device is within a preset distance. For example, when the M2M device 25 detects smoke, it can notify the user who is currently in the vicinity of the M2M device 25.
- connection of the Small Cell 21 to the service interface of the M2M platform device 23 through the first interface may be defined as SM_IOT, where SM represents a Small Cell system and IOT represents an M2M system.
- the Small Cell 21 can also be connected to the M2M device 25 through the second interface, and the Small Cell 21 provides network access to the M2M device 25 through the second interface.
- the Small Cell 21 and the M2M device 25 in this embodiment may be in the same location, which The two can connect to the network through the local area network, so that the M2M device 25 can connect to the network through the Small Cell 21.
- the second interface of the Small Cell 21 may be connected to the M2M device 25, and the second interface of the Small Cell 21 may be connected to the network interface of the M2M device 25.
- the two interfaces may be preset logical interfaces.
- the connection between the second interface of the Small Cell 21 and the M2M device 25 can be defined as LTE-M, that is, the LTE network is connected to the M2M device.
- FIG. 3 is a schematic flowchart of a method for controlling an M2M device according to an embodiment of the present invention. As shown in FIG. 3, the method includes the following steps:
- the Small Cell detects geographical location information of the user terminal covered by the Small Cell.
- Step 301 can detect the geographic location information of the user terminal by using the message reported by the user terminal, or step 301 can detect the geographic location information of the user terminal by detecting the signal strength of the user terminal.
- the Small Cell sends the geographical location information to the M2M platform device by using a first interface that is connected to the service interface of the M2M platform device, so that the M2M platform device sends the geographical location information to the application server, where
- the application server generates a control command of the M2M device according to the geographic location information, and receives, by the M2M platform device, the control command sent by the application server, and sends the control to the M2M device by using an M2M gateway device. a command to cause the M2M device to execute the control command.
- the location information of the Small Cell can be detected as an input in the M2M system, and the M2M system controls the corresponding device according to the input, thereby implementing the fusion of the Small Cell system and the M2M system.
- the foregoing method may further include the following:
- the Small Cell establishes the first interface, and establishes a communication connection with the service interface of the M2M platform device by using the first interface;
- the step of sending the location information to the M2M platform device by using the first interface that is connected to the service interface of the M2M platform device by using the first interface may include:
- the Small Cell sends the geographic location information to the M2M platform device through the communication connection.
- the foregoing method may further include the following steps:
- the Small Cell is connected to the M2M device through a second interface, wherein the Small Cell provides network access to the M2M device through the second interface.
- the M2M device in the M2M system can access the network through the Small Cell.
- the Small Cell detects the geographical location information of the user terminal covered by the Small Cell; the Small Cell sends the geographical location information to the M2M platform device through a first interface connected to the service interface of the M2M platform device, The M2M platform device sends the location information to the application server, and the application server generates a control command of the M2M device according to the geographic location information, and receives, by the M2M platform device, the application server, And the controlling command, and sending, by the M2M gateway device, the control command to the M2M device, so that the M2M device executes the control command.
- the fusion of the Small Cell and the M2M system can be realized.
- FIG. 4 is a schematic flowchart of another method for controlling an M2M device according to an embodiment of the present invention. As shown in FIG. 4, the method includes the following steps:
- the M2M platform device receives the geographical location information sent by the Small Cell by using a service interface that is connected to the first interface of the Small Cell, where the geographic location information is that the Small Cell detects the user terminal covered by the Small Cell. Location information.
- the M2M platform device sends the geographic location information to an application server, where the application server generates a control command of the M2M device according to the geographic location information.
- the M2M platform device receives the control command sent by the application server, and sends the control command to the M2M device by using an M2M gateway device, so that the M2M device executes the control command.
- the location information of the Small Cell can be detected as an input in the M2M system, and the M2M system controls the corresponding device according to the input, thereby implementing the fusion of the Small Cell system and the M2M system.
- the foregoing method may further include the following:
- the M2M platform device establishes the service interface, and establishes a communication connection with the first interface of the Small Cell through the service interface;
- the step of receiving, by the M2M platform device, the geographical location information sent by the Small Cell by using the service interface connected to the first interface of the Small Cell Small Cell may include:
- the M2M platform device receives the geographical location information sent by the Small Cell through the communication connection.
- the M2M platform device receives the geographical location information sent by the Small Cell by using a service interface that is connected to the first interface of the Small Cell, where the geographical location information is that the Small Cell detects the Small Cell coverage.
- the location information of the user terminal is sent by the M2M platform device to the application server, where the application server generates a control command of the M2M device according to the geographic location information; the M2M platform device receives the application And sending, by the M2M gateway device, the control command to the M2M device, so that the M2M device executes the control command.
- FIG. 5 is a schematic flowchart of a message prompting method according to an embodiment of the present invention. As shown in FIG. 5, the method includes the following steps:
- the M2M platform device receives the detection result information sent by the application server, where the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is the M2M device.
- the detection result obtained by detecting the preset object.
- the detection result is sent to the application server, and the application server determines whether the detection result needs to notify the user, and when the user needs to be notified, the detection is performed.
- the measurement result information is sent to the M2M platform device.
- the M2M platform device sends the detection result information to the Small Cell by using a service interface that is connected to the first interface of the small cell, the Small Cell, to send the Small Cell to the user terminal that is covered by the Small Cell.
- a prompt message describing the content of the detection result information.
- the Small Cell When the Small Cell receives the above detection result information, it can detect a prompt message of the content of the result information to the user terminal to implement the prompting user.
- the user terminal that receives the prompt message may have a specific relationship with the M2M device that detects the preset object.
- the user terminal that receives the prompt message may have a binding relationship with the M2M device that detects the preset object in advance, for example, the security or the administrator is bound to the M2M device in advance, so that the security or management can be notified in time.
- the user terminal that receives the prompt message may be the same as the location of the M2M device that detects the preset object. For example, when the M2M device detects an abnormal situation, notify the local user.
- the user terminal that receives the prompt message may be determined by the application server according to the M2M device, for example, the detection result information sent by the application server carries the identifier of the user terminal; or the user who receives the prompt message.
- the terminal is determined by the Small Cell. For example, the Small Cell selects a specific user terminal as a user terminal that needs to send a prompt message according to the detection result information.
- the detection result detected by the M2M system is used as an input of the Small Cell, and the Small Cell can be used as a corresponding prompt according to the detection result information to implement the fusion of the Small Cell and the M2M system.
- the method may further include the following:
- the M2M platform device establishes the service interface, and establishes a communication connection with the first interface of the Small Cell through the service interface;
- the M2M platform device receives the geographical location information sent by the Small Cell by using a service interface that is connected to the first interface of the Small Cell Small Cell, including:
- the M2M platform device receives the geographical location information sent by the Small Cell through the communication connection.
- the M2M platform device receives the detection result information sent by the application server, where the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is The detection result obtained by detecting the preset object by the M2M device; the M2M platform device sends the detection result information to the Small Cell through a service interface connected to the first interface of the small cell Small Cell, so that the Small Cell Sending a prompt message containing the content of the detection result information to the user terminal covered by the Small Cell.
- the integration of the Small Cell and the M2M system can be realized.
- FIG. 6 is a schematic flowchart of another message prompting method according to an embodiment of the present invention. As shown in FIG. 6, the method includes the following steps:
- the Small Cell receives the detection result information sent by the M2M platform device by using a first interface that is connected to the service interface of the M2M platform device, where the detection result information is sent by the M2M platform device receiving application server, where The detection result determined by the application server to be notified to the user and reported by the M2M device, where the detection result is a detection result obtained by the M2M device detecting the preset object;
- the Small Cell sends a prompt message that includes the content of the detection result information to the user terminal covered by the Small Cell.
- the detection result detected by the M2M system is used as an input of the Small Cell, and the Small Cell can be used as a corresponding prompt according to the detection result information to implement the fusion of the Small Cell and the M2M system.
- the user terminal that receives the prompt message may have a specific relationship with the M2M device that detects the preset object.
- the user terminal that receives the prompt message may have a binding relationship with the M2M device that detects the preset object in advance, for example, the security or the administrator is bound to the M2M device in advance, so that the security or management can be notified in time.
- the user terminal that receives the prompt message may be the same as the location of the M2M device that detects the preset object. For example, when the M2M device detects an abnormal situation, notify the local user.
- the user terminal that receives the prompt message may be determined by the application server according to the M2M device, for example, the detection result information sent by the application server carries the identifier of the user terminal; or the user who receives the prompt message.
- the terminal is determined by the Small Cell, for example: Small Cell is based on the test result. The information selects a specific user terminal as a user terminal that needs to send a prompt message.
- the Small Cell establishes the first interface, and establishes a communication connection with the service interface of the M2M platform device by using the first interface;
- the step of receiving, by the first interface, the detection result information sent by the M2M platform device by using the first interface that is connected to the service interface of the IoT M2M platform device, may include:
- the Small Cell receives the detection result information sent by the M2M platform device through the communication connection.
- the foregoing method may further include the following steps:
- the Small Cell is connected to the M2M device by using a second interface, where the Small Cell provides network access to the M2M device through the second interface.
- the Small Cell receives the detection result information sent by the M2M platform device by using the first interface connected to the service interface of the M2M platform device, where the detection result information is sent by the M2M platform device to the application server.
- a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is a detection result obtained by the M2M device detecting the preset object; and the Small Cell is sent to the Small Cell
- the covered user terminal transmits a prompt message containing the content of the detection result information.
- FIG. 7 is a schematic structural diagram of a Small Cell according to an embodiment of the present invention. As shown in FIG. 7, the method includes: a detecting unit 71 and a sending unit 72, where:
- the detecting unit 71 is configured to detect geographical location information of the user terminal covered by the Small Cell;
- the sending unit 72 is configured to send, by using the first interface that is connected to the service interface of the M2M platform device, the geographic location information to the M2M platform device, so that the M2M platform device sends the geographic location information to the application server. Generating, by the application server, a control command of the M2M device according to the geographical location information, and receiving, by the M2M platform device, the application server to send And the controlling command is sent to the M2M device by the M2M gateway device to enable the M2M device to execute the control command.
- the Small Cell may further include:
- the establishing unit 73 is configured to establish the first interface, and establish a communication connection with the service interface of the M2M platform device by using the first interface;
- the sending unit 72 is configured to send the geographical location information to the M2M platform device by using the communication connection.
- the Small Cell may further include:
- the connecting unit 74 is configured to connect to the M2M device by using a second interface, where the Small Cell provides network access to the M2M device by using the second interface.
- the Small Cell detects the geographical location information of the user terminal covered by the Small Cell; the Small Cell sends the geographical location information to the M2M platform device through a first interface connected to the service interface of the M2M platform device, The M2M platform device sends the location information to the application server, and the application server generates a control command of the M2M device according to the geographic location information, and receives, by the M2M platform device, the application server, And the controlling command, and sending, by the M2M gateway device, the control command to the M2M device, so that the M2M device executes the control command.
- the fusion of the Small Cell and the M2M system can be realized.
- FIG. 9 is a schematic structural diagram of an M2M platform device according to an embodiment of the present invention. As shown in FIG. 9, the method includes: a first receiving unit 91, a first sending unit 92, a second receiving unit 93, and a second Sending unit 94, wherein:
- the first receiving unit 91 is configured to receive, by using a service interface that is connected to the first interface of the small cell Small Cell, the geographic location information sent by the Small Cell, where the geographic location information is that the Small Cell detects the Small Cell Geographical location information of the covered user terminal;
- a first sending unit 92 configured to send the geographic location information to an application server, by The application server generates a control command of the M2M device according to the geographical location information;
- a second receiving unit 93 configured to receive the control command sent by the application server
- the second sending unit 94 is configured to send the control command to the M2M device by using an M2M gateway device, so that the M2M device executes the control command.
- the foregoing M2M platform device may further include:
- the establishing unit 95 is configured to establish the service interface, and establish a communication connection with the first interface of the Small Cell through the service interface;
- the first receiving unit 91 may be configured to receive, by using the communication connection, the geographical location information sent by the Small Cell.
- M2M platform device introduced in this embodiment may be applied to the network architecture shown in FIG. 1 and FIG. 2, and the embodiments introduced in the network architecture shown in FIG. 1 and FIG. 2 may also be applied to the implementation. For example, no repeated explanation is given here.
- the M2M platform device receives the geographical location information sent by the Small Cell by using a service interface that is connected to the first interface of the Small Cell, where the geographical location information is that the Small Cell detects the Small Cell coverage.
- the location information of the user terminal is sent by the M2M platform device to the application server, where the application server generates a control command of the M2M device according to the geographic location information; the M2M platform device receives the application And sending, by the M2M gateway device, the control command to the M2M device, so that the M2M device executes the control command.
- FIG. 11 is a schematic structural diagram of another M2M platform device according to an embodiment of the present invention. As shown in FIG. 11, the method includes: a receiving unit 111 and a sending unit 112, where:
- the receiving unit 111 is configured to receive the detection result information sent by the application server, where the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is the M2M The detection result obtained by the device detecting the preset object;
- the sending unit 112 is configured to send the detection result information to the Small Cell by using a service interface that is connected to the first interface of the small cell Small Cell, so that the Small Cell sends the content to the user terminal covered by the Small Cell.
- the prompt message of the content of the detection result information is configured to send the detection result information to the Small Cell by using a service interface that is connected to the first interface of the small cell Small Cell, so that the Small Cell sends the content to the user terminal covered by the Small Cell.
- the prompt message of the content of the detection result information is configured to send the detection result information to the Small Cell by using a service interface that is connected to the first interface of the small cell Small Cell, so that the Small Cell sends the content to the user terminal covered by the Small Cell.
- the foregoing M2M platform device may further include:
- the establishing unit 113 is configured to establish the service interface, and establish a communication connection with the first interface of the M2M platform device by using the service interface;
- the sending unit 112 can be configured to send the detection result information to the Small Cell through the communication connection.
- M2M platform device introduced in this embodiment may be applied to the network architecture shown in FIG. 1 and FIG. 2, and the embodiments introduced in the network architecture shown in FIG. 1 and FIG. 2 may also be applied to the implementation. For example, no repeated explanation is given here.
- the M2M platform device receives the detection result information sent by the application server, where the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is The detection result obtained by detecting the preset object by the M2M device; the M2M platform device sends the detection result information to the Small Cell through a service interface connected to the first interface of the small cell Small Cell, so that the Small Cell Sending a prompt message containing the content of the detection result information to the user terminal covered by the Small Cell.
- the integration of the Small Cell and the M2M system can be realized.
- FIG. 13 is a schematic structural diagram of another Small Cell according to an embodiment of the present invention. As shown in FIG. 13, the method includes: a receiving unit 131 and a sending unit 132, where:
- the receiving unit 131 is configured to receive the detection result information sent by the M2M platform device by using a first interface that is connected to the service interface of the M2M platform device, where the detection result information is sent by the M2M platform device receiving application server, a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is a detection result obtained by the M2M device detecting the preset object;
- the sending unit 132 is configured to send, to the user terminal covered by the Small Cell, a prompt message that includes the content of the detection result information.
- the foregoing Small Cell may further include:
- the establishing unit 133 is configured to establish the first interface, and establish a communication connection with the service interface of the M2M platform device by using the first interface;
- the receiving unit 131 can be configured to receive, by using the communication connection, the sending by the M2M platform device. Test result information.
- the foregoing Small Cell may further include:
- the connecting unit 134 is configured to connect to the M2M device by using a second interface, where the Small Cell provides network access to the M2M device by using the second interface.
- the Small Cell receives the detection result information sent by the M2M platform device by using the first interface connected to the service interface of the M2M platform device, where the detection result information is sent by the M2M platform device to the application server.
- a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is a detection result obtained by the M2M device detecting the preset object; and the Small Cell is sent to the Small Cell
- the covered user terminal transmits a prompt message containing the content of the detection result information.
- FIG. 15 is a schematic structural diagram of another Small Cell according to an embodiment of the present invention.
- the processor includes a processor 151, a network interface 152, a memory 153, and a communication bus 154.
- 154 is used to implement connection communication between the processor 151, the network interface 152 and the memory 153, and the processor 151 executes a program stored in the memory for implementing the following method:
- the program executed by the processor 151 may further include:
- the program that is sent by the processor 151 to the M2M platform device by using the first interface that is connected to the service interface of the M2M platform device may include:
- the geographic location information is transmitted to the M2M platform device over the communication connection.
- the program executed by the processor 151 may further include:
- the Small Cell detects the geographical location information of the user terminal covered by the Small Cell; the Small Cell sends the geographical location information to the M2M platform device through a first interface connected to the service interface of the M2M platform device, The M2M platform device sends the location information to the application server, and the application server generates a control command of the M2M device according to the geographic location information, and receives, by the M2M platform device, the application server, And the controlling command, and sending, by the M2M gateway device, the control command to the M2M device, so that the M2M device executes the control command.
- the fusion of the Small Cell and the M2M system can be realized.
- FIG. 16 is a schematic structural diagram of another M2M platform device according to an embodiment of the present invention.
- the processor includes a processor 161, a network interface 162, a memory 163, and a communication bus 164.
- the bus 164 is used to implement connection communication between the processor 161, the network interface 162, and the memory 163, and the processor 161 executes programs stored in the memory for implementing the following methods:
- the program executed by the processor 161 may further include:
- the program executed by the processor 161 to receive the geographical location information sent by the Small Cell by using the service interface connected to the first interface of the small cell Small Cell may include:
- M2M platform device introduced in this embodiment may be applied to the network architecture shown in FIG. 1 and FIG. 2, and the embodiments introduced in the network architecture shown in FIG. 1 and FIG. 2 may also be applied to the implementation. For example, no repeated explanation is given here.
- the M2M platform device receives the geographical location information sent by the Small Cell by using a service interface that is connected to the first interface of the Small Cell, where the geographical location information is that the Small Cell detects the Small Cell coverage.
- the location information of the user terminal is sent by the M2M platform device to the application server, where the application server generates a control command of the M2M device according to the geographic location information; the M2M platform device receives the application And sending, by the M2M gateway device, the control command to the M2M device, so that the M2M device executes the control command.
- FIG. 17 is a schematic structural diagram of another M2M platform device according to an embodiment of the present invention.
- the processor includes a processor 171, a network interface 172, a memory 173, and a communication bus 174.
- the bus 174 is used to implement connection communication between the processor 171, the network interface 172, and the memory 173, and the processor 171 executes a program stored in the memory 173 for implementing the following method:
- the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is that the M2M device performs the preset object Detecting the test results;
- the detection result information is obtained through a service interface connected to the first interface of the small base station Small Cell Sending to the Small Cell, so that the Small Cell sends a prompt message containing the content of the detection result information to the user terminal covered by the Small Cell.
- the program executed by the processor 171 may further include:
- the program executed by the processor 171 to send the detection result information to the Small Cell through a service interface connected to the first interface of the small cell Small Cell may include:
- the detection result information is sent to the Small Cell through the communication connection.
- M2M platform device introduced in this embodiment may be applied to the network architecture shown in FIG. 1 and FIG. 2, and the embodiments introduced in the network architecture shown in FIG. 1 and FIG. 2 may also be applied to the implementation. For example, no repeated explanation is given here.
- the M2M platform device receives the detection result information sent by the application server, where the detection result information is a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is The detection result obtained by detecting the preset object by the M2M device; the M2M platform device sends the detection result information to the Small Cell through a service interface connected to the first interface of the small cell Small Cell, so that the Small Cell Sending a prompt message containing the content of the detection result information to the user terminal covered by the Small Cell.
- the integration of the Small Cell and the M2M system can be realized.
- FIG. 18 is a schematic structural diagram of another Small Cell according to an embodiment of the present invention.
- the system includes a processor 181, a network interface 182, a memory 183, and a communication bus 184.
- 184 is used to implement connection communication between the processor 181, the network interface 182, and the memory 183, and the processor 181 executes a program stored in the memory for implementing the following method:
- the detection result information sent by the M2M platform device receives, by the first interface connected to the service interface of the IoT M2M platform device, the detection result information sent by the M2M platform device, where the detection result information is sent by the M2M platform device receiving application server, by the application
- the server determines that the detection result is reported by the M2M device, and the detection result is a detection result obtained by the M2M device detecting the preset object;
- the program executed by the processor 181 may further include:
- the program executed by the processor 181 may further include:
- the Small Cell receives the detection result information sent by the M2M platform device by using the first interface connected to the service interface of the M2M platform device, where the detection result information is sent by the M2M platform device to the application server.
- a detection result that is determined by the application server to be notified to the user and reported by the M2M device, where the detection result is a detection result obtained by the M2M device detecting the preset object; and the Small Cell is sent to the Small Cell
- the covered user terminal transmits a prompt message containing the content of the detection result information.
- the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).
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Abstract
本发明实施例公开了一种Small Cell与M2M系统融合的网络架构以及相关方法和相关设备,该网络架构包括:Small Cell系统中的Small Cell和M2M系统中的M2M平台设备,其中:所述Small Cell通过第一接口与所述M2M平台设备的业务接口连接,所述Small Cell通过所述第一接口与所述M2M平台设备传输所述M2M系统中的业务数据,以及当所述业务数据需要发送给所述Small Cell覆盖的用户终端时,所述Small Cell将所述业务数据向所述用户终端发送。本发明实施例可以实现Small Cell与M2M系统融合。
Description
本发明涉及通信领域,尤其涉及一种小基站(Small Cell)与物联网(Machine to Machine,M2M)系统融合的网络架构以及相关方法和相关设备。
随着无线覆盖和移动带宽业务(Mobile Broadband,MBB)的普及,室内覆盖逐渐加强,小基站(Small Cell)的部署规模也越来越大。然而,随着科技的进步,现在生活中室内在部署Small Cell的同时,可能还会部署M2M系统中的设备,但目前Small Cell与M2M系统中的设备没有融合。其中,Small Cell服务的对象可以用户终端,即可以理解为Small Cell服务的对象可以是人,而室内部署的M2M系统的设备,例如:家用电器、电器设备控制器或者环境检测设备等,这些设备服务的对象都可以包括人。可见,在室内部署的Small Cell和M2M系统的设备的服务对象存在共性,从而Small Cell与M2M系统的融合是目前急需要解决的技术问题。
发明内容
本发明提供一种Small Cell与M2M系统融合的网络架构以及相关方法和相关设备,可以实现Small Cell与M2M系统融合。
第一方面,本发明提供一种Small Cell与M2M系统融合的网络架构,所述架构包括:Small Cell系统中的Small Cell和M2M系统中的M2M平台设备,其中:
所述Small Cell通过第一接口与所述M2M平台设备的业务接口连接,所述Small Cell通过所述第一接口与所述M2M平台设备传输所述M2M系统中的业务数据,以及当所述业务数据需要发送给所述Small Cell覆盖的用户终端时,所述Small Cell将所述业务数据向所述用户终端发送。
在第一方面的第一种可能的实现方式中,所述业务数据包括地理位置信
息;
所述Small Cell还用于检测所述用户终端的地理位置信息,并将所述地理位置信息通过所述第一接口发送给所述M2M平台设备;
所述M2M平台设备还用于将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成所述M2M设备的控制命令;
所述M2M平台设备接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向M2M设备发送所述控制命令,由所述M2M设备执行所述控制命令。
结合第一方面的第一种可能的实现方式,在第一方面的第二种可能的实现方式中,所述M2M设备包括当前控制M2M设备,其中:
所述应用服务器具体用于选择所述地理位置信息当前需要控制的M2M设备作为所述当前控制M2M设备,并根据预先设定的控制策略生成所述地理位置信息对应的控制命令作为所述当前控制M2M设备的控制命令。
结合第一方面的第一种可能的实现方式,在第一方面的第三种可能的实现方式中,所述业务数据包括需要通知用户的检测结果信息;
所述M2M设备还用于对预设对象进行检测得到检测结果,并将所述检测结果发送给应用服务器;
当所述应用服务器判断所述检测结果为所述需要通知用户的检测结果信息时,将所述检测结果信息发送给所述M2M平台设备;
所述M2M平台设备还用于通过所述业务接口将所述检测结果信息发送给所述Small Cell;
所述Small Cell还用于向所述用户终端发送包含所述检测结果信息的内容的提示消息。
结合第一方面的第三种可能的实现方式,在第一方面的第四种可能的实现方式中,所述用户终端包括当前通知用户终端,其中:
所述应用服务器还用于选择所述M2M设备对应的用户终端作为所述当前通知用户终端;
所述M2M平台设备具体用于通过所述业务接口将所述检测结果信息发送给覆盖所述当前通知用户终端的Small Cell。
结合第一方面的第四种可能的实现方式,在第一方面的第五种可能的实现方式中,所述应用服务器具体用于选择预先与所述M2M设备绑定的用户终端作为所述当前通知用户终端;或者
所述应用服务器具体用于选择所在地理位置与所述M2M设备所在地理位置之间的距离在预设距离内的用户终端作为所述当前通知用户终端。
结合第一方面的上述任一种可能的实现方式,在第一方面的第七种可能的实现方式中,所述Small Cell还通过第二接口与所述M2M系统中的M2M设备连接,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
第二方面,本发明提供一种控制物联网M2M设备的方法,包括:
小基站Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;
所述Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
在第二方面的第一种可能的实现方式中,所述方法还包括:
所述Small Cell建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
所述Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,包括:
所述Small Cell通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
结合第二方面或者第二方面的第一种可能的实现方式,在第二方面的第二种可能的实现方式中,所述方法还包括:
所述Small Cell通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
第三方面,本发明提供一种控制物联网M2M设备的方法,包括:
M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口接收
所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;
所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;
所述M2M平台设备接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
在第三方面的第一种可能的实现方式中,所述方法还包括:
所述M2M平台设备建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
所述M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,包括:
所述M2M平台设备通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
第四方面,本发明提供一种消息提示方法,包括:
物联网M2M平台设备接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
所述M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
在第四方面的第一种可能的实现方式中,所述方法还包括:
所述M2M平台设备建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
所述M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,包括:
所述M2M平台设备通过所述通信连接将所述检测结果信息发送给所述Small Cell。
第五方面,本发明提供一种消息提示方法,包括:
小基站Small Cell通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
在第五方面的第一种可能的实现方式中,所述方法还包括:
所述Small Cell建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
所述Small Cell通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,包括:
所述Small Cell通过所述通信连接接收所述M2M平台设备发送的检测结果信息。
结合第五方面或者第五方面的第一种可能的实现方式,在第五方面的第二种可能的实现方式中,所述方法还包括:
所述Small Cell通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
第六方面,本发明提供一种小基站Small Cell,包括:检测单元和发送单元,其中:
所述检测单元,用于检测所述Small Cell覆盖的用户终端的地理位置信息;
所述发送单元,用于通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
在第六方面的第一种可能的实现方式中,所述Small Cell还包括:
建立单元,用于建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
所述发送单元用于通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
结合第六方面或者第六方面的第一种可能的实现方式,在第六方面的第二种可能的实现方式中,所述Small Cell还包括:
连接单元,用于通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
第七方面,本发明提供一种物联网M2M平台设备,包括:第一接收单元、第一发送单元、第二接收单元和第二发送单元,其中:
所述第一接收单元,用于通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;
所述第一发送单元,用于将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;
所述第二接收单元,用于接收所述应用服务器发送的所述控制命令;
所述第二发送单元,用于通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
在第七方面的第一种可能的实现方式中,所述M2M平台设备还包括:
建立单元,用于建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
所述第一接收单元用于通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
第八方面,本发明提供一种M2M平台设备,包括:接收单元和发送单元,其中:
所述接收单元,用于接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
所述发送单元,用于通过与小基站Small Cell的第一接口连接的业务接口
将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
在第八方面的第一种可能的实现方式中,所述M2M平台设备还包括:
建立单元,用于建立所述业务接口,并通过所述业务接口与所述M2M平台设备的第一接口建立通信连接;
所述发送单元用于通过所述通信连接将所述检测结果信息发送给所述Small Cell。
第九方面,本发明提供一种小基站Small Cell,包括:接收单元和发送单元,其中:
所述接收单元,用于通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
所述发送单元,用于向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
在第九方面的第一种可能的实现方式中,所述Small Cell还包括:
建立单元,用于建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
所述接收单元,用于通过所述通信连接接收所述M2M平台设备发送的检测结果信息。
结合第九方面或者第九方面的第一种可能的实现方式中,所述Small Cell还包括:
连接单元,用于通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
第十方面,本发明提供一种小基站Small Cell,包括:处理器、网络接口、存储器和通信总线,其中,所述通信总线用于实现所述处理器、网络接口和存储器之间连接通信,所述处理器执行所述存储器中存储的程序用于实现以下方法:
检测所述Small Cell覆盖的用户终端的地理位置信息;
通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
在第十方面的第一种可能的实现方式中,所述处理器执行的程序还包括:
建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
所述处理器执行的通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备的程序,包括:
通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
结合第十方面或者第十方面的第一种可能的实现方式,在第十方面的第二种可能的实现方式中,所述处理器执行的程序还包括:
通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
第十一方面,本发明提供一种物联网M2M设备,包括:处理器、网络接口、存储器和通信总线,其中,所述通信总线用于实现所述处理器、网络接口和存储器之间连接通信,所述处理器执行所述存储器中存储的程序用于实现以下方法:
通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;
将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;
接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
在第十一方面的第一种可能的实现方式中,所述处理器执行的程序还包
括:
建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
所述处理器执行的通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息的程序,包括:
通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
第十二方面,本发明提供一种物联网M2M平台设备,包括:处理器、网络接口、存储器和通信总线,其中,所述通信总线用于实现所述处理器、网络接口和存储器之间连接通信,所述处理器执行所述存储器中存储的程序用于实现以下方法:
接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
在第十二方面的第一种可能的实现方式中,所述处理器执行的程序还包括:
建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
所述处理器执行的通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell的程序,包括:
通过所述通信连接将所述检测结果信息发送给所述Small Cell。
第十三方面,本发明提供一种小基站Small Cell,包括:处理器、网络接口、存储器和通信总线,其中,所述通信总线用于实现所述处理器、网络接口和存储器之间连接通信,所述处理器执行所述存储器中存储的程序用于实现以下方法:
通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设
备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
在第十三方面的第一种可能的实现方式中,所述处理器执行的程序还包括:
建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
所述处理器执行的通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息的程序,包括:
通过所述通信连接接收所述M2M平台设备发送的检测结果信息。
上述技术方案中,Small Cell与M2M系统融合的网络架构包括:小基站Small Cell和M2M系统中的M2M平台设备,其中:所述Small Cell通过第一接口与所述M2M平台设备的业务接口连接,所述Small Cell通过所述第一接口与所述M2M平台设备传输所述M2M系统中的业务数据,以及当所述业务数据需要发送给所述Small Cell覆盖的用户终端时,所述Small Cell将所述业务数据向所述用户终端发送。这样可以实现Small Cell与M2M系统融合,另外,由于Small Cell和M2M系统的设备的服务对象都包括人,这样Small Cell与M2M系统融合可以更加快捷、方便地向用户提供服务。
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例提供的一种Small Cell与M2M系统融合的网络架构的结构示意图;
图2是本发明实施例提供的另一种Small Cell与M2M系统融合的网络架
构的结构示意图;
图3是本发明实施例提供的一种控制M2M设备的方法的流程示意图;
图4是本发明实施例提供的另一种控制M2M设备的方法的流程示意图;
图5是本发明实施例提供的一种消息提示方法的流程示意图;
图6是本发明实施例提供的另一种消息提示方法的流程示意图;
图7是本发明实施例提供的一种Small Cell的结构示意图;
图8是本发明实施例提供的另一种Small Cell的结构示意图;
图9是本发明实施例提供的一种M2M平台设备的结构示意图;
图10是本发明实施例提供的另一种M2M平台设备的结构示意图;
图11是本发明实施例提供的另一种M2M平台设备的结构示意图;
图12是本发明实施例提供的另一种M2M平台设备的结构示意图;
图13是本发明实施例提供的另一种Small Cell的结构示意图;
图14是本发明实施例提供的另一种Small Cell的结构示意图;
图15是本发明实施例提供的另一种Small Cell的结构示意图;
图16是本发明实施例提供的另一种M2M平台设备的结构示意图;
图17是本发明实施例提供的另一种M2M平台设备的结构示意图;
图18是本发明实施例提供的另一种Small Cell的结构示意图。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1,图1是本发明实施例提供的一种Small Cell与M2M系统融合的网络架构的结构示意图,如图1所示,该架构包括:Small Cell系统中的Small Cell11和M2M系统中的M2M平台设备12,其中:
Small Cell11通过第一接口与M2M平台设备12的业务接口连接,Small Cell11通过所述第一接口与所述M2M平台设备12传输所述M2M系统中的业务数据,以及当所述业务数据需要发送给所述Small Cell11覆盖的用户终端13
时,所述Small Cell将所述业务数据向所述用户终端13发送。
本实施例中,Small Cell11可以是部署在室内的Small Cell,当然,本实施例中,并不限定Small Cell11为部署在室内的Small Cell,本实施例中,Small Cell11也可以是部署在室外。
本实施例中,上述Small Cell11的第一接口和所述M2M平台设备12的业务接口都可以是预先建立的逻辑接口。另外,上述Small Cell11通过第一接口与M2M平台设备12的业务接口连接可以是Small Cell11使用第一接口与M2M平台设备12的业务接口连接网络连接。例如:当Small Cell11和M2M平台设备12部署在同一局域网络下时,Small Cell11和M2M平台设备12就可以通过上述两个接口建立局域网络连接;另外,Small Cell11和M2M平台设备12就可以通过上述两个接口建立互联网连接。本实施例中,通过上述两个接口实现Small Cell11和M2M平台设备12之间直接建立连接,这样Small Cell11和M2M平台设备12就可以直接进行通信,而不需要经过核心网,以节点网络资源,提高数据传输效率。
本实施例中,上述M2M系统中的业务数据可以是M2M系统中的任何业务,例如:M2M系统的输入业务数据,或者M2M系统的输出业务数据等。,例如:Small Cell11检测的业务数据作为M2M系统的输入,M2M系统根据该输入进行相应的控制管理;或者上述M2M系统中的业务数据可以是M2M系统向Small Cell11传输的业务数据,例如:M2M系统中采集的业务数据作为Small Cell11的输入,Small Cell11根据该输入对用户终端进行相应操作。
本实施例中,在上述网络架构下可以实现Small Cell与M2M系统融合,或者理解为实现Small Cell系统与M2M系统融合,而这两者的服务对象都包括用户(人),从而在这融合的网络架构下可以更好、更快捷为用户提供服务,以及由于上述网络架构下不需要经过核心网进行业务数据传输,从而可以节约网络资源。
本实施例中,Small Cell与M2M系统融合的网络架构包括:Small Cell和M2M系统中的M2M平台设备,其中:所述Small Cell通过第一接口与所述M2M平台设备的业务接口连接,所述Small Cell通过所述第一接口与所述M2M平台设备传输所述M2M系统中的业务数据,以及当所述业务数据需要
发送给所述Small Cell覆盖的用户终端时,所述Small Cell将所述业务数据向所述用户终端发送。这样可以实现Small Cell与M2M系统融合,另外,由于Small Cell和M2M系统的设备的服务对象都包括人,这样Small Cell与M2M系统融合可以更加快捷、方便地向用户提供服务。
请参阅图2,图2是本发明实施例提供的另一种Small Cell与M2M系统融合的网络架构的结构示意图,如图2所示,包括:Small Cell21、Small Cell21覆盖的用户终端22、M2M平台设备23、与M2M平台设备23连接的M2M网关设备24、与M2M网关设备24连接的M2M设备25以及与M2M平台设备23连接的业务服务器26,其中:
Small Cell21通过第一接口与M2M平台设备23的业务接口连接;
Small Cell21用于检测用户终端22的地理位置信息,并将所述地理位置信息通过所述第一接口发送给M2M平台设备23;
M2M平台设备23用于将所述地理位置信息发送给应用服务器26,由所述应用服务器26根据所述地理位置信息生成所述M2M设备25的控制命令;
M2M平台设备23接收所述应用服务器26发送的所述控制命令,并通过所述M2M网关设备24向所述M2M设备25发送所述控制命令;
M2M设备25用于执行所述控制命令。
本实施例中,M2M设备25可以是M2M终端,例如:室内的家用电器或者室外的电器设备等;另外,M2M设备25还可以是控制M2M终端的控制器,例如:电器设备、门禁或者烟雾的控制器等;另外,M2M设备25还可以是传感器,例如:烟雾传感器、火警传感器或者门禁传感器等。另外,M2M设备25可以是指一个或者多个M2M设备。
在上述网络架构中,Small Cell21将检测到的用户终端22的地理位置信息发送给M2M平台设备23,再由M2M平台设备23发送给应用服务器26,这样应用服务器26就可以根据该地理位置信息生成控制命令,例如:当该地理位置信息表示M2M设备25所在位置没有用户时,应用服务器26就可以生成关闭M2M设备的控制命令。例如:关灯或者关空调等控制命令。M2M设备25接收到上述控制命令时,就执行该命令,从而可以实现将Small Cell21作为
M2M系统中的输入,根据该输入控制M2M系统中的设备。另外,由于在M2M系统中可以使用Small Cell21检测的数据作为输入,那么,本实施例中,在M2M系统中就可以减少部分传感器,例如:针对家用电器的开关,可以不需要检测用户进出的传感器,而是使用Small Cell21检测的用户终端的地理位置信息进行控制,例如:Small Cell21检测有用户终端进入M2M设备25所在位置时,应用服务器26就可以生成控制该M2M设备25开启电灯或者空调等M2M终端的控制命令,从而可以减少M2M系统的成本。、
本实施例中,应用服务器26生成的控制命令可以是针对特定M2M设备的控制命令,该特定M2M设备可以定义为当前需要控制的当前控制M2M设备。例如:应用服务器26具体可以用于选择所述地理位置信息当前需要控制的M2M设备作为所述当前控制M2M设备,并根据预先设定的控制策略生成所述地理位置信息对应的控制命令作为所述当前控制M2M设备的控制命令。例如:Small Cell21检测的地理位置信息表示M2M设备A所在位置没有用户,而M2M设备B所在的位置存在大量的用户,这样应用服务器26就可以生成控制M2M设备A关闭电灯的控制命令,当然还可以生成控制M2M设备B开启更多电灯的控制命令。另外,上述控制策略可以是预先生成的,例如:用户预先设置的,该控制策略可以表示包括地理位置信息与控制命令的对应关系,即通过该控制策略可以生成不同地理位置信息对应的控制命令。例如:M2M设备所在位置不存在用户时,可以生成该M2M设备关闭电器的控制命令;或者当M2M设备所有位置存在用户,而该M2M设备控制的电器没有开启时,可以生成M2M设备开启电器的控制命令。
本实施例中,M2M设备25还可以用于对预设对象进行检测得到检测结果,并将所述检测结果发送给应用服务器26;
当所述应用服务器26判断所述检测结果为所述需要通知用户的检测结果信息时,将所述检测结果信息发送给所述M2M平台设备23;
M2M平台设备23还可以用于通过所述业务接口将所述检测结果信息发送给所述Small Cell21;
Small Cell21还用于向所述用户终端发送包含所述检测结果信息的内容的提示消息。
在该网络架构中,M2M设备25可以对预设对象进行检测,例如:检测烟雾、门禁、火警等对象,并将检测结果发送给应用服务器26,应用服务器26就可以对其进行判断,当判断出该检测结果需要通知用户时,就可以向M2M平台设备23发送上述检测结果信息,从而M2M平台设备23就可以将该检测结果信息发送给Small Cell21,由Small Cell21向用户终端发送包含所述检测结果信息的内容的提示消息。从而可以实现快速地通知用户,例如:当门禁出现问题时,通过上述网络架构通知用户门禁有问题,这样用户就可以即时做出相应对策。
本实施例中,上述接收到提示消息的用户终端可以特定的用户终端,该特定的用户终端可以定义当前需要通知的当前通知用户终端,例如:应用服务器26还可以用于选择所述M2M设备对应的用户终端作为当前通知用户终端;
所述M2M平台设备23具体可以用于通过所述业务接口将所述检测结果信息发送给覆盖所述当前通知用户终端的Small Cell21。这样就可以将上述提示消息发送给当前通知用户终端。或者是所述M2M平台设备23具体可以用于通过所述业务接口将所述检测结果信息发送给所述当前通知用户终端接入的Small Cell21。
其中,应用服务器26具体可以用于选择预先与所述M2M设备绑定的用户终端作为所述当前通知用户终端。例如:当M2M设备25检测等门禁或者火警等告警时,就可以通过保安或者管理员。
另外,应用服务器26具体可以用于选择所在地理位置与所述M2M设备所在地理位置之间的距离在预设距离内的用户终端作为所述当前通知用户终端。例如:当M2M设备25检测到烟雾时,就可以通知当前处于该M2M设备25附近的用户。
本实施例中,Small Cell21通过第一接口与M2M平台设备23的业务接口连接可以定义为SM_IOT,其中,SM表示Small Cell系统,而IOT表示M2M系统。
本实施例中,Small Cell21还可以通过第二接口与M2M设备25连接,所述Small Cell21通过所述第二接口向所述M2M设备25提供网络接入。
该实施方式中的Small Cell21和M2M设备25可以是所处同一位置的,这
样两者就可以通过局域网连接网络连接,从而可以实现M2M设备25可以通过Small Cell21连接网络。
另外,上述Small Cell21的第二接口与M2M设备25连接可以是,Small Cell21的第二接口与M2M设备25的连网接口连接,其中,这两个接口可以是预先设定的逻辑接口。例如:Small Cell21的第二接口与M2M设备25的连网接口连接可以定义为LTE-M,即LTE网络与M2M设备连接。
本实施例中,在图1所示的实施例的基础上增加了多种可选的实施方式,且都可以实现Small Cell与M2M系统融合。
请参阅图3,图3是本发明实施例提供的一种控制M2M设备的方法的流程示意图,如图3所示,包括以下步骤:
301、Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息。
步骤301可以通过用户终端上报的消息检测到用户终端的地理位置信息,或者步骤301可以通过检测用户终端的信号强度检测到用户终端的地理位置信息等。
302、Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
通过上述步骤就可以实现将Small Cell检测到地理位置信息作为M2M系统中的输入,M2M系统再根据该输入控制相应的设备,从而实现Small Cell系统与M2M系统的融合。
本实施例中,上述方法还可以包括如下:
Small Cell建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
上述Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备的步骤,可以包括:
所述Small Cell通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
本实施例中,上述方法还可以包括如下步骤:
Small Cell通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
该实施方式可以实现M2M系统中的M2M设备可以通过Small Cell接入网络。
需要说明的是,本实施例介绍的方法可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本方法,此处不作重复说明。
本实施例中,Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。从而可以实现Small Cell与M2M系统的融合。
请参阅图4,图4是本发明实施例提供的另一种控制M2M设备的方法的流程示意图,如图4所示,包括以下步骤:
401、M2M平台设备通过与Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息。
402、M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令。
403、M2M平台设备接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
通过上述步骤就可以实现将Small Cell检测到地理位置信息作为M2M系统中的输入,M2M系统再根据该输入控制相应的设备,从而实现Small Cell系统与M2M系统的融合。
本实施例中,上述方法还可以包括如下:
M2M平台设备建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
上述M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息的步骤,可以包括:
M2M平台设备通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
需要说明的是,本实施例介绍的方法可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本方法,此处不作重复说明。
本实施例中,M2M平台设备通过与Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;所述M2M平台设备接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。从而可以实现Small Cell与M2M系统融合。
请参阅图5,图5是本发明实施例提供的一种消息提示方法的流程示意图,如图5所示,包括以下步骤:
501、M2M平台设备接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果。
可以是M2M设备检测到检测结果后,将该检测结果发送给应用服务器,应用服务器再判断该检测结果是否需要通知用户,当需要通知用户时,将该检
测结果信息发送给M2M平台设备。
502、M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
当Small Cell接收到上述检测结果信息时就可以向用户终端检测结果信息的内容的提示消息,以实现提示用户。
本实施例中,上述接收到提示消息的用户终端可以与上述检测预设对象的M2M设备存在特定关系。其中,上述接收到提示消息的用户终端可以与上述检测预设对象的M2M设备预先存在绑定关系,例如:预先将保安或者管理者与上述M2M设备绑定,这样当就可以及时通知保安或者管理者。或者上述接收到提示消息的用户终端可以与上述检测预设对象的M2M设备所在位置相同,例如:M2M设备检测到异常情况时,通知当地的用户。另外,本实施例中,上述接收到提示消息的用户终端可以是应用服务器根据M2M设备决定的,例如:应用服务器发送的检测结果信息中携带有用户终端的标识;或者上述接收到提示消息的用户终端由Small Cell决定,例如:Small Cell根据检测结果信息选择特定的用户终端作为需要发送提示消息的用户终端。
本实施例通过上述步骤可以实现将M2M系统中检测到检测结果作为Small Cell的输入,Small Cell根据检测结果信息可以作为相应提示,以实现Small Cell与M2M系统融合。
本实施例中,所述方法还可以包括如下:
M2M平台设备建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,包括:
所述M2M平台设备通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
需要说明的是,本实施例介绍的方法可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本方法,此处不作重复说明。
本实施例中,M2M平台设备接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。从而可以实现Small Cell与M2M系统融合。
请参阅图6,图6是本发明实施例提供的另一种消息提示方法的流程示意图,如图6所示,包括以下步骤:
601、Small Cell通过与M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
602、Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
本实施例通过上述步骤可以实现将M2M系统中检测到检测结果作为Small Cell的输入,Small Cell根据检测结果信息可以作为相应提示,以实现Small Cell与M2M系统融合。
本实施例中,上述接收到提示消息的用户终端可以与上述检测预设对象的M2M设备存在特定关系。其中,上述接收到提示消息的用户终端可以与上述检测预设对象的M2M设备预先存在绑定关系,例如:预先将保安或者管理者与上述M2M设备绑定,这样当就可以及时通知保安或者管理者。或者上述接收到提示消息的用户终端可以与上述检测预设对象的M2M设备所在位置相同,例如:M2M设备检测到异常情况时,通知当地的用户。另外,本实施例中,上述接收到提示消息的用户终端可以是应用服务器根据M2M设备决定的,例如:应用服务器发送的检测结果信息中携带有用户终端的标识;或者上述接收到提示消息的用户终端由Small Cell决定,例如:Small Cell根据检测结果
信息选择特定的用户终端作为需要发送提示消息的用户终端。
本实施例中上述方法还可以包括如下步骤:
Small Cell建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
上述Small Cell通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息的步骤,可以包括:
Small Cell通过所述通信连接接收所述M2M平台设备发送的检测结果信息。
本实施例中,上述方法还可以包括如下步骤:
所述Small Cell通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
需要说明的是,本实施例介绍的方法可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本方法,此处不作重复说明。
本实施例中,Small Cell通过与M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。从而可以实现Small Cell与M2M系统融合。
请参阅图7,图7是本发明实施例提供的一种Small Cell的结构示意图,如图7所示,包括:检测单元71和发送单元72,其中:
检测单元71,用于检测所述Small Cell覆盖的用户终端的地理位置信息;
发送单元72,用于通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送
的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
本实施例中,如图8所示,Small Cell还可以包括:
建立单元73,用于建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
发送单元72用于通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
本实施例中,如图8所示,Small Cell还可以包括:
连接单元74,用于通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
需要说明的是,本实施例介绍的Small Cell可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本实施例,此处不作重复说明。
本实施例中,Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。从而可以实现Small Cell与M2M系统的融合。
请参阅图9,图9是本发明实施例提供一种M2M平台设备的结构示意图,如图9所示,包括:第一接收单元91、第一发送单元92、第二接收单元93和第二发送单元94,其中:
第一接收单元91,用于通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;
第一发送单元92,用于将所述地理位置信息发送给应用服务器,由所述
应用服务器根据所述地理位置信息生成M2M设备的控制命令;
第二接收单元93,用于接收所述应用服务器发送的所述控制命令;
第二发送单元94,用于通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
本实施例中,如图10所示,上述M2M平台设备还可以包括:
建立单元95,用于建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
第一接收单元91可以用于通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
需要说明的是,本实施例介绍的M2M平台设备可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本实施例,此处不作重复说明。
本实施例中,M2M平台设备通过与Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;所述M2M平台设备接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。从而可以实现Small Cell与M2M系统融合。
请参阅图11,图11是本发明实施例提供的另一种M2M平台设备的结构示意图,如图11所示,包括:接收单元111和发送单元112,其中:
接收单元111,用于接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
发送单元112,用于通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
本实施例中,如图12所示,上述M2M平台设备还可以包括:
建立单元113,用于建立所述业务接口,并通过所述业务接口与所述M2M平台设备的第一接口建立通信连接;
发送单元112可以用于通过所述通信连接将所述检测结果信息发送给所述Small Cell。
需要说明的是,本实施例介绍的M2M平台设备可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本实施例,此处不作重复说明。
本实施例中,M2M平台设备接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。从而可以实现Small Cell与M2M系统融合。
请参阅图13,图13是本发明实施例提供的另一种Small Cell的结构示意图,如图13所示,包括:接收单元131和发送单元132,其中:
接收单元131,用于通过与M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
发送单元132,用于向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
本实施例中,如图14所示,上述Small Cell还可以包括:
建立单元133,用于建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
接收单元131可以用于通过所述通信连接接收所述M2M平台设备发送的
检测结果信息。
本实施例中,如图14所示,上述Small Cell还可以包括:
连接单元134,用于通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
需要说明的是,本实施例介绍的Small Cell可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本实施例,此处不作重复说明。
本实施例中,Small Cell通过与M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。从而可以实现Small Cell与M2M系统融合。
请参阅图15,图15是本发明实施例提供的另一种Small Cell的结构示意图,如图15所示,包括:处理器151、网络接口152、存储器153和通信总线154,其中,通信总线154用于实现所述处理器151、网络接口152和存储器153之间连接通信,处理器151执行所述存储器中存储的程序用于实现以下方法:
检测所述Small Cell覆盖的用户终端的地理位置信息;
通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
本实施例中,处理器151执行的程序还可以包括:
建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接
口建立通信连接;
处理器151执行的通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备的程序,可以包括:
通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
本实施例中,处理器151执行的程序还可以包括:
通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
需要说明的是,本实施例介绍的Small Cell可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本实施例,此处不作重复说明。
本实施例中,Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。从而可以实现Small Cell与M2M系统的融合。
请参阅图16,图16是本发明实施例提供的另一种M2M平台设备的结构示意图,如图16所示,包括:处理器161、网络接口162、存储器163和通信总线164,其中,通信总线164用于实现所述处理器161、网络接口162和存储器163之间连接通信,处理器161执行所述存储器中存储的程序用于实现以下方法:
通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;
将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;
接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
本实施例中,处理器161执行的程序还可以包括:
建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
处理器161执行的通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息的程序,可以包括:
通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
需要说明的是,本实施例介绍的M2M平台设备可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本实施例,此处不作重复说明。
本实施例中,M2M平台设备通过与Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;所述M2M平台设备接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。从而可以实现Small Cell与M2M系统融合。
请参阅图17,图17是本发明实施例提供的另一种M2M平台设备的结构示意图,如图17所示,包括:处理器171、网络接口172、存储器173和通信总线174,其中,通信总线174用于实现所述处理器171、网络接口172和存储器173之间连接通信,处理器171执行所述存储器173中存储的程序用于实现以下方法:
接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息
发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
本实施例中,处理器171执行的程序还可以包括:
建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;
处理器171执行的通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell的程序,可以包括:
通过所述通信连接将所述检测结果信息发送给所述Small Cell。
需要说明的是,本实施例介绍的M2M平台设备可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本实施例,此处不作重复说明。
本实施例中,M2M平台设备接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。从而可以实现Small Cell与M2M系统融合。
请参阅图18,图18是本发明实施例提供的另一种Small Cell的结构示意图,如图18所示,包括:处理器181、网络接口182、存储器183和通信总线184,其中,通信总线184用于实现所述处理器181、网络接口182和存储器183之间连接通信,所述处理器181执行所述存储器中存储的程序用于实现以下方法:
通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;
向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
本实施例中,处理器181执行的程序还可以包括:
建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;
处理器181执行的通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息的程序,可以包括:
通过所述通信连接接收所述M2M平台设备发送的检测结果信息。
本实施例中,处理器181执行的程序还可以包括:
通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
需要说明的是,本实施例介绍的Small Cell可以应用于图1和图2所示的网络架构,另外,图1和图2所示的网络架构中介绍的实施方式也可以应用于本实施例,此处不作重复说明。
本实施例中,Small Cell通过与M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。从而可以实现Small Cell与M2M系统融合。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存取存储器(Random Access Memory,简称RAM)等。
以上所揭露的仅为本发明较佳实施例而已,当然不能以此来限定本发明之权利范围,因此依本发明权利要求所作的等同变化,仍属本发明所涵盖的范围。
Claims (37)
- 一种小基站Small Cell与物联网M2M系统融合的网络架构,其特征在于,所述架构包括:Small Cell系统中的Small Cell和M2M系统中的M2M平台设备,其中:所述Small Cell通过第一接口与所述M2M平台设备的业务接口连接,所述Small Cell通过所述第一接口与所述M2M平台设备传输所述M2M系统中的业务数据,以及当所述业务数据需要发送给所述Small Cell覆盖的用户终端时,所述Small Cell将所述业务数据向所述用户终端发送。
- 如权利要求1所述的架构,其特征在于,所述业务数据包括地理位置信息;所述Small Cell还用于检测所述用户终端的地理位置信息,并将所述地理位置信息通过所述第一接口发送给所述M2M平台设备;所述M2M平台设备还用于将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成所述M2M设备的控制命令;所述M2M平台设备接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向M2M设备发送所述控制命令,由所述M2M设备执行所述控制命令。
- 如权利要求2所述的架构,其特征在于,所述M2M设备包括当前控制M2M设备,其中:所述应用服务器具体用于选择所述地理位置信息当前需要控制的M2M设备作为所述当前控制M2M设备,并根据预先设定的控制策略生成所述地理位置信息对应的控制命令作为所述当前控制M2M设备的控制命令。
- 如权利要求2所述的架构,其特征在于,所述业务数据包括需要通知用户的检测结果信息;所述M2M设备还用于对预设对象进行检测得到检测结果,并将所述检测结果发送给应用服务器;当所述应用服务器判断所述检测结果为所述需要通知用户的检测结果信息时,将所述检测结果信息发送给所述M2M平台设备;所述M2M平台设备还用于通过所述业务接口将所述检测结果信息发送给所述Small Cell;所述Small Cell还用于向所述用户终端发送包含所述检测结果信息的内容的提示消息。
- 如权利要求4所述的架构,其特征在于,所述用户终端包括当前通知用户终端,其中:所述应用服务器还用于选择所述M2M设备对应的用户终端作为所述当前通知用户终端;所述M2M平台设备具体用于通过所述业务接口将所述检测结果信息发送给覆盖所述当前通知用户终端的Small Cell。
- 如权利要求5所述的构架,其特征在于,所述应用服务器具体用于选择预先与所述M2M设备绑定的用户终端作为所述当前通知用户终端;或者所述应用服务器具体用于选择所在地理位置与所述M2M设备所在地理位置之间的距离在预设距离内的用户终端作为所述当前通知用户终端。
- 如权利要求1-6中任一项所述的架构,其特征在于,所述Small Cell还通过第二接口与所述M2M系统中的M2M设备连接,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
- 一种控制物联网M2M设备的方法,其特征在于,包括:小基站Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;所述Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的 所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
- 如权利要求8的方法,其特征在于,所述方法还包括:所述Small Cell建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;所述Small Cell通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,包括:所述Small Cell通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
- 如权利要求8或9所述的方法,其特征在于,所述方法还包括:所述Small Cell通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
- 一种控制物联网M2M设备的方法,其特征在于,包括:M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;所述M2M平台设备接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
- 如权利要求11所述的方法,其特征在于,所述方法还包括:所述M2M平台设备建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;所述M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口 接收所述Small Cell发送的地理位置信息,包括:所述M2M平台设备通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
- 一种消息提示方法,其特征在于,包括:物联网M2M平台设备接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;所述M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
- 如权利要求13所述的方法,其特征在于,所述方法还包括:所述M2M平台设备建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;所述M2M平台设备通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,包括:所述M2M平台设备通过所述通信连接将所述检测结果信息发送给所述Small Cell。
- 一种消息提示方法,其特征在于,包括:小基站Small Cell通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
- 如权利要求15的方法,其特征在于,所述方法还包括:所述Small Cell建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;所述Small Cell通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,包括:所述Small Cell通过所述通信连接接收所述M2M平台设备发送的检测结果信息。
- 如权利要求15或16所述的方法,其特征在于,所述方法还包括:所述Small Cell通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
- 一种小基站Small Cell,其特征在于,包括:检测单元和发送单元,其中:所述检测单元,用于检测所述Small Cell覆盖的用户终端的地理位置信息;所述发送单元,用于通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
- 如权利要求18的Small Cell,其特征在于,所述Small Cell还包括:建立单元,用于建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;所述发送单元用于通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
- 如权利要求18或19所述的Small Cell,其特征在于,所述Small Cell还包括:连接单元,用于通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
- 一种物联网M2M平台设备,其特征在于,包括:第一接收单元、第一发送单元、第二接收单元和第二发送单元,其中:所述第一接收单元,用于通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;所述第一发送单元,用于将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;所述第二接收单元,用于接收所述应用服务器发送的所述控制命令;所述第二发送单元,用于通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
- 如权利要求21所述的M2M平台设备,其特征在于,所述M2M平台设备还包括:建立单元,用于建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;所述第一接收单元用于通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
- 一种物联网M2M平台设备,其特征在于,包括:接收单元和发送单元,其中:所述接收单元,用于接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;所述发送单元,用于通过与小基站Small Cell的第一接口连接的业务接口 将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
- 如权利要求23所述的M2M平台设备,其特征在于,所述M2M平台设备还包括:建立单元,用于建立所述业务接口,并通过所述业务接口与所述M2M平台设备的第一接口建立通信连接;所述发送单元用于通过所述通信连接将所述检测结果信息发送给所述Small Cell。
- 一种小基站Small Cell,其特征在于,包括:接收单元和发送单元,其中:所述接收单元,用于通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;所述发送单元,用于向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
- 如权利要求25的Small Cell,其特征在于,所述Small Cell还包括:建立单元,用于建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;所述接收单元,用于通过所述通信连接接收所述M2M平台设备发送的检测结果信息。
- 如权利要求25或26所述的Small Cell,其特征在于,所述Small Cell还包括:连接单元,用于通过第二接口与所述M2M设备连接,其中,所述Small Cell 通过所述第二接口向所述M2M设备提供网络接入。
- 一种小基站Small Cell,其特征在于,包括:处理器、网络接口、存储器和通信总线,其中,所述通信总线用于实现所述处理器、网络接口和存储器之间连接通信,所述处理器执行所述存储器中存储的程序用于实现以下方法:检测所述Small Cell覆盖的用户终端的地理位置信息;通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备,以使所述M2M平台设备将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令,并由所述M2M平台设备接收所述应用服务器发送的所述控制命令,以及通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
- 如权利要求28的Small Cell,其特征在于,所述处理器执行的程序还包括:建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;所述处理器执行的通过与M2M平台设备的业务接口连接的第一接口将所述地理位置信息发送给所述M2M平台设备的程序,包括:通过所述通信连接将所述地理位置信息发送给所述M2M平台设备。
- 如权利要求28或29所述的Small Cell,其特征在于,所述处理器执行的程序还包括:通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
- 一种物联网M2M设备,其特征在于,包括:处理器、网络接口、存储器和通信总线,其中,所述通信总线用于实现所述处理器、网络接口和存储 器之间连接通信,所述处理器执行所述存储器中存储的程序用于实现以下方法:通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息,其中,所述地理位置信息是所述Small Cell检测所述Small Cell覆盖的用户终端的地理位置信息;将所述地理位置信息发送给应用服务器,由所述应用服务器根据所述地理位置信息生成M2M设备的控制命令;接收所述应用服务器发送的所述控制命令,并通过M2M网关设备向所述M2M设备发送所述控制命令,以使所述M2M设备执行所述控制命令。
- 如权利要求31所述的M2M平台设备,其特征在于,所述处理器执行的程序还包括:建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;所述处理器执行的通过与小基站Small Cell的第一接口连接的业务接口接收所述Small Cell发送的地理位置信息的程序,包括:通过所述通信连接接收所述Small Cell发送的所述地理位置信息。
- 一种物联网M2M平台设备,其特征在于,包括:处理器、网络接口、存储器和通信总线,其中,所述通信总线用于实现所述处理器、网络接口和存储器之间连接通信,所述处理器执行所述存储器中存储的程序用于实现以下方法:接收应用服务器发送的检测结果信息,其中,所述检测结果信息是所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell,以使所述Small Cell向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
- 如权利要求33所述的M2M平台设备,其特征在于,所述处理器执行的程序还包括:建立所述业务接口,并通过所述业务接口与所述Small Cell的第一接口建立通信连接;所述处理器执行的通过与小基站Small Cell的第一接口连接的业务接口将所述检测结果信息发送给所述Small Cell的程序,包括:通过所述通信连接将所述检测结果信息发送给所述Small Cell。
- 一种小基站Small Cell,其特征在于,包括:处理器、网络接口、存储器和通信总线,其中,所述通信总线用于实现所述处理器、网络接口和存储器之间连接通信,所述处理器执行所述存储器中存储的程序用于实现以下方法:通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息,其中,所述检测结果信息是所述M2M平台设备接收应用服务器发送的,由所述应用服务器判断为需要通知用户的且为M2M设备上报的检测结果,所述检测结果为所述M2M设备对预设对象进行检测得到的检测结果;向所述Small Cell覆盖的用户终端发送包含所述检测结果信息的内容的提示消息。
- 如权利要求35的Small Cell,其特征在于,所述处理器执行的程序还包括:建立所述第一接口,并通过所述第一接口与所述M2M平台设备的业务接口建立通信连接;所述处理器执行的通过与物联网M2M平台设备的业务接口连接的第一接口接收所述M2M平台设备发送的检测结果信息的程序,包括:通过所述通信连接接收所述M2M平台设备发送的检测结果信息。
- 如权利要求35或36所述的Small Cell,其特征在于,所述处理器执 行的程序还包括:通过第二接口与所述M2M设备连接,其中,所述Small Cell通过所述第二接口向所述M2M设备提供网络接入。
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| JP2017553077A JP6606559B2 (ja) | 2015-06-02 | 2015-06-02 | Small Cell及びM2Mシステムの融合を実装するネットワーク・アーキテクチャ、関連する方法、及び、関連するデバイス |
| CN201580070151.7A CN107113556B (zh) | 2015-06-02 | 2015-06-02 | Small Cell与M2M系统融合的网络架构以及相关方法和相关设备 |
| EP15893698.9A EP3258712B1 (en) | 2015-06-02 | 2015-06-02 | Network architecture combining small cell and m2m systems, related method and related device |
| PCT/CN2015/080592 WO2016192042A1 (zh) | 2015-06-02 | 2015-06-02 | Small Cell与M2M系统融合的网络架构以及相关方法和相关设备 |
| US15/829,326 US10251036B2 (en) | 2015-06-02 | 2017-12-01 | Network architecture implementing convergence of small cell and M2M system, related method, and related device |
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| US20180084370A1 (en) | 2018-03-22 |
| EP3258712A4 (en) | 2018-01-17 |
| CN107113556A (zh) | 2017-08-29 |
| CN107113556B (zh) | 2020-06-16 |
| JP6606559B2 (ja) | 2019-11-13 |
| JP2018515973A (ja) | 2018-06-14 |
| EP3258712B1 (en) | 2021-04-28 |
| EP3258712A1 (en) | 2017-12-20 |
| US10251036B2 (en) | 2019-04-02 |
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