CN221381237U - System for prohibiting access to row lamps and scene movement guiding control system - Google Patents
System for prohibiting access to row lamps and scene movement guiding control system Download PDFInfo
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- CN221381237U CN221381237U CN202322529060.XU CN202322529060U CN221381237U CN 221381237 U CN221381237 U CN 221381237U CN 202322529060 U CN202322529060 U CN 202322529060U CN 221381237 U CN221381237 U CN 221381237U
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Abstract
The application provides a system for prohibiting access to a row lamp and a scene movement guiding control system, wherein the system for prohibiting access to the row lamp comprises: inhibit access to the bank light assembly; the solar power supply system is used for supplying power to the forbidden lamp arrangement assembly; and the wireless control equipment is used for controlling the working state of the lamp arrangement component to be forbidden according to the wireless communication instruction. The rapid deployment and cost saving can be realized by prohibiting the entrance into the row lamp system; and through wireless private network communication, the reliability and the instantaneity of signal transmission are ensured.
Description
Technical Field
The application relates to the technical field of runway invasion prevention, in particular to a system for prohibiting entering a row lamp and a scene movement guiding control system.
Background
Shenzhen airport "banned entry into row lights" is intended to prevent aircraft or vehicles from misentering the runway/taxiway. The configuration and optical characteristics of the 'forbidden to enter the row lights' are the same as those of the stopped row lights, and the 'forbidden to enter the row lights' are arranged near the reverse inlet of the unidirectional outlet taxiway, and do not break through the boundary of the ILS/MLS critical/sensitive area and the bottom edge of the inner transition surface of the corresponding runway. The two runways of the Shenzhen airport share 16 quick slide way exits, and the addition of the runways which are forbidden to enter the row lamps according to the traditional process has 4 defects of high manufacturing cost, long construction time, high construction difficulty and high energy consumption, and the runways need to be constructed without stopping navigation in the state of high-density flights, so that the hidden danger is brought to the safe operation of the airport.
Disclosure of utility model
The application provides a system for prohibiting access to a row lamp so as to realize quick deployment and save cost; and the reliability and the real-time performance of signal transmission are ensured.
In order to solve the technical problems, the application adopts the following technical scheme: there is provided an access-inhibit headlight arrangement, the access-inhibit headlight arrangement comprising:
Inhibit access to the bank light assembly;
the solar power supply system is used for supplying power to the forbidden lamp arrangement assembly;
And the wireless control equipment is used for controlling the working state of the lamp arrangement component to be forbidden according to the wireless communication instruction.
The wireless control device is a broadband wireless router, the broadband wireless router is in communication connection with a controller of the wireless control device through a network port, and the broadband wireless router is in communication connection with a light station control end through a wireless network.
Wherein the prohibited access to the bank light assembly includes prohibited access to the bank light and a light fixture controller;
The lamp controller is connected to the broadband wireless router through a network interface and is used for realizing the data interaction of prohibiting entering the row lamp system;
the lamp controller comprises a main control unit, a communication unit, a power supply conversion circuit and a relay driving unit;
the forbidden row lights are embedded forbidden row lights.
Wherein, the external connectors of lamps and lanterns controller all adopt waterproof joint setting.
Wherein, solar power system includes:
The solar panel is fixed on the ground through a vertical support column; the energy storage unit is used for storing electric energy of the solar panel.
Wherein the solar power system further comprises a power management device; the power management device is fixed on the vertical support and used for converting and managing electric energy of the solar panel.
Wherein the wireless control device is fixed on the vertical support.
Wherein the prohibited access to the bank light system further comprises:
The light station control end is in communication connection with the wireless control equipment through the base station and is used for generating and transmitting an upper computer control instruction.
The system comprises a lamp control module, a lamp state inquiry module and a GIS map display module, wherein the lamp station control end is provided with a lamp arrangement system management platform which is forbidden to enter.
In order to solve the technical problems, the application adopts the following technical scheme: there is provided a scene movement guidance control system comprising the above-described inhibit entry headlight arrangement.
The embodiment of the application has the beneficial effects that: the application provides a system for prohibiting access to a row lamp, comprising: inhibit access to the bank light assembly; the solar power supply system is used for supplying power to the forbidden lamp arrangement assembly; and the wireless control equipment is used for controlling the working state of the lamp arrangement component to be forbidden according to the wireless communication instruction. The rapid deployment and cost saving can be realized by prohibiting the entrance into the row lamp system; and through wireless private network communication, the reliability and the instantaneity of signal transmission are ensured.
Drawings
FIG. 1 is a schematic diagram of an embodiment of a banned access row lamp system according to the present application;
FIG. 2 is a block diagram of the overall architecture of one embodiment of a banned access row light system provided by the present application;
FIG. 3 is a schematic diagram illustrating the appearance of a broadband wireless router according to an embodiment of the present application;
FIG. 4 is a schematic diagram of functional module relationship of a management platform of a lamp arrangement system forbidden to enter;
fig. 5 is a schematic structural diagram of an embodiment of the scene motion guidance control system provided by the present application.
Detailed Description
The following description of the embodiments of the present application will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present application, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the present application without making any inventive effort, are intended to fall within the scope of the present application.
The terms "first" and "second" in the present application are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. In the description of the present application, the meaning of "plurality" means at least two, for example, two, three, etc., unless specifically defined otherwise. Furthermore, the terms "comprising," "including," and "having," and any variations thereof, are intended to cover an exclusive inclusion. For example, a process, method, system, article, or apparatus that comprises a list of steps or elements is not limited to only those listed steps or elements but may include other steps or elements not listed or inherent to such process, method, article, or apparatus.
Compared with the traditional cabling, the novel solar energy prohibited from entering the row lamp has obvious advantages; the deployment is rapid, a dimmer and cable laying are not required to be additionally arranged, and the investment is greatly saved; the novel embedded LED lamp is adopted, so that the energy-saving effect is obvious; and eLTE broadband wireless private network communication is adopted, so that the reliability and the instantaneity of signal transmission are ensured. The solar energy power supply is adopted to meet the policy guidance of energy conservation and emission reduction of civil aviation industry, so that the energy consumption of a machine field can be reduced, the electric charge is saved, the airport profit capability is improved, and the occurrence probability of runway invasion is obviously reduced. The system is used as an important component of the construction of supporting facility equipment of an A-SMGCS system (Surface Movement Guidance and Control System, SMGCS), and can accelerate the construction of a four-type airport. The project searches the application characteristics of solar power supply in airports by expanding solar energy to prohibit entering a light arrangement system, knows the function realization and control logic of prohibiting entering the light arrangement system, searches the deployment feasibility of the system in an actual rapid slide road junction by deploying and installing a solar panel and energy storage equipment on a simulated apron, and finally analyzes and verifies the reliability and stability of the solar power supply system by testing the functions and the performance of the system so as to accelerate the popularization and the application of the system.
The present application provides an access-inhibit headlight assembly 10 for providing a specific control system architecture for an access-inhibit headlight assembly.
As shown in fig. 1, fig. 1 is a schematic structural diagram of an embodiment of an access-prohibited row lamp system provided by the present application. The entry-inhibiting headlight assembly 10 of the embodiment of the application includes an entry-inhibiting headlight assembly 11; a solar power system 12 for supplying power to the no-entry row light assembly 11; and the wireless control device 13 is used for controlling the working state of the forbidden lamp arrangement assembly 11 according to the wireless communication instruction.
In order to ensure the reliability of the system, each crossing lamp is divided into two groups by isolating the lamp according to the deployment and installation positions, the two independent solar batteries are used for supplying power, the lithium battery pack is detachable, the system is required to be ensured to continuously work for 7 days under extreme weather conditions such as continuous rainy days, and meanwhile, the airport eLTE wireless private network is adopted for data transmission, so that the remote on-off control of the lamp and the visual resource management of the operation and maintenance system are realized. The overall architecture block diagram of the system is shown in fig. 2.
Specifically, the wireless control device 13 provided by the application is a broadband wireless router (not shown in the figure), the broadband wireless router is in communication connection with a controller of the wireless control device 13 through a network port, and the broadband wireless router is in communication connection with a light station control end through a wireless network.
The wireless control device 13 of the application relies on the existing broadband wireless private network of the airport, fully utilizes the wireless private network resources, expands the service bearing range and maximizes the value of the wireless private network. The broadband wireless private network can bear diversified terminal products so as to adapt to the application of different scenes. The LTE user equipment is used as a terminal for accessing services and provides various forms such as CPE, miniCIe card, handheld station, vehicle-mounted terminal, USB dongle network card and the like. The CPE is similar to a wireless router, supports the router intercommunication of Ethernet, wifi and LTE multi-system multi-equipment, and can hang a plurality of Internet surfing equipment; the CPE terminal is used as wireless data connection equipment, is accessed into a wireless private network, and is accessed into controlled equipment through a network cable to realize wireless control.
The LTE broadband trunking system is used as a new generation broadband wireless mobile communication technology and has the capability of simultaneously transmitting downlink data and uplink data with large capacity. Under the single station condition, the downlink theoretical peak value rate of a single cell can reach 100Mbps, and the uplink theoretical peak value rate can reach 50Mbps (actually measured uplink peak value 28Mbps in a networking scene). Through powerful broadband data access function, on-site duty police officers can realize the business such as remote data fast query, convenient reporting of on-site acquisition information, work electron flow on-site processing through wireless network, very big improvement police officer's work efficiency.
Wireless broadband CPE access has the following 4 great advantages:
(1) The lightning protection, vibration prevention, dust prevention and water prevention can be used in severe environments, and unattended operation is easy to deploy.
(2) The mounting piece is flexible, and the radiation direction is mechanically adjustable.
(3) A panel antenna and a directional antenna are built in the antenna.
(4) Remote maintenance and remote upgrading are carried out, and a near end can support a Wifi hotspot (Wifi and eLTE signals mutually turn over and cover 50 meters).
The wireless control device 13 of the application selects the Huacheng EG860 as a broadband wireless router based on the LTE technology, and mainly realizes industry broadband data access. After accessing to the LTE wireless network, EG860 supports data service conversion functions through a gateway and WiFi, the appearance of which is shown in fig. 3. EG860 supports outdoor and indoor deployment, can be widely applied to data acquisition such as fixed or vehicle-mounted in each industry, wireless high-definition video monitoring, and can realize quick deployment of industry application by adopting industrial design meeting the requirements of industry clients.
The no-entry row light assembly 11 of the present application specifically includes no-entry row lights (not shown) and a light fixture controller (not shown).
Wherein, the lamp controller is connected to the broadband wireless router through a network interface and is used for realizing the data interaction of prohibiting entering the row lamp system 10; the lamp controller comprises a main control unit, a communication unit, a power supply conversion circuit and a relay driving unit.
The forbidden row lights are embedded forbidden row lights. The solar energy forbidden discharge lamp adopts direct current 12V to supply power, works in a fixed 3-level light mode, and selects an embedded forbidden discharge lamp with the model NEL-I-S-401-RN (L) of civil aviation according to actual application requirements, wherein the embedded forbidden discharge lamp is shown in a function index table 1.
Table 1 technical parameter Table for prohibiting entry into row lamps
The lamp controller needs to be connected to the wireless CPE router through an RJ45 network interface, so that data interaction with the system 10 for prohibiting the lamp from entering the row lamp control system is realized, and the lamp on/off control of each crossing is realized in response to a lamp switching command of the system. According to project requirements, the system is to adopt an ILC-401 lamp controller developed by civil aviation II, and the ILC-401 lamp controller consists of a main control unit, a communication unit, a DC/DC conversion circuit and a relay driving unit; in order to facilitate field installation, ILC-401 can better meet the actual demand, the external connectors all adopt waterproof joints to meet the waterproof grade of IP65, and the performance indexes are shown in Table 2.
TABLE 2 ILC-401 technical parameter Table
The solar power system 12 of the present application needs to provide a continuous and stable operating current for prohibiting access to the row lights, the lamp controller, and the wireless control device 13.
Specifically, the solar power supply system 12 of the present application includes a solar panel (not shown) and an energy storage unit (not shown).
The photovoltaic panel in the solar panel is to adopt a 315Wp polycrystalline silicon solar photovoltaic module, and the specification of technical parameters is shown in table 3.
Table 3 solar panel technical parameter table
| Project | Parameters (parameters) |
| Maximum power | 315W |
| Solar cell type | Polycrystalline silicon |
| Dimension (length. Times. Width. Times. Height) | 1960mm×990mm×40mm |
| Weight of (E) | About 22kg |
| Optimum operating voltage | 36.8V |
| Operating temperature | -40 ℃ To 85 DEG C |
| Storage temperature | -40 ℃ To 85 DEG C |
| Fire rating | Class C |
The energy storage system comprises a battery cabinet and a lithium battery.
Specifically, the solar power supply system 12 of the application selects the lithium battery ESM-4848100B1 with high performance as an energy storage unit of the system, provides power for the system and participates in circulation. ESM-48100B1 has the characteristics of high temperature resistance and long service life, and the cycle life of 85% DOD@35 ℃ is 3500 times, and the specification of technical parameters is shown in Table 4.
Table 4 battery technology parameter table
Further, the solar power system 12 of the present application further includes a power management device (not shown). In order to shorten the wiring length between the power management device and the battery pack, and combine the actual field installation environment, a worker can fix the power management device on a vertical support column for fixing the solar panel.
Similarly, the wireless control device 13 is mainly connected with the base station in the airport by a wireless electromagnetic wave mode, and the wireless control device 13 can be fixed on the vertical support for fixing the solar panel by workers in consideration of signal coverage and combination with the actual field installation environment.
The inhibit entry row light system 10 further includes: the lamplight station control end 14, the lamplight station control end 14 is in communication connection with the wireless control equipment 13 through a base station, and is used for generating and issuing an upper computer control instruction.
The light station control end 14 deploys a system framework mainly based on B/S and mainly supports Python, javaScript two software development architectures. The management platform for prohibiting the entrance of the row lamp system realizes the functions of lamp positioning display, parameter display, lamp control and the like, a functional module relation diagram is shown in figure 4, and the management platform for prohibiting the entrance of the row lamp system comprises a lamp control module, a lamp state inquiry module and a GIS map display module.
With continued reference to fig. 5, fig. 5 is a schematic structural diagram of an embodiment of the scene motion guidance control system according to the present application.
As shown in fig. 5, the scene movement guidance control system 20 provided by the present application includes the entry-prohibition light-arranging system 21 protected in the above-described embodiment.
It should be noted that the drawings herein are only for illustrating the structural relationship and the connection relationship of the product of the present utility model, and are not limited to the specific structural dimensions of the product of the present utility model.
The foregoing description is only of embodiments of the present utility model, and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes using the descriptions and the drawings of the present utility model or directly or indirectly applied to other related technical fields are included in the scope of the present utility model.
Claims (10)
1. An access-inhibiting headlight assembly, the access-inhibiting headlight assembly comprising:
Inhibit access to the bank light assembly;
the solar power supply system is used for supplying power to the forbidden lamp arrangement assembly;
And the wireless control equipment is used for controlling the working state of the lamp arrangement component to be forbidden according to the wireless communication instruction.
2. The entry-inhibiting light bar system of claim 1, wherein,
The wireless control device is a broadband wireless router, the broadband wireless router is in communication connection with a controller of the wireless control device through a network port, and the broadband wireless router is in communication connection with a light station control end through a wireless network.
3. The entry-inhibiting light bar system of claim 2, wherein,
The prohibited access row lamp assembly comprises a prohibited access row lamp and a lamp controller;
The lamp controller is connected to the broadband wireless router through a network interface and is used for realizing the data interaction of prohibiting entering the row lamp system;
the lamp controller comprises a main control unit, a communication unit, a power supply conversion circuit and a relay driving unit;
the forbidden row lights are embedded forbidden row lights.
4. The entry-inhibiting light bar system of claim 3, wherein,
The external connectors of the lamp controller are all arranged by adopting waterproof joints.
5. The entry-inhibiting light bar system of claim 1, wherein,
The solar power supply system includes:
The solar panel is fixed on the ground through a vertical support column; the energy storage unit is used for storing electric energy of the solar panel.
6. The entry-inhibiting light bar system of claim 5, wherein,
The solar power supply system further comprises power supply management equipment; the power management device is fixed on the vertical support and used for converting and managing electric energy of the solar panel.
7. The entry-inhibiting light bar system of claim 5, wherein,
The wireless control device is fixed on the vertical support.
8. The entry-inhibiting light bar system of claim 1, wherein,
The inhibit entry row light system further comprises:
The light station control end is in communication connection with the wireless control equipment through the base station and is used for generating and transmitting an upper computer control instruction.
9. The entry-inhibiting light bar system of claim 8, wherein,
The lamplight station control end is provided with a management platform for prohibiting access to the row lamp system, and the management platform for prohibiting access to the row lamp system comprises a lamp control module, a lamp state inquiry module and a GIS map display module.
10. A scene motion guidance control system, characterized in that the scene motion guidance control system comprises the entry-forbidden headlight arrangement as claimed in any one of claims 1-9.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322529060.XU CN221381237U (en) | 2023-09-18 | 2023-09-18 | System for prohibiting access to row lamps and scene movement guiding control system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322529060.XU CN221381237U (en) | 2023-09-18 | 2023-09-18 | System for prohibiting access to row lamps and scene movement guiding control system |
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| Publication Number | Publication Date |
|---|---|
| CN221381237U true CN221381237U (en) | 2024-07-19 |
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|---|---|---|---|
| CN202322529060.XU Active CN221381237U (en) | 2023-09-18 | 2023-09-18 | System for prohibiting access to row lamps and scene movement guiding control system |
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| Country | Link |
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| CN (1) | CN221381237U (en) |
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- 2023-09-18 CN CN202322529060.XU patent/CN221381237U/en active Active
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