WO2015101016A1 - 一种便携终端及接听来电的方法 - Google Patents

一种便携终端及接听来电的方法 Download PDF

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Publication number
WO2015101016A1
WO2015101016A1 PCT/CN2014/082412 CN2014082412W WO2015101016A1 WO 2015101016 A1 WO2015101016 A1 WO 2015101016A1 CN 2014082412 W CN2014082412 W CN 2014082412W WO 2015101016 A1 WO2015101016 A1 WO 2015101016A1
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Prior art keywords
terminal
controller
incoming call
pressure
wireless communication
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PCT/CN2014/082412
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English (en)
French (fr)
Inventor
吴浩明
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中兴通讯股份有限公司
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Publication of WO2015101016A1 publication Critical patent/WO2015101016A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/12Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion

Definitions

  • the present invention relates to the field of communications, and in particular, to a portable terminal and a method for answering an incoming call.
  • the mobile communication terminal basically answers the call through the touch screen or the button.
  • the user needs to find the location of the answer button on the screen or on the keyboard.
  • the answer button is not easy to find. It may also cause inadvertent disconnection due to the user's accidental touch of the listening position or pressing the wrong button.
  • the present invention provides a portable terminal capable of automatically answering an incoming call and a method for answering an incoming call, wherein the terminal includes a wireless communication module, a controller, an acceleration sensor, and a pressure sensor, wherein
  • the acceleration sensor is configured to measure an acceleration parameter of the terminal and output the signal to the controller;
  • the pressure sensor is configured to measure a pressure parameter of the terminal and output to the controller; the controller is configured to output an answering instruction to the wireless communication module according to the acceleration parameter and the pressure parameter.
  • the terminal is connected to the peripheral device by using the wireless communication module
  • the wireless communication module includes a wireless receiving sub-module and a wireless transmitting sub-module
  • the wireless receiving sub-module is configured to: have an incoming call service at the terminal Outputting an incoming call indication to the controller;
  • the controller is further configured to: receive the incoming call indication, and output the first to the acceleration sensor a triggering command triggers the acceleration sensor, receives a movement information from the acceleration sensor, and outputs a second triggering command to the pressure sensor to trigger the pressure sensor, and after receiving pressure data from the pressure sensor, to the wireless
  • the communication module outputs an incoming call command.
  • the acceleration sensor is integrated in a non-visible area of the screen on the front side of the terminal main board adjacent to the handset of the portable terminal.
  • the controller includes a storage module and a control module, wherein the storage module prestores a pressure threshold, and the control module is configured to determine that when the received pressure data is not less than the pressure threshold, The wireless communication module outputs an incoming call command.
  • a method for answering an incoming call by using the above terminal comprising:
  • the wireless communication module receives the incoming call and outputs a notification signal to the controller;
  • the controller outputs a first trigger command to the acceleration sensor
  • the acceleration sensor outputs terminal movement information to the controller
  • the controller receives the terminal movement information, and outputs a second trigger command to the pressure sensor; the pressure sensor outputs terminal pressure data to the controller;
  • the controller outputs an answering instruction to the wireless communication module
  • the wireless communication module answers an incoming call.
  • the portable terminal determines whether the user has the intention to answer the incoming call through the parameters detected by the acceleration sensor and the pressure sensor, and automatically turns on when the user wants to answer the incoming call, and the operation is simple and convenient, and the call is answered with the user.
  • the habits are consistent, improving the user experience.
  • FIG. 1 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • FIG. 3 is a flowchart of a method for using a terminal according to an embodiment of the present invention. Preferred embodiment of the invention
  • the terminal includes a wireless communication module, a controller, an acceleration sensor, and a pressure sensor, and the wireless communication module notifies the controller by detecting an incoming call service of the terminal, and the controller outputs the a control command triggers an acceleration sensor;
  • the acceleration sensor is configured to detect movement information of the portable terminal, and output to the controller, the controller receives the movement information input by the acceleration sensor, and outputs the movement information to the pressure sensor a second control command;
  • the pressure sensor is configured to detect the pressure data of the portable terminal and output to the controller, the controller receives the input pressure data and processes the output, and outputs an answering command to the wireless communication module;
  • the communication module is configured to receive an input answering instruction and perform an answering function.
  • the portable terminal uses the acceleration sensor to collect the mobile information of the mobile terminal, and is used to determine whether the portable terminal is picked up and moved by the user; the pressure sensor collects the pressure data of the mobile terminal, and is used to determine the mobile communication terminal. Whether it depends on the user's ear.
  • FIG. 1 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • the terminal in the embodiment of the present invention includes: a wireless communication module 11, a controller 12, an acceleration sensor 13, and a pressure sensor 14.
  • the terminal is connected to the peripheral device through the wireless communication module 12.
  • the wireless communication module 11 includes a wireless receiving sub-module 111 and a wireless transmitting sub-module 112, and the wireless receiving module 111 and the wireless transmitting module 112 are both connected to the controller 12.
  • the wireless receiving sub-module 111 outputs an incoming call indication to the controller 12 when the terminal has an incoming call service, and the input end of the controller 12 receives the first control command, and detects the mobile information of the acceleration sensor 13 .
  • the input end of the controller 12 receives an incoming call indication from the wireless communication module 11, movement information from the acceleration sensor 13, and pressure data of the pressure sensor 14, and the output terminal outputs an incoming call command to the wireless communication module 11;
  • the controller 12 receives an incoming call indication from the wireless communication module 11 , and outputs a first trigger command to the acceleration sensor to trigger the acceleration sensor 13;
  • the movement information of the acceleration sensor 13 is output to the pressure sensor 14 to output a second trigger command to trigger the pressure sensor 14;
  • the input terminal receives pressure data from the pressure sensor 13, and outputs an incoming call command to the wireless communication module 11.
  • the controller 12 includes a storage module 121 and a control module 122.
  • the storage module 121 prestores a pressure threshold.
  • the control module 122 is configured to determine that when the received pressure data is not less than the pressure threshold, Outputting an incoming call instruction to the wireless communication module 11;
  • the pressure threshold is obtained according to the experimental value, and the sensitivity can also be adjusted by the user, so as to prevent erroneous operations under some special conditions, such as the friction when the user puts the terminal into the pocket does not satisfy the condition for executing the incoming service of the terminal. .
  • the acceleration sensor 13 outputs the terminal movement information.
  • the movement information output by the acceleration sensor 13 is, but not limited to, an acceleration value
  • the pressure sensor 14 outputs a pressure parameter received by the terminal
  • the pressure parameter detected by the pressure sensor 14 includes a pressure value, and the pressure value is used to determine whether the area around the earpiece of the portable terminal is in contact with the user.
  • the pressure sensor 14 When detecting that the terminal has a pressure value not less than a pressure threshold, The area around the earpiece is considered to be in contact with the user; the pressure sensor 14 is located above or below the earpiece of the terminal, and when the user attempts to answer the incoming call, the area of the earpiece is close to the ear, so that the terminal receives the detected When there is a pressure value not less than the pressure threshold, the user is considered to be intent to answer the call.
  • the pressure sensor is located in the non-visible area of the screen around the position of the terminal earpiece, and is used for judging whether the mobile communication terminal receives the pressure from the end user, because the ear is close to the earpiece when the user answers the call, The terminal is judged to be the pressure applied to the pressure sensor by the ear of the user.
  • the wireless communication module 11 detects that the terminal has an incoming call, and receives the movement information of the acceleration sensor 13 and the pressure data of the pressure sensor 14 through the input end of the controller 12 to determine the intention of the user to answer the incoming call, and the controller triggers the wireless communication module. 11 Answer the call.
  • FIG. 2 is a schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • the terminal screen is divided into a visible area 21 and a non-visible area 22, a pressure sensor 24 is located in the non-visible area 22 of the terminal screen and is located around the earpiece 23.
  • FIG. 3 is a flowchart of a method for using a terminal according to an embodiment of the present invention. As shown in FIG. 3, the method for automatically answering a terminal of the present invention includes the following steps:
  • Step 301 The wireless communication module receives an incoming call, and outputs an incoming call indication to the controller.
  • Step 302 The controller outputs a first trigger command to the acceleration sensor.
  • Step 303 The acceleration sensor outputs terminal movement information to the controller.
  • the terminal movement information is: according to the speed sensor, by sensing the azimuth, the rotation angle, the tilt angle, and the gravity direction on the horizontal plane, the detection terminal Acceleration parameters in the upward, upper left, and right upper.
  • the movement information of the terminal is output to the controller.
  • the terminal When the terminal does not answer the call, it is generally placed on a pocket or a desktop, in a relatively stable state of motion, with little or no acceleration.
  • the user takes the terminal from the pocket or the desktop.
  • the controller will judge whether the terminal is picked up and moved by the user according to the acceleration detected by the acceleration sensor. .
  • Step 304 The controller input receives the terminal movement information, and outputs a second trigger instruction to the pressure sensor.
  • Step 305 The pressure sensor outputs terminal pressure data to the controller.
  • the terminal pressure data is: outputting the pressure data to the controller according to a pressure value of the pressure sensor through the sensing terminal.
  • the controller receives the input parameter of the acceleration sensor and triggers the pressure sensor.
  • the terminal position of the terminal is attached to the ear, because the pressure sensor is located around the earpiece, so the ear of the user at this time Contact with the pressure sensor creates contact pressure and determines the user's intent to answer the call.
  • Step 306 The controller outputs an answering instruction to the wireless communication module.
  • Step 307 The wireless communication module answers the incoming call.
  • the embodiment of the invention determines the user's intention to answer the incoming call through the parameters detected by the acceleration sensor and the pressure sensor, and automatically turns on when the user wants to answer the incoming call, and the operation is simple and convenient, and the user's habit of answering the call is consistent with the promotion. user experience.

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  • Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Telephone Function (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

一种便携终端,包括无线通信模块、控制器、加速度传感器和压力传感器;所述加速度传感器和所述压力传感器测量终端的加速度参数和压力参数后,输出给所述控制器,所述控制器根据所述加速度参数和所述压力参数向所述无线通信模块输出接听指令。

Description

一种便携终端及接听来电的方法
技术领域
本发明涉及通信领域, 尤其涉及一种便携终端及接听来电的方法。
背景技术
随着通讯技术的发展, 便携式移动通讯终端近年来已日益普及, 成为人 们最常用的通讯设备。
目前移动通讯终端接听来电基本上都是通过触控屏幕或按键的方式来接 听, 使用者需要在屏幕上或键盘上查找接听键的位置, 然而, 在某些情况下, 接听键不好找, 也会可能因用户误触控接听位置或按错按键导致无意挂断电 话, 造成接听不便。
发明内容
有鉴于此, 本发明提供一种可自动接听来电的便携终端及接听来电的方 法, 所述终端包括无线通信模块、 控制器、 加速度传感器和压力传感器, 其 中,
所述加速度传感器设置为测量所述终端的加速度参数, 并输出给所述控 制器;
所述压力传感器设置为测量所述终端的压力参数,并输出给所述控制器; 所述控制器设置为根据所述加速度参数和所述压力参数向所述无线通信 模块输出接听指令。
较佳的, 所述终端通过所述无线通信模块与外围设备连接, 所述无线通 信模块包括无线接收子模块和无线发送子模块,所述无线接收子模块设置为: 在所述终端有来电业务时, 向所述控制器输出来电指示;
所述控制器还设置为: 接收所述来电指示, 向所述加速度传感器输出第 一触发指令触发所述加速度传感器, 接收到来自加速度传感器的移动信息后 向所述压力传感器输出第二触发指令触发所述压力传感器, 接收到来自所述 压力传感器的压力数据后, 向所述无线通信模块输出接听来电指令。
较佳的, 加速度传感器集成在所述终端主板正面靠近所述便携终端听筒 的位置的屏幕非可视区域。
较佳的, 所述控制器包括存储模块和控制模块, 所述存储模块中预存有 压力阔值, 所述控制模块设置为判断在接收的压力数据不小于所述压力阔值 时, 向所述无线通信模块输出接听来电指令。
一种利用上述终端接听来电的方法, 包括:
无线通信模块接收来电, 并输出通知信号给控制器;
所述控制器输出第一触发指令给加速度传感器;
所述加速度传感器向所述控制器输出终端移动信息;
所述控制器接收到所述终端移动信息,输出第二触发指令到压力传感器; 所述压力传感器向所述控制器输出终端压力数据;
所述控制器向所述无线通信模块输出接听指令;
所述无线通信模块接听来电。
本发明实施例提供的便携终端, 通过加速度传感器和压力传感器检测的 参数, 判断使用者是否有接听来电的意图, 并在使用者要接听来电时自动接 通, 操作简单便捷, 与使用者接听来电的习惯吻合, 提升用户体验。
附图概述
图 1为本发明实施例终端结构示意图;
图 2为本发明实施例移动终端结构示意图;
图 3为本发明实施例终端使用方法流程图。 本发明的较佳实施方式
在本发明实施例中, 所述终端包括无线通信模块、 控制器、 加速度传感 器和压力传感器, 所述无线通信模块通过检测终端的来电业务到来, 并通知 所述控制器, 所述控制器输出第一控制指令触发加速度传感器; 所述加速度 传感器, 用于检测便携终端的移动信息, 并输出到所述控制器, 所述控制器 器在接收到加速度传感器输入的移动信息, 并向压力传感器输出第二控制指 令; 所述压力传感器, 用于检测便携终端压力数据并输出到所述控制器, 所 述控制器接收输入的压力数据并处理后,向所述无线通信模块输出接听指令; 所述无线通信模块用于接收输入的接听指令, 并执行接听的功能。
本发明实施例提供的便携终端, 利用加速度传感器釆集移动终端的移动 信息, 用于判断便携终端是否被使用者拿起并移动; 压力传感器釆集移动终 端的压力数据, 用于判断移动通讯终端是否靠到了使用者的耳部。
下面结合附图对本发明实施例作详细描述。 在不冲突的情况下, 本申请 中的实施例及实施例中的特征可以相互任意组合。
图 1为本发明实施例中终端结构示意图, 如图 1所示, 本发明实施例的 终端包括: 无线通信模块 11、 控制器 12、 加速度传感器 13、 和压力传感器 14。
其中, 所述终端通过所述无线通信模块 12与外围设备连接。 较佳的, 所 述无线通信模块 11包括无线接收子模块 111和无线发送子模块 112, 所述无 线接收模块 111和所述无线发送模块 112均与所述控制器 12连接。
所述无线接收子模块 111在所述终端有来电业务时,向所述控制器 12输 出来电指示, 所述控制器 12输入端接收所述第一控制指令, 检测所述加速度 传感器 13的移动信息。
所述控制器 12的输入端接收来自无线通信模块 11的来电指示、 来自所 述加速度传感器 13的移动信息和压力传感器 14的压力数据, 输出端向所述 无线通信模块 11输出接听来电指令;
较佳的, 所述控制器 12, 输入端接收来自无线通信模块 11的来电指示, 向所述加速度传感器输出第一触发指令触发加速度传感器 13; 输入端接收来 自加速度传感器 13的移动信息, 并向所述压力传感器 14输出第二触发指令 触发压力传感器 14; 输入端接收来自压力传感器 13 的压力数据, 并向所述 无线通信模块 11输出接听来电指令。
较佳的, 所述控制器 12包含存储模块 121和控制模块 122, 所述存储模 块 121中预存有压力阔值, 控制模块 122用于判断在接收的压力数据不小于 所述压力阔值时, 向所述无线通信模块 11输出接听来电指令;
所述压力阔值根据实验值得到, 也可以由用户调整灵敏度, 目的是可以 防止一些特殊条件下的误操作, 比如用户将终端放入口袋时的摩擦不满足执 行所述终端的到来业务的条件。
所述加速度传感器 13 , 输出所述终端移动信息; 本发明实施例中, 所述 加速度传感器 13输出的移动信息为但不限于加速度的值;
所述压力传感器 14, 输出所述终端接收到的压力参数;
较佳的, 所述压力传感器 14检测的压力参数包括压力值, 所述压力值用 于判断便携终端听筒周围区域是否跟使用者接触, 当检测到终端有不小于压 力阔值的压力值时, 认为所述终端听筒周围区域跟使用者接触; 所述压力传 感器 14位于所述终端听筒的上方或下方, 在使用者试图接听来电时, 听筒区 域是靠近耳朵的, 故在检测到终端所接收到有不小于压力阔值的压力值时, 认为所述用户意图接听来电。
本发明实施中压力传感器位于所述终端听筒位置周围屏幕非可视区域, 用于判断移动通讯终端是否接收到来自所述终端用户的压力, 由于用户在接 听电话时耳朵是靠近听筒的, 故可以判断所述终端是用户的耳部向所述压力 传感器施加的压力。
本发明中, 无线通信模块 11检测到终端有来电, 通过控制器 12输入端 接收加速度传感器 13的移动信息和压力传感器 14的压力数据判定使用者接 听来电的意图, 所述控制器触发无线通信模块 11接听来电。
图 2为本发明实施例移动终端结构示意图;
如图 2所示, 终端屏幕分为可视区域 21和非可视区域 22, 压力传感器 24位于所述终端屏幕非可视区域 22 , 并且位于听筒 23周围。
图 3为本发明实施例终端使用方法流程图, 如图 3所示, 本发明终端自 动接听使用方法包括以下步骤:
步骤 301 : 无线通信模块接收来电, 并输出来电指示给控制器; 步骤 302: 所述控制器输出第一触发指令给加速度传感器;
步骤 303 : 所述加速度传感器向所述控制器输出终端移动信息; 其中, 所述终端移动信息为: 据速度传感器通过感应水平面上的方位角、 旋转角和倾斜角以及重力方向等信息, 检测终端处于向上、 向左上、 向右上 等加速度参数。
较佳的, 当检测到终端有向上的加速度时, 将终端的移动信息输出到控 制器。
所述终端在未接听电话时, 一般是放在口袋或桌面上, 处于一种相对平 稳的运动状态, 加速度极小或者为零, 当有来电时, 使用者将终端从口袋里 或桌面上拿起来, 此时使用者如要接听来电, 则会继续将终端移动到耳边接 听, 产生明显的加速度; 因而, 控制器将根据加速度传感器检测到的加速度 来判断终端是否被使用者拿起并移动。
步骤 304: 所述控制器输入端接收到所述终端移动信息, 输出第二触发 指令到压力传感器。
步骤 305: 所述压力传感器向所述控制器输出终端压力数据;
其中, 所述终端压力数据为: 根据压力传感器通过感应终端的压力值, 将所述压力数据输出到控制器。
控制器接收到加速度传感器的输入参数, 并触发压力传感器, 使用者要 接听来电时, 会将终端的听筒位置贴在耳部, 因为所述压力传感器位于听筒 的周围, 故此时使用者的耳部与压力传感器接触, 产生了接触压力, 判断使 用者接听来电的意图。
步骤 306: 所述控制器向所述无线通信模块输出接听指令; 步骤 307: 无线通信模块接听来电。
虽然本发明以一种实施例揭露如上, 然而并非限定本发明, 在背离本发 明实质的情况下, 可以对本发明做出各种相应的改变和变形, 这些改变和变 形都属于本发明的权利要求保护范围。
以上所述, 仅为本发明的较佳实施例而已, 并非用于限定本发明的保护 范围。
工业实用性
本发明实施例通过加速度传感器和压力传感器检测的参数, 判断使用者 是否有接听来电的意图, 并在使用者要接听来电时自动接通, 操作简单便捷, 与使用者接听来电的习惯吻合, 提升用户体验。

Claims

权 利 要 求 书
1、 一种便携终端, 所述终端包括无线通信模块、 控制器、 加速度传感器 和压力传感器;
所述加速度传感器设置为测量所述终端的加速度参数, 并输出给所述控 制器;
所述压力传感器设置为测量所述终端的压力参数 ,并输出给所述控制器; 所述控制器设置为根据所述加速度参数和所述压力参数向所述无线通信 模块输出接听指令。
2、 如权利要求 1所述的终端, 其中, 所述终端通过所述无线通信模块与 外围设备连接, 所述无线通信模块包括无线接收子模块和无线发送子模块, 所述无线接收子模块设置为: 在所述终端有来电业务时, 向所述控制器输出 来电指示;
所述控制器还设置为: 接收所述来电指示, 向所述加速度传感器输出第 一触发指令触发所述加速度传感器, 接收到来自加速度传感器的移动信息后 向所述压力传感器输出第二触发指令触发所述压力传感器, 接收到来自所述 压力传感器的压力数据后, 向所述无线通信模块输出接听来电指令。
3、 如权利要求 1所述的终端, 其中, 所述压力传感器集成到所述终端主 板正面, 并且位于所述终端屏幕非可视区域中听筒的周围。
4、 如权利要求 2所述的终端, 其中, 所述控制器包括存储模块和控制模 块, 所述存储模块中预存有压力阔值, 所述控制模块设置为判断在接收的压 力数据不小于所述压力阔值时, 向所述无线通信模块输出接听来电指令。
5、 一种利用如权利要求 1-4任一项所述的终端接听来电的方法, 包括: 无线通信模块接收来电, 并输出来电指示给控制器;
所述控制器输出第一触发指令给加速度传感器;
所述加速度传感器向所述控制器输出终端移动信息;
所述控制器接收到所述终端移动信息,输出第二触发指令到压力传感器; 所述压力传感器向所述控制器输出终端压力数据;
所述控制器向所述无线通信模块输出接听指令;
所述无线通信模块接听来电。
PCT/CN2014/082412 2014-01-02 2014-07-17 一种便携终端及接听来电的方法 WO2015101016A1 (zh)

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