WO2011079749A1 - 一种触摸处理方法及移动终端 - Google Patents

一种触摸处理方法及移动终端 Download PDF

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Publication number
WO2011079749A1
WO2011079749A1 PCT/CN2010/080229 CN2010080229W WO2011079749A1 WO 2011079749 A1 WO2011079749 A1 WO 2011079749A1 CN 2010080229 W CN2010080229 W CN 2010080229W WO 2011079749 A1 WO2011079749 A1 WO 2011079749A1
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WO
WIPO (PCT)
Prior art keywords
touch point
touch
area
processor
point
Prior art date
Application number
PCT/CN2010/080229
Other languages
English (en)
French (fr)
Inventor
刘湘涛
甘大勇
Original Assignee
北京联想软件有限公司
联想(北京)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 北京联想软件有限公司, 联想(北京)有限公司 filed Critical 北京联想软件有限公司
Priority to US13/520,221 priority Critical patent/US9007314B2/en
Publication of WO2011079749A1 publication Critical patent/WO2011079749A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • G06F3/0418Control or interface arrangements specially adapted for digitisers for error correction or compensation, e.g. based on parallax, calibration or alignment
    • G06F3/04186Touch location disambiguation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a touch processing method and a mobile terminal.
  • An object of the present invention is to provide a touch processing method and a mobile terminal, which solve the problem that an existing erroneous operation is easily generated when a touch input is implemented by a touch terminal, and the touch operation experience of the user is reduced.
  • the embodiment of the present application provides the following technical solutions:
  • a touch processing method is applied to a mobile terminal having an inductive touch device, wherein the inductive touch device has a first area and a second area, and the touch point in the first area has a first response level The touch point in the second area has a second response level, and the first response level is higher than the second response level, and the method includes:
  • the domain responds to the first touch point.
  • the obtaining the first touch point and the second touch point is specifically: obtaining a second touch point of the second area in the process of obtaining the first touch point of the first area;
  • the method also includes: not responding to the second touch point.
  • the obtaining the first touch point and the second touch point is specifically: obtaining a touch point of the first area in the process of obtaining the touch point of the second area;
  • the method also includes: terminating acquisition of the second touch point.
  • the obtaining the first touch point and the second touch point are specifically: obtaining the first touch point of the first area and the second touch point of the second area at the same time;
  • the method also includes: not responding to the second touch point.
  • the mobile terminal further includes a first processor and a second processor, where the obtaining the first touch point and the second touch point are: obtaining the first touch point and the second touch point by using the second processor
  • the method further includes: the second processor determining a touch command corresponding to the second touch point according to the second touch point obtained from the second area.
  • the method further includes:
  • the second processor sends the first touch point to the first processor
  • the second processor does not perform a step of determining a touch command corresponding to the second touch point according to the second touch point obtained from the second area;
  • the responding to the first touch point is specifically: the first processor responds to the first touch point after receiving the first touch point.
  • the method further includes:
  • the responding to the first touch point is specifically: the first processor receives the first touch point Responding to the first touch point.
  • a mobile terminal includes an inductive touch device, the inductive touch device having a first area and a second area, the touch point in the first area has a first response level, and the touch point in the second area has a first a second response level, where the first response level is higher than the second response level, further comprising a first processor and a second processor, where
  • the second processor includes:
  • a obtaining unit configured to obtain a first touch point and a second touch point
  • the first processor includes:
  • a response unit configured to respond to the first touch point when the first touch point is in the first area and the second touch point is in the second area.
  • the second processor further includes: a determining unit, configured to determine a touch command corresponding to the second touch point according to the second touch point obtained from the second area.
  • the obtaining unit is specifically configured to obtain a first touch point of the first area in a process of obtaining a second touch point of the second area;
  • the second processor further includes:
  • a sending unit configured to send the first touch point to the first processor
  • control unit configured to control the determining unit not to perform a touch command corresponding to the second touch point according to the second touch point obtained from the second area
  • the response unit is specifically configured to respond to the first touch point after receiving the first touch point.
  • the obtaining unit is configured to obtain a first touch point of the first area in a process of determining a touch command corresponding to the second touch point according to the second touch point obtained from the second area;
  • the second processor further includes:
  • a sending unit configured to send the first touch point to the first processor
  • control unit configured to control the determining unit to terminate execution of the touch command corresponding to the second touch point according to the second touch point obtained by the second area
  • the response unit is specifically configured to respond to the first touch point after receiving the first touch point.
  • the touch mobile terminal in the embodiment of the present application has an inductive touch device, and the inductive touch device has a first area and a second area, when the first touch point and the second touch point are obtained. And the first touch point is in the first area and the second touch point is in the second area, responding to the first touch point.
  • FIG. 1 is a flow chart of a first embodiment of a touch processing method according to the present application
  • FIG. 2 is a flow chart of a second embodiment of the touch processing method of the present application.
  • FIG. 3 is a flow chart of a third embodiment of a touch processing method of the present application.
  • FIG. 4 is a schematic structural diagram of a mobile terminal to which an embodiment of a touch processing method of the present application is applied;
  • FIG. 5 is a block diagram of a first embodiment of a mobile terminal according to the present application;
  • FIG. 6 is a block diagram of a second embodiment of a mobile terminal of the present application.
  • FIG. 7 is a block diagram of a third embodiment of a mobile terminal of the present application.
  • the mobile terminal in the embodiment of the present application includes a sensing touch device having a first area and a second area, where the touch point in the first area has a first response level, and the touch in the second area The point has a second response level, the first response level being higher than the second response level.
  • the mobile terminal in the embodiment of the present application further includes a first processor for responding to the touch point and a second processor for obtaining the touch point.
  • FIG. 1 a flow chart of a first embodiment of a touch processing method of the present application is as follows:
  • Step 101 Obtain a first touch point and a second touch point.
  • the touch point of the second area may be obtained in the process of obtaining the first touch point of the first area; the touch point of the first area may be obtained during the process of obtaining the touch point of the second area; The first touch point of the first area and the second touch point of the second area are obtained at all times.
  • Step 102 Determine that the first touch point is in the first area, and the second touch point is in the second area.
  • Step 103 In response to the first touch point, the current process ends.
  • the first area generally refers to a touch input area corresponding to the display screen
  • the second area may be a specific touch input area other than the touch input area corresponding to the display screen, the specific area is used for a touch input area of the touch gesture (ie, by ⁇ The plurality of second touch points are collected to determine a touch gesture; of course, the first area may also be a touch display screen for a predetermined area for a touch input operation, and the second area is an edge range for the touch display screen.
  • the first processor may be a CPU (Central Processing Unit) of the mobile terminal
  • the second processor may be an MCU (micro controller) connected to the inductive touch device
  • the MCU may be connected to the CPU. Transmitting the obtained first area and the touch point of the second area to the CPU, and transmitting a touch command corresponding to the obtained touch points of the first area and the second area to the CPU, the CPU is configured to receive the touched point and the touch command Respond.
  • the functions of the foregoing MCU can also be integrated into the CPU, that is, the functions of the first processor and the second processor can be integrated into one processor, which is not limited in this embodiment. Referring to FIG. 2, a flow chart of a second embodiment of the touch processing method of the present application is as follows:
  • Step 201 The second processor obtains a first touch point from the first area and a second touch point from the second area, respectively.
  • the second processor is connected to the inductive touch device in the mobile terminal, where the inductive touch device is generally a touch screen, the first region generally refers to a touch input region corresponding to the display screen, and the second region generally refers to a touch that only receives a touch gesture.
  • the input area; or the first area may be defined in advance as the range of the central area involved in the touch input operation on the touch screen, and the second area is the edge range on the touch screen, that is, it is easy to be touched by the user's hand, but is not used to generate a touch command. region. It should be noted that the first area and the second area may be flexibly defined according to actual applications, and can respond to useful touch input during erroneous operation.
  • Step 202 The second processor determines a touch command corresponding to the second touch point according to the second touch point obtained from the second area.
  • Step 203 The second processor sends a touch command corresponding to the first touch point and the second touch point to the first processor.
  • Step 204 The first processor responds to the touch command corresponding to the first touch point according to the first touch point, and responds to the touch command corresponding to the second touch point.
  • Step 205 Determine whether the second processor obtains the first touch point of the first area while obtaining the second touch point of the second area, and if yes, perform step 206; otherwise, return to step 201.
  • Step 206 The second processor sends the first touch point to the first processor, and does not perform the step of determining a touch command corresponding to the second touch point according to the second touch point obtained from the second area.
  • the second processor simultaneously obtains the first touch point of the first area in the process of obtaining the second touch point of the second area.
  • the corresponding misoperation scene at this time may be that when the user holds the mobile terminal, the palm continues to touch the second area, but does not leave the second area, the second processor continues to obtain the second touch point; The user performs a touch operation in the first area, and the second processor obtains the first touch point.
  • the second processor obtains the first touch point and the second touch point at the same time, since the second touch point continues to acquire, it can be judged to be an erroneous operation, and no response is received, that is, the second processor does not execute.
  • Step 207 The first processor responds to the first touch point after receiving the first touch point, and ends the current process.
  • the mobile terminal may only respond to the first touch point and shield the second touch point.
  • FIG. 3 a flowchart of a third embodiment of the touch processing method of the present application is as follows:
  • Step 301 The second processor obtains a first touch point from the first area and a second touch point from the second area, respectively.
  • the second processor is connected to the inductive touch device in the mobile terminal, where the inductive touch device is generally a touch screen, the first region generally refers to a touch input region corresponding to the display screen, and the second region generally refers to a touch that only receives a touch gesture.
  • the input area; or the first area may be defined in advance as the range of the central area involved in the touch input operation on the touch screen, and the second area is the edge range on the touch screen, that is, it is easy to be touched by the user's hand, but is not used to generate a touch command. region. It should be noted that the first area and the second area may be flexibly defined according to actual applications, and can respond to useful touch input during erroneous operation.
  • Step 302 The second processor determines a touch command corresponding to the second touch point according to the second touch point obtained from the second area.
  • Step 303 The second processor sends a touch command corresponding to the first touch point and the second touch point to the first processor.
  • Step 304 The first processor responds to the touch command corresponding to the first touch point according to the first touch point, and responds to the touch command corresponding to the second touch point.
  • Step 305 Determine whether the second processor obtains the first touch point of the first area in the process of determining the corresponding touch command according to the second touch point, and if yes, perform step 306; otherwise, return to step 301.
  • Step 306 The second processor sends the first touch point to the first processor.
  • Step 307 The second processor terminates execution of determining a touch command corresponding to the second touch point according to the second touch point obtained by the second area.
  • the second processor obtains the first touch point of the first region in the process of determining the corresponding touch command according to the second touch point.
  • the corresponding misoperation scene at this time may be that when the user holds the mobile terminal, the palm touches the second area momentarily, the corresponding second processor obtains the second touch point, and determines the corresponding touch command according to the second touch point.
  • the user performs a touch operation in the first area, and the second processor obtains the first touch point.
  • the mobile terminal determines that the input second touch point is an erroneous operation, thereby terminating The operation of the touch command corresponding to the second touch point is being determined according to the second touch point obtained by the second area, and only the first touch point is transmitted to the first processor.
  • Step 308 The first processor responds to the first touch point after receiving the first touch point, and ends the current process.
  • the mobile terminal may only respond to the first touch point and shield the second touch point.
  • FIG. 4 a schematic structural diagram of a mobile terminal for applying the touch processing method of the present application.
  • the mobile terminal includes: a display screen 410 and a touch screen 420.
  • the touch screen 420 includes a first touch area 421 corresponding to the display screen 410, and a second touch area 422 for receiving only a touch gesture, as shown by a dotted line between the first touch area 421 and the second touch area 422 in FIG. Separated.
  • the touch screen 420 is directly connected to the MCU, and the MCU is connected to the CPU (the MCU and the CPU are not shown in Fig. 4). Apply the mobile terminal shown in Figure 4:
  • the MCU transmits the first touch point to the CPU, and the MCU does not perform according to the second touch area 422.
  • the second touch point determines a step of the touch command corresponding to the second touch point, and is responsive to the first touch point after receiving the first touch point by the CPU;
  • the MCU When the first touch point of the first touch area 421 is obtained in the process of determining the touch command corresponding to the second touch point according to the second touch point obtained from the second touch area 422, the MCU sends the first touch point to the CPU, The MCU terminates execution of determining a touch command corresponding to the second touch point according to the second touch point obtained from the second touch region 422, and responding to the first touch after receiving the first touch point by the CPU Touch the point.
  • the present application also provides an embodiment of the mobile terminal.
  • FIG. 5 it is a block diagram of a first embodiment of a mobile terminal according to the present application.
  • the mobile terminal includes: an inductive touch device 510, a first processor 520, and a second processor 530.
  • the inductive touch device 510 has a first area and a second area, the touch point in the first area has a first response level, and the touch point in the second area has a second response level, the first response The level is higher than the second response level;
  • the second processor 530 includes:
  • the obtaining unit 531 is configured to obtain the first touch point and the second touch point from the inductive touch device 510;
  • the first processor 520 includes:
  • the response unit 521 is configured to respond to the first touch point when the first touch point is in the first area and the second touch point is in the second area.
  • the mobile terminal includes: an inductive touch device 610, a first processor 620, and a second processor 630.
  • the inductive touch device 610 has a first area and a second area, the touch point in the first area has a first response level, and the touch point in the second area has a second response level, the first response The level is higher than the second response level;
  • the second processor 630 includes:
  • a first obtaining unit 631 configured to obtain a first touch point of the first area in a process of obtaining a second touch point of the second area
  • a first determining unit 632 configured to determine, according to the second touch point obtained from the second area, a touch command corresponding to the second touch point
  • the first control unit 634 is configured to control the first determining unit 632 not to perform according to the second The second touch point obtained by the region determines a touch command corresponding to the second touch point;
  • the first processor 620 includes:
  • the response unit 621 is configured to respond to the first touch point after receiving the first touch point.
  • a block diagram of a third embodiment of a mobile terminal according to the present application includes: an inductive touch device 710, a first processor 720, and a second processor 730.
  • the inductive touch device 710 has a first area and a second area, the touch point in the first area has a first response level, and the touch point in the second area has a second response level, the first response The level is higher than the second response level;
  • the second processor 730 includes:
  • a second obtaining unit configured to obtain a first touch point of the first area in a process of determining a touch command corresponding to the second touch point according to the second touch point obtained from the second area;
  • a second determining unit 732 configured to determine, according to the second touch point obtained from the second area, a touch command corresponding to the second touch point
  • a second sending unit 733 configured to send the first touch point to the first processor 720
  • a second control unit 734 configured to control the second determining unit 732 to terminate execution according to the second area
  • the second touch point determines a touch command corresponding to the second touch point
  • the first processor 720 includes:
  • the response unit 721 is configured to respond to the first touch point after receiving the first touch point.
  • the touch mobile terminal in the embodiment of the present application has an inductive touch device, and the inductive touch device has a first area and a second area, when the first touch point and the second touch point are obtained, and When a touch point is in the first area and the second touch point is in the second area, the first touch point is responded to.
  • the touch input when a touch operation is input in different areas, since the touch command corresponding to one touch point is responded, no erroneous operation occurs; especially when the user holds the mobile terminal for operation, it is not necessary to By preventing the erroneous operation and holding only the edge of the terminal, the mobile terminal automatically responds to the useful touch command and shields the touch command generated by the erroneous operation, thereby improving the user experience.

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  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
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Description

一种触摸处理方法及移动终端 技术领域 本申请涉及通信技术领域, 特别涉及一种触摸处理方法及移动终端。 背景技术 现有带有触摸屏的终端, 包括触摸式手机或 PDA ( Personal Digital
Assistant, 个人数码助理)等, 均不设置键盘等物理按键, 所有的操作均通过 手势在触摸屏上触摸实现。 以现有的触摸式手机为例, 其通常设计为大触摸屏 显示,发明人在对现有技术的研究过程中发现, 用户在握紧手机进行触摸操作 时, 容易产生误操作, 例如, 当用户单手握住手机时, 其大拇指可能在触摸屏 上移动实现触摸操作, 但是大拇指与手掌连接的部分可能同时接触到触摸屏, 导致触摸屏感应到多个触摸操作, 以此产生多个触摸命令, 由此可能产生误操 作; 另外, 用户为了防止误操作, 通常在握住手机时比较小心, 仅握住手机的 边缘, 操作不便, 相应降低了用户的触摸操作体验。 发明内容 本申请实施例的目的在于提供一种触摸处理方法及移动终端,以解决现有 通过触摸终端实现触摸输入时容易产生误操作,降低了用户的触摸操作体验的 问题。
为解决上述技术问题, 本申请实施例提供如下技术方案:
一种触摸处理方法,应用于具有感应触摸设备的移动终端中, 所述感应触 摸设备具有第一区域和第二区域, 所述第一区域内的触摸点具有第一响应级 另 |J , 所述第二区域内的触摸点具有第二响应级别, 所述第一响应级别高于所述 第二响应级别, 所述方法包括:
获得第一触摸点和第二触摸点;
当所述第一触摸点处于所述第一区域且所述第二触摸点处于所述第二区 域时, 响应所述第一触摸点。
所述获得第一触摸点和第二触摸点具体为:在获得第一区域的第一触摸点 的过程中, 获得第二区域的第二触摸点;
所述方法还包括: 不响应所述第二触摸点。
所述获得第一触摸点和第二触摸点具体为:在获得第二区域的触摸点的过 程中, 获得第一区域的触摸点;
所述方法还包括: 终止获取所述第二触摸点。
所述获得第一触摸点和第二触摸点具体为:在同一时刻获得所述第一区域 的第一触摸点和所述第二区域的第二触摸点;
所述方法还包括: 不响应所述第二触摸点。
所述移动终端还包括第一处理器和第二处理器,所述获得第一触摸点和第 二触摸点具体为: 通过所述第二处理器获得所述第一触摸点和第二触摸点; 还包括:所述第二处理器根据从所述第二区域获得的第二触摸点确定所述 第二触摸点对应的触摸命令。
当在获得所述第二区域的第二触摸点的过程中,获得所述第一区域的第一 触摸点时, 还包括:
第二处理器发送所述第一触摸点至所述第一处理器;
所述第二处理器不执行根据所述从所述第二区域获得的第二触摸点确定 所述第二触摸点对应的触摸命令的步骤;
所述响应所述第一触摸点具体为:所述第一处理器接收到所述第一触摸点 后响应所述第一触摸点。
当在根据所述从第二区域获得的第二触摸点确定所述第二触摸点对应的 触摸命令的过程中, 获得所述第一区域的第一触摸点时, 还包括:
所述第二处理器发送所述第一触摸点至所述第一处理器;
所述第二处理器终止执行所述根据所述第二区域获得的所述第二触摸点 确定所述第二触摸点对应的触摸命令的步骤;
所述响应所述第一触摸点具体为:所述第一处理器接收到所述第一触摸点 后响应所述第一触摸点。
一种移动终端, 包含感应触摸设备, 所述感应触摸设备具有第一区域和第 二区域, 所述第一区域内的触摸点具有第一响应级别, 所述第二区域内的触摸 点具有第二响应级别, 所述第一响应级别高于所述第二响应级别,还包括第一 处理器和第二处理器, 其中,
所述第二处理器包括:
获得单元, 用于获得第一触摸点和第二触摸点;
所述第一处理器包括:
响应单元,用于当所述第一触摸点处于所述第一区域且所述第二触摸点处 于所述第二区域时, 响应所述第一触摸点。
所述第二处理器还包括: 确定单元, 用于根据从所述第二区域获得的第二 触摸点确定所述第二触摸点对应的触摸命令。
所述获得单元, 具体用于在获得所述第二区域的第二触摸点的过程中, 获 得所述第一区域的第一触摸点;
所述第二处理器还包括:
发送单元, 用于发送所述第一触摸点至所述第一处理器;
控制单元,用于控制所述确定单元不执行根据所述从所述第二区域获得的 第二触摸点确定所述第二触摸点对应的触摸命令;
所述响应单元, 具体用于在接收到所述第一触摸点后响应所述第一触摸 点。
所述获得单元,具体用于在根据所述从第二区域获得的第二触摸点确定所 述第二触摸点对应的触摸命令的过程中, 获得所述第一区域的第一触摸点; 所述第二处理器还包括:
发送单元, 用于发送所述第一触摸点至所述第一处理器;
控制单元,用于控制所述确定单元终止执行根据所述第二区域获得的所述 第二触摸点确定所述第二触摸点对应的触摸命令;
所述响应单元, 具体用于接收到所述第一触摸点后响应所述第一触摸点。 由以上本申请实施例提供的技术方案可见,本申请实施例中的触摸式移动 终端具有感应触摸设备, 感应触摸设备具有第一区域和第二区域, 当获得第一 触摸点和第二触摸点,且第一触摸点处于第一区域且第二触摸点处于第二区域 时, 响应第一触摸点。 应用本申请实施例进行触摸输入时, 当在不同区域输入 触摸操作时, 由于响应一个触摸点对应的触摸命令, 因此不会产生误操作; 特 别当用户握住移动终端进行操作时,可以不必为了防止误操作而仅握住终端边 缘, 而是由移动终端自动响应有用的触摸命令, 而屏蔽误操作而产生的触摸命 令, 由此提高了用户体验。 附图说明 图 1为本申请触摸处理方法的第一实施例流程图;
图 2为本申请触摸处理方法的第二实施例流程图;
图 3为本申请触摸处理方法的第三实施例流程图;
图 4为应用本申请触摸处理方法实施例的一种移动终端的结构示意图; 图 5为本申请移动终端的第一实施例框图;
图 6为本申请移动终端的第二实施例框图;
图 7为本申请移动终端的第三实施例框图。 具体实施方式 在如下本申请的多个实施例中,有些实施例提供了一种触摸处理方法,有 些实施例提供了一种移动终端。 本申请实施例中的移动终端,在结构上包括具 有感应触摸设备, 该感应触摸设备具有第一区域和第二区域, 第一区域内的触 摸点具有第一响应级别, 第二区域内的触摸点具有第二响应级别, 第一响应级 别高于所述第二响应级别。进一步, 本申请实施例中的移动终端还包括用于响 应触摸点的第一处理器和用于获得触摸点的第二处理器。
为了使本技术领域的人员更好地理解本申请实施例中的技术方案,并使本 申请实施例的上述目的、特征和优点能够更加明显易懂, 下面结合附图对本申 请实施例中技术方案作进一步详细的说明。 参见图 1 , 为本申请触摸处理方法的第一实施例流程图:
步骤 101 : 获得第一触摸点和第二触摸点。
其中, 可以在获得第一区域的第一触摸点的过程中, 获得第二区域的触摸 点; 可以在获得第二区域的触摸点的过程中, 获得第一区域的触摸点; 也可以 在同一时刻获得第一区域的第一触摸点和第二区域的第二触摸点。
步骤 102: 判断第一触摸点处于第一区域, 且第二触摸点处于第二区域。 步骤 103: 响应第一触摸点, 结束当前流程。
其中, 当在获得第一区域的第一触摸点的过程中, 获得第二区域的第二触 摸点, 则仅响应第一触摸点, 不响应第二触摸点; 当在获得第二区域的触摸点 的过程中, 获得第一区域的触摸点, 则仅响应第一触摸点, 并终止获得第二触 摸点; 当在同一时刻获得第一区域的第一触摸点和第二区域的第二触摸点, 则 仅响应第一触摸点, 不响应第二触摸点。
第一区域通常指对应显示屏的触摸输入区域,第二区域可以为显示屏对应 的触摸输入区域以外的一个特定触摸输入区域,所述特定区域用于触摸手势的 触摸输入区域(即, 通过釆集在多个第二触摸点来确定一触摸手势); 当然, 第一区域也可以是触摸显示屏一用于触摸输入操作的预定区域,第二区域为触 摸显示屏上的边缘范围。
由上述实施例可知, 当在不同区域输入触摸操作时, 由于响应一个触摸点 对应的触摸命令,因此不会产生误操作;特别当用户握住移动终端进行操作时, 可以不必为了防止误操作而仅握住终端边缘,而是由移动终端自动响应有用的 触摸命令, 而屏蔽误操作而产生的触摸命令, 由此提高了用户体验。
本申请实施例中, 第一处理器可以是移动终端的 CPU ( Central Processing Unit,中央处理器 ),第二处理器可以是连接感应触摸设备的 MCU(微控制器), MCU可以与 CPU相连,向 CPU发送获得的第一区域以及第二区域的触摸点, 以及向 CPU发送与获得的第一区域和第二区域的触摸点对应的触摸命令, CPU用于对接收到的触摸点和触摸命令进行响应。 当然, 上述 MCU的功能也 可以集成到 CPU中完成, 即第一处理器和第二处理器的功能可以集成在一个 处理器中完成, 对此本申请实施例不进行限制。 参见图 2, 为本申请触摸处理方法的第二实施例流程图:
步骤 201 : 第二处理器分别从第一区域获得第一触摸点, 以及从第二区域 获得第二触摸点。
本申请实施例中, 第二处理器连接移动终端内的感应触摸设备, 感应触摸 设备通常为触摸屏, 第一区域通常指对应显示屏的触摸输入区域, 第二区域通 常指仅接收触摸手势的触摸输入区域;或者也可以预先定义第一区域为触摸屏 上触摸输入操作涉及的中心区范围, 第二区域为触摸屏上的边缘范围, 即容易 被用户手握时碰触, 但不用于产生触摸命令的区域。 需要说明的是, 上述第一 区域和第二区域也可以根据实际应用灵活定义,在误操作时能够响应有用的触 摸输入即可。
步骤 202: 第二处理器根据从第二区域获得的第二触摸点确定第二触摸点 对应的触摸命令。
步骤 203: 第二处理器发送第一触摸点和第二触摸点对应的触摸命令至第 一处理器。
步骤 204: 第一处理器根据第一触摸点响应第一触摸点对应的触摸命令, 以及响应第二触摸点对应的触摸命令。
步骤 205: 判断第二处理器是否在获得第二区域的第二触摸点的过程中同 时获得第一区域的第一触摸点, 若是, 则执行步骤 206; 否则, 返回步骤 201。
步骤 206: 第二处理器发送第一触摸点至第一处理器, 且不执行根据从第 二区域获得的第二触摸点确定第二触摸点对应的触摸命令的步骤。
第二处理器在获得第二区域的第二触摸点的过程中同时获得第一区域的 第一触摸点。 此时对应的误操作场景可以为, 用户手握移动终端时, 手掌持续 碰触第二区域,但未从第二区域上离开,则第二处理器会持续获得第二触摸点; 此时, 用户在第一区域内进行触摸操作, 第二处理器获得第一触摸点。 在上述 情况下, 虽然第二处理器同时获得了第一触摸点和第二触摸点,但由于第二触 摸点持续获取则可判断其为误操作, 不予响应, 即第二处理器不执行根据从第 二区域获得的第二触摸点确定第二触摸点对应的触摸命令,而仅发送第一触摸 点至第一处理器。 步骤 207: 第一处理器接收到第一触摸点后响应第一触摸点, 结束当前流 程。
由于第一处理器根本没有接收到第二处理器发送的第二触摸点对应的触 摸命令, 而仅接收到第一触摸点, 因此在第一区域和第二区域均有触摸输入, 且第二区域的触摸输入为误操作时,移动终端可以仅响应第一触摸点, 而屏蔽 第二触摸点。
参见图 3 , 为本申请触摸处理方法的第三实施例流程图:
步骤 301 : 第二处理器分别从第一区域获得第一触摸点, 以及从第二区域 获得第二触摸点。
本申请实施例中, 第二处理器连接移动终端内的感应触摸设备, 感应触摸 设备通常为触摸屏, 第一区域通常指对应显示屏的触摸输入区域, 第二区域通 常指仅接收触摸手势的触摸输入区域;或者也可以预先定义第一区域为触摸屏 上触摸输入操作涉及的中心区范围, 第二区域为触摸屏上的边缘范围, 即容易 被用户手握时碰触, 但不用于产生触摸命令的区域。 需要说明的是, 上述第一 区域和第二区域也可以根据实际应用灵活定义,在误操作时能够响应有用的触 摸输入即可。
步骤 302: 第二处理器根据从所述第二区域获得的第二触摸点确定所述第 二触摸点对应的触摸命令。
步骤 303 : 第二处理器发送第一触摸点和第二触摸点对应的触摸命令至第 一处理器。
步骤 304: 第一处理器根据第一触摸点响应第一触摸点对应的触摸命令, 以及响应第二触摸点对应的触摸命令。
步骤 305: 判断第二处理器是否在根据第二触摸点确定对应的触摸命令的 过程中获得第一区域的第一触摸点, 若是, 则执行步骤 306; 否则, 返回步骤 301。
步骤 306: 第二处理器发送第一触摸点至所述第一处理器。
步骤 307: 第二处理器终止执行根据所述第二区域获得的第二触摸点确定 第二触摸点对应的触摸命令。 第二处理器在根据第二触摸点确定对应的触摸命令的过程中获得第一区 域的第一触摸点。 此时对应的误操作场景可以为, 用户手握移动终端时, 手掌 瞬间碰触第二区域, 则相应的第二处理器会获得第二触摸点, 并根据第二触摸 点确定对应的触摸命令; 此时, 用户在第一区域内进行触摸操作, 第二处理器 获得第一触摸点。在上述情况下, 虽然第二处理器已经开始根据第二触摸点确 定触摸命令,但是由于第一区域已有第一触摸点输入, 因此移动终端判断输入 的第二触摸点为误操作,从而终止正在根据第二区域获得的第二触摸点确定第 二触摸点对应的触摸命令的操作, 并仅发送第一触摸点至第一处理器。
步骤 308: 第一处理器接收到第一触摸点后响应第一触摸点, 结束当前流 程。
由于第一处理器根本没有接收到第二处理器发送的第二触摸点对应的触 摸命令, 而仅接收到第一触摸点, 因此在第一区域和第二区域均有触摸输入, 且第二区域的触摸输入为误操作时,移动终端可以仅响应第一触摸点, 而屏蔽 第二触摸点。
参见图 4, 为应用本申请触摸处理方法的一种移动终端的结构示意图。 该 移动终端包括: 显示屏 410和触摸屏 420。 其中, 触摸屏 420包括对应显示屏 410的第一触摸区域 421 , 和仅用于接收触摸手势的第二触摸区域 422,如图 4 中第一触摸区域 421与第二触摸区域 422之间在虚线示意处分隔。 另外,触摸 屏 420直接与 MCU相连, MCU与 CPU相连( MCU和 CPU图 4中均未示出)。 应用图 4所示的移动终端:
当在获得第二触摸区域 422 的第二触摸点的过程中, 获得第一触摸区域 421的第一触摸点时, MCU发送第一触摸点至 CPU, MCU不执行根据从第二 触摸区域 422获得的第二触摸点确定第二触摸点对应的触摸命令的步骤,同时 由 CPU接收到第一触摸点后响应第一触摸点;
当在根据从第二触摸区域 422 获得的第二触摸点确定第二触摸点对应的 触摸命令的过程中, 获得第一触摸区域 421的第一触摸点时, MCU发送第一 触摸点至 CPU, MCU终止执行根据从第二触摸区域 422获得的第二触摸点确 定第二触摸点对应的触摸命令, 同时由 CPU接收到第一触摸点后响应该第一 触摸点。
本申请触摸处理方法的实施例相对应, 本申请还提供了移动终端的实施 例。
参见图 5 , 为本申请移动终端的第一实施例框图, 该移动终端包括: 感应 触摸设备 510、 第一处理器 520和第二处理器 530。
其中,感应触摸设备 510具有第一区域和第二区域, 所述第一区域内的触 摸点具有第一响应级别, 所述第二区域内的触摸点具有第二响应级别, 所述第 一响应级别高于所述第二响应级别;
所述第二处理器 530包括:
获得单元 531 , 用于从所述感应触摸设备 510获得第一触摸点和第二触摸 点;
所述第一处理器 520包括:
响应单元 521 , 用于当所述第一触摸点处于所述第一区域且所述第二触摸 点处于所述第二区域时, 响应所述第一触摸点。
参见图 6, 为本申请移动终端的第二实施例框图, 该移动终端包括: 感应 触摸设备 610、 第一处理器 620和第二处理器 630。
其中,感应触摸设备 610具有第一区域和第二区域, 所述第一区域内的触 摸点具有第一响应级别, 所述第二区域内的触摸点具有第二响应级别, 所述第 一响应级别高于所述第二响应级别;
所述第二处理器 630包括:
第一获得单元 631 , 用于在获得所述第二区域的第二触摸点的过程中, 获 得所述第一区域的第一触摸点;
第一确定单元 632, 用于根据从所述第二区域获得的第二触摸点确定所述 第二触摸点对应的触摸命令;
第一发送单元 633 , 用于发送所述第一触摸点至所述第一处理器 620; 第一控制单元 634, 用于控制所述第一确定单元 632不执行根据所述从所 述第二区域获得的第二触摸点确定所述第二触摸点对应的触摸命令; 所述第一处理器 620包括:
响应单元 621 , 用于在接收到所述第一触摸点后响应所述第一触摸点。 参见图 7 , 为本申请移动终端的第三实施例框图, 该移动终端包括: 感应 触摸设备 710、 第一处理器 720和第二处理器 730。
其中,感应触摸设备 710具有第一区域和第二区域, 所述第一区域内的触 摸点具有第一响应级别, 所述第二区域内的触摸点具有第二响应级别, 所述第 一响应级别高于所述第二响应级别;
所述第二处理器 730包括:
第二获得单元,用于在根据所述从第二区域获得的第二触摸点确定所述第 二触摸点对应的触摸命令的过程中, 获得所述第一区域的第一触摸点;
第二确定单元 732, 用于根据从所述第二区域获得的第二触摸点确定所述 第二触摸点对应的触摸命令;
第二发送单元 733 , 用于发送所述第一触摸点至所述第一处理器 720; 第二控制单元 734, 用于控制所述第二确定单元 732终止执行根据所述第 二区域获得的所述第二触摸点确定所述第二触摸点对应的触摸命令;
所述第一处理器 720包括:
响应单元 721 , 用于在接收到所述第一触摸点后响应所述第一触摸点。
通过以上的实施方式的描述可知,本申请实施例中的触摸式移动终端具有 感应触摸设备,感应触摸设备具有第一区域和第二区域, 当获得第一触摸点和 第二触摸点,且第一触摸点处于第一区域且第二触摸点处于第二区域时, 响应 第一触摸点。应用本申请实施例进行触摸输入时, 当在不同区域输入触摸操作 时, 由于响应一个触摸点对应的触摸命令, 因此不会产生误操作; 特别当用户 握住移动终端进行操作时, 可以不必为了防止误操作而仅握住终端边缘, 而是 由移动终端自动响应有用的触摸命令, 而屏蔽误操作而产生的触摸命令, 由此 提高了用户体验。
本领域的技术人员可以清楚地了解到本申请实施例中的技术可借助软件 加必需的通用硬件平台的方式来实现。基于这样的理解, 本申请实施例中的技 术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现 出来, 该计算机软件产品可以存储在存储介质中, 如 ROM/RAM、 磁碟、 光盘 等, 包括若干指令用以使得一台计算机设备(可以是个人计算机, 服务器, 或 者网络设备等)执行本申请各个实施例或者实施例的某些部分所述的方法。
本说明书中的各个实施例均釆用递进的方式描述,各个实施例之间相同相 似的部分互相参见即可, 每个实施例重点说明的都是与其他实施例的不同之 处。 尤其, 对于系统实施例而言, 由于其基本相似于方法实施例, 所以描述的 比较简单, 相关之处参见方法实施例的部分说明即可。
以上所述的本申请实施方式, 并不构成对本申请保护范围的限定。任何在 本申请的精神和原则之内所作的修改、等同替换和改进等, 均应包含在本申请 的保护范围之内。

Claims

权利要求书
1、 一种触摸处理方法, 其特征在于, 应用于具有感应触摸设备的移动终 端中, 所述感应触摸设备具有第一区域和第二区域, 所述第一区域内的触摸点 具有第一响应级别, 所述第二区域内的触摸点具有第二响应级别, 所述第一响 应级别高于所述第二响应级别, 所述方法包括:
获得第一触摸点和第二触摸点;
当所述第一触摸点处于所述第一区域且所述第二触摸点处于所述第二区 域时, 响应所述第一触摸点。
2、 根据权利要求 1所述的方法, 其特征在于, 所述获得第一触摸点和第 二触摸点具体为: 在获得第一区域的第一触摸点的过程中, 获得第二区域的第 二触摸点;
所述方法还包括: 不响应所述第二触摸点。
3、 根据权利要求 1所述的方法, 其特征在于, 所述获得第一触摸点和第 二触摸点具体为:在获得第二区域的触摸点的过程中,获得第一区域的触摸点; 所述方法还包括: 终止获取所述第二触摸点。
4、 根据权利要求 1所述的方法, 其特征在于, 所述获得第一触摸点和第 二触摸点具体为:在同一时刻获得所述第一区域的第一触摸点和所述第二区域 的第二触摸点;
所述方法还包括: 不响应所述第二触摸点。
5、 根据权利要求 1任意一项所述的方法, 其特征在于, 所述移动终端还 包括第一处理器和第二处理器, 所述获得第一触摸点和第二触摸点具体为: 通 过所述第二处理器获得所述第一触摸点和第二触摸点;
还包括:所述第二处理器根据从所述第二区域获得的第二触摸点确定所述 第二触摸点对应的触摸命令。
6、 根据权利要求 5所述的方法, 其特征在于, 当在获得所述第二区域的 第二触摸点的过程中, 获得所述第一区域的第一触摸点时, 还包括: 第二处理器发送所述第一触摸点至所述第一处理器;
所述第二处理器不执行根据所述从所述第二区域获得的第二触摸点确定 所述第二触摸点对应的触摸命令的步骤;
所述响应所述第一触摸点具体为:所述第一处理器接收到所述第一触摸点 后响应所述第一触摸点。
7、 根据权利要求 5所述的方法, 其特征在于, 当在根据所述从第二区域 获得的第二触摸点确定所述第二触摸点对应的触摸命令的过程中,获得所述第 一区域的第一触摸点时, 还包括:
所述第二处理器发送所述第一触摸点至所述第一处理器;
所述第二处理器终止执行所述根据所述第二区域获得的所述第二触摸点 确定所述第二触摸点对应的触摸命令的步骤;
所述响应所述第一触摸点具体为:所述第一处理器接收到所述第一触摸点 后响应所述第一触摸点。
8、 一种移动终端, 包含感应触摸设备, 其特征在于, 所述感应触摸设备 具有第一区域和第二区域, 所述第一区域内的触摸点具有第一响应级别, 所述 第二区域内的触摸点具有第二响应级别,所述第一响应级别高于所述第二响应 级别, 还包括第一处理器和第二处理器, 其中,
所述第二处理器包括:
获得单元, 用于获得第一触摸点和第二触摸点;
所述第一处理器包括:
响应单元,用于当所述第一触摸点处于所述第一区域且所述第二触摸点处 于所述第二区域时, 响应所述第一触摸点。
9、 根据权利要求 8所述的移动终端, 其特征在于, 所述第二处理器还包 括: 确定单元, 用于根据从所述第二区域获得的第二触摸点确定所述第二触摸 点对应的触摸命令。
10、 根据权利要求 9所述的移动终端, 其特征在于,
所述获得单元, 具体用于在获得所述第二区域的第二触摸点的过程中, 获 得所述第一区域的第一触摸点;
所述第二处理器还包括:
发送单元, 用于发送所述第一触摸点至所述第一处理器;
控制单元,用于控制所述确定单元不执行根据所述从所述第二区域获得的 第二触摸点确定所述第二触摸点对应的触摸命令;
所述响应单元, 具体用于在接收到所述第一触摸点后响应所述第一触摸 点。
11、 根据权利要求 9所述的移动终端, 其特征在于, 所述获得单元, 具体 用于在根据所述从第二区域获得的第二触摸点确定所述第二触摸点对应的触 摸命令的过程中, 获得所述第一区域的第一触摸点;
所述第二处理器还包括:
发送单元, 用于发送所述第一触摸点至所述第一处理器;
控制单元,用于控制所述确定单元终止执行根据所述第二区域获得的所述 第二触摸点确定所述第二触摸点对应的触摸命令;
所述响应单元, 具体用于接收到所述第一触摸点后响应所述第一触摸点。
PCT/CN2010/080229 2009-12-30 2010-12-24 一种触摸处理方法及移动终端 WO2011079749A1 (zh)

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