WO2017147994A1 - 一种基于压力触控的任务管理方法和系统 - Google Patents

一种基于压力触控的任务管理方法和系统 Download PDF

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Publication number
WO2017147994A1
WO2017147994A1 PCT/CN2016/080619 CN2016080619W WO2017147994A1 WO 2017147994 A1 WO2017147994 A1 WO 2017147994A1 CN 2016080619 W CN2016080619 W CN 2016080619W WO 2017147994 A1 WO2017147994 A1 WO 2017147994A1
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Prior art keywords
task
pressure
pressure signal
user
unit
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PCT/CN2016/080619
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English (en)
French (fr)
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郭雄伟
傅文治
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宇龙计算机通信科技(深圳)有限公司
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Publication of WO2017147994A1 publication Critical patent/WO2017147994A1/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
    • G06F3/03Arrangements 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
    • 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
    • G06F3/0414Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means using force sensing means to determine a position
    • 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]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/04847Interaction techniques to control parameter settings, e.g. interaction with sliders or dials
    • 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

Definitions

  • the present invention relates to the field of touch management, and in particular, to a task management method and system based on pressure touch.
  • Smart terminals such as mobile phones have become an indispensable tool for people.
  • smart terminal devices such as smart phones have a home button (ie, the main menu button) located at the bottom of the screen.
  • the home button is set as a physical button or according to the actual situation.
  • Virtual Key When the user opens multiple tasks, the user can open the task manager function by pressing the home button, and then perform operations on the target task item, such as closing a certain task or certain tasks, or making a task in the operation interface.
  • the smart terminal is held, it is not convenient to move the finger to the home button and operate it.
  • the size of the smart terminal is getting larger and larger, and the one-hand operation is extremely unsatisfactory, and the physical home button area is frequently pressed, which is easy to cause.
  • the physical home key is damaged, and the virtual home key needs to first call up the virtual home key, and even need to click the home key multiple times to bring up the task manager function, which brings great inconvenience to the user.
  • the object of the present invention is to provide a task management method and system based on pressure touch, which can make it convenient for a person to use a smart terminal device to call a task manager function to facilitate management of a target task item.
  • the present invention provides the following technical solutions:
  • a pressure touch-based task management method for a smart terminal device with a touch screen comprising:
  • the task manager is called up;
  • Corresponding task management instructions are executed according to the touch action signal.
  • the method further comprises:
  • the task manager is called at the first coordinate when the first pressure signal reaches a preset pressure threshold corresponding to the task manager.
  • the collecting the touch action signal of the user, and executing the corresponding task management command according to the touch action signal includes:
  • the corresponding scrolling task process includes:
  • the task item located in the uppermost layer in the control task list is transformed to the lowest layer, and the other task items are sequentially raised to the corresponding upper layer interface;
  • the task item located at the lowest level in the control task list is transformed to the uppermost layer, and the other task items are sequentially lowered to the corresponding next layer interface.
  • calling the task manager at the first coordinate comprises:
  • n custom task management function units Surrounding the first coordinate, fetching n custom task management function units, where n is greater than one number.
  • the acquiring a touch action signal of the user, and executing a corresponding task management command according to the touch action signal includes:
  • a pressure touch-based task management system for a smart terminal device with a touch screen comprising:
  • a first collecting module configured to collect a first pressure signal applied by the user on the touch screen
  • a first determining module configured to determine whether the first pressure signal reaches a preset pressure threshold corresponding to the open task manager
  • a task manager scheduling module configured to call up a task manager when determining that the first pressure signal reaches a preset pressure threshold corresponding to the task manager
  • a second collecting module configured to collect a touch action signal of the user after the task manager is called out
  • the execution module is configured to execute a corresponding task management instruction according to the touch action signal.
  • the method further comprises:
  • a third acquiring module configured to collect a first coordinate corresponding to the user when the first pressure signal is applied on the touch screen area
  • the task manager scheduling module is further configured to: when the first pressure signal reaches a preset pressure threshold corresponding to the task manager, invoke the task manager at the first coordinate.
  • the second collection module includes a first pressure collection unit, and the first pressure collection unit is configured to collect a second pressure signal applied by a user on an area corresponding to the first coordinate of the touch screen;
  • the execution module includes a pressure comparison unit for comparing a pressure magnitude relationship between the second pressure signal and the first pressure signal, and a task process flipping unit for The comparison result of the pressure comparison unit corresponds to the progress of the review task.
  • the task process flipping unit comprises a first flipping controller and a second flipping controller
  • first scrolling controller is configured to use the second pressure signal to be greater than the first pressure signal
  • the second flipping controller is configured to: when the second pressure signal is smaller than the first pressure signal, control a task item at a bottommost level in a task list of the task manager to be transformed to an uppermost layer, and the other task items are sequentially decreased. Go to the corresponding next layer interface.
  • the task manager scheduling module includes a task management function unit retrieving unit, and the task management function unit retrieving unit is configured to surround the first coordinates and retrieve n custom task management function units, where n is An integer greater than one.
  • the second collection module further includes a pressure track collection unit, configured to collect sliding track information of the user on the touch screen;
  • the execution module further includes a first determining unit and a sliding function executing unit, wherein the first determining unit is configured to determine whether the sliding track information is from the first coordinate to a corresponding corresponding area of the custom task management function unit,
  • the sliding function execution unit is configured to execute a task management function corresponding to the custom task management function unit when determining that the sliding track information is from the first coordinate to the corresponding custom task management function unit corresponding area.
  • the invention provides a pressure touch-based task management method, which comprises: collecting a first pressure signal applied by a user on a touch screen; determining whether the first pressure signal reaches a preset pressure corresponding to the task manager; Threshold; if the first pressure signal reaches the preset pressure threshold corresponding to the task manager, the task manager is called; the touch action signal of the user is collected; and the corresponding task management command is executed according to the touch action signal.
  • the task manager can be adjusted.
  • the first pressure signal of the user pressing the touch screen satisfies the pressure threshold corresponding to the task manager, the task manager is called, and then the user Task management can be performed on smart terminal devices.
  • FIG. 1 is a flowchart of a pressure touch-based task management method according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a task manager called in a pressure touch-based task management method according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a pressure touch-based task management system according to an embodiment of the present invention.
  • the core of the present invention is to provide a task management method and system based on pressure touch, which can make it convenient for a person to use a smart terminal device to call a task manager function to facilitate management of a target task item.
  • FIG. 1 is a flowchart of a pressure touch-based task management method according to an embodiment of the present invention.
  • An embodiment of the present invention provides a pressure touch-based task management method for a smart terminal device having a touch screen, including:
  • S11 Acquire a first pressure signal applied by the user on the touch screen.
  • pressing is performed at any position on the touch screen of the smart terminal device, and at this time, the pressing pressure applied by the user is acquired.
  • S12 Determine whether the first pressure signal reaches a preset pressure threshold corresponding to the open task manager.
  • the pressure threshold for invoking the task manager is set, only when the user presses again.
  • the pressure threshold is reached, and it is determined that the task manager is called, and the task manager is called up for the user to perform the task management operation.
  • S14 Collecting a touch action signal of the user.
  • the user can perform the task management operation through the task manager.
  • the user's touch action signal is acquired to obtain the task management operation instruction of the user.
  • Corresponding task management instructions are executed according to the collected touch action signals of the user. To complete the task management operation of the user on the smart terminal device.
  • the user can press the task manager to press any position on the touch screen, and when the user presses the first pressure signal of the touch screen to meet the pressure threshold corresponding to the task manager, the task is called. Manager, then the user can perform task management on the smart terminal device. There is no need to press the home button, which reduces the steps of calling the task manager, which greatly facilitates the call of the task manager function, and since the call is pressed anywhere on the touch screen, the home caused by pressing the home button of the fixed position is avoided. The problem of vulnerable keys.
  • the task management method in an embodiment of the present invention further includes: collecting a first coordinate corresponding to a user when the first pressure signal is applied on the touch screen area; wherein, when the first pressure signal reaches the pre- When the pressure threshold corresponding to the task manager is turned on, the task manager is called up at the first coordinate. Since the task manager is called up at the first coordinate, that is, the user can perform the corresponding task management operation when pressing the position, which further facilitates the one-hand operation.
  • a touch action signal of the user collects a touch action signal of the user, and execute the corresponding task management command according to the touch action signal, including:
  • the task progress is scrolled.
  • the inventor has found that, at present, when a user opens multiple task items in the background of the smart terminal device, or when there are multiple historical tasks in the historical task list, it is necessary to use a finger to slide to change and flip through the items.
  • the task process which is especially inconvenient in one-handed operation.
  • the corresponding scrolling task process includes:
  • the task item located in the uppermost layer in the control task list is transformed to the lowest layer, and the other task items are sequentially raised to the corresponding upper layer interface;
  • the task item at the lowest level in the control task list is transformed to the uppermost layer, and the other task items are sequentially lowered to the corresponding next layer interface.
  • the task item located in the uppermost layer in the control task list is transformed to the lowest layer, and the other task items are sequentially raised to the corresponding ones.
  • a layer of interface until the user issues other operational commands, ie the user's pressing pressure at the first coordinate changes.
  • the task item conversion is read in the reverse order of the above-described transformation order. It is only necessary to change the scrolling of each task item by changing the pressing pressure at the first coordinate.
  • FIG. 2 is a schematic diagram of a task manager called in a pressure touch-based task management method according to an embodiment of the present invention.
  • calling the task manager at the first coordinate comprises: surrounding the first coordinate, and fetching n custom task management function units, where n is an integer greater than 1, on the touch screen It is expressed in the form of a closed area corresponding to n custom task management function units around the area where the first coordinates are located.
  • the touch action signal of the user is collected, and the corresponding task is performed according to the touch action signal.
  • Management instructions including:
  • the four custom task management function units are taken as an example for description.
  • the initial pressing area at the center that is, the area where the first coordinates are located, is defined as the task manager.
  • custom task management function units include: a first function unit 21 for clearing all task items with one key; a second function unit 22 for selecting a current interface task item, starting the current interface task item and setting it to a visible page. The top level, and exits the task manager; the third function unit 23 is configured to delete the current interface task item; and the fourth function unit 24 is configured to lock the current interface task item.
  • the smart terminal device When the user re-presses the touch screen at the task manager retrieval unit 10, the smart terminal device enters the task manager interface, and the user can select to slide to each of the custom task management function units.
  • the smart terminal detects that the sliding track of the user on the touch screen is slid by the task manager calling unit 10 to the first function unit 21, at this time, all the task items are cleared by one button, that is, all task items are closed;
  • the second function unit 22 selects the task item of the current interface, starts the current interface task item and sets it as the top level of the visible page, and exits the task manager, that is, the user selects the task item of the current interface as the target task item, and enters the a task item; when sliding to the third function unit 23, only the current interface task item is deleted; when sliding to the fourth function unit 24, the current interface task item is locked to ensure that all task processes are cleared at one key The task item is not cleared, and is unlocked when it is slid to the fourth functional unit 24 again after the lock is applied.
  • custom task management function units are preferred.
  • the user can set the number of the custom task management function units and the corresponding functions according to the requirements, which is not limited in this embodiment. .
  • the task management function unit surrounds the first coordinate in a ring shape, and may also adopt other forms, such as a semi-circular shape, a rectangular surround, and the like, especially when the first coordinate is located on the touch.
  • a region in which the task management function unit is in a semi-circular shape around the first coordinate, which is not limited in this embodiment.
  • the method further includes: dynamically setting an area location corresponding to the n custom task management function units.
  • the user can customize the location of the area corresponding to the task management function unit, which can be customized according to the needs of the user.
  • the custom task management function unit is surrounded by a circle. When a coordinate is located, the user can customize the corresponding position of the task management function unit.
  • the location of the custom task management function unit corresponding to the first task manager and the second task manager is different from the first coordinate.
  • the left half screen and the right half screen of the touch screen respectively correspond to a set task manager, and by detecting the user's re-pressing position, determining whether the re-pressing position is the left half screen or the right half screen, to adaptively set the corresponding user's previous correspondence. Task manager. In this way, the task management interface popped up by the user's left hand and the right hand is the user's personalized setting.
  • respective defined task management function units in the first task manager and the respective defined task management function units in the second task manager are mirrored and distributed with respect to the position of the first coordinates.
  • the so-called mirror distribution means that the positions of the respective defined task management function units in the first task manager and the respective defined task management function units in the second task manager with respect to the first coordinates are opposite to each other.
  • a certain functional unit is disposed at the right side of the first coordinate
  • the functional unit is disposed at the right left of the first coordinate, such that each The position of the functional unit corresponds to the sliding habit of the left and right hands of the user, which is convenient for the user's operation.
  • FIG. 3 is a schematic structural diagram of a pressure touch-based task management system according to an embodiment of the present invention.
  • an embodiment of the present invention further provides a pressure touch-based task management system, which is used for a smart terminal device having a touch screen, and is characterized in that: the first collection module 31 is configured to collect users. a first pressure signal applied on the touch screen; the first determining module 32 is configured to determine Whether the first pressure signal reaches a preset pressure threshold corresponding to the task manager; the task manager scheduling module 33 is configured to adjust when the first pressure signal reaches a preset pressure threshold corresponding to the task manager The task manager is configured to collect the touch action signal of the user after the task manager is called up. The execution module 35 is configured to execute the corresponding task management command according to the touch action signal.
  • the first collection module collects the pressure signal of the user at this time, and if the pressure of the pressing reaches the preset pressure threshold corresponding to the task manager, the call is called.
  • the task manager and then the second acquisition module collects the touch action of the user, and the execution module executes the corresponding task management instruction according to the touch action signal collected by the second collection module.
  • the first collection module and the second collection module cover the entire touch function area of the touch screen, and the user presses any position on the touch screen to adjust the task manager, when the user presses the first pressure of the touch screen.
  • the task manager When the signal meets the pressure threshold corresponding to the task manager, the task manager is called up, and then the user can perform task management on the smart terminal device. There is no need to press the home button, which reduces the steps of calling the task manager, which greatly facilitates the call of the task manager function, and since the call is pressed anywhere on the touch screen, the home caused by pressing the home button of the fixed position is avoided. The problem of vulnerable keys.
  • the method further includes: a third acquiring module, configured to collect a first coordinate corresponding to the user when the first pressure signal is applied on the touch screen area; wherein the task manager scheduling module is further configured to: when the first pressure signal reaches the pre- When the pressure threshold corresponding to the task manager is turned on, the task manager is called up at the first coordinate.
  • the task manager is called up at the first coordinate of the first pressure signal applied by the user, which facilitates the operation of the user.
  • the user needs to perform the task management operation, only the coordinates of the touch screen need to be pressed. And reach the pressure threshold of the task manager, then the task manager is called at the coordinates, and the user's finger can perform the task management operation in the original place, which is more convenient to use and more convenient to manage.
  • the task manager is preferably called at the first coordinate corresponding to the first pressure signal applied on the touch screen area, or the user may apply pressure at any coordinate of the touch screen when the pressure is reached.
  • the pressure threshold corresponding to the task manager is preset, the task manager is called up at the preset coordinates, and then the user continues to perform the task management function, which is not limited in this embodiment, as the case may be.
  • the second collection module includes a first pressure collection unit, and the first pressure collection unit is configured to collect a second pressure signal applied by the user on the area corresponding to the first coordinate of the touch screen; and the execution module includes pressure comparison.
  • the unit and the task process flipping unit the pressure comparing unit is configured to compare the pressure magnitude relationship between the second pressure signal and the first pressure signal
  • the task progress flipping unit is configured to scan the task progress according to the comparison result of the pressure comparing unit.
  • the task process flipping unit includes a first flipping controller and a second flipping controller, wherein the first flipping controller is configured to control the task manager in the task list at the uppermost layer when the second pressure signal is greater than the first pressure signal
  • the task item is transformed to the lowest level, and the other task items are sequentially raised to the corresponding upper layer interface;
  • the second scrolling controller is configured to be located in the task list of the control task manager when the second pressure signal is smaller than the first pressure signal
  • the bottommost task item is transformed to the top layer, and the other task items are sequentially lowered to the corresponding next layer interface.
  • the user presses the touch screen at a certain coordinate of the touch screen, that is, the first coordinate, and the pressure signal collected by the first collecting module is the first pressure signal, and the task manager is called up, and then the second collecting module continues.
  • the pressure signal applied by the user is collected, and the execution module performs the flipping of the task page according to the magnitude relationship between the second pressure signal collected by the second collection module and the first pressure signal collected by the first acquisition module. That is, the user applies a pressure signal to first call up the task manager.
  • the user increases the pressure of the pressing or reduces the pressure of the pressing as needed to perform a forward scrolling or a reverse scrolling.
  • the task manager scheduling module includes a task management function unit retrieving unit, and the task management function unit retrieving unit is configured to surround the first coordinates and retrieve n custom task management function units, where n is an integer greater than 1.
  • the second collection module further includes a pressure track acquisition unit, configured to collect the sliding track information of the user on the touch screen;
  • the execution module further includes a first determining unit and a sliding function executing unit, where the first determining unit is configured to determine whether the sliding track information is The first coordinate to the corresponding custom task management function unit corresponding area, and the sliding function execution unit is configured to perform the customization when determining that the sliding track information is from the first coordinate to the corresponding custom task management function unit corresponding area Task management function corresponding to the task management function unit.
  • the task manager scheduling module includes a task management function unit retrieving unit.
  • the first coordinate corresponding to the pressing position is called to retrieve n custom task management function units, and then the pressing portion of the user's finger or the like is moved from the first coordinate to a certain custom
  • the task management function unit is executed, the task management function corresponding to the custom task management function unit is executed.
  • the pressure touch-based task management method and system provided by the present invention can be adjusted by the user pressing any position on the touch screen, and the first pressure signal of the user pressing the touch screen is satisfied.
  • the task manager corresponds to the pressure threshold, the task manager is called up, and then the user can perform task management on the smart terminal device. There is no need to press the home button, which reduces the steps of calling the task manager, which greatly facilitates the call of the task manager function, and since the call is pressed anywhere on the touch screen, the home caused by pressing the home button of the fixed position is avoided.
  • the problem of vulnerable keys is avoided.
  • the user realizes the rapid review of the task process by changing the strength of the pressing, and customizes the function area around the pressing position, which further facilitates the user to perform task management on the smart terminal device, especially for the user to operate the smart terminal device with one hand. Perform task management.

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Abstract

本发明公开了一种基于压力触控的任务管理方法和系统,该方法包括:采集用户在触控屏上施加的第一压力信号;判断第一压力信号是否达到预设的开启任务管理器所对应的压力阈值;若第一压力信号达到预设的开启任务管理器所对应的压力阈值,则调出任务管理器;采集用户的触控动作信号;根据触控动作信号,执行对应的任务管理指令。用户按压触控屏上的任意位置皆可调出任务管理器,然后用户就可以对智能终端设备进行任务管理。无需按压home键,减少了调取任务管理器的步骤,极大地方便了调用任务管理器功能,且由于是在触控屏上的任意位置按压调用,避免了按压固定位置的home键造成的home键易损的问题。

Description

一种基于压力触控的任务管理方法和系统
本申请要求于2016年02月29日提交中国专利局,申请号为201610114541.6、发明名称为“一种基于压力触控的任务管理方法和系统”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
本发明涉及触控管理领域,特别是涉及一种基于压力触控的任务管理方法和系统。
背景技术
随着科学技术的发展,各种电子产生走进了人们的工作和生活中,为人们提供了极大的便利。
手机等智能终端已经成为人们不可或缺的工具,通常情况下,智能手机等智能终端设备设有一个位于屏幕下方的home键(即主菜单键),该home键根据实际情况设置为实体按键或虚拟按键。当用户打开了多个任务时,用户可以通过按压home键来打开任务管理器功能,然后对目标任务项进行操作,如关闭某项或某些任务,或者使某项任务处于操作界面。但是,手持智能终端时,手指移动到home键并进行操作并不方便,尤其是如今智能终端的体积越来越大,单手操作时极其不顺手,且频繁的按压实体home键区域,容易造成实体home键的损坏,而使用虚拟home键需要先调出虚拟home键,甚至还需要进行多次点击home键才能调出任务管理器功能,这给用户带来了极大的不便。
因而,如何使得人们在使用智能终端设备时,方便调用任务管理器功能,以便对目标任务项进行管理,是本领域技术人员目前需要解决的技术问题。
发明内容
本发明的目的是提供一种基于压力触控的任务管理方法和系统,可以使得人们在使用智能终端设备时,方便调用任务管理器功能,便于对目标任务项进行管理。
为解决上述技术问题,本发明提供了如下技术方案:
一种基于压力触控的任务管理方法,用于具有触控屏的智能终端设备,包括:
采集用户在触控屏上施加的第一压力信号;
判断所述第一压力信号是否达到预设的开启任务管理器所对应的压力阈值;
若所述第一压力信号达到预设的开启任务管理器所对应的压力阈值,则调出任务管理器;
采集用户的触控动作信号;
根据所述触控动作信号,执行对应的任务管理指令。
优选地,还包括:
采集所述用户在所述触控屏区域上施加所述第一压力信号时对应的第一坐标;
其中,当所述第一压力信号达到预设的开启任务管理器所对应的压力阈值时,在所述第一坐标处调出所述任务管理器。
优选地,所述采集用户的触控动作信号,根据所述触控动作信号,执行对应的任务管理指令包括:
采集用户在所述触控屏的第一坐标对应的区域上施加的第二压力信号;
根据所述第二压力信号和所述第一压力信号的压力大小关系,对应翻阅任务进程。
优选地,根据所述第二压力信号和所述第一压力信号的压力大小关系,对应翻阅任务进程包括:
判断所述第二压力信号是否大于所述第一压力信号;
若所述第二压力信号大于所述第一压力信号,则控制任务列表中位于最上层的任务项变换至最底层,而其他各任务项依次上升到对应的上一层界面;
若所述第二压力信号小于所述第一压力信号,则控制任务列表中位于最底层的任务项变换至最上层,而其他各任务项依次下降到对应的下一层界面。
优选地,在所述第一坐标处调出所述任务管理器包括:
环绕所述第一坐标,调取n个自定义任务管理功能单元,n为大于1的整 数。
优选地,所述采集用户的触控动作信号,根据所述触控动作信号,执行对应的任务管理指令,包括:
采集所述用户在所述触控屏上的滑动轨迹信息;
判断所述滑动轨迹信息是否是由所述第一坐标至对应的自定义任务管理功能单元对应区域;
若是,则执行该自定义任务管理功能单元对应的任务管理功能。
一种基于压力触控的任务管理系统,用于具有触控屏的智能终端设备,包括:
第一采集模块,用于采集用户在触控屏上施加的第一压力信号;
第一判断模块,用于判断所述第一压力信号是否达到预设的开启任务管理器所对应的压力阈值;
任务管理器调度模块,用于在判定所述第一压力信号达到预设的开启任务管理器所对应的压力阈值时,调出任务管理器;
第二采集模块,用于在所述任务管理器被调出后,采集用户的触控动作信号;
执行模块,用于根据所述触控动作信号,执行对应的任务管理指令。
优选地,还包括:
第三采集模块,用于采集所述用户在触控屏区域上施加所述第一压力信号时对应的第一坐标;
其中,所述任务管理器调度模块还用于当所述第一压力信号达到预设的开启任务管理器所对应的压力阈值时,在所述第一坐标处调出所述任务管理器。
优选地,所述第二采集模块包括第一压力采集单元,所述第一压力采集单元用于采集用户在所述触控屏的第一坐标对应的区域上施加的第二压力信号;
所述执行模块包括压力比较单元和任务进程翻阅单元,所述压力比较单元用于比较所述第二压力信号和所述第一压力信号的压力大小关系,所述任务进程翻阅单元用于根据所述压力比较单元的比较结果对应翻阅任务进程。
优选地,所述任务进程翻阅单元包括第一翻阅控制器和第二翻阅控制器,
其中,所述第一翻阅控制器用于在所述第二压力信号大于所述第一压力信 号时,控制任务管理器的任务列表中位于最上层的任务项变换至最底层,而其他各任务项依次上升到对应的上一层界面;
所述第二翻阅控制器用于在所述第二压力信号小于所述第一压力信号时,控制任务管理器的任务列表中位于最底层的任务项变换至最上层,而其他各任务项依次下降到对应的下一层界面。
优选地,所述任务管理器调度模块包括任务管理功能单元调取单元,所述任务管理功能单元调取单元用于环绕所述第一坐标,调取n个自定义任务管理功能单元,n为大于1的整数。
优选地,所述第二采集模块还包括压力轨迹采集单元,用于采集所述用户在所述触控屏上的滑动轨迹信息;
所述执行模块还包括第一判断单元和滑动功能执行单元,所述第一判断单元用于判断所述滑动轨迹信息是否是由所述第一坐标至对应的自定义任务管理功能单元对应区域,所述滑动功能执行单元用于在判定所述滑动轨迹信息是由所述第一坐标至对应的自定义任务管理功能单元对应区域时,执行该自定义任务管理功能单元对应的任务管理功能。
与现有技术相比,上述技术方案具有以下优点:
本发明所提供的一种基于压力触控的任务管理方法,包括:采集用户在触控屏上施加的第一压力信号;判断第一压力信号是否达到预设的开启任务管理器所对应的压力阈值;若第一压力信号达到预设的开启任务管理器所对应的压力阈值,则调出任务管理器;采集用户的触控动作信号;根据触控动作信号,执行对应的任务管理指令。用户按压触控屏上的任意位置皆可调出任务管理器,当用户按压触控屏的第一压力信号满足开启任务管理器所对应的压力阈值时,即调出任务管理器,然后用户就可以对智能终端设备进行任务管理。无需按压home键,减少了调取任务管理器的步骤,极大地方便了调用任务管理器功能,且由于是在触控屏上的任意位置按压调用,避免了按压固定位置的home键造成的home键易损的问题。
附图说明
为了更清楚地说明本发明实施方式或现有技术中的技术方案,下面将对实 施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本发明的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明一种具体实施方式所提供的基于压力触控的任务管理方法的流程图;
图2为本发明一种具体实施方式所提供的基于压力触控的任务管理方法中调出的任务管理器的示意图;
图3为本发明一种具体实施方式所提供的基于压力触控的任务管理系统的结构示意图。
具体实施方式
本发明的核心是提供一种基于压力触控的任务管理方法和系统,可以使得人们在使用智能终端设备时,方便调用任务管理器功能,便于对目标任务项进行管理。
为了使本发明的上述目的、特征和优点能够更为明显易懂,下面结合附图对本发明的具体实施方式做详细的说明。
在以下描述中阐述了具体细节以便于充分理解本发明。但是本发明能够以多种不同于在此描述的其它方式来实施,本领域技术人员可以在不违背本发明内涵的情况下做类似推广。因此本发明不受下面公开的具体实施方式的限制。
请参考图1,图1为本发明一种具体实施方式所提供的基于压力触控的任务管理方法的流程图。
本发明的一种实施方式所提供的一种基于压力触控的任务管理方法,用于具有触控屏的智能终端设备,包括:
S11:采集用户在触控屏上施加的第一压力信号。
当用户需要使用任务管理器功能时,在智能终端设备的触控屏上的任意位置进行按压,此时,获取用户施加的按压压力。
S12:判断第一压力信号是否达到预设的开启任务管理器所对应的压力阈值。
S13:若第一压力信号达到预设的开启任务管理器所对应的压力阈值,则 调出任务管理器。
由于用户在正常操作智能终端设备时,也需要触摸触控屏,为了避免此时误将正常按压动作判定为调用任务管理器,因此,设置了调用任务管理器的压力阈值,只有当用户重按触控屏,且重按触控屏时的第一压力信号达到了该压力阈值,才判定为调用任务管理器,此时调出任务管理器,以供用户进行任务管理操作。
S14:采集用户的触控动作信号。
当调出了任务管理器后,用户即可通过任务管理器进行任务管理操作,此时,采集用户的触控动作信号即获取用户的任务管理操作指令。
S15:根据触控动作信号,执行对应的任务管理指令。
根据采集到的用户的触控动作信号,执行对应的任务管理指令。以完成用户对智能终端设备的任务管理操作。
在本实施方式中,用户按压触控屏上的任意位置皆可调出任务管理器,当用户按压触控屏的第一压力信号满足开启任务管理器所对应的压力阈值时,即调出任务管理器,然后用户就可以对智能终端设备进行任务管理。无需按压home键,减少了调取任务管理器的步骤,极大地方便了调用任务管理器功能,且由于是在触控屏上的任意位置按压调用,避免了按压固定位置的home键造成的home键易损的问题。
为了进一步方便用户的操作,本发明一种实施方式中的任务管理方法还包括:采集用户在触控屏区域上施加第一压力信号时对应的第一坐标;其中,当第一压力信号达到预设的开启任务管理器所对应的压力阈值时,在第一坐标处调出任务管理器。由于在第一坐标处调出任务管理器,即用户在按压位置即可进行相应的任务管理操作,进一步方便了单手操作。
在本发明的一种实施方式中,优选采集用户的触控动作信号,根据触控动作信号,执行对应的任务管理指令包括:
采集用户在触控屏的第一坐标对应的区域上施加的第二压力信号;
根据第二压力信号和第一压力信号的压力大小关系,对应翻阅任务进程。
发明人研究发现,目前,当用户在智能终端设备的后台打开多个任务项时,或在历史任务列表中有多个历史任务时,需要用手指进行滑动来变换和翻阅目 标任务进程,这在单手操作时尤其不便。在本实施方式中,只需在原始的重按位置,通过改变施加的压力即可实现快速翻阅各项任务进程。如增加按压压力,即第二压力信号大于第一压力信号,则按照预设的顺序变换翻阅任务进程,直至用户发出其他的操作指令,当第二压力信号小于第一压力信号时,可以按照不同的变换翻阅顺序来进行任务进程的翻阅。
在本实施方式中,优选根据第二压力信号和第一压力信号的压力大小关系,对应翻阅任务进程包括:
判断第二压力信号是否大于第一压力信号;
若第二压力信号大于第一压力信号,则控制任务列表中位于最上层的任务项变换至最底层,而其他各任务项依次上升到对应的上一层界面;
若第二压力信号小于第一压力信号,则控制任务列表中位于最底层的任务项变换至最上层,而其他各任务项依次下降到对应的下一层界面。
在本实施方式中,当第二压力信号大于第一压力信号时,即增加按压压力时,控制任务列表中位于最上层的任务项变换至最底层,而其他各任务项依次上升到对应的上一层界面,直至用户发出其他的操作指令,即用户在第一坐标处的按压压力发生变化。而当第二压力信号小于第一压力信号时,则按照与上述变换顺序相反的顺序进行任务项变换翻阅。只需要通过改变在第一坐标处的按压压力即可实现对各任务项的变换翻阅。
需要说明的是,本实施方式只是优选上述的第二压力信号和第一压力信号对应的大小关系以及变换翻阅任务项的顺序,也可以根据第二压力信号和第一压力信号的压力大小关系,采用其他的变换翻阅任务进程的顺序,本实施方式对此并不做限定,具体视情况而定。
请参考图2,图2为本发明一种具体实施方式所提供的基于压力触控的任务管理方法中调出的任务管理器的示意图。
在本发明的一种实施方式中,在第一坐标处调出任务管理器包括:环绕第一坐标,调取n个自定义任务管理功能单元,n为大于1的整数,在触控屏上的表现形式为在第一坐标所在的区域周围,环绕有n个自定义任务管理功能单元对应的封闭区域。
优选地,采集用户的触控动作信号,根据触控动作信号,执行对应的任务 管理指令,包括:
采集用户在触控屏上的滑动轨迹信息;
判断滑动轨迹信息是否是由第一坐标至对应的自定义任务管理功能单元对应区域;
若是,则执行该自定义任务管理功能单元对应的任务管理功能。
在本实施方式中,以调取4个自定义任务管理功能单元为例进行说明,如图2所示,位于中心的为初始按压区域,即第一坐标所在区域,定义为任务管理器调取单元10。n个自定义任务管理功能单元包括:第一功能单元21,用于一键清除所有任务项;第二功能单元22,用于选择当前界面任务项,启动该当前界面任务项并置为可见页面顶层,并退出任务管理器;第三功能单元23,用于删除当前界面任务项;第四功能单元24,用于对当前界面任务项进行加锁。
当用户在任务管理器调取单元10处重按触控屏时,智能终端设备进入到任务管理器界面,用户可以选择向各个自定义任务管理功能单元处滑动。当智能终端检测到用户在触控屏上的滑动轨迹由任务管理器调取单元10滑动到第一功能单元21时,此时一键清除所有任务项,即关闭所有的任务项;而滑动到第二功能单元22时,选择当前界面的任务项,启动该当前界面任务项并置为可见页面顶层,并退出任务管理器,即用户选择当前界面的任务项为目标任务项,并进入到该任务项;当滑动到第三功能单元23时,只删除当前界面任务项;当滑动到第四功能单元24时,对当前界面任务项进行加锁,以确保在一键清理所有任务进程时该任务项不被清理掉,当加锁后再次滑到该第四功能单元24时则进行解锁。
需要说明的是,本实施方式只是优选上述四个自定义任务管理功能单元,用户可以根据需要自行设置自定义任务管理功能单元的个数和各自对应的功能,本实施方式对此并不做限定。
还需要说明的是,本实施方式中优选各自定义任务管理功能单元呈环形环绕第一坐标所在区域,也可以采用其他形式,如半环形、矩形环绕等等,尤其是当第一坐标位于触控屏的边缘时,优选各自定义任务管理功能单元呈半环形环绕第一坐标所在区域,本实施方式对此并不做限定。
进一步地,还包括:动态设置n个自定义任务管理功能单元对应的区域位置。
为了满足不同用户的习惯,用户可以自定义各自定义任务管理功能单元对应的区域位置,可以根据用户的需要自定义设置在第一坐标所在区域的周围,当自定义任务管理功能单元呈环形环绕第一坐标所在区域时,用户可以自定义设置各自定义任务管理功能单元的对应位置。
由于用户进行单手操作时,左手和右手的操作习惯大多不同,为了提高用户体验,还包括:
判断第一坐标是否位于触控屏的右半屏;
若是,则调出第一任务管理器;
若否,则调出第二任务管理器;
其中,第一任务管理器和第二任务管理器各自对应的自定义任务管理功能单元相对于第一坐标的位置不同。
触控屏的左半屏和右半屏分别对应一种设置的任务管理器,通过检测用户的重按位置,确定重按位置为左半屏还是右半屏,以自适应用户之前设置的对应任务管理器。这样,用户左手重按和右手重按弹出的任务管理界面就是用户的个性化设置。
进一步地,第一任务管理器中的各自定义任务管理功能单元和第二任务管理器中的各自定义任务管理功能单元相对于第一坐标的位置成镜像分布。
所谓的镜像分布指的是,第一任务管理器中的各自定义任务管理功能单元和第二任务管理器中的各自定义任务管理功能单元相对于第一坐标的位置是左右相反的。如在第一任务管理器中,某一功能单元设置在第一坐标的正右方,则在第二任务管理器中,该功能单元则设置在第一坐标的正左方,这样,使得各功能单元的位置与用户左右手的滑动习惯相对应,方便用户的操作。
请参考图3,图3为本发明一种具体实施方式所提供的基于压力触控的任务管理系统的结构示意图。
相应地,本发明一种实施方式还提供了一种基于压力触控的任务管理系统,用于具有触控屏的智能终端设备,其特征在于,包括:第一采集模块31,用于采集用户在触控屏上施加的第一压力信号;第一判断模块32,用于判断 第一压力信号是否达到预设的开启任务管理器所对应的压力阈值;任务管理器调度模块33,用于在判定第一压力信号达到预设的开启任务管理器所对应的压力阈值时,调出任务管理器;第二采集模块34,用于在任务管理器被调出后,采集用户的触控动作信号;执行模块35,用于根据触控动作信号,执行对应的任务管理指令。
在本实施方式中,当用户按压智能终端设备的触控屏时,第一采集模块采集用户此时的压力信号,若按压的压力达到预设的开启任务管理器对应的压力阈值,则调出任务管理器,而后,第二采集模块采集用户的触控动作,执行模块则根据第二采集模块采集的触控动作信号执行对应的任务管理指令。在本实施方式中,第一采集模块和第二采集模块覆盖触摸屏的整个触摸功能区域,用户按压触控屏上的任意位置皆可调出任务管理器,当用户按压触控屏的第一压力信号满足开启任务管理器所对应的压力阈值时,即调出任务管理器,然后用户就可以对智能终端设备进行任务管理。无需按压home键,减少了调取任务管理器的步骤,极大地方便了调用任务管理器功能,且由于是在触控屏上的任意位置按压调用,避免了按压固定位置的home键造成的home键易损的问题。
进一步地,还包括:第三采集模块,用于采集用户在触控屏区域上施加第一压力信号时对应的第一坐标;其中,任务管理器调度模块还用于当第一压力信号达到预设的开启任务管理器所对应的压力阈值时,在第一坐标处调出任务管理器。
在本实施方式中,在用户施加第一压力信号的第一坐标处调出任务管理器,方便了用户的操作,当用户需要进行任务管理操作时,只需要在触摸屏的任意一个坐标处进行按压,并达到调出任务管理器的压力阈值,则在该坐标处调出任务管理器,用户的手指在原地即可进行任务管理操作,使用更加方便,管理更加便捷。
需要说明的是,本实施方式只是优选在触控屏区域上施加第一压力信号对应的第一坐标处调出任务管理器,也可以由用户在触摸屏的任意坐标处施加压力,当该压力达到预设的开启任务管理器所对应的压力阈值时,在预设的坐标处调出任务管理器,然后用户继续进行任务管理功能,本实施方式对此并不进行限定,具体视情况而定。
用户在对任务管理器进行操作时,常常会需要对任务页进行翻页的操作,即如后台打开了多个任务,则打开任务管理器时,各任务页通常会自上至下根据任务打开的时间等顺序进行排列,此时,用户可能需要对其中的某一个任务页进行任务管理,这就需要将该任务页调到顶层界面。在本实施方式中,第二采集模块包括第一压力采集单元,第一压力采集单元用于采集用户在触控屏的第一坐标对应的区域上施加的第二压力信号;执行模块包括压力比较单元和任务进程翻阅单元,压力比较单元用于比较第二压力信号和第一压力信号的压力大小关系,任务进程翻阅单元用于根据压力比较单元的比较结果对应翻阅任务进程。其中,任务进程翻阅单元包括第一翻阅控制器和第二翻阅控制器,其中,第一翻阅控制器用于在第二压力信号大于第一压力信号时,控制任务管理器的任务列表中位于最上层的任务项变换至最底层,而其他各任务项依次上升到对应的上一层界面;第二翻阅控制器用于在第二压力信号小于第一压力信号时,控制任务管理器的任务列表中位于最底层的任务项变换至最上层,而其他各任务项依次下降到对应的下一层界面。
在本实施方式中,用户在触摸屏的某一坐标处即第一坐标处按压触摸屏,第一采集模块采集的压力信号为第一压力信号,此时调出任务管理器,然后第二采集模块继续采集用户施加的压力信号,执行模块则根据第二采集模块采集的第二压力信号和第一采集模块采集的第一压力信号的大小关系,执行任务页的翻阅。即用户施加一个压力信号先调出任务管理器,此时,用户根据需要增加按压的压力或者减小按压的压力,以此来进行正向翻阅或者逆向翻阅。
更进一步地,任务管理器调度模块包括任务管理功能单元调取单元,任务管理功能单元调取单元用于环绕第一坐标,调取n个自定义任务管理功能单元,n为大于1的整数。第二采集模块还包括压力轨迹采集单元,用于采集用户在触控屏上的滑动轨迹信息;执行模块还包括第一判断单元和滑动功能执行单元,第一判断单元用于判断滑动轨迹信息是否是由第一坐标至对应的自定义任务管理功能单元对应区域,滑动功能执行单元用于在判定滑动轨迹信息是由第一坐标至对应的自定义任务管理功能单元对应区域时,执行该自定义任务管理功能单元对应的任务管理功能。
在实际应用中,除却对任务项进行翻阅之外,用户往往还需要通过任务管 理器进行其他的功能操作。在本实施方式中,为了方便用户的操作,任务管理器调度模块包括任务管理功能单元调取单元。当用户进行按压调取出任务管理器时,环绕按压位置所对应的第一坐标调取n个自定义任务管理功能单元,然后用户的手指等按压部由第一坐标处移动至某一自定义任务管理功能单元时,即执行该自定义任务管理功能单元对应的任务管理功能。
综上所述,本发明提供的基于压力触控的任务管理方法和系统,用户按压触控屏上的任意位置皆可调出任务管理器,当用户按压触控屏的第一压力信号满足开启任务管理器所对应的压力阈值时,即调出任务管理器,然后用户就可以对智能终端设备进行任务管理。无需按压home键,减少了调取任务管理器的步骤,极大地方便了调用任务管理器功能,且由于是在触控屏上的任意位置按压调用,避免了按压固定位置的home键造成的home键易损的问题。
此外,用户通过改变按压的力度实现了快速翻阅任务进程,且在按压位置周围自定义为功能区域,进一步方便了用户对智能终端设备进行任务管理,尤其是方便了用户单手操作对智能终端设备进行任务管理。
以上对本发明所提供一种基于压力触控的任务管理方法和系统进行了详细介绍。本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施方式的说明只是用于帮助理解本发明及其核心思想。应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以对本发明进行若干改进和修饰,这些改进和修饰也落入本发明权利要求的保护范围内。

Claims (12)

  1. 一种基于压力触控的任务管理方法,用于具有触控屏的智能终端设备,其特征在于,包括:
    采集用户在触控屏上施加的第一压力信号;
    判断所述第一压力信号是否达到预设的开启任务管理器所对应的压力阈值;
    若所述第一压力信号达到预设的开启任务管理器所对应的压力阈值,则调出任务管理器;
    采集用户的触控动作信号;
    根据所述触控动作信号,执行对应的任务管理指令。
  2. 根据权利要求1所述的方法,其特征在于,还包括:
    采集所述用户在所述触控屏区域上施加所述第一压力信号时对应的第一坐标;
    其中,当所述第一压力信号达到预设的开启任务管理器所对应的压力阈值时,在所述第一坐标处调出所述任务管理器。
  3. 根据权利要求2所述的方法,其特征在于,所述采集用户的触控动作信号,根据所述触控动作信号,执行对应的任务管理指令包括:
    采集用户在所述触控屏的第一坐标对应的区域上施加的第二压力信号;
    根据所述第二压力信号和所述第一压力信号的压力大小关系,对应翻阅任务进程。
  4. 根据权利要求3所述的方法,其特征在于,根据所述第二压力信号和所述第一压力信号的压力大小关系,对应翻阅任务进程包括:
    判断所述第二压力信号是否大于所述第一压力信号;
    若所述第二压力信号大于所述第一压力信号,则控制任务列表中位于最上层的任务项变换至最底层,而其他各任务项依次上升到对应的上一层界面;
    若所述第二压力信号小于所述第一压力信号,则控制任务列表中位于最底层的任务项变换至最上层,而其他各任务项依次下降到对应的下一层界面。
  5. 根据权利要求2至4任一项所述的方法,其特征在于,在所述第一坐 标处调出所述任务管理器包括:
    环绕所述第一坐标,调取n个自定义任务管理功能单元,n为大于1的整数。
  6. 根据权利要求5所述的方法,其特征在于,所述采集用户的触控动作信号,根据所述触控动作信号,执行对应的任务管理指令,包括:
    采集所述用户在所述触控屏上的滑动轨迹信息;
    判断所述滑动轨迹信息是否是由所述第一坐标至对应的自定义任务管理功能单元对应区域;
    若是,则执行该自定义任务管理功能单元对应的任务管理功能。
  7. 一种基于压力触控的任务管理系统,用于具有触控屏的智能终端设备,其特征在于,包括:
    第一采集模块,用于采集用户在触控屏上施加的第一压力信号;
    第一判断模块,用于判断所述第一压力信号是否达到预设的开启任务管理器所对应的压力阈值;
    任务管理器调度模块,用于在判定所述第一压力信号达到预设的开启任务管理器所对应的压力阈值时,调出任务管理器;
    第二采集模块,用于在所述任务管理器被调出后,采集用户的触控动作信号;
    执行模块,用于根据所述触控动作信号,执行对应的任务管理指令。
  8. 根据权利要求7所述的系统,其特征在于,还包括:
    第三采集模块,用于采集所述用户在触控屏区域上施加所述第一压力信号时对应的第一坐标;
    其中,所述任务管理器调度模块还用于当所述第一压力信号达到预设的开启任务管理器所对应的压力阈值时,在所述第一坐标处调出所述任务管理器。
  9. 根据权利要求8所述的系统,其特征在于,所述第二采集模块包括第一压力采集单元,所述第一压力采集单元用于采集用户在所述触控屏的第一坐标对应的区域上施加的第二压力信号;
    所述执行模块包括压力比较单元和任务进程翻阅单元,所述压力比较单元用于比较所述第二压力信号和所述第一压力信号的压力大小关系,所述任务进 程翻阅单元用于根据所述压力比较单元的比较结果对应翻阅任务进程。
  10. 根据权利要求9所述的系统,其特征在于,所述任务进程翻阅单元包括第一翻阅控制器和第二翻阅控制器,
    其中,所述第一翻阅控制器用于在所述第二压力信号大于所述第一压力信号时,控制任务管理器的任务列表中位于最上层的任务项变换至最底层,而其他各任务项依次上升到对应的上一层界面;
    所述第二翻阅控制器用于在所述第二压力信号小于所述第一压力信号时,控制任务管理器的任务列表中位于最底层的任务项变换至最上层,而其他各任务项依次下降到对应的下一层界面。
  11. 根据权利要求8至10任一项所述的系统,其特征在于,所述任务管理器调度模块包括任务管理功能单元调取单元,所述任务管理功能单元调取单元用于环绕所述第一坐标,调取n个自定义任务管理功能单元,n为大于1的整数。
  12. 根据权利要求11所述的系统,其特征在于,所述第二采集模块还包括压力轨迹采集单元,用于采集所述用户在所述触控屏上的滑动轨迹信息;
    所述执行模块还包括第一判断单元和滑动功能执行单元,所述第一判断单元用于判断所述滑动轨迹信息是否是由所述第一坐标至对应的自定义任务管理功能单元对应区域,所述滑动功能执行单元用于在判定所述滑动轨迹信息是由所述第一坐标至对应的自定义任务管理功能单元对应区域时,执行该自定义任务管理功能单元对应的任务管理功能。
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