WO2018107896A1 - 一种分屏防误触方法、装置、移动终端及存储介质 - Google Patents

一种分屏防误触方法、装置、移动终端及存储介质 Download PDF

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Publication number
WO2018107896A1
WO2018107896A1 PCT/CN2017/107533 CN2017107533W WO2018107896A1 WO 2018107896 A1 WO2018107896 A1 WO 2018107896A1 CN 2017107533 W CN2017107533 W CN 2017107533W WO 2018107896 A1 WO2018107896 A1 WO 2018107896A1
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WO
WIPO (PCT)
Prior art keywords
touch
target
touch operation
screen area
screen
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PCT/CN2017/107533
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English (en)
French (fr)
Inventor
张强
葛以学
汪昊
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广东欧珀移动通信有限公司
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Publication of WO2018107896A1 publication Critical patent/WO2018107896A1/zh

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    • 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
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction 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
    • G06F3/0488Interaction 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
    • G06F3/04886Interaction 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 by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04808Several contacts: gestures triggering a specific function, e.g. scrolling, zooming, right-click, when the user establishes several contacts with the surface simultaneously; e.g. using several fingers or a combination of fingers and pen

Definitions

  • Embodiments of the present invention relate to an application technology of an electronic device, and in particular, to a split-screen anti-missing method, device, mobile terminal, and storage medium.
  • the split screen operation application is generated, that is, the screen of the entire smart terminal is divided into a plurality of small screens, and each small screen displays an application interface, which simplifies the operation steps of the user switching the application.
  • the finger that performs the click operation and the palm that generates the false touch are located in different split screen areas, causing a false touch.
  • the invention provides a split screen anti-missing method, device, mobile terminal and storage medium to improve the recognition rate of the touch operation in the split screen.
  • an embodiment of the present invention provides a split-screen anti-missing method, and the split-screen anti-missing method includes:
  • the split screen instruction Receiving a split screen instruction input by a user, the split screen instruction dividing the screen into a plurality of screen areas;
  • the embodiment of the present invention further provides a split-screen anti-missing device, and the split-screen anti-missing device includes:
  • a split screen instruction input module configured to receive a split screen instruction input by a user, where the split screen instruction divides the screen into multiple screen areas;
  • a target screen area determining module configured to determine a target screen area according to historical operation information of the user if a touch operation is respectively acquired in at least two screen areas;
  • a touch operation response module is configured to respond to a touch operation in the target screen area.
  • an embodiment of the present invention further provides a mobile terminal, including a memory, a processor, and a computer program stored on the memory and operable on the processor, where the processor implements the following steps when executing the computer program Receiving a split screen instruction input by a user, the split screen instruction dividing the screen into a plurality of screen areas;
  • a storage medium in which the program code is stored; when the program code is executed, the processor performs the following operations:
  • the split screen instruction Receiving a split screen instruction input by a user, the split screen instruction dividing the screen into a plurality of screen areas;
  • a split screen instruction input by a user is received, and the split screen instruction may divide the screen into multiple screen areas. If a touch operation is respectively acquired in at least two screen areas, the target is determined according to the historical operation information of the user. The screen area, and finally responds to touch operations in the target screen area.
  • the target screen area is determined by the user's history record, responding to the touch operation in the target area screen area, shielding the touch operation in the non-target screen area, effectively preventing the split screen from being touched, thereby improving the recognition of the touch operation in the split screen rate.
  • FIG. 1 is a flow chart of a split screen anti-missing method according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic diagram of dividing a screen into two screen areas in the first embodiment of the present invention
  • FIG. 3 is a flow chart of another split screen anti-missing method according to Embodiment 1 of the present invention.
  • FIG. 5 is a flowchart of another split screen anti-missing method according to Embodiment 1 of the present invention.
  • FIG. 6 is a schematic structural view of a split screen anti-missing device according to Embodiment 2 of the present invention.
  • FIG. 7 is a schematic structural view of a split screen anti-missing device according to Embodiment 3 of the present invention.
  • FIG. 8 is a schematic structural diagram of a mobile terminal according to Embodiment 4 of the present invention.
  • FIG. 1 is a flowchart of a split-screen anti-missing method according to Embodiment 1 of the present invention.
  • the present embodiment is applicable to a situation in which an intelligent terminal prevents an accidental touch when splitting a screen, and the method can be prevented by a touch screen of the mobile terminal.
  • the touch device is implemented, wherein the device can be implemented by software and/or hardware, and can generally be integrated in a mobile terminal.
  • the split screen anti-missing method specifically includes the following steps:
  • Step 110 Receive a split screen instruction input by a user, and divide the screen into a plurality of screen areas.
  • the split screen command divides the screen into two or more screen areas, and displays an application interface in each screen area.
  • the screen 210 of the smart terminal is divided into an upper screen area 211 and a lower screen area 212.
  • Different applications are displayed in the upper screen area 211 and the lower screen area 212, for example, the chat application interface is displayed in the upper screen area 211, and the news webpage and the shopping software interface are displayed in the lower screen area 212 (Jingdong, Taobao or Jumeiyou, etc.) ) or the reader interface and so on.
  • the upper screen area 211 and the lower screen area 212 respectively display application interfaces corresponding to different accounts of the unified application.
  • Step 120 if a touch operation is respectively acquired in at least two screen areas, according to the user
  • the historical operation information determines the target screen area.
  • the historical operation information may be the continuity of the touch operation, the same position of the two touch operations before or after, or the same object pointed to by the two touch operations.
  • the screen area of the current operation location is determined as the target screen area.
  • the current operation and the previous touch operation belong to the same application, or are the same operation (such as continuous return) or logically sequential operations, or the same operation of the operation object. The same operation can be performed to trigger the same operation.
  • Step 130 responding to a touch operation in the target screen area.
  • the smart terminal after determining the target screen area, responds to the touch operation in the target screen area, and shields the touch operations in the other non-target areas.
  • the terminal responds to the operation in the upper screen area 211, masking the touch operation in the lower screen area 212.
  • the technical solution provided by the embodiment receives a split screen command input by the user, and the split screen command can divide the screen into multiple screen areas. If a touch operation is respectively acquired in at least two screen areas, the user operates according to the historical operation of the user. The information determines the target screen area and finally responds to touch operations in the target screen area.
  • the finger that performs the click operation and the palm that generates the false touch are located in different split screen areas, causing the two screen areas to respond, resulting in Mistaken.
  • the target screen area is determined by the user's history record, and the touch operation in the target area screen area is responded to, and the touch operation in the non-target screen area is shielded, thereby effectively preventing the split screen from being touched, thereby improving the split screen.
  • the recognition rate of the touch operation is determined by the user's history record, and the touch operation in the target area screen area is responded to, and the touch operation in the non-target screen area is shielded, thereby effectively preventing the split screen from being touched, thereby improving the split screen.
  • FIG. 3 is a flowchart of a split screen anti-missing method according to Embodiment 1 of the present invention. As shown in FIG. 3, step 120 includes:
  • step 121 continuity of the touch operation is determined.
  • the continuity of the touch operation may be a continuous touch operation of the user in a certain screen area, for example, continuous input of text by using an input method, continuous pull-down of a news webpage, or playing a game requires continuous input corresponding to the game action. Touch operation, etc.
  • Step 122 Determine a target screen area according to the continuity of the touch operation.
  • the method of determining the target screen area may be: when the smart terminal recognizes that the touch operation in a certain screen area has continuity, the screen is The screen area is determined as the target screen area.
  • the upper screen area 211 in FIG. 2 displays the chat application interface
  • the user uses the chat application to send and receive information, and needs to continuously input characters in the upper screen area 211 by using the output method or need to press the voice input to input the voice, and the terminal recognizes The continuity of the series of touch operations to the user determines the upper screen area as the target screen area.
  • the technical solution provided by the embodiment determines the continuity of the touch operation, determines the target screen area according to the continuity of the touch operation, and can enable the terminal to flexibly determine the target screen area, thereby effectively preventing false touches.
  • FIG. 4 is a flowchart of a split screen anti-missing method according to Embodiment 1 of the present invention. As shown in FIG. 4, step 120 includes:
  • Step 123 if there is a first touch operation in the first screen area, and the first touch operation is the same as the position of the previous touch operation or the object pointed by the first touch operation is the same as the object pointed to by the previous touch operation, then A screen area is determined as the target screen area.
  • the first screen area may be any sub-screen area after the screen is divided, for example, the upper screen area 211 or the lower screen area 212 in FIG. 2 .
  • the first touch operation may be a current touch operation input in the first touch area.
  • the first touch operation is the same as the position of the previous touch operation. exemplarily, taking the chat application interface as an example, the position of the previous touch operation is the position of the voice input button, and the position of the first touch operation is also the position of the voice input button.
  • the object pointed to by the first touch operation is the same as the object pointed to by the previous touch operation. exemplarily, taking the news webpage as an example, the object pointed to by the previous touch operation is a return button, and the object pointed by the first touch operation is also a return button.
  • step 130 includes:
  • Step 131 responding to the first touch operation in the first screen area.
  • the first touch operation in the first screen area is responded.
  • FIG. 5 is a flowchart of a split-screen anti-missing method according to Embodiment 1 of the present invention. As shown in FIG. 5, step 130 includes:
  • Step 132 If there are at least two touch points in the target screen area, the target touch point is determined from the at least two touch points.
  • the non-target screen area since the non-target screen area has been blocked, it has been possible to avoid the occurrence of false touches.
  • the target area is operated, there is still a case of false touch.
  • the target touch point When there are multiple touch points in the target screen area, only one of the touch points is a normal touch operation, and other touch points are false touches.
  • the generated touch point needs to determine the target touch point from the plurality of touch points, that is, the touch point generated by the normal touch operation.
  • the method of determining the target touch point from the at least two touch points may be: searching for the edge error contact according to the position and shape of the touch point, and then shielding the edge touch point to obtain the target touch point.
  • Step 133 responding to the target touch point.
  • the operation instruction is executed on the processing object according to the target touch point acquisition processing object and the operation instruction triggered by the target touch point.
  • the step 132 includes: searching for the edge error contact according to the position and shape of the touch point, and shielding the edge touch point to obtain the target touch point.
  • the position of the touch point can be any position of the screen.
  • the touch point when the user holds the smart terminal with one hand, for example, the right hand grip is taken as an example. If the touch point is at the right edge position, the touch point can be determined as an edge miscontact.
  • the shape of the touch point may be a palm shape or a palm print. In this application scenario, in the application scenario, if the shape of the touch point is palm shape and the contact surface area is larger than the preset area or the palm surface is in the contact surface, Then it can be determined that the touch point is an edge miscontact. When it is determined which touch points are non-contact at the edges, the edge error contacts are shielded from being unresponsive, and the remaining touch points are the target touch points, and the smart terminal responds thereto.
  • FIG. 6 is a flowchart of a split-screen anti-missing method according to Embodiment 2 of the present invention. As a further description of Embodiment 1, the method includes:
  • Step 210 Receive a split screen instruction input by the user, and divide the screen into two screen areas according to the split screen instruction.
  • Step 220 If a touch operation is respectively acquired in two screen areas, the target screen area is determined according to the continuity of the touch operation.
  • Step 230 If there are at least two touch points in the target screen area, the edge error contacts are searched according to the position and shape of the touch points.
  • Step 240 Mask the edge touch point to obtain a target touch point.
  • Step 250 Respond to the target touch point.
  • FIG. 7 is a schematic structural diagram of a split-screen anti-missing device according to Embodiment 3 of the present invention.
  • the split-screen anti-missing device includes: a split-screen command input module 610, and a target screen region determining module 620. And a touch operation response module 630.
  • the split screen instruction input module 610 is configured to receive a split screen instruction input by the user, and the split screen instruction divides the screen into a plurality of screen areas;
  • the target screen area determining module 620 is configured to determine a target screen area according to the historical operation information of the user if the touch operation is respectively acquired in the at least two screen areas;
  • the touch operation response module 630 is configured to respond to a touch operation in the target screen area.
  • the target screen area determining module 620 is configured to:
  • the target screen area is determined according to the continuity of the touch operation.
  • the target screen area determining module 620 is configured to:
  • the first screen area is determined as Target screen area
  • the touch operation response module 630 is configured to:
  • the touch operation response module is configured to:
  • the touch operation response module 630 is configured to:
  • the above apparatus can perform the methods provided by all the foregoing embodiments of the present invention, and has the corresponding functional modules and advantageous effects for performing the above methods.
  • the above apparatus can perform the methods provided by all the foregoing embodiments of the present invention, and has the corresponding functional modules and advantageous effects for performing the above methods.
  • FIG. 8 is a schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • the mobile terminal may include: a casing (not shown), a memory 801, a central processing unit (CPU) 802 (also referred to as a processor, hereinafter referred to as a CPU), and a circuit board ( Not shown in the drawing) and power supply circuit (not shown).
  • CPU central processing unit
  • FIG. 8 the mobile terminal may include: a casing (not shown), a memory 801, a central processing unit (CPU) 802 (also referred to as a processor, hereinafter referred to as a CPU), and a circuit board ( Not shown in the drawing) and power supply circuit (not shown).
  • CPU central processing unit
  • the circuit board is disposed inside a space enclosed by the casing; the CPU 802 and the memory 801 are disposed on the circuit board; and the power circuit is configured to supply power to each circuit or device of the mobile terminal
  • the memory 801 is configured to store executable program code; the CPU 802 runs a program corresponding to the executable program code by reading executable program code stored in the memory 801 for execution: receiving a split screen instruction input by the user, the split screen instruction divides the screen into a plurality of screen areas; if a touch operation is respectively acquired in at least two screen areas, determining a target screen area according to the historical operation information of the user; The touch operation in the target screen area responds.
  • the mobile terminal further includes: a peripheral interface 803, an RF (Radio Frequency) circuit 805, an audio circuit 806, a speaker 811, a power management chip 808, an input/output (I/O) subsystem 809, a touch screen 812, and others.
  • Input/control device 810 and external port 804 are communicated via one or more communication buses or signal lines 807.
  • the illustrated mobile terminal 800 is merely one example of a mobile terminal, and that the mobile terminal 800 may have more or fewer components than those shown in the figures, and two or more components may be combined. Or it can have different component configurations.
  • the various components shown in the figures can be implemented in hardware, software, or a combination of hardware and software, including one or more signal processing and/or application specific integrated circuits.
  • the mobile terminal for implementing the anti-missing function provided in this embodiment is described in detail below.
  • the mobile terminal takes a mobile phone as an example.
  • the memory 801 can be accessed by the CPU 802, the peripheral interface 803, etc., and the memory 801 can include a high speed random access memory, and can also include a non-volatile memory, such as one or more magnetic disk storage devices, flash memory devices. Or other volatile solid-state storage devices.
  • a non-volatile memory such as one or more magnetic disk storage devices, flash memory devices. Or other volatile solid-state storage devices.
  • Peripheral interface 803, which can connect the input and output peripherals of the device to CPU 802 and memory 801.
  • I/O subsystem 809 which can connect input and output peripherals on the device, such as touch screen 812 and other input/control devices 810, to peripheral interface 803.
  • I/O subsystem 809 can include display controller 8091 and one or more inputs for controlling other input/control devices 810 Into the controller 8092.
  • one or more input controllers 8092 receive electrical signals from other input/control devices 810 or transmit electrical signals to other input/control devices 810, and other input/control devices 810 may include physical buttons (press buttons, rocker buttons, etc.) ), dial, slide switch, joystick, click wheel.
  • the input controller 8092 can be connected to any of the following: a keyboard, an infrared port, a USB interface, and a pointing device such as a mouse.
  • the touch screen 812 can be a resistive type, a capacitive inductive type, an infrared type or a surface acoustic wave type.
  • the touch screen 812 can be: external, built-in or integrated.
  • the touch screen 812 can be: a vector pressure sensing technology touch screen, a resistive technology touch screen, a capacitive technology touch screen, an infrared technology touch screen or a surface acoustic wave technology touch screen.
  • the touch screen 812 is an input interface and an output interface between the user terminal and the user, and displays the visual output to the user.
  • the visual output may include graphics, text, icons, videos, and the like.
  • the touch screen 812 sends an electrical signal (such as an electrical signal of the contact surface) triggered by the user on the touch screen to the processor 802.
  • Display controller 8091 in I/O subsystem 809 receives an electrical signal from touch screen 812 or an electrical signal to touch screen 812.
  • the touch screen 812 detects the contact on the touch screen, and the display controller 8091 converts the detected contact into an interaction with the user interface object displayed on the touch screen 812, that is, realizes human-computer interaction, and the user interface object displayed on the touch screen 812 may be running.
  • the icon of the game, the icon of the network to the corresponding network, and the like.
  • the device may also include a light mouse, which is a touch sensitive surface that does not display a visual output, or an extension of a touch sensitive surface formed by the touch screen.
  • the RF circuit 805 is mainly used for establishing communication between the mobile phone and the wireless network (ie, the network side), and realizing data reception and transmission between the mobile phone and the wireless network. For example, sending and receiving short messages, emails, and the like. Specifically, the RF circuit 805 receives and transmits an RF signal, which is also referred to as an electromagnetic signal, and the RF circuit 805 converts the electrical signal into an electromagnetic signal or converts the electromagnetic signal into an electrical signal, and through the electromagnetic signal and communication network and other devices Communicate.
  • an RF signal which is also referred to as an electromagnetic signal
  • RF circuitry 805 may include known circuitry for performing these functions including, but not limited to, an antenna system, an RF transceiver, one or more amplifiers, a tuner, one or more oscillators, a digital signal processor, a CODEC ( COder-DECoder, codec) Chipset, Subscriber Identity Module (SIM), etc.
  • an antenna system an RF transceiver, one or more amplifiers, a tuner, one or more oscillators, a digital signal processor, a CODEC ( COder-DECoder, codec) Chipset, Subscriber Identity Module (SIM), etc.
  • CODEC COder-DECoder, codec
  • SIM Subscriber Identity Module
  • the audio circuit 806 is mainly used to receive audio data from the peripheral interface 803, convert the audio data into an electrical signal, and transmit the electrical signal to the speaker 811.
  • the speaker 811 is configured to restore the voice signal received by the mobile phone from the wireless network through the RF circuit 805 to sound and play the sound to the user.
  • the power management chip 808 is used for power supply and power management of the hardware connected to the CPU 802, the I/O subsystem, and the peripheral interface.
  • the mobile terminal may further include a camera, a Bluetooth module, and the like, and details are not described herein.
  • the central processing unit 802 is configured to:
  • the split screen instruction Receiving a split screen instruction input by a user, the split screen instruction dividing the screen into a plurality of screen areas;
  • the determining the target screen area according to the historical operation information of the user includes:
  • a target screen area is determined according to the continuity of the touch operation.
  • the determining the target screen area according to the historical operation information of the user includes:
  • the first screen area is determined as a target screen area
  • the responding to the touch operation in the target screen area comprises:
  • the responding to the touch operation in the target screen area includes:
  • the determining the target touch point from the at least two touch points comprises:
  • the edge touch point is shielded to obtain a target touch point.
  • a storage medium in which program code is stored; when the program code is executed, the processor performs the following operations:
  • the split screen instruction Receiving a split screen instruction input by a user, the split screen instruction dividing the screen into a plurality of screen areas;
  • the determining the target screen area according to the historical operation information of the user includes:
  • a target screen area is determined according to the continuity of the touch operation.
  • the determining the target screen area according to the historical operation information of the user includes:
  • the first screen area is determined as a target screen area
  • the responding to the touch operation in the target screen area comprises:
  • the responding to the touch operation in the target screen area includes:
  • the determining the target touch point from the at least two touch points comprises:
  • the edge touch point is shielded to obtain a target touch point.

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  • General Engineering & Computer Science (AREA)
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Abstract

一种分屏防误触方法、装置及终端。该分屏防误触方法包括:接收用户输入的分屏指令,分屏指令将屏幕划分为多个屏幕区域(S101);如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域(S120);对目标屏幕区域中的触摸操作进行响应(S130)。该分屏防误触方法、装置及终端有效防止分屏误触,从而提高分屏中触摸操作的识别率。

Description

一种分屏防误触方法、装置、移动终端及存储介质 技术领域
本发明实施例涉及电子设备应用技术,尤其涉及一种分屏防误触方法、装置、移动终端及存储介质。
背景技术
随着互联网技术的高速发展及智能终端的广泛应用,用户在操作智能终端时可以同时打开多个应用,在单屏操作的情况下,用户从一个应用界面切换到另一个应用界面,需要先将第一个应用界面关闭再打开另一个应用的界面,这样操作既繁琐且浪费时间。此时,分屏操作应用而生,即将整个智能终端的屏幕分成多个小的屏幕,每个小屏幕显示一个应用界面,简化了用户切换应用的操作步骤。
然而,在分屏状态下,当用户单手持握智能终端时,进行点击操作的手指以及产生误触的手掌位于不同的分屏屏幕区域中,造成误触。
发明内容
本发明提供一种分屏防误触方法、装置、移动终端及存储介质,以提高分屏中触摸操作的识别率。
第一方面,本发明实施例提供了一种分屏防误触方法,该分屏防误触方法,包括:
接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
对所述目标屏幕区域中的触摸操作进行响应。
第二方面,本发明实施例还提供了一种分屏防误触装置,该分屏防误触装置,包括:
分屏指令输入模块,用于接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
目标屏幕区域确定模块,用于如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
触摸操作响应模块,用于对所述目标屏幕区域中的触摸操作进行响应。
第三方面,本发明实施例还提供了一种移动终端,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述计算机程序时实现以下步骤:接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
对所述目标屏幕区域中的触摸操作进行响应。
第四方面,公开了一种存储介质,所述存储介质中存储有程序代码;当所述程序代码被执行时,处理器执行以下操作:
接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
对所述目标屏幕区域中的触摸操作进行响应。
本发明实施例,接收用户输入的分屏指令,该分屏指令可以将屏幕划分为多个屏幕区域,如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域,最后对目标屏幕区域中的触摸操作进行响应。通过用户的历史记录确定目标屏幕区域,对目标区屏幕区域中的触摸操作进行响应,对非目标屏幕区域中的触摸操作进行屏蔽,有效防止分屏误触,从而提高分屏中触摸操作的识别率。
附图说明
图1是本发明实施例一中的一种分屏防误触方法的流程图;
图2是本发明实施例一中的将屏幕划分成两个屏幕区域的示意图;
图3是本发明实施例一中的另一种分屏防误触方法的流程图;
图4是本发明实施例一中的另一种分屏防误触方法的流程图;
图5是本发明实施例一中的另一种分屏防误触方法的流程图;
图6是本发明实施例二中的一种分屏防误触装置的结构示意图;
图7是本发明实施例三中的一种分屏防误触装置的结构示意图;
图8是本发明实施例四中的一种移动终端的结构示意图。
具体实施方式
下面结合附图和实施例对本发明作进一步的详细说明。可以理解的是,此处所描述的具体实施例仅仅用于解释本发明,而非对本发明的限定。另外还需要说明的是,为了便于描述,附图中仅示出了与本发明相关的部分而非全部结构。
在更加详细地讨论示例性实施例之前应当提到的是,一些示例性实施例被描述成作为流程图描绘的处理或方法。虽然流程图将各步骤描述成顺序的处理,但是其中的许多步骤可以被并行地、并发地或者同时实施。此外,各步骤的顺序可以被重新安排。当其操作完成时所述处理可以被终止,但是还可以具有未包括在附图中的附加步骤。所述处理可以对应于方法、函数、规程、子例程、子程序等等。
图1为本发明实施例一提供的一种分屏防误触方法的流程图,本实施例可适用于智能终端在分屏时防止误触的情况,该方法可以由移动终端的触摸屏防误触装置执行,其中该装置可由软件和/或硬件实现,一般可集成在移动终端中。如图1所示,该分屏防误触方法具体包括如下步骤:
步骤110,接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域。
其中,分屏指令将屏幕划分为两个或两个以上的屏幕区域,在每个屏幕区域中显示一个应用界面。示例性的,以屏幕被划分成两个屏幕区域为例,如图2所示,智能终端的屏幕210被划分为上屏幕区域211和下屏幕区域212。上屏幕区域211和下屏幕区域212中分别显示不同的应用,例如在上屏幕区域211中显示聊天应用界面,在下屏幕区域212中显示新闻网页、购物软件界面(京东、淘宝或聚美优品等)或者阅读器界面等等。可选的,上屏幕区域211和下屏幕区域212分别显示统一应用的不同账号对应的应用界面。
步骤120,如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户 的历史操作信息确定目标屏幕区域。
其中,历史操作信息可以是触摸操作的连续性、前后两次触摸操作的位置相同或者前后两次触摸操作指向的对象相同。
在一种应用场景下,判断当前触摸操作与前一个触摸操作之间是否存在关联,如果存在关联则将当前操作所在地的屏幕区域确定为目标屏幕区域。其中,如果当前操作和前一个触摸操作属于同一个应用、或者为相同操作(如连续返回)或者为逻辑上为先后顺序的操作、或者为操作对象相同的操作。其中相同操作可以为,触发位置相同的操作。
步骤130,对目标屏幕区域中的触摸操作进行响应。
在本应用场景下,当确定目标屏幕区域后,智能终端对目标屏幕区域中的触摸操作进行响应,将其它非目标区域中的触摸操作进行屏蔽。示例性的,图2中,如果上屏幕区域211被确定为目标屏幕区域,则终端对上屏幕区域211中操作进行响应,对下屏幕区域212中的触摸操作屏蔽掉。
本实施例提供的技术方案,接收用户输入的分屏指令,该分屏指令可以将屏幕划分为多个屏幕区域,如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域,最后对目标屏幕区域中的触摸操作进行响应。现有技术中,在分屏状态下,当用户单手持握智能终端时,进行点击操作的手指以及产生误触的手掌位于不同的分屏屏幕区域中,导致两个屏幕区域均进行响应,造成误触。本实施例中,通过用户的历史记录确定目标屏幕区域,对目标区屏幕区域中的触摸操作进行响应,对非目标屏幕区域中的触摸操作进行屏蔽,有效防止分屏误触,从而提高分屏中触摸操作的识别率。
图3为本发明实施例一提供的一种分屏防误触方法的流程图。如图3所示,步骤120包括:
步骤121,确定触摸操作的连续性。
其中,触摸操作的连续性可以是用户在某一屏幕区域具有连贯性的触摸操作,例如:利用输入法连续的输入文字、连续的下拉新闻网页或者玩一款游戏需要连续的输入与游戏动作相应的触摸操作等。
步骤122,根据触摸操作的连续性,确定目标屏幕区域。
在本应用场景下,根据触摸操作的连续性,确定目标屏幕区域的方法可以是,当智能终端识别到在某一屏幕区域中的触摸操作具有连贯性时,则将该屏 幕区域确定为目标屏幕区域。示例性,假如图2中上屏幕区域211显示的是聊天应用界面,用户利用聊天应用收发信息,需要连续在上屏幕区域211中利用输出法输入文字或者需要长按语音输入健输入语音,终端识别到用户的这一系列触摸操作具有连续性,则将上屏幕区域确定为目标屏幕区域。
本实施例提供的技术方案,确定触摸操作的连续性,根据触摸操作的连续性确定目标屏幕区域,可以使终端灵活的确定目标屏幕区域,有效的实现防误触。
图4为本发明实施例一提供的一种分屏防误触方法的流程图。如图4所示,步骤120包括:
步骤123,如果在第一屏幕区域中存在第一触摸操作,且第一触摸操作与前一次触摸操作的位置相同或者第一触摸操作指向的对象与前一次触摸操作指向的对象相同,则将第一屏幕区域确定为目标屏幕区域。
其中,第一屏幕区域可以是对屏幕划分后任意一个子屏幕区域,例如可以是图2中的上屏幕区域211或下屏幕区域212。第一触摸操作可以是在第一触摸区域中输入的当前触摸操作。第一触摸操作与前一次触摸操作的位置相同,示例性的,以聊天应用界面为例,前一次触摸操作的位置是语音输入按钮的位置,第一触摸操作的位置也是语音输入按钮的位置。第一触摸操作指向的对象与前一次触摸操作指向的对象相同,示例性的,以新闻网页为例,前一次触摸操作指向的对象是返回按钮,第一触摸操作指向的对象同样也是返回按钮。
相应的,步骤130包括:
步骤131,对第一屏幕区域中的第一触摸操作进行响应。
在本应用场景系,在将第一屏幕区域确定为目标屏幕区域后,对第一屏幕区域中的第一触摸操作进行响应。
图5为本发明实施例一提供的一种分屏防误触方法的流程图,如图5所示,步骤130包括:
步骤132,如果目标屏幕区域中存在至少两个触摸点,则从至少两个触摸点中确定目标触摸点。
在一种应用场景中,由于非目标屏幕区域已经被屏蔽,已经可以避免误触的发生。然而在操作目标区域时,仍然存在误触的情况,当目标屏幕区域存在多个触摸点时,其中只有一个触摸点是正常触摸操作,其它触摸点都属于误触 而产生的触摸点,则需要从多个触摸点确定目标触摸点,即正常触摸操作产生的触摸点。
在本应用场景中,从至少两个触摸点中确定目标触摸点的方法可以是,根据触摸点的位置和形状查找边缘误触点,然后对边缘触摸点进行屏蔽,从而得到目标触摸点。
步骤133,对目标触摸点进行响应。
根据目标触摸点获取处理对象以及目标触摸点触发的操作指令,对该处理对象执行该操作指令。
优选的,步骤132包括:根据触摸点的位置和形状查找边缘误触点,对所述边缘触摸点进行屏蔽,得到目标触摸点。
其中,触摸点的位置可以是屏幕的任意位置。在本应用场景下,当用户单手握持智能终端时,示例性的,以右手握持为例,如果触摸点在右侧边缘位置,则可判断该触摸点为边缘误触点。触摸点的形状可以是手掌形或含有掌纹,在本应用场景下,在本应用场景下,如果触摸点的形状为手掌形且接触面的面积大于预设面积或者接触面中含有掌纹,则可确定该触摸点为边缘误触点。当确定哪些触摸点是边缘无触点后,将这些边缘误触点屏蔽掉不进行响应,剩下的触摸点即为目标触摸点,智能终端对其进行响应。
本实施例的技术方案,如果目标屏幕区域中存在至少两个触摸点,则从至少两个触摸点中确定目标触摸点,对目标触摸点进行响应,可实现对目标屏幕区域中的防误触。
实施例二
图6为本发明实施例二提供的分屏防误触方法的流程图,作为对实施例一的进一步说明,包括:
步骤210、接收用户输入的分屏指令,根据分屏指令将屏幕划分为两个屏幕区域。
步骤220、如果在两个屏幕区域中分别获取到触摸操作,则根据触摸操作的连续性,确定目标屏幕区域。
步骤230、如果在目标屏幕区域中存在至少两个触摸点,则根据触摸点的位置和形状查找边缘误触点。
步骤240、对边缘触摸点进行屏蔽,得到目标触摸点。
步骤250、对目标触摸点进行响应。
实施例三
图7为本发明实施例三提供的一种分屏防误触装置的结构示意图,如图7所示,该分屏防误触装置包括:分屏指令输入模块610,目标屏幕区域确定模块620和触摸操作响应模块630。
分屏指令输入模块610,用于接收用户输入的分屏指令,分屏指令将屏幕划分为多个屏幕区域;
目标屏幕区域确定模块620,用于如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
触摸操作响应模块630,用于对目标屏幕区域中的触摸操作进行响应。
优选的,目标屏幕区域确定模块620,用于:
确定触摸操作的连续性;
根据触摸操作的连续性,确定目标屏幕区域。
优选的,目标屏幕区域确定模块620,用于:
如果在第一屏幕区域中存在第一触摸操作,且第一触摸操作与前一次触摸操作的位置相同或者触摸操作指向的对象与前一次触摸操作指向的对象相同,则将第一屏幕区域确定为目标屏幕区域;
相应的,触摸操作响应模块630,用于:
对第一屏幕区域中的第一触摸操作进行响应。
优选的,触摸操作响应模块,用于:
如果目标屏幕区域中存在至少两个触摸点,则从至少两个触摸点中确定目标触摸点;
对目标触摸点进行响应。
优选的,触摸操作响应模块630,用于:
根据触摸点的位置和形状查找边缘误触点;
对边缘触摸点进行屏蔽,得到目标触摸点。
上述装置可执行本发明前述所有实施例所提供的方法,具备执行上述方法相应的功能模块和有益效果。未在本实施例中详尽描述的技术细节,可参见本发明前述所有实施例所提供的方法。
实施例四
图8为本发明实施例提供的一种移动终端的结构示意图。如图8所示,该移动终端可以包括:壳体(图中未示出)、存储器801、中央处理器(Central Processing Unit,CPU)802(又称处理器,以下简称CPU)、电路板(图中未示出)和电源电路(图中未示出)。所述电路板安置在所述壳体围成的空间内部;所述CPU802和所述存储器801设置在所述电路板上;所述电源电路,用于为所述移动终端的各个电路或器件供电;所述存储器801,用于存储可执行程序代码;所述CPU802通过读取所述存储器801中存储的可执行程序代码来运行与所述可执行程序代码对应的程序,以用于执行:接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;对所述目标屏幕区域中的触摸操作进行响应。
所述移动终端还包括:外设接口803、RF(Radio Frequency,射频)电路805、音频电路806、扬声器811、电源管理芯片808、输入/输出(I/O)子系统809、触摸屏812、其他输入/控制设备810以及外部端口804,这些部件通过一个或多个通信总线或信号线807来通信。
应该理解的是,图示移动终端800仅仅是移动终端的一个范例,并且移动终端800可以具有比图中所示出的更多的或者更少的部件,可以组合两个或更多的部件,或者可以具有不同的部件配置。图中所示出的各种部件可以在包括一个或多个信号处理和/或专用集成电路在内的硬件、软件、或硬件和软件的组合中实现。
下面就本实施例提供的用于实现防误触功能的移动终端进行详细的描述,该移动终端以手机为例。
存储器801,所述存储器801可以被CPU802、外设接口803等访问,所述存储器801可以包括高速随机存取存储器,还可以包括非易失性存储器,例如一个或多个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
外设接口803,所述外设接口803可以将设备的输入和输出外设连接到CPU802和存储器801。
I/O子系统809,所述I/O子系统809可以将设备上的输入输出外设,例如触摸屏812和其他输入/控制设备810,连接到外设接口803。I/O子系统809可以包括显示控制器8091和用于控制其他输入/控制设备810的一个或多个输 入控制器8092。其中,一个或多个输入控制器8092从其他输入/控制设备810接收电信号或者向其他输入/控制设备810发送电信号,其他输入/控制设备810可以包括物理按钮(按压按钮、摇臂按钮等)、拨号盘、滑动开关、操纵杆、点击滚轮。值得说明的是,输入控制器8092可以与以下任一个连接:键盘、红外端口、USB接口以及诸如鼠标的指示设备。
其中,按照触摸屏的工作原理和传输信息的介质分类,触摸屏812可以为电阻式、电容感应式、红外线式或表面声波式。按照安装方式分类,触摸屏812可以为:外挂式、内置式或整体式。按照技术原理分类,触摸屏812可以为:矢量压力传感技术触摸屏、电阻技术触摸屏、电容技术触摸屏、红外线技术触摸屏或表面声波技术触摸屏。
触摸屏812,所述触摸屏812是用户终端与用户之间的输入接口和输出接口,将可视输出显示给用户,可视输出可以包括图形、文本、图标、视频等。可选的,触摸屏812将用户在触屏幕上触发的电信号(如接触面的电信号),发送给处理器802。
I/O子系统809中的显示控制器8091从触摸屏812接收电信号或者向触摸屏812发送电信号。触摸屏812检测触摸屏上的接触,显示控制器8091将检测到的接触转换为与显示在触摸屏812上的用户界面对象的交互,即实现人机交互,显示在触摸屏812上的用户界面对象可以是运行游戏的图标、联网到相应网络的图标等。值得说明的是,设备还可以包括光鼠,光鼠是不显示可视输出的触摸敏感表面,或者是由触摸屏形成的触摸敏感表面的延伸。
RF电路805,主要用于建立手机与无线网络(即网络侧)的通信,实现手机与无线网络的数据接收和发送。例如收发短信息、电子邮件等。具体地,RF电路805接收并发送RF信号,RF信号也称为电磁信号,RF电路805将电信号转换为电磁信号或将电磁信号转换为电信号,并且通过该电磁信号与通信网络以及其他设备进行通信。RF电路805可以包括用于执行这些功能的已知电路,其包括但不限于天线系统、RF收发机、一个或多个放大器、调谐器、一个或多个振荡器、数字信号处理器、CODEC(COder-DECoder,编译码器)芯片组、用户标识模块(Subscriber Identity Module,SIM)等等。
音频电路806,主要用于从外设接口803接收音频数据,将该音频数据转换为电信号,并且将该电信号发送给扬声器811。
扬声器811,用于将手机通过RF电路805从无线网络接收的语音信号,还原为声音并向用户播放该声音。
电源管理芯片808,用于为CPU802、I/O子系统及外设接口所连接的硬件进行供电及电源管理。
需要说明的是,移动终端还可以包括摄像头、蓝牙模块等,在此不再赘述。
在本实施例中,所述中央处理器802用于:
接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
对所述目标屏幕区域中的触摸操作进行响应。
进一步地,所述根据用户的历史操作信息确定目标屏幕区域,包括:
确定所述触摸操作的连续性;
根据所述触摸操作的连续性,确定目标屏幕区域。
进一步地,所述根据用户的历史操作信息确定目标屏幕区域,包括:
如果在第一屏幕区域中存在第一触摸操作,且所述第一触摸操作与前一次触摸操作的位置相同或者所述第一触摸操作指向的对象与前一次触摸操作指向的对象相同,则将所述第一屏幕区域确定为目标屏幕区域;
相应的,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
对所述第一屏幕区域中的所述第一触摸操作进行响应。
进一步地,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
如果所述目标屏幕区域中存在至少两个触摸点,则从所述至少两个触摸点中确定目标触摸点;
对所述目标触摸点进行响应。
进一步地,所述从所述至少两个触摸点中确定目标触摸点,包括:
根据触摸点的位置和形状查找边缘误触点;
对所述边缘触摸点进行屏蔽,得到目标触摸点。
在本发明的另一个实施例中,公开了一种存储介质,所述存储介质中存储有程序代码;当所述程序代码被执行时,处理器执行以下操作:
接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
对所述目标屏幕区域中的触摸操作进行响应。
可选的,所述根据用户的历史操作信息确定目标屏幕区域,包括:
确定所述触摸操作的连续性;
根据所述触摸操作的连续性,确定目标屏幕区域。
可选的,所述根据用户的历史操作信息确定目标屏幕区域,包括:
如果在第一屏幕区域中存在第一触摸操作,且所述第一触摸操作与前一次触摸操作的位置相同或者所述第一触摸操作指向的对象与前一次触摸操作指向的对象相同,则将所述第一屏幕区域确定为目标屏幕区域;
相应的,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
对所述第一屏幕区域中的所述第一触摸操作进行响应。
可选的,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
如果所述目标屏幕区域中存在至少两个触摸点,则从所述至少两个触摸点中确定目标触摸点;
对所述目标触摸点进行响应。
可选的,所述从所述至少两个触摸点中确定目标触摸点,包括:
根据触摸点的位置和形状查找边缘误触点;
对所述边缘触摸点进行屏蔽,得到目标触摸点。
注意,上述仅为本发明的较佳实施例及所运用技术原理。本领域技术人员会理解,本发明不限于这里所述的特定实施例,对本领域技术人员来说能够进行各种明显的变化、重新调整和替代而不会脱离本发明的保护范围。因此,虽然通过以上实施例对本发明进行了较为详细的说明,但是本发明不仅仅限于以上实施例,在不脱离本发明构思的情况下,还可以包括更多其他等效实施例,而本发明的范围由所附的权利要求范围决定。

Claims (20)

  1. 一种分屏防误触方法,其特征在于,包括:
    接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
    如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
    对所述目标屏幕区域中的触摸操作进行响应。
  2. 根据权利要求1所述的分屏防误触方法,其特征在于,所述根据用户的历史操作信息确定目标屏幕区域,包括:
    确定所述触摸操作的连续性;
    根据所述触摸操作的连续性,确定目标屏幕区域。
  3. 根据权利要求1所述的分屏防误触方法,其特征在于,所述根据用户的历史操作信息确定目标屏幕区域,包括:
    如果在第一屏幕区域中存在第一触摸操作,且所述第一触摸操作与前一次触摸操作的位置相同或者所述第一触摸操作指向的对象与前一次触摸操作指向的对象相同,则将所述第一屏幕区域确定为目标屏幕区域;
    相应的,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
    对所述第一屏幕区域中的所述第一触摸操作进行响应。
  4. 根据权利要求1所述的分屏防误触方法,其特征在于,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
    如果所述目标屏幕区域中存在至少两个触摸点,则从所述至少两个触摸点中确定目标触摸点;
    对所述目标触摸点进行响应。
  5. 根据权利要求4所述的分屏防误触方法,其特征在于,所述从所述至少两个触摸点中确定目标触摸点,包括:
    根据触摸点的位置和形状查找边缘误触点;
    对所述边缘触摸点进行屏蔽,得到目标触摸点。
  6. 一种分屏防误触装置,其特征在于,包括:
    分屏指令输入模块,用于接收用户输入的分屏指令,所述分屏指令将屏幕 划分为多个屏幕区域;
    目标屏幕区域确定模块,用于如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
    触摸操作响应模块,用于对所述目标屏幕区域中的触摸操作进行响应。
  7. 根据权利要求6所述的分屏防误触装置,其特征在于,所述目标屏幕区域确定模块,用于:
    确定所述触摸操作的连续性;
    根据所述触摸操作的连续性,确定目标屏幕区域。
  8. 根据权利要求6所述的分屏防误触装置,其特征在于,所述目标屏幕区域确定模块,用于:
    如果在第一屏幕区域中存在第一触摸操作,且所述第一触摸操作与前一次触摸操作的位置相同或者所述第一触摸操作指向的对象与前一次触摸操作指向的对象相同,则将所述第一屏幕区域确定为目标屏幕区域;
    相应的,所述触摸操作响应模块,用于:
    对所述第一屏幕区域中的所述第一触摸操作进行响应。
  9. 根据权利要求6所述的分屏防误触装置,其特征在于,所述触摸操作响应模块,用于:
    如果所述目标屏幕区域中存在至少两个触摸点,则从所述至少两个触摸点中确定目标触摸点;
    对所述目标触摸点进行响应。
  10. 根据权利要求9所述的分屏防误触装置,其特征在于,所述触摸操作响应模块,用于:
    根据触摸点的位置和形状查找边缘误触点;
    对所述边缘触摸点进行屏蔽,得到目标触摸点。
  11. 一种移动终端,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其特征在于,所述处理器执行所述计算机程序时实现以下步骤:接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
    如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
    对所述目标屏幕区域中的触摸操作进行响应。
  12. 根据权利要求11所述的移动终端,其特征在于,所述根据用户的历史操作信息确定目标屏幕区域,包括:
    确定所述触摸操作的连续性;
    根据所述触摸操作的连续性,确定目标屏幕区域。
  13. 根据权利要求11所述的移动终端,其特征在于,所述根据用户的历史操作信息确定目标屏幕区域,包括:
    如果在第一屏幕区域中存在第一触摸操作,且所述第一触摸操作与前一次触摸操作的位置相同或者所述第一触摸操作指向的对象与前一次触摸操作指向的对象相同,则将所述第一屏幕区域确定为目标屏幕区域;
    相应的,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
    对所述第一屏幕区域中的所述第一触摸操作进行响应。
  14. 根据权利要求11所述的移动终端,其特征在于,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
    如果所述目标屏幕区域中存在至少两个触摸点,则从所述至少两个触摸点中确定目标触摸点;
    对所述目标触摸点进行响应。
  15. 根据权利要求14所述的移动终端,其特征在于,所述从所述至少两个触摸点中确定目标触摸点,包括:
    根据触摸点的位置和形状查找边缘误触点;
    对所述边缘触摸点进行屏蔽,得到目标触摸点。
  16. 一种存储介质,其特征在于,所述存储介质中存储有程序代码;当所述程序代码被执行时,处理器执行以下操作:
    接收用户输入的分屏指令,所述分屏指令将屏幕划分为多个屏幕区域;
    如果在至少两个屏幕区域中分别获取到触摸操作,则根据用户的历史操作信息确定目标屏幕区域;
    对所述目标屏幕区域中的触摸操作进行响应。
  17. 根据权利要求16所述的存储介质,其特征在于,所述根据用户的历史操作信息确定目标屏幕区域,包括:
    确定所述触摸操作的连续性;
    根据所述触摸操作的连续性,确定目标屏幕区域。
  18. 根据权利要求16所述的存储介质,其特征在于,所述根据用户的历史操作信息确定目标屏幕区域,包括:
    如果在第一屏幕区域中存在第一触摸操作,且所述第一触摸操作与前一次触摸操作的位置相同或者所述第一触摸操作指向的对象与前一次触摸操作指向的对象相同,则将所述第一屏幕区域确定为目标屏幕区域;
    相应的,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
    对所述第一屏幕区域中的所述第一触摸操作进行响应。
  19. 根据权利要求16所述的存储介质,其特征在于,所述对所述目标屏幕区域中的触摸操作进行响应,包括:
    如果所述目标屏幕区域中存在至少两个触摸点,则从所述至少两个触摸点中确定目标触摸点;
    对所述目标触摸点进行响应。
  20. 根据权利要求19所述的存储介质,其特征在于,所述从所述至少两个触摸点中确定目标触摸点,包括:
    根据触摸点的位置和形状查找边缘误触点;
    对所述边缘触摸点进行屏蔽,得到目标触摸点。
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