WO2016183866A1 - 用于终端的滑动触控操作方法、装置和终端 - Google Patents

用于终端的滑动触控操作方法、装置和终端 Download PDF

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WO2016183866A1
WO2016183866A1 PCT/CN2015/080354 CN2015080354W WO2016183866A1 WO 2016183866 A1 WO2016183866 A1 WO 2016183866A1 CN 2015080354 W CN2015080354 W CN 2015080354W WO 2016183866 A1 WO2016183866 A1 WO 2016183866A1
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touch
sliding
touch point
equal
terminal
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French (fr)
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姚威
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Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
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Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; 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

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  • the present invention relates to the field of terminal touch technology, and in particular, to a sliding touch operation method for a terminal, a sliding touch operation device for a terminal, and a terminal.
  • the present invention is based on at least one of the above technical problems, and proposes a new sliding touch operation scheme for a terminal, which can optimize the recognition of the touch operation by the terminal, reduce the possibility of accidental touch, and is beneficial to improvement. User's operating experience.
  • the present invention provides a sliding touch operation method for a terminal, comprising: detecting whether a sliding touch event occurs on a screen of the terminal; and if a sliding touch event occurs on the screen of the terminal, Determining whether a sliding track corresponding to each touch point on the screen is greater than or equal to a first predetermined distance, and/or determining whether a sliding speed of each touch point is greater than or equal to a predetermined speed value; a target touch point whose sliding track is greater than or equal to the first predetermined distance and/or the sliding speed is greater than or equal to the predetermined speed value; and a gesture operation corresponding to the target touch point.
  • the touch point with the sliding track greater than or equal to the first predetermined distance and/or the sliding speed greater than or equal to the predetermined speed value is selected as the target touch point, and the target touch point is responded to.
  • the corresponding gesture operation enables the touch point that may be accidentally touched according to the behavior of the touch point (ie, the sliding track and the sliding speed) when the sliding touch event occurs on the screen of the terminal, thereby optimizing the terminal pair.
  • the recognition of the touch operation is beneficial to enhance the user's operating experience.
  • the method further includes: determining whether the number of touch points on the screen is less than or equal to a predetermined number; determining that the number of touch points on the screen is greater than the predetermined number If the number of the touch points on the screen is less than or equal to the predetermined number, determining whether the sliding track corresponding to each touch point is greater than Or equal to the first predetermined distance, and/or determining whether the sliding speed of each touch point is greater than or equal to the predetermined speed value.
  • the technical solution by determining the number of touch points on the screen, it is possible to determine whether the touch is correct for the number of touch points supported by the terminal. Specifically, for a terminal that supports only a single touch, if the number of touch points is detected to be multiple, it is determined to be a false touch; and for a terminal that supports N (N>1) touch, if the terminal is detected If the number of touch points is greater than N, it is considered to be a false touch.
  • the step of responding to the gesture operation corresponding to the target touch point comprises: determining whether the start position of the target touch point and the end position of the target touch point are at a distance Within the designated area of the second predetermined distance of the edge of the screen, if so, the one-hand mode of operation of the terminal is initiated.
  • the start gesture of the one-hand operation mode of the terminal is usually that the user starts to slide from the edge of the screen to the end of the edge of the screen, if the start position and the end position of the target touch point are determined to be at the edge of the terminal screen, When the second predetermined distance is within the specified area, the user gesture is determined to be a gesture to initiate the one-hand operation mode.
  • a linear distance between the start position and the end position of each touch point is used as a sliding track of each touch point, or each touch point is The motion route is used as the sliding track of each of the touch points.
  • the calculation amount of the sliding track of the touch point by the terminal can be reduced. Reduce the processing load of the terminal.
  • the sliding speed of each touch point includes: each The average sliding speed of the touch point.
  • the touch point with the sliding track greater than or equal to the first predetermined distance and/or the sliding speed greater than or equal to the predetermined speed value is selected as the target touch point, and the gesture operation corresponding to the target touch point is responded to. Therefore, when a sliding touch event occurs on the screen of the terminal, the touch point that may be accidentally touched can be filtered according to the behavior of the touch point (ie, the sliding track and the sliding speed), thereby optimizing the touch operation of the terminal. Identification helps to enhance the user's operating experience.
  • the first determining unit is further configured to: determine whether the number of the touch points on the screen is less than or equal to a predetermined number, and if yes, perform determining the each touch Whether the corresponding sliding track is greater than or equal to the first predetermined distance, and/or determining whether the sliding speed of each touch point is greater than or equal to the predetermined speed value; the response unit is further configured to: When the first determining unit determines that the number of touch points on the screen is greater than the predetermined number, the sliding touch event is ignored.
  • the technical solution by determining the number of touch points on the screen, it is possible to determine whether the touch is correct for the number of touch points supported by the terminal. Specifically, for a terminal that supports only a single touch, if the number of touch points is detected to be multiple, it is determined to be a false touch; and for a terminal that supports N (N>1) touch, if the terminal is detected If the number of touch points is greater than N, it is considered to be a false touch.
  • the response unit includes: a second determining unit, configured to determine whether a starting position of the target touch point and a termination position of the target touch point are located at a distance from the screen
  • An execution unit configured to: when the second determining unit determines that the start position of the target touch point and the end position of the target touch point are in the designated area , starting the one-hand operation mode of the terminal.
  • the startup gesture of the one-hand operation mode of the terminal is usually the user from the screen
  • the edge begins to slide to the end of the edge of the screen, so if it is determined that the start position and the end position of the target touch point are within a specified area of the second predetermined distance from the edge of the terminal screen, the user gesture is determined to be a gesture to initiate the one-hand operation mode.
  • a linear distance between the start position and the end position of each touch point is used as a sliding track of each touch point, or each touch point is a motion route as a sliding track of each of the touch points;
  • the sliding speed of each touch point includes: an average sliding speed of each of the touch points.
  • the calculation amount of the sliding track of the touch point by the terminal can be reduced. Reduce the processing load of the terminal.
  • a terminal comprising: a sliding touch operation device for a terminal according to any one of the above technical solutions.
  • the terminal includes a processor and a memory, wherein the memory stores a set of program codes, and the processor is configured to call program code stored in the memory for performing the following operations:
  • the processor determines whether the sliding track corresponding to each touch point is greater than or equal to the first predetermined distance, and/or determines whether the sliding speed of each touch point is greater than Before or equal to the step of the predetermined speed value, it is also performed:
  • the processor responds to the gesture operation corresponding to the target touch point, and specifically includes:
  • the linear distance between the starting position and the ending position of each touch point is used as the sliding track of each touch point, or the moving path of each touch point is As a sliding track of each of the touch points;
  • the sliding speed of each touch point includes: an average sliding speed of each of the touch points.
  • the terminal can be optimized for the recognition of the touch operation, the possibility of accidental touch is reduced, and the user's operation experience is improved.
  • FIG. 1 is a schematic flow chart of a sliding touch operation method for a terminal according to an embodiment of the present invention
  • FIG. 2 shows a schematic block diagram of a sliding touch operating device for a terminal in accordance with an embodiment of the present invention
  • FIG. 3 is a schematic flow chart of a sliding touch operation method for a terminal according to another embodiment of the present invention.
  • FIG. 4 is a schematic diagram showing a sliding touch operation on a terminal according to an embodiment of the present invention.
  • FIG. 5 shows a schematic diagram of a terminal in accordance with an embodiment of the present invention.
  • FIG. 1 shows a schematic flow chart of a sliding touch operation method for a terminal according to an embodiment of the present invention.
  • a sliding touch operation method for a terminal includes: Step 102: detecting whether a sliding touch event occurs on a screen of the terminal; Step 104: If the terminal is detected A sliding touch event occurs on the screen, determining whether the sliding track corresponding to each touch point on the screen is greater than or equal to a first predetermined distance, and/or determining whether the sliding speed of each touch point is greater than Or equal to the predetermined speed value; Step 106, selecting the target touch point that the sliding track is greater than or equal to the first predetermined distance and/or the sliding speed is greater than or equal to the predetermined speed value; Step 108, responding to The gesture operation corresponding to the target touch point.
  • the touch point with the sliding track greater than or equal to the first predetermined distance and/or the sliding speed greater than or equal to the predetermined speed value is selected as the target touch point, and the gesture operation corresponding to the target touch point is responded to. Therefore, when a sliding touch event occurs on the screen of the terminal, the touch point that may be accidentally touched can be filtered according to the behavior of the touch point (ie, the sliding track and the sliding speed), thereby optimizing the touch operation of the terminal. Identification helps to enhance the user's operating experience.
  • the method further includes: determining whether the number of touch points on the screen is less than or equal to a predetermined number; determining that the number of touch points on the screen is greater than the predetermined number If the number of the touch points on the screen is less than or equal to the predetermined number, determining whether the sliding track corresponding to each touch point is greater than Or equal to the first predetermined distance, and/or determining whether the sliding speed of each touch point is greater than or equal to the predetermined speed value.
  • the technical solution by determining the number of touch points on the screen, it is possible to determine whether the touch is correct for the number of touch points supported by the terminal. Specifically, for a terminal that supports only a single touch, if the number of touch points is detected to be multiple, it is determined to be a false touch; and for a terminal that supports N (N>1) touch, if the terminal is detected If the number of touch points is greater than N, it is considered to be a false touch.
  • the step of responding to the gesture operation corresponding to the target touch point comprises: determining whether the start position of the target touch point and the end position of the target touch point are at a distance Within the designated area of the second predetermined distance of the edge of the screen, if so, the one-hand mode of operation of the terminal is initiated.
  • the start gesture of the one-hand operation mode of the terminal is usually that the user starts to slide from the edge of the screen to the end of the edge of the screen, if the start position and the end position of the target touch point are determined to be at the edge of the terminal screen, When the second predetermined distance is within the specified area, the user gesture is determined to be a gesture to initiate the one-hand operation mode.
  • a linear distance between the start position and the end position of each touch point is used as a sliding track of each touch point, or each touch point is The motion route is used as the sliding track of each of the touch points.
  • the calculation amount of the sliding track of the touch point by the terminal can be reduced. Reduce the processing load of the terminal.
  • the sliding speed of each touch point includes: an average sliding speed of each touch point.
  • FIG. 2 shows a schematic block diagram of a sliding touch operating device for a terminal in accordance with an embodiment of the present invention.
  • the sliding touch operation device 200 for a terminal includes: a detecting unit 202, a first determining unit 204, a selecting unit 206, and a response unit 208.
  • the detecting unit 202 is configured to detect whether a sliding touch event occurs on the screen of the terminal.
  • the first determining unit 204 is configured to determine, when the detecting unit 202 detects a sliding touch event on the screen of the terminal. Whether the sliding track corresponding to each touch point on the screen is greater than or equal to the first predetermined distance, and/or determining whether the sliding speed of each touch point is greater than or equal to a predetermined speed value; the selecting unit 206, Selecting, by the response unit 208, the target touch point that the sliding track is greater than or equal to the first predetermined distance and/or the sliding speed is greater than or equal to the predetermined speed value; The corresponding gesture operation.
  • the touch point with the sliding track greater than or equal to the first predetermined distance and/or the sliding speed greater than or equal to the predetermined speed value is selected as the target touch point, and the gesture operation corresponding to the target touch point is responded to. Therefore, when a sliding touch event occurs on the screen of the terminal, the touch point that may be accidentally touched can be filtered according to the behavior of the touch point (ie, the sliding track and the sliding speed), thereby optimizing the touch operation of the terminal. Identification helps to enhance the user's operating experience.
  • the first determining unit 204 is further configured to: determine whether the number of touch points on the screen is less than or equal to a predetermined number, and if yes, perform determining the each touch Whether the sliding track corresponding to the control point is greater than or equal to the first predetermined distance, and/or determining whether the sliding speed of each touch point is greater than or equal to the predetermined speed value; the response unit 208 also uses When the first determining unit 204 determines that the number of touch points on the screen is greater than the predetermined number, the sliding touch event is ignored.
  • the technical solution by determining the number of touch points on the screen, it is possible to determine whether the touch is correct for the number of touch points supported by the terminal. Specifically, for a terminal that supports only a single touch, if the number of touch points is detected to be multiple, it is determined to be a false touch; and for a terminal that supports N (N>1) touch, if the terminal is detected If the number of touch points is greater than N, it is considered to be a false touch.
  • the response unit 208 includes: a second determining unit 2082, configured to determine whether a starting position of the target touch point and a termination position of the target touch point are at a distance The edge of the screen is within a specified area of the second predetermined distance; the executing unit 2084 is configured to determine, at the second determining unit 2082, that the starting position of the target touch point and the ending position of the target touch point are in the When the area is specified, the one-hand operation mode of the terminal is started.
  • the start gesture of the one-hand operation mode of the terminal is usually that the user starts to slide from the edge of the screen to the end of the edge of the screen, if the start position and the end position of the target touch point are determined to be at the edge of the terminal screen, When the second predetermined distance is within the specified area, the user gesture is determined to be a gesture to initiate the one-hand operation mode.
  • a linear distance between the start position and the end position of each touch point is used as a sliding track of each touch point, or each touch point is a motion route as a sliding track of each of the touch points;
  • the sliding speed of each touch point includes: an average sliding speed of each of the touch points.
  • the calculation amount of the sliding track of the touch point by the terminal can be reduced. Reduce the processing load of the terminal.
  • the present invention also proposes a terminal (not shown), comprising: a sliding touch operating device 200 for a terminal as shown in FIG. 2.
  • a sliding touch operation method for a terminal includes:
  • Step 302 Determine whether the touch operation of the user screen on the terminal screen is a two-point touch. If yes, perform step 306 and step 308; otherwise, perform step 304.
  • Step 304 Determine whether the touch operation of the user screen on the terminal screen is a single touch. If yes, execute step 306; otherwise, end the process.
  • step 306 a motion trajectory of a point is determined.
  • a motion trajectory of another point is determined.
  • step 310 it is judged whether it is close to the edge of the screen when pressed, and if so, step 312 is performed; otherwise, the flow is ended.
  • step 312 it is determined whether to slide a certain distance. If yes, step 314 is performed; otherwise, the process ends.
  • step 314 it is determined whether the sliding speed is greater than a threshold. If yes, step 316 is performed; otherwise, the flow is ended.
  • step 316 it is judged whether it is close to the edge of the screen when it is raised, and if so, step 318 is performed; otherwise, the flow is ended.
  • step 318 it is determined that the correct start gesture is.
  • the B1 point is the touch position of the thumb finger, when the A1 point contacts the terminal screen before the B1 point. Since the sliding distance and the sliding speed of the A1 point do not satisfy the condition, the touch of the A1 point is ignored; similarly, as shown in FIG. 4(b), if the A2 point is the touch portion of the palm of the big fish, B2 The point is the touch position of the thumb.
  • the B2 point touches the terminal screen before the A2 point, since the sliding distance and the sliding speed of the A2 point do not satisfy the condition, the touch of the A2 point is ignored. That is, no matter which points touch the terminal screen first, if the conditions of the sliding distance and the sliding speed are not satisfied, the touch operation of the point is ignored.
  • FIG. 3 and FIG. 4 illustrate the technical solution of the present invention by taking the touch of two points as an example. Those skilled in the art should understand that if there are more points on the screen of the terminal, the analysis may be performed according to the above analysis method.
  • FIG. 5 shows a schematic diagram of a terminal in accordance with an embodiment of the present invention.
  • the terminal 4 may include at least one processor 41, such as a CPU, at least one communication bus 42 and a memory 43; a communication bus 42 for implementing connection communication between these components; and the memory 43 may be a high speed RAM
  • the memory may also be a non-volatile memory such as at least one disk storage.
  • One memory is stored in the memory 43
  • the program code is set, and the processor 41 is configured to call the program code stored in the memory 43 for performing the following operations:
  • the processor 41 determines whether the sliding track corresponding to each touch point is greater than or equal to the first predetermined distance, and/or determines whether the sliding speed of each touch point is greater than or Before the step of equalizing the predetermined speed value, it is also performed:
  • the processor 41 is responsive to the gesture operation corresponding to the target touch point, and specifically includes:
  • a linear distance between the start position and the end position of each touch point is used as a sliding track of each touch point, or a motion route of each touch point is used as a The sliding trajectory of each touch point;
  • the sliding speed of each touch point includes: an average sliding speed of each of the touch points.
  • the present invention proposes a new sliding touch operation scheme for a terminal, which can optimize the recognition of the touch operation by the terminal, reduce the possibility of accidental touch, and is beneficial to improving the user's operation experience.

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

一种用于终端的滑动触控操作方法、装置和终端,其中,用于终端的滑动触控操作方法,包括:检测终端的屏幕上是否发生滑动触控事件(102);若检测到所述终端的屏幕上发生滑动触控事件,则判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值(104);选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点(106);响应所述目标触控点对应的手势操作(108)。可以优化终端对触控操作的识别,减少出现误触碰的可能性,有利于提升用户的操作体验。

Description

用于终端的滑动触控操作方法、装置和终端
本申请要求于2015年5月21日提交中国专利局,申请号为201510263257.0、发明名称为“用于终端的滑动触控操作方法、装置和终端”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及终端触控技术领域,具体而言,涉及一种用于终端的滑动触控操作方法、一种用于终端的滑动触控操作装置和一种终端。
背景技术
目前的移动终端大部分都是由用户进行触控操作的,随着移动终端的屏幕越来越大,用户在进行触控操作时多有不便,很容易出现误触控的问题。比如,当用户通过使用大拇指在屏幕上进行来回滑动的方式启动终端的单手操作功能时,大拇指的根部和大拇指的指肚或先或后触碰到终端的屏幕而导致启动失败。
因此,如何能够优化终端对触控操作的识别,避免误触碰而影响用户对终端的使用体验成为亟待解决的技术问题。
发明内容
本发明正是基于上述技术问题至少之一,提出了一种新的用于终端的滑动触控操作方案,可以优化终端对触控操作的识别,减少出现误触碰的可能性,有利于提升用户的操作体验。
有鉴于此,本发明提出了一种用于终端的滑动触控操作方法,包括:检测终端的屏幕上是否发生滑动触控事件;若检测到所述终端的屏幕上发生滑动触控事件,则判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;响应所述目标触控点对应的手势操作。
在该技术方案中,通过选择出滑动轨迹大于或等于第一预定距离,和/或滑动速度大于或等于预定速度值的触控点作为目标触控点,并响应目标触控点 对应的手势操作,使得在终端的屏幕上发生滑动触控事件时,能够根据触控点的行为(即滑动轨迹和滑动速度)过滤掉可能是误触碰的触控点,进而能够优化终端对触控操作的识别,有利于提升用户的操作体验。
在上述技术方案中,优选地,在判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤之前,还包括:判断所述屏幕上的触控点的个数是否小于或等于预定个数;在判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件;在判定所述屏幕上的触控点的个数小于或等于所述预定个数时,执行判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤。
在该技术方案中,通过对屏幕上的触控点的个数进行判断,使得能够针对终端同时支持的触控点数量来确定是否为误触控。具体地,对于仅支持单点触控的终端,若检测到触控点的个数为多个,则认定为误触控;而对于支持N(N>1)点触控的终端,若检测到的触控点的个数大于N,则认定为误触控。
在上述技术方案中,优选地,响应所述目标触控点对应的手势操作的步骤具体包括:判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内,若是,则启动所述终端的单手操作模式。
在该技术方案中,由于终端的单手操作模式的启动手势通常是用户从屏幕边缘开始滑动到屏幕边缘结束,因此若判定目标触控点的起始位置和终止位置处于距离终端屏幕的边缘第二预定距离的指定区域内时,确定用户手势为启动单手操作模式的手势。
在上述技术方案中,优选地,将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹。
在该技术方案中,通过将每个触控点的起始位置和终止位置之间的直线距离作为每个触控点的滑动轨迹,可以减小终端对于触控点的滑动轨迹的计算量,降低终端的处理负荷。
在上述技术方案中,优选地,所述每个触控点的滑动速度包括:所述每个 触控点的平均滑动速度。
根据本发明的第二方面,还提出了一种用于终端的滑动触控操作装置,包括:检测单元,用于检测终端的屏幕上是否发生滑动触控事件;第一判断单元,用于在所述检测单元检测到所述终端的屏幕上发生滑动触控事件时,判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;选择单元,用于选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;响应单元,用于响应所述目标触控点对应的手势操作。
在该技术方案中,通过选择出滑动轨迹大于或等于第一预定距离,和/或滑动速度大于或等于预定速度值的触控点作为目标触控点,并响应目标触控点对应的手势操作,使得在终端的屏幕上发生滑动触控事件时,能够根据触控点的行为(即滑动轨迹和滑动速度)过滤掉可能是误触碰的触控点,进而能够优化终端对触控操作的识别,有利于提升用户的操作体验。
在上述技术方案中,优选地,所述第一判断单元还用于:判断所述屏幕上的触控点的个数是否小于或等于预定个数,若是,则执行判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的操作;所述响应单元还用于,在所述第一判断单元判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件。
在该技术方案中,通过对屏幕上的触控点的个数进行判断,使得能够针对终端同时支持的触控点数量来确定是否为误触控。具体地,对于仅支持单点触控的终端,若检测到触控点的个数为多个,则认定为误触控;而对于支持N(N>1)点触控的终端,若检测到的触控点的个数大于N,则认定为误触控。
在上述技术方案中,优选地,所述响应单元包括:第二判断单元,用于判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内;执行单元,用于在所述第二判断单元判定所述目标触控点的起始位置和所述目标触控点的终止位置处于所述指定区域内时,启动所述终端的单手操作模式。
在该技术方案中,由于终端的单手操作模式的启动手势通常是用户从屏幕 边缘开始滑动到屏幕边缘结束,因此若判定目标触控点的起始位置和终止位置处于距离终端屏幕的边缘第二预定距离的指定区域内时,确定用户手势为启动单手操作模式的手势。
在上述技术方案中,优选地,将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹;
所述每个触控点的滑动速度包括:所述每个触控点的平均滑动速度。
在该技术方案中,通过将每个触控点的起始位置和终止位置之间的直线距离作为每个触控点的滑动轨迹,可以减小终端对于触控点的滑动轨迹的计算量,降低终端的处理负荷。
根据本发明的第三方面,还提出了一种终端,包括:如上述任一项技术方案中所述的用于终端的滑动触控操作装置。所述终端包括处理器和存储器,其中,所述存储器中存储一组程序代码,且所述处理器用于调用所述存储器中存储的程序代码,用于执行以下操作:
检测终端的屏幕上是否发生滑动触控事件;
若检测到所述终端的屏幕上发生滑动触控事件,则判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;
选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;
响应所述目标触控点对应的手势操作。
在该技术方案中,所述处理器在判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤之前,还执行:
判断所述屏幕上的触控点的个数是否小于或等于预定个数;
在判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件;
在判定所述屏幕上的触控点的个数小于或等于所述预定个数时,执行判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤。
在该技术方案中,所述处理器响应所述目标触控点对应的手势操作,具体包括:
判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内,若是,则启动所述终端的单手操作模式。
在该技术方案中,将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹;
所述每个触控点的滑动速度包括:所述每个触控点的平均滑动速度。
通过以上技术方案,可以优化终端对触控操作的识别,减少出现误触碰的可能性,有利于提升用户的操作体验。
附图说明
图1示出了根据本发明的一个实施例的用于终端的滑动触控操作方法的示意流程图;
图2示出了根据本发明的实施例的用于终端的滑动触控操作装置的示意框图;
图3示出了根据本发明的另一个实施例的用于终端的滑动触控操作方法的示意流程图;
图4示出了根据本发明的实施例的对终端进行滑动触控操作的示意图;
图5示出了根据本发明的实施例的终端的示意图。
具体实施方式
为了能够更清楚地理解本发明的上述目的、特征和优点,下面结合附图和具体实施方式对本发明进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明,但是,本发明还可以采用其他不同于在此描述的其他方式来实施,因此,本发明的保护范围并不受下面公开的具体实施例的限制。
图1示出了根据本发明的一个实施例的用于终端的滑动触控操作方法的示意流程图。
如图1所示,根据本发明的一个实施例的用于终端的滑动触控操作方法,包括:步骤102,检测终端的屏幕上是否发生滑动触控事件;步骤104,若检测到所述终端的屏幕上发生滑动触控事件,则判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;步骤106,选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;步骤108,响应所述目标触控点对应的手势操作。
在该技术方案中,通过选择出滑动轨迹大于或等于第一预定距离,和/或滑动速度大于或等于预定速度值的触控点作为目标触控点,并响应目标触控点对应的手势操作,使得在终端的屏幕上发生滑动触控事件时,能够根据触控点的行为(即滑动轨迹和滑动速度)过滤掉可能是误触碰的触控点,进而能够优化终端对触控操作的识别,有利于提升用户的操作体验。
在上述技术方案中,优选地,在判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤之前,还包括:判断所述屏幕上的触控点的个数是否小于或等于预定个数;在判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件;在判定所述屏幕上的触控点的个数小于或等于所述预定个数时,执行判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤。
在该技术方案中,通过对屏幕上的触控点的个数进行判断,使得能够针对终端同时支持的触控点数量来确定是否为误触控。具体地,对于仅支持单点触控的终端,若检测到触控点的个数为多个,则认定为误触控;而对于支持N(N>1)点触控的终端,若检测到的触控点的个数大于N,则认定为误触控。
在上述技术方案中,优选地,响应所述目标触控点对应的手势操作的步骤具体包括:判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内,若是,则启动所述终端的单手操作模式。
在该技术方案中,由于终端的单手操作模式的启动手势通常是用户从屏幕边缘开始滑动到屏幕边缘结束,因此若判定目标触控点的起始位置和终止位置处于距离终端屏幕的边缘第二预定距离的指定区域内时,确定用户手势为启动单手操作模式的手势。
在上述技术方案中,优选地,将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹。
在该技术方案中,通过将每个触控点的起始位置和终止位置之间的直线距离作为每个触控点的滑动轨迹,可以减小终端对于触控点的滑动轨迹的计算量,降低终端的处理负荷。
在上述技术方案中,优选地,所述每个触控点的滑动速度包括:所述每个触控点的平均滑动速度。
图2示出了根据本发明的实施例的用于终端的滑动触控操作装置的示意框图。
如图2所示,根据本发明的实施例的用于终端的滑动触控操作装置200,包括:检测单元202、第一判断单元204、选择单元206和响应单元208。
其中,检测单元202,用于检测终端的屏幕上是否发生滑动触控事件;第一判断单元204,用于在所述检测单元202检测到所述终端的屏幕上发生滑动触控事件时,判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;选择单元206,用于选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;响应单元208,用于响应所述目标触控点对应的手势操作。
在该技术方案中,通过选择出滑动轨迹大于或等于第一预定距离,和/或滑动速度大于或等于预定速度值的触控点作为目标触控点,并响应目标触控点对应的手势操作,使得在终端的屏幕上发生滑动触控事件时,能够根据触控点的行为(即滑动轨迹和滑动速度)过滤掉可能是误触碰的触控点,进而能够优化终端对触控操作的识别,有利于提升用户的操作体验。
在上述技术方案中,优选地,所述第一判断单元204还用于:判断所述屏幕上的触控点的个数是否小于或等于预定个数,若是,则执行判断所述每个触 控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的操作;所述响应单元208还用于,在所述第一判断单元204判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件。
在该技术方案中,通过对屏幕上的触控点的个数进行判断,使得能够针对终端同时支持的触控点数量来确定是否为误触控。具体地,对于仅支持单点触控的终端,若检测到触控点的个数为多个,则认定为误触控;而对于支持N(N>1)点触控的终端,若检测到的触控点的个数大于N,则认定为误触控。
在上述技术方案中,优选地,所述响应单元208包括:第二判断单元2082,用于判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内;执行单元2084,用于在所述第二判断单元2082判定所述目标触控点的起始位置和所述目标触控点的终止位置处于所述指定区域内时,启动所述终端的单手操作模式。
在该技术方案中,由于终端的单手操作模式的启动手势通常是用户从屏幕边缘开始滑动到屏幕边缘结束,因此若判定目标触控点的起始位置和终止位置处于距离终端屏幕的边缘第二预定距离的指定区域内时,确定用户手势为启动单手操作模式的手势。
在上述技术方案中,优选地,将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹;
所述每个触控点的滑动速度包括:所述每个触控点的平均滑动速度。
在该技术方案中,通过将每个触控点的起始位置和终止位置之间的直线距离作为每个触控点的滑动轨迹,可以减小终端对于触控点的滑动轨迹的计算量,降低终端的处理负荷。
本发明还提出了一种终端(图中未示出),包括:如图2中所示的用于终端的滑动触控操作装置200。
以下结合图3,以判断用户对终端的触控操作是否是启动单手操作的手势为例详细说明本发明的技术方案。
如图3所示,根据本发明的另一个实施例的用于终端的滑动触控操作方法,包括:
步骤302,判断用户对终端屏幕的触控操作是否是双点触碰,若是,则执行步骤306和步骤308;否则,执行步骤304。
步骤304,判断用户对终端屏幕的触控操作是否是单点触碰,若是,则执行步骤306;否则,结束流程。
步骤306,判断一个点的运动轨迹。
步骤308,判断另一个点的运动轨迹。
步骤310,判断按下时是否靠近屏幕边缘,若是,则执行步骤312;否则,结束流程。
步骤312,判断是否滑动一定距离,若是,则执行步骤314;否则,结束流程。
步骤314,判断滑动速度是否大于阈值,若是,则执行步骤316;否则,结束流程。
步骤316,判断抬起时是否靠近屏幕边缘,若是,则执行步骤318;否则,结束流程。
步骤318,判定为正确的启动手势。
具体地,如图4中(a)所示,若A1点为手掌大鱼际的触控部位,B1点为大拇指指肚的触控位置,当A1点先于B1点接触到终端屏幕时,由于A1点的滑动距离和滑动速度均不满足条件,因此忽略A1点的触碰;类似地,如图4中(b)所示,若A2点为手掌大鱼际的触控部位,B2点为大拇指指肚的触控位置,当B2点先于A2点接触到终端屏幕时,由于A2点的滑动距离和滑动速度均不满足条件,因此忽略A2点的触碰。即无论哪些点先接触到终端屏幕,若不满足滑动距离和滑动速度的条件,则忽略该点的触控操作。
图3和图4以两个点的触控为例说明了本发明的技术方案,本领域的技术人员应该理解,若终端屏幕上有更多个点,也可以按照上述的分析方法进行分析。
图5示出了根据本发明的实施例的终端的示意图。
如图5所示,该终端4可以包括:至少一个处理器41,例如CPU,至少一个通信总线42以及存储器43;通信总线42用于实现这些组件之间的连接通信;存储器43可以是高速RAM存储器,也可以是非易失性存储器(non-volatile memory),例如至少一个磁盘存储器。存储器43中存储一 组程序代码,且处理器41用于调用存储器43中存储的程序代码,用于执行以下操作:
检测终端的屏幕上是否发生滑动触控事件;
若检测到所述终端的屏幕上发生滑动触控事件,则判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;
选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;
响应所述目标触控点对应的手势操作。
可选地,所述处理器41在判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤之前,还执行:
判断所述屏幕上的触控点的个数是否小于或等于预定个数;
在判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件;
在判定所述屏幕上的触控点的个数小于或等于所述预定个数时,执行判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤。
可选地,所述处理器41响应所述目标触控点对应的手势操作,具体包括:
判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内,若是,则启动所述终端的单手操作模式。
可选地,将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹;
所述每个触控点的滑动速度包括:所述每个触控点的平均滑动速度。
以上结合附图详细说明了本发明的技术方案,考虑到由于移动终端的屏幕越来越大,用户在进行触控操作时多有不便,很容易出现误触控的问题。因此,本发明提出了一种新的用于终端的滑动触控操作方案,可以优化终端对触控操作的识别,减少出现误触碰的可能性,有利于提升用户的操作体验。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (13)

  1. 一种用于终端的滑动触控操作方法,其特征在于,包括:
    检测终端的屏幕上是否发生滑动触控事件;
    若检测到所述终端的屏幕上发生滑动触控事件,则判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;
    选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;
    响应所述目标触控点对应的手势操作。
  2. 根据权利要求1所述的用于终端的滑动触控操作方法,其特征在于,在判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤之前,还包括:
    判断所述屏幕上的触控点的个数是否小于或等于预定个数;
    在判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件;
    在判定所述屏幕上的触控点的个数小于或等于所述预定个数时,执行判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤。
  3. 根据权利要求1所述的用于终端的滑动触控操作方法,其特征在于,响应所述目标触控点对应的手势操作的步骤具体包括:
    判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内,若是,则启动所述终端的单手操作模式。
  4. 根据权利要求1至3中任一项所述的用于终端的滑动触控操作方法,其特征在于,将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹。
  5. 根据权利要求1至3中任一项所述的用于终端的滑动触控操作方法, 其特征在于,所述每个触控点的滑动速度包括:所述每个触控点的平均滑动速度。
  6. 一种用于终端的滑动触控操作装置,其特征在于,包括:
    检测单元,用于检测终端的屏幕上是否发生滑动触控事件;
    第一判断单元,用于在所述检测单元检测到所述终端的屏幕上发生滑动触控事件时,判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;
    选择单元,用于选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;
    响应单元,用于响应所述目标触控点对应的手势操作。
  7. 根据权利要求6所述的用于终端的滑动触控操作装置,其特征在于,所述第一判断单元还用于:
    判断所述屏幕上的触控点的个数是否小于或等于预定个数,若是,则执行判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的操作;
    所述响应单元还用于,在所述第一判断单元判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件。
  8. 根据权利要求6所述的用于终端的滑动触控操作装置,其特征在于,所述响应单元包括:
    第二判断单元,用于判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内;
    执行单元,用于在所述第二判断单元判定所述目标触控点的起始位置和所述目标触控点的终止位置处于所述指定区域内时,启动所述终端的单手操作模式。
  9. 根据权利要求6至8中任一项所述的用于终端的滑动触控操作装置,其特征在于:
    将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹;
    所述每个触控点的滑动速度包括:所述每个触控点的平均滑动速度。
  10. 一种终端,其特征在于,所述终端包括处理器和存储器,其中,所述存储器中存储一组程序代码,且所述处理器用于调用所述存储器中存储的程序代码,用于执行以下操作:
    检测终端的屏幕上是否发生滑动触控事件;
    若检测到所述终端的屏幕上发生滑动触控事件,则判断所述屏幕上的每个触控点对应的滑动轨迹是否大于或等于第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于预定速度值;
    选择出所述滑动轨迹大于或等于所述第一预定距离和/或所述滑动速度大于或等于所述预定速度值的目标触控点;
    响应所述目标触控点对应的手势操作。
  11. 根据权利要求10所述的终端,其特征在于,所述处理器在判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的步骤之前,还执行:
    判断所述屏幕上的触控点的个数是否小于或等于预定个数,若是,则执行判断所述每个触控点对应的滑动轨迹是否大于或等于所述第一预定距离,和/或判断所述每个触控点的滑动速度是否大于或等于所述预定速度值的操作;
    在所述第一判断单元判定所述屏幕上的触控点的个数大于所述预定个数时,忽略所述滑动触控事件。
  12. 根据权利要求10所述的终端,其特征在于,所述处理器响应所述目标触控点对应的手势操作,具体包括:
    判断所述目标触控点的起始位置和所述目标触控点的终止位置是否处于距离所述屏幕的边缘第二预定距离的指定区域内;在所述第二判断单元判定所述目标触控点的起始位置和所述目标触控点的终止位置处于所述指定区域内时,启动所述终端的单手操作模式。
  13. 根据权利要求10至12中任一项所述的终端,其特征在于,将所述每个触控点的起始位置和终止位置之间的直线距离作为所述每个触控点的滑动轨迹,或将所述每个触控点的运动路线作为所述每个触控点的滑动轨迹;
    所述每个触控点的滑动速度包括:所述每个触控点的平均滑动速度。
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