WO2014059882A1 - 一种终端及控制终端的操作方法 - Google Patents
一种终端及控制终端的操作方法 Download PDFInfo
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- WO2014059882A1 WO2014059882A1 PCT/CN2013/084770 CN2013084770W WO2014059882A1 WO 2014059882 A1 WO2014059882 A1 WO 2014059882A1 CN 2013084770 W CN2013084770 W CN 2013084770W WO 2014059882 A1 WO2014059882 A1 WO 2014059882A1
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- WIPO (PCT)
- Prior art keywords
- pressure
- control operation
- terminal
- pressure information
- module
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72448—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0481—Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
- G06F3/0488—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
- G06F3/04883—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures for inputting data by handwriting, e.g. gesture or text
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F2203/00—Indexing scheme relating to G06F3/00 - G06F3/048
- G06F2203/041—Indexing scheme relating to G06F3/041 - G06F3/045
- G06F2203/04105—Pressure sensors for measuring the pressure or force exerted on the touch surface without providing the touch position
Definitions
- the present invention relates to the field of terminal applications, and in particular, to a terminal and a method for controlling the terminal.
- BACKGROUND With the rapid development of technology, the business functions of mobile terminals such as mobile phones are increasingly powerful, and the display screen (touch screen) thereof is also increasing; the increasing touch screen meets the needs of users, and brings some disadvantages.
- the effect, such as the touch screen (keyboard) is too large, causes the user to have both hands to operate simultaneously (one handheld terminal device, the other hand to perform control operations).
- control technologies such as voice recognition control technology or face recognition control technology. Such control technology cannot serve the user well in special scenes, such as during nighttime breaks, voice recognition control.
- an embodiment of the present invention provides a terminal and a method for controlling the terminal.
- the operating method of the control terminal includes the following steps: collecting pressure applied to the terminal, calculating pressure information of the pressure; invoking a control operation mapping table; and controlling the operation mapping table to include at least one standard The pressure information and the control operation command corresponding to the standard pressure information; determining whether there is standard pressure information matching the pressure information in the control operation map, and if so, calling and executing the control operation command corresponding to the standard pressure information.
- the step of establishing a control operation mapping table before the collecting the pressure, the step of establishing a control operation mapping table is further included, the step comprising: Obtaining a control operation instruction, and acquiring standard pressure information input by the user corresponding to each control operation instruction; establishing a correspondence relationship between the control operation instruction and the standard pressure information; establishing a control operation mapping table according to the correspondence relationship.
- the method further includes: determining the control operation instruction Whether the trigger condition is satisfied; if satisfied, the control operation instruction is executed.
- the triggering condition includes at least one of a terminal operating state, terminal location information, and terminal motion information.
- the manner of collecting the pressure acting on the terminal is a single pressure collecting unit for pressure collection.
- the manner of collecting the pressure acting on the terminal is two or more pressure collection units for pressure collection.
- determining whether there is a standard pressure information process matching the pressure information in the control operation mapping table is - judging whether the pressure information of the plurality of collection units matches; if matching, further determining whether there is a standard pressure in the operation mapping table that matches the pressure information of at least one of the respective collection units or the pressure information of all the collection units Information; if present, execute a control operation instruction corresponding to the standard pressure information.
- the method further includes: setting a priority of each pressure collecting unit; and calculating, according to the pressure collected by the pressure collecting unit of different priorities, the obtained pressure information corresponds to different Application level control operation instructions.
- the pressure information is a pressure value and/or a pressure change trend and/or a pressure duration.
- the embodiment of the present invention further provides a terminal.
- the terminal includes an acquisition module, a calculation module, a determination module, and an execution module; an acquisition module, a calculation module, and The determining module and the executing module are sequentially connected in sequence; wherein the collecting module is configured to collect the pressure acting on the terminal, and transmit the collected pressure to the calculating module; the calculating module is configured to calculate the received pressure, and obtain the corresponding pressure
- the pressure information is transmitted to the judging module; the judging module is set to call the control operation mapping table, and judges whether there is standard pressure information matching the received pressure information in the control operation mapping table, and if so, the corresponding control of the standard pressure information
- the operation instruction is transmitted to the execution module; the control operation mapping table includes at least one standard pressure information and a control operation instruction corresponding to the standard pressure information; and the execution module is configured to receive and execute the control operation instruction for determining the module transmission.
- the terminal shown in the foregoing embodiment further includes a storage module; at this time, the collection module is further configured to acquire a control operation instruction, and acquire standard pressure information input by the user corresponding to each control operation instruction, and the control operation instruction and The corresponding standard pressure information is transmitted to the calculation module; the calculation module is further configured to establish a correspondence between the control operation instruction and the standard pressure information according to the received control operation instruction and the corresponding standard pressure information, and the corresponding relationship is established Transfer to the storage module; the storage module is set to establish a control operation mapping table according to the correspondence. Further, the terminal shown in the foregoing embodiment further includes a detecting module.
- the detecting module is connected to the determining module, and is configured to perform the standard pressure information when the determining module determines that there is standard pressure information matching the pressure information.
- the acquisition module includes a pressure collection unit; and the pressure collection unit is configured to collect pressure applied to the terminal.
- the acquisition module includes at least two pressure collection units; and the pressure collection unit is configured to collect pressure applied to the terminal.
- the collecting module further includes a level dividing unit, the level dividing unit is configured to set a priority of each pressure collecting unit; and calculating and acquiring the pressure collected by the pressure collecting units of different priorities
- the pressure information corresponds to different levels of control operation instructions.
- the terminal shown in the above embodiment is one of a mobile phone, a tablet computer, and a game machine.
- the terminal control technical solution controls the terminal to perform operations by collecting user pressure on the terminal, and the terminal user can use in any environment without affecting others.
- FIG. 1 is a schematic structural diagram of a terminal 1 according to an embodiment of the present invention
- FIG. 2 is a schematic structural diagram of a terminal 1 according to an embodiment of the present invention
- FIG. 3 is a schematic structural diagram of a terminal 1 according to an embodiment of the present invention
- 4 is a schematic structural diagram of a terminal 1 in an embodiment of the present invention
- FIG. 5 is a schematic structural diagram of an acquisition module 11 in the terminal 1 shown in FIG. 1
- FIG. 6 is an acquisition module in the terminal 1 shown in FIG.
- FIG 7 is a schematic structural view of the acquisition module 11 in the terminal 1 shown in Figure 1;
- Figure 8 is a schematic structural view of the terminal 1 in a preferred embodiment of the present invention;
- Figure 9 is an implementation of the present invention A flow chart of the terminal control method in the example.
- DETAILED DESCRIPTION OF THE EMBODIMENTS Embodiments of the present invention provide a pressure-based terminal control technical solution, which is used to solve the problem that the current control technology based on sound or facial image is poor in generality and the button control technology cannot be easily operated by one hand, thereby providing a more convenient operation for the user. For convenient terminal operation.
- the invention will be further illustrated by the following detailed description in conjunction with the accompanying drawings.
- the terminal 1 is a schematic structural diagram of a terminal 1 according to an embodiment of the present invention; as shown in FIG. 1, in an embodiment, the terminal 1 provided by the present invention includes an acquisition module 11, a calculation module 12, a determination module 13, and an execution module 14; The collection module 11, the calculation module 12, the determination module 13 and the execution module 14 are sequentially connected in sequence; wherein: the acquisition module 11 is configured to collect the pressure acting on the terminal 1 and transmit the collected pressure to the calculation module 12; In order to calculate the received pressure, the pressure information corresponding to the pressure is obtained and transmitted to the judging module 13; the judging module 13 is configured to call the control operation mapping table to determine whether there is a matching with the received pressure information in the control operation mapping table.
- the standard pressure information if present, transmits the control operation command corresponding to the standard pressure information to the execution module 14; the execution module 14 is configured to receive and execute the control operation command transmitted by the determination module 13.
- the control operation mapping table includes at least one standard pressure information, and the standard pressure information corresponds to the control operation instruction; in order to facilitate the determination module 13 to call the control operation mapping table, the application may also store the control operation mapping table.
- the structure of the terminal 1 is as shown in FIG. 2.
- the terminal 1 shown in FIG. 1 further includes a storage module 15; at this time, the collection module 11 is further configured to Obtaining a control operation instruction, and acquiring standard pressure information input by the user corresponding to each control operation instruction, and transmitting the control operation instruction and the corresponding standard pressure information to the calculation module 12; the calculation module 12 is further configured to be based on the received control The operation instruction and the corresponding standard pressure information establish a correspondence between the control operation instruction and the standard pressure information, and transmit the correspondence to the storage module 15; the storage module 15 is configured to receive the control operation instruction and the corresponding to the control operation instruction Standard pressure information; and establish, store and update the control operation mapping table according to the correspondence between the standard pressure information and the control operation instruction.
- the application can also set the startup function.
- FIG. 3 is a schematic structural diagram of a terminal 1 according to an embodiment of the present invention; as shown in FIG. 3, in an embodiment, the terminal 1 shown in FIG. 1 further includes a startup module 16; at this time, the startup module 16 is set to be in After receiving the startup command of the user, the acquisition module 11, the calculation module 12, the determination module 13 and the execution module 14 are started to operate; when receiving the user's shutdown instruction, the collection module 11, the calculation module 12, the determination module 13 and the execution are closed. Module 14.
- the present application may select a trigger condition for each control operation instruction, which is one or more of the terminal operation state, the terminal position information, and the terminal motion information; This application can increase the function of detecting trigger conditions, as shown in Figure 4.
- 4 is a schematic structural diagram of a terminal 1 according to an embodiment of the present invention; as shown in FIG. 4, in an embodiment, the terminal 1 shown in FIG.
- the 1 further includes a detecting module 17; wherein, the detecting module 17 and the determining module 13 Connected, when the judging module 13 judges that there is standard pressure information matching the pressure information, before the execution module 14 executes the control operation instruction corresponding to the standard pressure information, it is detected whether the trigger condition of the control operation instruction is satisfied; if satisfied, The notification execution module 14 executes the control operation instruction; if not, the execution module 14 is disabled.
- the triggering condition includes one or more of a terminal operating state, terminal location information, and terminal motion information.
- the terminal operating state may be state information such as terminal sleep, terminal standby, terminal running interface of an application, and terminal location information.
- the terminal faces the location information of the user and the distance of the terminal from the user (ear or mouth), and the terminal motion information may be that the terminal moves at a certain speed, the terminal moves with a certain trajectory, the terminal rotates at a certain angle, and the moving distance of the terminal is Terminal exercise duration, etc. It can be foreseen that, in this embodiment, the terminal 1 needs to check the trigger condition. Therefore, when setting the control operation mapping table, the terminal user can set the same standard pressure information to correspond to multiple control operation instructions, and different trigger conditions correspond to different control.
- the operation instruction determines the trigger operation condition that the user actually wants to perform; for example, a standard pressure information corresponds to the activation operation and the answering telephone operation, and the terminal 1 further detects the trigger condition when the pressure information is obtained, and triggers
- the control operation instruction corresponding to the pressure information is to activate the terminal device, and when the trigger condition is the terminal standby, the control operation instruction corresponding to the pressure information is the answering telephone operation.
- the structure of the acquisition module 11 will be described in detail below. 5 is a schematic structural diagram of the acquisition module 11 in the terminal 1 shown in FIG. 1. As shown in FIG.
- the acquisition module 11 includes only one pressure collection unit 111, and the pressure collection unit 111 is configured to collect users.
- the pressure applied to the terminal 1 is transmitted to the calculation module 12.
- the acquisition module 11 includes only one pressure collection unit 111.
- the collection pressure is fast, and the calculation module 12 can quickly perform calculation to obtain pressure information, thereby implementing rapid control of the terminal 1.
- the pressure information calculated by the calculation module 12 is a pressure change trend, which represents a "confirmation" operation when the pressure is gradually increased, a "reject” operation when the pressure is gradually decreased, and a "cancellation" when the pressure is first increased and then decreased.
- operating. 6 is a schematic structural diagram of the acquisition module 11 in the terminal 1 shown in FIG. 1.
- the acquisition module 11 includes only N pressure collection units 111 (N>1).
- N the pressure information calculated by the calculation module 12 is a pressure change trend, and when the N pressure change trends are all increased, it represents the "release terminal lock” operation, and vice versa, the "lock terminal” operation, when the N pressure change trends are inconsistent. , perform the corresponding operations according to the increase or decrease of the number ratio (such as shutting down, turning on the camera, etc.).
- FIG. 7 is a schematic structural diagram of the acquisition module 11 in the terminal 1 shown in FIG.
- a level division unit 112 is added to the acquisition module 11, and the level is increased.
- the dividing unit 112 is configured to set the priority of each pressure collecting unit 111; the pressure information obtained by calculating the pressures collected by the pressure collecting units 111 of different priorities corresponds to different levels of control operating commands.
- the pressure collecting unit 111 labeled “1” has the highest priority and the pressure collecting unit 111 labeled “N” has the lowest priority; if: according to the pressure collecting unit 111 labeled "N"
- the control operation command calculated by the pressure collected by the pressure collecting unit 111 labeled "1” similarly, the control operation command calculated according to the pressure collected by the pressure collecting unit 111 labeled "1” may be used to execute the upper layer application.
- the selection (such as the pressure duration represents the entry into the first application), the control operation command calculated according to the pressure collected by the pressure collection unit 111 labeled "N" controls the lowermost control operation of the terminal 1 (such as confirmation or cancellation);
- the user can also manually set the priority and/or control level and/or control operation of each pressure collection unit 111 as needed. No longer.
- the present application also provides an optimal solution for the N pressure collecting units 111: 5 collecting units 111 are provided, and two pressure collecting units 111 are disposed on the upper and lower ends of the left side of the terminal 1, and the upper right side of the terminal 1 is upper and lower.
- the hooks are provided with three pressure collecting units 111.
- the terminal 1 in the above embodiment is one of a mobile phone, a tablet computer, and a game machine. It is foreseeable that the functional modules in all the above embodiments can be used in combination without any contradiction between each other.
- FIG. 8 is a schematic structural diagram of a terminal 1 according to a preferred embodiment of the present invention. As shown in FIG. 8, in a preferred embodiment, the terminal 1 includes an acquisition module 11, a calculation module 12, a determination module 13, and an execution module 14. The functions and connection relationships of the modules of the storage module 15, the startup module 16, and the detection module are the same as those above, and are not described herein again.
- FIG. 8 is a schematic structural diagram of a terminal 1 according to a preferred embodiment of the present invention. As shown in FIG. 8, in a preferred embodiment, the terminal 1 includes an acquisition module 11, a calculation module 12, a determination module 13, and an execution module 14. The functions and connection relationships of the modules of the storage module 15, the startup module 16, and the detection module are the same as those above, and are not described herein again.
- FIG. 8 is
- FIG. 9 is a flowchart of a terminal control method provided by the present invention in an embodiment; The terminal control technology provided by the present application is further described with reference to FIG. 8 and FIG. 9. As shown in FIG. 9, in an embodiment, the terminal control method provided by the present invention includes the following steps:
- S901 Collect pressure and calculate pressure information.
- the terminal 1 collects the pressure applied by the user to the terminal 1 through the pressure collecting unit 111 in the collecting module 11; the collecting module 11 transmits the collected pressure to the calculating module 12 for calculation to obtain pressure information.
- the step of the pressure module 11 is started by the terminal 1 through the startup module 16 to perform pressure collection. Specifically, the pressure is collected by the single pressure collection unit 111.
- the way in which the pressure is collected is two or more pressure collection units 111 for pressure acquisition.
- determining whether there is a standard pressure information matching the pressure information in the control operation mapping table is: determining whether the pressure information of the plurality of collecting units 111 matches; If it is matched, further determining whether there is standard pressure information in the operation mapping table that matches the pressure information of at least one of the respective collection units or the pressure information of all the collection units; if yes, executing the control operation corresponding to the standard pressure information instruction. Further, before the pressure is collected, the step of setting the priority of each pressure collecting unit 111 is further included; the pressure information obtained by calculating according to the pressure collected by the pressure collecting units of different priorities corresponds to the control operation instructions of different application levels.
- the control operation mapping table includes at least one standard pressure information and a control operation instruction corresponding to the standard pressure information; the corresponding manner is: one standard pressure information corresponds to one control operation instruction, or one standard pressure information corresponds to multiple control operation instructions Or multiple standard pressure information corresponds to one control operation command. Further, the step of establishing a control operation mapping table is further included before the pressure is collected.
- the step of establishing the control operation mapping table specifically includes: the acquisition module 11 acquires the control operation instruction, and acquires standard pressure information input by the user corresponding to each control operation instruction; the calculation module 12 establishes a correspondence relationship between the control operation instruction and the standard pressure information; The module 15 establishes a control operation mapping table according to the correspondence relationship, and is used by the determining module 13 to make a call.
- S903 Determine whether the manipulation operation mapping table has standard pressure information that matches the pressure information; if yes, execute step S904.
- the judging module 13 calls the control operation mapping table to determine whether there is standard pressure information matching the pressure information, the matching degree does not need to be 100% matched, and the upper and lower errors are 10%, and the matching is considered successful. Further, if there is standard pressure information matching the pressure information, before executing the control operation instruction corresponding to the standard pressure information, the method further includes: determining whether the trigger condition of the control operation instruction is satisfied; if satisfied, performing the control operation instruction. Further, the triggering condition includes at least one of a terminal operating state, terminal location information, and terminal motion information.
- S904 Call and execute a control operation instruction corresponding to the standard pressure information.
- the following steps are also included before the execution of the control operation instruction corresponding to the standard pressure information:
- the detecting module 17 detects whether the control operation instruction has a trigger condition; if present, the detecting module 17 determines whether the trigger condition required by the control operation instruction is satisfied; if yes, the notification execution module 14 executes the control operation instruction; if not, the notification Execution module 14 does not execute control operation instructions.
- the pressure information is a pressure value and/or a pressure change trend and/or a pressure duration.
- the terminal control technology provided by the present application is further illustrated by an application example: the user starts the application by the startup module 16; the acquisition module 11 collects the pressure applied by the user to the terminal 1; and the calculation module 12 calculates the pressure according to the collection module 11.
- the pressure information is generated; at this time, the two pressure collecting units 111; the pressure information calculated by the pressures collected by the two pressure collecting units 111 are matched, and the matching is successful; the determining module 13 calls the control operation map stored in the storage module 15.
- the judging module 13 judges whether the control operation mapping table has standard pressure information matching the pressure information; if yes, the control operation instruction corresponding to the standard pressure information is called, for example, the pressure information after the matching succeeds corresponds to "answering the call"
- the control module 17 detects whether the trigger condition of the control operation command (answering the call) is satisfied, if the trigger condition of the answering call is that the distance of the terminal 1 from the human ear is less than 1 cm, and the terminal 1 is in the standby state; the detecting module 17 determines Whether the trigger condition is met, If yes, the control operation instruction is transmitted to the execution module 14; if not, the control operation instruction or the disable execution module 14 is rejected; the execution module 14 executes the received control operation instruction, such as answering the call; the acquisition module 11 continues Pressure collection.
- the application provides a computer application for implementing the terminal control method provided by the present application.
- the present application provides a storage medium for storing a computer application provided in the above embodiment for implementing the terminal control method provided by the present application.
- the storage medium is a CD, a DVCD, or a USB flash drive. Wait for moving storage media. It can be seen from the above-described embodiments that the implementation of the present application has at least the following significant progress:
- the terminal control technology provided by the present application controls the terminal to perform operations by collecting the pressure of the user on the terminal, and the terminal user can use it in any environment, It will affect others and has excellent versatility.
- the user can control the terminal with one hand, avoiding the problem that the terminal needs the user to control the hands in the prior art, and enhances the user experience; further, Users can set different control levels to achieve a variety of control operations, not inferior to existing terminal control technology, and have greater versatility.
- the above is only a specific embodiment of the present invention, and is not intended to limit the present invention in any way. Any simple modification, equivalent change or modification made to the above embodiments in accordance with the technical spirit of the present invention still belongs to the present technology. The scope of protection of the program.
- the technical solution provided by the present invention can be applied to a mobile terminal, and the terminal can perform control operations by collecting pressure of the user on the terminal, and the terminal user can use it in any environment without affecting others, and has excellent versatility;
- the user can control the terminal with one hand, and avoids the problem that the terminal needs the user to control the two hands in the prior art, and enhances the user experience.
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Abstract
本发明提供了一种终端及控制终端的操作方法,用于解决当前终端控制技术通用性差的问题。该方法包括步骤:采集作用于终端的压力,计算得到该压力的压力信息;调用控制操作映射表;控制操作映射表包含至少一个标准压力信息、及与标准压力信息对应的控制操作指令;判断控制操作映射表中是否存在与压力信息匹配的标准压力信息,若存在,则调用并执行与该标准压力信息对应的控制操作指令。通过本发明的实施,提供了一种可以应用于任何场景的控制终端的操作方法,同时解决了当前存在的用户单手无法控制终端的问题,为用户提供了一种更为便捷的终端操作方式,增加了用户的使用体验。
Description
一种终端及控制终端的操作方法 技术领域 本发明涉及终端应用领域, 尤其涉及一种终端及控制终端的操作方法。 背景技术 随着科技的迅猛发展,手机等手持终端的业务功能日益强大,同时其显示屏幕(触 摸屏) 也日趋增大; 日趋增大的触摸屏在满足用户使用需求的同时, 也带来了一些不 利的影响, 如触摸屏 (键盘) 太大导致用户需要双手同时操作 (一手持终端设备, 另 一手进行控制操作) 的问题。 为了解放用户的双手, 当前技术人员提供了声音识别控制技术或面部识别控制技 术等控制技术, 这类的控制技术在特殊场景无法很好的为用户服务, 如在夜晚休息的 时间, 声音识别控制技术显然会打扰其他人的休息, 面部识别控制技术的摄像效果很 差等问题。 因此, 如何提供一种可通用于任何环境的终端控制技术, 是本领域技术人员亟待 解决的问题。 发明内容 为了解决当前终端控制技术存在的通用性差的问题, 本发明实施例提供了一种终 端及控制终端的操作方法。 在一个实施例中, 本发明实施例提供的控制终端的操作方法包括以下步骤: 采集作用于终端的压力, 计算得到该压力的压力信息; 调用控制操作映射表; 控制操作映射表包含至少一个标准压力信息、 及与标准压 力信息对应的控制操作指令; 判断控制操作映射表中是否存在与压力信息匹配的标准压力信息, 若存在, 则调 用并执行与该标准压力信息对应的控制操作指令。 进一步的, 在上述实施例所示的控制终端的操作方法中, 在采集压力之前还包括 建立控制操作映射表的步骤, 该步骤包括:
获取控制操作指令, 并获取用户输入的与各控制操作指令对应的标准压力信息; 建立控制操作指令与标准压力信息的对应关系; 根据对应关系, 建立控制操作映射表。 进一步的, 在上述实施例所示的控制终端的操作方法中, 若存在与压力信息匹配 的标准压力信息时, 在执行该标准压力信息对应的控制操作指令之前还进一步包括: 判断该控制操作指令的触发条件是否满足; 如满足, 则执行该控制操作指令。 进一步的, 在上述实施例所示的控制终端的操作方法中, 触发条件包括终端运行 状态、 终端位置信息、 终端运动信息中的至少一种。 进一步的, 在上述实施例所示的控制终端的操作方法中, 采集作用于终端的压力 的方式是单个压力采集单元进行压力采集。 进一步的, 在上述实施例所示的控制终端的操作方法中, 采集作用于终端的压力 的方式是两个及其以上的压力采集单元进行压力采集。 进一步的, 在上述实施例所示的控制终端的操作方法中, 当两个及其以上的压力 采集单元进行压力采集时, 判断控制操作映射表中是否存在与压力信息匹配的标准压 力信息过程为- 判断这多个采集单元的压力信息之间是否匹配; 如果匹配, 则进一步判断操作映射表中是否存在与各个采集单元中的至少一个的 压力信息或所有采集单元的压力信息相匹配的标准压力信息; 若存在, 则执行该标准 压力信息对应的控制操作指令。 进一步的, 在上述实施例所示的控制终端的操作方法中, 还包括设置各压力采集 单元优先级的步骤; 根据不同优先级的压力采集单元采集到的压力进行计算获取的压 力信息对应于不同应用层次的控制操作指令。 进一步的, 在上述实施例所示的控制终端的操作方法中, 压力信息是压力值和 / 或压力变化趋势和 /或压力持续时间。
为了更好的应用上述控制终端的操作方法, 本发明实施例还提供了一种终端; 在 一个实施例中, 该终端包括采集模块、 计算模块、 判断模块及执行模块; 采集模块、 计算模块、 判断模块及执行模块依次顺序连接; 其中, 采集模块设置为采集作用于终端的压力, 并将采集到的压力传输到计算模块; 计算模块设置为对接收到的压力进行计算, 得到该压力对应的压力信息并传输到 判断模块; 判断模块设置为调用控制操作映射表, 判断控制操作映射表中是否存在与接收到 的压力信息匹配的标准压力信息, 若存在, 则将该标准压力信息对应的控制操作指令 传输到执行模块; 控制操作映射表包含至少一个标准压力信息、 及与标准压力信息对 应的控制操作指令; 执行模块设置为接收并执行判断模块传输的控制操作指令。 进一步的, 在上述实施例所示的终端还包括存储模块; 此时, 采集模块还设置为获取控制操作指令, 并获取用户输入的与各控制操作指令对应 的标准压力信息, 将控制操作指令及与之对应的标准压力信息传输到计算模块; 计算模块还设置为根据接收到的控制操作指令及与之对应的标准压力信息, 建立 控制操作指令与标准压力信息的对应关系, 并将该对应关系传输到存储模块; 存储模块设置为根据对应关系, 建立控制操作映射表。 进一步的, 在上述实施例所示的终端还包括检测模块; 此时, 检测模块与判断模块连接, 设置为当判断模块判断存在与压力信息匹配的标准压 力信息时, 在执行该标准压力信息对应的控制操作指令之前, 检测该控制操作指令的 触发条件是否满足; 若满足, 则通知执行模块执行控制操作指令。 进一步的, 在上述实施例所示的终端中, 采集模块包含一个压力采集单元; 压力 采集单元设置为采集作用于终端的压力。 进一步的, 在上述实施例所示的终端中, 采集模块包含至少两个压力采集单元; 压力采集单元设置为采集作用于终端的压力。
进一步的, 在上述实施例所示的终端中, 采集模块还包括级别划分单元, 级别划 分单元设置为设置各个压力采集单元的优先级; 对不同优先级的压力采集单元采集到 的压力进行计算获取的压力信息对应不同层次的控制操作指令。 进一步的, 在上述实施例所示的终端为手机、 平板电脑、 游戏机中的一种。 通过本发明的实施例, 提供了一种终端控制技术方案, 该终端控制技术方案通过 采集用户对终端的压力来控制终端执行操作, 终端用户可以在任何环境下使用, 不会 影响他人, 具有优良的通用性; 进一步的, 用户用单手就可以实现对终端的控制, 避 免了现有技术中终端需要用户进行双手控制的问题, 增强了用户的使用体验。 附图说明 图 1为本发明一个实施例中的终端 1的结构示意图; 图 2为本发明一个实施例中的终端 1的结构示意图; 图 3为本发明一个实施例中的终端 1的结构示意图; 图 4为本发明一个实施例中的终端 1的结构示意图; 图 5为图 1所示的终端 1中的采集模块 11的结构示意图; 图 6为图 1所示的终端 1中的采集模块 11的结构示意图; 图 7为图 1所示的终端 1中的采集模块 11的结构示意图; 图 8为本发明一个最佳实施例中的终端 1的结构示意图; 以及 图 9为本发明一个实施例中的终端控制方法的流程图。 具体实施方式 本发明实施例提供一种基于压力的终端控制技术方案, 用于解决当前基于声音或 面部图像的控制技术通用性差及按键控制技术单手无法方便操作的问题, 为用户提供 一种更为便捷的终端操作方式。 下面通过具体实施方式结合附图的方式对本发明做出 进一步的诠释说明。
图 1为本发明一个实施例中的终端 1的结构示意图; 由图 1可知, 在一个实施例 中,本发明提供的终端 1包括采集模块 11、计算模块 12、判断模块 13及执行模块 14; 采集模块 11、 计算模块 12、 判断模块 13及执行模块 14依次顺序连接; 其中: 采集模块 11设置为采集作用于终端 1的压力,并将采集到的压力传输到计算模块 12; 计算模块 12设置为对接收到的压力进行计算,得到该压力对应的压力信息并传输 到判断模块 13 ; 判断模块 13设置为调用控制操作映射表,判断控制操作映射表中是否存在与接收 到的压力信息匹配的标准压力信息, 若存在, 则将该标准压力信息对应的控制操作指 令传输到执行模块 14; 执行模块 14设置为接收并执行判断模块 13传输的控制操作指令。 在上述实施例中, 控制操作映射表包含至少一个标准压力信息, 标准压力信息对 应于控制操作指令; 为了便于判断模块 13调用该控制操作映射表,本申请也可以将控 制操作映射表进行存储, 此时终端 1的结构如图 2所示。 在本申请的所有实施例中,压力信息是压力值和 /或压力变化趋势和 /或压力持续时 间。 图 2为本发明一个实施例中的终端 1的结构示意图; 由图 2可知, 在一个实施例 中, 图 1所示的终端 1还包括了存储模块 15 ; 此时, 采集模块 11还设置为获取控制操作指令,并获取用户输入的与各控制操作指令对 应的标准压力信息, 将控制操作指令及与之对应的标准压力信息传输到计算模块 12; 计算模块 12还设置为根据接收到的控制操作指令及与之对应的标准压力信息,建 立控制操作指令与标准压力信息的对应关系, 并将该对应关系传输到存储模块 15 ; 存储模块 15设置为接收控制操作指令及与控制操作指令对应的标准压力信息;并 根据标准压力信息与控制操作指令的对应关系, 建立、 存储并更新控制操作映射表。 为了便于终端用户选择是否开启该应用服务,本申请也可以设置启动功能,此时, 终端 1的结构如图 3所示。
图 3为本发明一个实施例中的终端 1的结构示意图; 由图 3可知, 在一个实施例 中, 图 1所示的终端 1还包括了启动模块 16; 此时, 启动模块 16设置为在接收到用户的启动指令后启动采集模块 11、 计算模块 12、 判断模块 13及执行模块 14进行工作; 在接收到用户的关闭指令时, 就关闭采集模块 11、 计算模块 12、 判断模块 13及执行模块 14。 为了精确压力信息, 防止误操作, 本申请可选择对每个控制操作指令附加触发条 件, 该触发条件为终端运行状态、 终端位置信息、 终端运动信息中的一种或多种; 为 了防止误操作, 本申请可以增加检测触发条件的功能, 如图 4所示。 图 4为本发明一个实施例中的终端 1的结构示意图; 由图 4可知, 在一个实施例 中, 图 1所示的终端 1还包括了检测模块 17; 其中, 检测模块 17与判断模块 13连接,设置为当判断模块 13判断存在与压力信息匹配 的标准压力信息时,在执行模块 14执行标准压力信息对应的控制操作指令之前,检测 该控制操作指令的触发条件是否满足; 若满足, 则通知执行模块 14执行该控制操作指 令; 若不满足, 则禁能执行模块 14。 触发条件包括终端运行状态、 终端位置信息、 终端运动信息中的一种或多种; 其 中, 终端运行状态可以是终端休眠、 终端待机、 终端处于某应用程序的运行界面等状 态信息, 终端位置信息可以是终端是否面对用户、 终端距离用户 (耳朵或嘴巴) 的距 离等位置信息, 终端运动信息可以是终端以一定速度运动、 终端以一定轨迹运动、 终 端转动一定角度、 终端的移动距离大小、 终端运动持续时间等。 可以预见的是, 在该实施例中, 终端 1需要检查触发条件, 因此, 终端用户在设 置控制操作映射表时, 可以设置同一标准压力信息对应多个控制操作指令, 不同触发 条件对应不同的控制操作指令, 通过检测触发条件来确定用户实际想要进行的控制操 作; 如, 一个标准压力信息同时对应激活操作和接听电话操作, 终端 1在得到该压力 信息时, 就进一步检测触发条件, 在触发条件为终端休眠时, 该压力信息对应的控制 操作指令为激活终端设备, 在触发条件为终端待机时, 该压力信息对应的控制操作指 令为接听电话操作。 为了便于说明终端 1采集压力的过程, 下面将采集模块 11的结构进行详细说明。
图 5为图 1所示的终端 1中的采集模块 11的结构示意图; 由图 5可知, 在一个实 施例中, 采集模块 11仅包含一个压力采集单元 111, 该压力采集单元 111设置为采集 用户施加到终端 1的压力,并将采集到的压力传送到计算模块 12。由于在该实施例中, 采集模块 11仅包含一个压力采集单元 111, 此时采集压力快捷、 计算模块 12可以快 速的进行计算以获得压力信息, 进而实现对终端 1的快速控制。 如, 计算模块 12计算 得到的压力信息是压力变化趋势, 当压力逐渐增大时代表"确认"操作, 当压力逐渐减 小时代表"拒绝"操作, 当压力先增大后减小时代表"取消"操作。 图 6为图 1所示的终端 1中的采集模块 11的结构示意图; 由图 6可知, 在一个实 施例中, 采集模块 11仅包含 N个压力采集单元 111 (N>1 ), 此时, 通过这 N个压力 采集单元 11的相互配合以实现比较复杂的控制。 如, 计算模块 12计算得到的压力信 息是压力变化趋势, 当 N个压力变化趋势都是增大时代表"解除终端锁"操作, 反之则 代表"锁定终端"操作, N个压力变化趋势不一致时, 根据增大或减少的数量比执行相 应的操作 (如关机、 开启摄像头等)。 为了对多个压力采集单元 111进行管理, 本申请增加了控制级别划分功能, 如图 7所示。 图 7为图 1所示的终端 1中的采集模块 11的结构示意图; 由图 7可知, 在一个实 施例中, 在图 6的基础上, 在采集模块 11中增加了级别划分单元 112, 级别划分单元 112设置为设置各压力采集单元 111的优先级;对不同优先级的压力采集单元 111采集 到的压力进行计算获取的压力信息对应不同层次的控制操作指令。 现举例说明, 如, 标号为 "1"的压力采集单元 111优先级最高、 标号为 "N"的压力 采集单元 111优先级最低; 假如: 当根据标号为 "N"的压力采集单元 111采集的压力计 算得到的控制操作指令与根据标号为 "1"的压力采集单元 111采集的压力计算得到的控 制操作指令相反时,拒绝标号为" N"的压力采集单元 111采集到的压力,而执行根据标 号为 "1"的压力采集单元 111采集的压力计算得到的控制操作指令; 同样的,也可以是根据标号为 "1"的压力采集单元 111采集的压力计算得到的控制 操作指令执行上层应用的选择 (如压力持续时间代表进入第几个应用), 根据标号为 "N"的压力采集单元 111采集的压力计算得到的控制操作指令控制终端 1最下层的控制 操作(如确认或取消等); 当然, 用户也可根据需要手动设置各压力采集单元 111的优 先级和 /或控制层次和 /或控制操作, 本申请不再赘述。
本申请也提供一种 N个压力采集单元 111的最佳方案: 设置 5个采集单元 111, 在终端 1 的左侧上下两端设置两个压力采集单元 111, 终端 1 的右侧上中下均勾设置 三个压力采集单元 111。 在一个实施例中, 上述实施例中的终端 1为手机、 平板电脑、 游戏机中的一种。 可以预见的是, 上述所有实施例中的功能模块在互相不存在矛盾的情况下, 可以 随意组合使用。 图 8为本发明一个最佳实施例中的终端 1的结构示意图, 由图 8可知, 在最佳实 施例中, 终端 1包括了采集模块 11、 计算模块 12、 判断模块 13、 执行模块 14、 存储 模块 15、 启动模块 16、 检测模块 17, 其各模块的功能及连接关系与上文一致, 这里 不再赘述; 图 9是一个实施例中的本发明提供的终端控制方法的流程图; 下面, 结合 图 8及图 9进一步说明本申请提供的终端控制技术。 如图 9所示, 在一个实施例中, 本发明提供的终端控制方法包括以下步骤:
S901 : 采集压力, 计算压力信息。 终端 1是通过采集模块 11中的压力采集单元 111来采集用户向终端 1施加的压力; 采集模块 11将采集到的压力传输到计算模块 12进行计算获得压力信息。 在采集压力之前还包括终端 1通过启动模块 16来启动压力模块 11进行压力采集 的步骤; 具体的为- 采集压力的方式是单个压力采集单元 111进行压力采集。 采集压力的方式是两个及其以上的压力采集单元 111进行压力采集。 当两个及其以上的压力采集单元 111进行压力采集时, 判断控制操作映射表中是 否存在与压力信息匹配的标准压力信息过程为: 判断这多个采集单元 111的压力信息之间是否匹配; 如果匹配, 则进一步判断操作映射表中是否存在与各个采集单元中的至少一个的 压力信息或所有采集单元的压力信息相匹配的标准压力信息; 若存在, 则执行该标准 压力信息对应的控制操作指令。
进一步的, 采集压力之前, 还包括设置各压力采集单元 111优先级的步骤; 根据 不同优先级的压力采集单元采集到的压力进行计算获取的压力信息对应于不同应用层 次的控制操作指令。
S902: 调用控制操作映射表。 控制操作映射表包含至少一个标准压力信息, 及与该标准压力信息对应的控制操 作指令; 对应方式是: 一个标准压力信息对应于一个控制操作指令、 或者一个标准压 力信息对应于多个控制操作指令、 或者多个标准压力信息对应于一个控制操作指令。 进一步的, 在采集压力之前还包括建立控制操作映射表的步骤。 建立控制操作映射表的步骤具体包括: 采集模块 11获取控制操作指令,并获取用户输入的与各控制操作指令对应的标准 压力信息; 计算模块 12建立控制操作指令与标准压力信息的对应关系; 存储模块 15根据对应关系, 建立控制操作映射表, 并供判断模块 13进行调用。
S903 : 判断操控操作映射表是否存在与压力信息匹配的标准压力信息; 若存在, 则执行步骤 S904。 判断模块 13调用控制操作映射表,判断其中是否存在与压力信息匹配的标准压力 信息, 匹配度不必要求 100%匹配, 上下误差 10%即可认为匹配成功。 进一步的, 若存在与压力信息匹配的标准压力信息时, 在执行该标准压力信息对 应的控制操作指令之前还进一步包括: 判断该控制操作指令的触发条件是否满足; 如满足, 则执行该控制操作指令。 进一步的, 触发条件包括终端运行状态、 终端位置信息、 终端运动信息中的至少 一种。
S904: 调用并执行与标准压力信息对应的控制操作指令。 在执行标准压力信息对应的控制操作指令之前还包括以下步骤:
检测模块 17检测控制操作指令是否存在触发条件; 若存在, 则检测模块 17判断是否满足控制操作指令所要求的触发条件; 若满足, 则通知执行模块 14执行控制操作指令; 若不满足, 则通知执行模块 14不执行控制操作指令。 进一步的, 在上述实施例所示的控制终端的操作方法中, 压力信息是压力值和 / 或压力变化趋势和 /或压力持续时间。 现在通过一个应用实例来进一步说明本申请提供的终端控制技术: 用户通过启动模块 16来启动该应用; 采集模块 11采集用户施加给终端 1的压力; 计算模块 12根据采集模块 11采集到的压力计算生成压力信息; 此时是两个压力 采集单元 111 ; 对两个压力采集单元 111 采集到的压力进行计算得到的压力信息进行 匹配, 匹配成功; 判断模块 13调用存储模块 15内存储的控制操作映射表; 判断模块 13判断控制操作映射表是否存在与压力信息匹配的标准压力信息;如果 存在, 则调用该标准压力信息对应的控制操作指令, 例如, 匹配成功后的压力信息对 应于"接听电话"的控制操作; 检测模块 17检测该控制操作指令(接听电话)的触发条件是否满足, 假如接听电 话的触发条件是终端 1离人耳的距离小于 lcm, 并且终端 1处于待机状态; 检测模块 17判断是否满足触发条件,假如满足, 就将该控制操作指令传送到执行 模块 14; 不满足就拒绝该控制操作指令或禁能执行模块 14; 执行模块 14执行接收到的控制操作指令, 如接听电话; 采集模块 11继续进行压力采集。 本申请提供了一种计算机应用程序,该程序用于实现本申请提供的终端控制方法。
本申请提供了一种存储介质, 该存储介质用于存储上述实施例中提供的实现本申 请提供的终端控制方法的计算机应用程序; 在其他实施例中, 该存储介质为 CD、 DVCD、 U盘等移动存储介质。 由上述记载的方案可知, 通过本申请的实施, 至少具备以下显著的进步: 本申请提供的终端控制技术通过采集用户对终端的压力来控制终端执行操作, 终 端用户可以在任何环境下使用, 不会影响他人, 具有优良的通用性; 同时, 用户用单 手就可以实现对终端的控制, 避免了现有技术中终端需要用户进行双手控制的问题, 增强了用户的使用体验; 进一步的, 通过用户设定不同控制级别, 可以实现多种控制操作, 不逊色于与现 有的终端控制技术, 并且具备更大的通用性。 以上仅是本发明的具体实施方式而已, 并非对本发明做任何形式上的限制, 凡是 依据本发明的技术实质对以上实施方式所做的任意简单修改、 等同变化或修饰, 均仍 属于本发明技术方案的保护范围。 工业实用性 本发明提供的技术方案可以应用于移动终端中, 通过采集用户对终端的压力来控 制终端执行操作, 终端用户可以在任何环境下使用, 不会影响他人, 具有优良的通用 性; 同时, 用户用单手就可以实现对终端的控制, 避免了现有技术中终端需要用户进 行双手控制的问题, 增强了用户的使用体验。
Claims
权 利 要 求 书
1. 一种控制终端的操作方法, 包括:
采集作用于所述终端的压力, 计算得到该压力的压力信息; 调用控制操作映射表; 所述控制操作映射表包含至少一个标准压力信息、 及与标准压力信息对应的控制操作指令;
判断所述控制操作映射表中是否存在与所述压力信息匹配的标准压力信 息, 若存在, 则调用并执行与该标准压力信息对应的控制操作指令。
2. 如权利要求 1所述的操作方法, 其中, 在采集压力之前还包括建立所述控制操 作映射表的步骤, 该步骤包括:
获取控制操作指令, 并获取用户输入的与各控制操作指令对应的标准压力 信息;
建立控制操作指令与标准压力信息的对应关系;
根据所述对应关系, 建立控制操作映射表。
3. 如权利要求 1所述的操作方法, 其中, 若存在与所述压力信息匹配的标准压力 信息时, 在执行该标准压力信息对应的控制操作指令之前还进一步包括: 判断该控制操作指令的触发条件是否满足;
如满足, 则执行该控制操作指令。
4. 如权利要求 3所述的操作方法, 其中, 所述触发条件包括终端运行状态、 终端 位置信息、 终端运动信息中的至少一种。
5. 如权利要求 1所述的操作方法, 其中, 采集作用于所述终端的压力的方式是单 个压力采集单元进行压力采集。
6. 如权利要求 1所述的操作方法, 其中, 采集作用于所述终端的压力的方式是两 个及其以上的压力采集单元进行压力采集。
7. 如权利要求 6所述的操作方法, 其中, 当两个及其以上的压力采集单元进行压 力采集时, 判断所述控制操作映射表中是否存在与所述压力信息匹配的标准压 力信息过程为-
判断这多个采集单元的压力信息之间是否匹配;
如果匹配, 则进一步判断操作映射表中是否存在与各个采集单元中的至少 一个的压力信息或所有采集单元的压力信息相匹配的标准压力信息; 若存在, 则执行该标准压力信息对应的控制操作指令。
8. 如权利要求 6所述的操作方法, 其中, 还包括设置各压力采集单元优先级的步 骤; 根据不同优先级的压力采集单元采集到的压力进行计算获取的压力信息对 应于不同应用层次的控制操作指令。
9. 如权利要求 1-8任一项所述的操作方法, 其中, 所述压力信息是压力值和 /或压 力变化趋势和 /或压力持续时间。
10. 一种终端, 包括采集模块、 计算模块、 判断模块及执行模块; 所述采集模块、 计算模块、 判断模块及执行模块依次顺序连接;
所述采集模块设置为采集作用于所述终端的压力, 并将采集到的压力传输 到所述计算模块;
所述计算模块设置为对接收到的压力进行计算, 得到该压力对应的压力信 息并传输到所述判断模块;
所述判断模块设置为调用控制操作映射表, 判断所述控制操作映射表中是 否存在与接收到的压力信息匹配的标准压力信息, 若存在, 则将该标准压力信 息对应的控制操作指令传输到所述执行模块; 所述控制操作映射表包含至少一 个标准压力信息、 及与标准压力信息对应的控制操作指令;
所述执行模块设置为接收并执行所述判断模块传输的控制操作指令。
11. 如权利要求 10所述的终端, 其中, 所述终端还包括存储模块;
所述采集模块还设置为获取控制操作指令, 并获取用户输入的与各控制操 作指令对应的标准压力信息, 将控制操作指令及与之对应的标准压力信息传输 到计算模块;
所述计算模块还设置为根据接收到的控制操作指令及与之对应的标准压力 信息, 建立控制操作指令与标准压力信息的对应关系, 并将该对应关系传输到 所述存储模块;
所述存储模块设置为根据所述对应关系, 建立控制操作映射表。 如权利要求 10所述的终端, 其中, 所述终端还包括检测模块;
所述检测模块与所述判断模块连接, 设置为当所述判断模块判断存在与所 述压力信息匹配的标准压力信息时, 在执行该标准压力信息对应的控制操作指 令之前, 检测该控制操作指令的触发条件是否满足; 若满足, 则通知所述执行 模块执行所述控制操作指令。
13. 如权利要求 10所述的终端, 其中, 所述采集模块包含一个压力采集单元; 所述 压力采集单元设置为采集作用于所述终端的压力。
14. 如权利要求 10所述的终端, 其中, 所述采集模块包含至少两个压力采集单元; 所述压力采集单元设置为采集作用于所述终端的压力。
15. 如权利要求 14所述的终端, 其中, 所述采集模块还包括级别划分单元, 所述级 别划分单元设置为设置各个压力采集单元的优先级; 对不同控制等级的压力采 集单元采集到的压力进行计算获取的压力信息对应不同层次的控制操作指令。
16. 如权利要求 10至 15任一项所述的终端, 其中, 所述终端为手机、 平板电脑、 游戏机中的一种。
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| CN104980579A (zh) * | 2015-06-15 | 2015-10-14 | 努比亚技术有限公司 | 一种移动终端中操作信息的设置方法和装置 |
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| EP2911038A1 (en) | 2015-08-26 |
| US20150304480A1 (en) | 2015-10-22 |
| CN103777739A (zh) | 2014-05-07 |
| EP2911038A4 (en) | 2016-02-24 |
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