WO2017181540A1 - 一种移动终端的操作方法和装置 - Google Patents

一种移动终端的操作方法和装置 Download PDF

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Publication number
WO2017181540A1
WO2017181540A1 PCT/CN2016/089929 CN2016089929W WO2017181540A1 WO 2017181540 A1 WO2017181540 A1 WO 2017181540A1 CN 2016089929 W CN2016089929 W CN 2016089929W WO 2017181540 A1 WO2017181540 A1 WO 2017181540A1
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Prior art keywords
interface
mobile terminal
touch operation
floating
floating interface
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PCT/CN2016/089929
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English (en)
French (fr)
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刘鑫正
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中兴通讯股份有限公司
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Publication of WO2017181540A1 publication Critical patent/WO2017181540A1/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
    • 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
    • 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

Definitions

  • This document relates to, but is not limited to, the field of human terminal interaction technology of mobile terminals, and in particular, to a method and device for operating a mobile terminal.
  • the screen size exceeds a certain size, for example, when the user operates a mobile terminal that is larger than a 5-inch screen, if the user wants to click on the application at the top of the screen, the hand holding the mobile terminal can only be moved up, or both hands have to be aligned. With the help of the other hand, the operation is completed, and the convenience of one-hand operation is lost.
  • a mobile terminal such as a mobile phone
  • the related art provides a solution in which the original display screen of the handheld terminal is displayed by dividing the display area of the handheld terminal into the first area and the second area.
  • the operation here includes only two types: moving the cursor and The location where the cursor is located is selected; another solution is to increase the physical touch button to control the screen cursor movement of the terminal, and solve the problem that the screen is too large and difficult to operate with one hand, and the principle is similar to the touch screen provided by the notebook computer.
  • the one-hand operation method of the mobile terminal in the above related art mainly has the following disadvantages:
  • the present invention provides a mobile terminal operating method and device, which can conveniently and efficiently operate a large-screen mobile terminal without one-handed movement, and implement various common touch screen functions to improve the use and experience of the mobile terminal. Achieve the effect of one-handed operation.
  • the present invention provides a method for operating a mobile terminal, the method comprising:
  • the foregoing method before the starting the floating interface, further includes:
  • the floating interface includes one or more of the following regions:
  • mapping the mapping operation to the display interface of the mobile terminal according to the touch operation on the floating interface comprises:
  • the location of the touch operation on the floating interface is mapped to the corresponding location of the display interface of the mobile terminal, and the display of the touch operation identifier in the corresponding location includes:
  • the parameter adjustment area is used to adjust a gradation parameter and a switch parameter, wherein the gradation parameter includes at least one or more of the following parameters:
  • the screen brightness and sound size of the mobile terminal the transparency of the floating interface, and the mapping sensitivity.
  • the touch operation identifier is displayed in the form of a cursor or an arrow.
  • the floating interface is a transparent frame suspended on the display interface of the mobile terminal, wherein the transparent frame can be moved and hidden, and the display position of the transparent frame is displayed on the display interface of the mobile terminal.
  • the transparent frame can be moved and hidden, and the display position of the transparent frame is displayed on the display interface of the mobile terminal.
  • the foregoing method further includes:
  • the touch operation identifier remains on the mobile terminal display interface.
  • the invention also discloses an operating device of a mobile terminal, comprising: a starting module, a mapping module and an executing module; wherein
  • the startup module is configured to start a floating interface
  • the mapping module is configured to map the touch operation to a display interface of the mobile terminal according to a touch operation on the floating interface;
  • the execution module is configured to perform the touch operation on the display interface of the mobile terminal.
  • the foregoing apparatus further includes:
  • the floating interface includes any one or more of the following regions:
  • the mapping module maps the touch operation to the display interface of the mobile terminal, including:
  • the mapping module includes: an obtaining module and a determining display module, where:
  • the acquiring module is configured to receive a touch operation in the touch area of the floating interface, and obtain information about the first position of the touch operation on the floating interface, where the information of the first location includes coordinate information. ;
  • the determining the display module is configured to determine that the first location of the touch operation is mapped to the second location of the display interface of the mobile terminal according to the zoom interface and the zoom ratio of the display terminal length and width of the mobile terminal Information, and displaying the touch operation identifier in the second position.
  • the floating interface is activated, wherein the floating interface includes different regions; and the touch operation is mapped to the display interface of the mobile terminal according to a touch operation on the floating interface; Performing the touch operation on the mobile terminal display interface.
  • the method is applicable to all mobile terminals, and the technology is simple to implement, powerful, and more convenient for the user to operate.
  • FIG. 1 is a schematic flowchart of a method for operating a mobile terminal according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of distribution and mapping of a display interface of a floating interface and a mobile terminal according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of a hidden interface hiding and appearance control according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of functional area division of a floating interface according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of position and size adjustment of a floating interface according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of an example of a suspension interface parameter adjustment area according to an embodiment of the present invention.
  • FIG. 7 is a schematic flowchart of adaptively adjusting sensitivity of a floating interface touch area and mapping to a display interface of a mobile terminal according to an embodiment of the present invention
  • FIG. 8 is a schematic flowchart of a suspension interface hiding and appearance control strategy according to an embodiment of the present invention.
  • FIG. 9 is a schematic flowchart of a position and size adjustment of a suspension interface according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of a component of an operating device of a mobile terminal according to an embodiment of the present invention.
  • the mobile terminal may include, but is not limited to, a mobile device such as a mobile phone, a tablet, or a palmtop computer.
  • the implementation process of the operation method of the mobile terminal in the embodiment of the present invention includes the following steps 101 to 103:
  • Step 101 Start a floating interface
  • the method further includes:
  • the floating interface may include one or more of the following regions:
  • the floating interface may be a transparent frame suspended on the display interface of the mobile terminal, and may be a separate window.
  • the transparent frame is movable and hidden, and the display position of the transparent frame is at the lower left or the lower right of the display interface of the mobile terminal, and the color of the floating interface may be selected by the user according to personal preference and needs. Parameters such as size and transparency are adjusted; a variety of common touch screen functions are integrated on the floating interface, which can solve the inconvenience of one-handed operation of a large-screen mobile terminal, and can realize click, double-click, slide, drag, return, Home, Operation such as parameter setting.
  • the touch area can be implemented in the touch area; several virtual key icons are set in the virtual key area,
  • the virtual button area is used to execute an instruction of a virtual key operation.
  • the virtual key operation includes at least one of the following:
  • the meanings of the above two buttons can be the same as the function of the touch screen of the mobile terminal; the parameter adjustment area can be used to quickly adjust some parameters, including gradation parameters and switch parameters.
  • the gradation parameter may include at least one of the following:
  • the screen brightness and sound size of the mobile terminal the transparency of the floating interface, and the mapping sensitivity.
  • Step 102 Map the touch operation to a display interface of the mobile terminal according to a touch operation on the floating interface.
  • mapping the touch operation to the display interface of the mobile terminal comprises:
  • mapping process can include:
  • the set information includes coordinate information
  • the movement track of the touch operation on the floating interface may be displayed on the display interface of the mobile terminal.
  • the location information is used here because the location information of the touch operation includes layer (in the floating layer or on the mobile terminal display interface layer) information and coordinate information, and the location information here is coordinate information;
  • the coordinates of the point acquired on the floating interface are regarded as the information of the first location
  • the coordinates of the touch point mapped to the corresponding point of the display interface of the mobile terminal are regarded as the information of the second location.
  • the touch operation identifier is displayed in the form of a cursor or an arrow.
  • Step 103 Perform the touch operation on the mobile terminal display interface.
  • the method may further include: when the application icon in the mobile terminal display interface overlapping the floating interface is operated, the touch operation identifier remains on the mobile terminal display On the interface.
  • Figure 2 shows the floating interface and mobile terminal display interface distribution and mapping diagram, where 21 represents the display interface of the mobile terminal, 22 represents the floating interface suspended on 21, 23 represents a cursor or arrow, cursor or arrow 23 is used The touch operation position on the floating interface 22 is mapped to a position corresponding to the display interface 21 of the mobile terminal.
  • the transparency of the floating interface 22 can be set to not affect the overall visual effect of the display interface 21 of the mobile terminal; wherein the position of the floating interface 22 on the display interface 21 of the mobile terminal is not fixed, and the user can According to actual application requirements, the size of the floating interface 22 is arbitrarily dragged or adjusted within the range of the display interface 21 of the mobile terminal, and the content will be introduced later.
  • the coordinate system where the floating interface and the mobile terminal display interface are located are two independent
  • the coordinate system of the system uses the upper left point as the coordinate origin.
  • the coordinates of the four endpoints of the floating interface are (0,0), (x,0), (x,y), and (0,y) in the clockwise direction.
  • the four endpoint coordinates of the mobile terminal display interface are (0, 0), (X, 0), (X, Y), and (0, Y) in the clockwise direction.
  • the mobile terminal system can automatically determine which type of command the user touches, and the basis for the judgment is whether the coordinates of the finger pressing position and the coordinates of the finger leaving position are substantially the same when the user operates, and whether the pressing is applied when the finger is pressed.
  • On the icon when the coordinates of the user's finger pressing position and the coordinates of the finger leaving position are substantially the same, it is determined that the operation instruction is a click operation; when the coordinates of the user's finger pressing position and the coordinates of the finger leaving position are inconsistent, then the judgment is made.
  • the operation instruction is a sliding or drag operation.
  • the length and width of the floating interface are x and y, respectively, and the length and width of the display interface of the mobile terminal are X and Y, respectively, and the scaling ratios of the length and width of the two interfaces are calculated respectively:
  • mapping the touch operation location on the floating interface to the corresponding location of the mobile terminal display interface
  • the actual coordinate of point A is (ax1, by1)
  • the system maps a virtual identifier to the corresponding position of the display interface of the mobile terminal for displaying the click operation.
  • the click operation mapping is completed.
  • M is related to a, b, the screen size of the mobile terminal and the time taken by the user to slide in the floating interface area.
  • M is related to a, b, the screen size of the mobile terminal and the time taken by the user to slide in the floating interface area.
  • a set of empirical values is obtained by integrating the above parameters through actual operations, and the empirical values are stored in the application, and the most suitable moving distance M can be queried according to the parameter combination.
  • Drag operation mapping The implementation of the mapping is similar to the mapping implementation of the sliding operation. The difference is that this operation is to operate on an application icon, the purpose of the operation is to specify the application icon from A ( X1, Y1) Move to B (X2, Y2) and fix it to complete the drag operation mapping. The determination of the starting point, the calculation of the direction angle and the selection of M are consistent with the mapping process of the sliding operation.
  • the floating interface is suspended above the display interface of the mobile terminal, it is possible that the A point mapped by the A' point falls just in the area where the floating interface is located. At this time, the overlapping area only receives the floating interface.
  • the instruction does not receive an instruction of the display interface of the mobile terminal.
  • the overlapping area can only be seen on the display interface of the mobile terminal, but cannot be directly operated, and the mapping operation must be performed by the floating interface.
  • Figure 3 shows the navigation interface hiding and appearance control diagram.
  • 31 indicates that the user is using the floating interface (when there is touch), the floating interface is displayed on the display interface of the mobile terminal with a certain transparency, and 32 indicates the user.
  • the floating interface is not manipulated for a period of time (when there is no touch), the floating interface is directly hidden, so that the user has a better visual effect.
  • the states 31 and 32 are mutually switchable.
  • FIG. 4 is a schematic diagram of functional area division of a floating interface according to an embodiment of the present invention.
  • 41 denotes a touch area
  • 42 denotes a virtual key area
  • 43 denotes a parameter adjustment area.
  • the mapping operation of the user on the touch area 41 can be mapped to the display interface 21 of the mobile terminal.
  • the mapping ratio can be determined according to the length and width ratio of the floating interface 22 and the display interface 21 of the mobile terminal, but the user Accuracy adjustment can also be performed to better conform to user manipulation habits; virtual button area 42 integrates commonly used function buttons, such as: back, home, exit, etc., and other commonly used virtual buttons can be added as needed; parameter adjustment area 43 is commonly used.
  • Parameter adjustment areas such as: screen brightness and sound adjustment of the mobile terminal, transparency of the floating interface and mapping sensitivity adjustment, and switching control of functions such as Wifi and Bt.
  • FIG. 5 is a schematic diagram of the position and size adjustment of the floating interface according to the embodiment of the present invention. As shown in FIG. 5, the user puts a hand on the border of the floating interface and presses it long. If the cursor is displayed after the long press or the arrow 51 is located in the right angle frame, You can drag the floating interface to move the position arbitrarily; if the cursor is displayed after long press or the arrow 52 is in the straight line frame, you can adjust the size of the floating interface.
  • 61 is a gradient parameter adjustment area, such as: mobile terminal sound and screen brightness adjustment, and transparency and mapping sensitivity adjustment of the floating interface. Etc., these parameters can be adjusted through a strip space; 62 is some non-open and close parameter control, such as: Wifi, BT, GPS, flight mode and other parameters on/off, these parameters can be represented by "+" Open, use "-" to indicate shutdown.
  • 61 is a gradient parameter adjustment area, such as: mobile terminal sound and screen brightness adjustment, and transparency and mapping sensitivity adjustment of the floating interface. Etc., these parameters can be adjusted through a strip space
  • 62 is some non-open and close parameter control, such as: Wifi, BT, GPS, flight mode and other parameters on/off, these parameters can be represented by "+" Open, use "-" to indicate shutdown.
  • FIG. 7 is a schematic flowchart of adaptive adjustment of sensitivity of a floating interface touch area and mapping to a display interface of a mobile terminal according to an embodiment of the present invention, including the following steps S71 to S76:
  • Step S71 Open the floating interface, and adjust the position and size of the floating interface as needed;
  • Step S72 an arrow or a cursor appears on the display interface of the mobile terminal
  • the arrow or cursor is used to indicate a mapping location.
  • Step S73 respectively calculating the length and width scaling ratios a and b of the floating interface and the display interface of the mobile terminal;
  • b Y/y.
  • Step S74 determining whether a and b are within a preset optimal mapping sensitivity interval range (m, n). If a and b are within a preset optimal mapping sensitivity interval range (m, n), step S76 is performed. If a, b does not execute step S75 within the preset optimal mapping sensitivity interval range (m, n);
  • Step S75 Combine the size of the screen of the mobile terminal, find the most suitable sensitivity parameters A and B, and then perform step S76;
  • the adaptive adjustment of the mapping sensitivity is to facilitate the user to operate the mobile terminal with one hand better, without being too sensitive or insensitive.
  • the adaptive adjustment is based on a, b, m, n, and the parameters of the screen of the mobile terminal.
  • the look-up table method is used. Of course, it can also be directly calculated by the calculation formula. It is assumed that the sensitivity after adaptive adjustment is A and B, respectively.
  • Step S76 When the user touches the touch area of the floating interface, different sensitivity mappings are performed according to the touch type.
  • the cursor is directly mapped to the display interface of the mobile terminal according to the ratio of a and b; if the touch area of the floating interface is performed by sliding or dragging, The cursor movement mapping operation is performed according to A and B.
  • FIG. 8 is a schematic flowchart of a suspension interface hiding and appearance control strategy according to an embodiment of the present invention, and is briefly described below in conjunction with the embodiment:
  • Step S81 Open the floating interface, and adjust the position and size of the floating interface as needed;
  • Step S82 when the user does not control the floating interface for a period of time, the floating interface is completely hidden;
  • the floating interface can be hidden directly in the original location
  • Step S83 After the floating interface is hidden, if it is detected that the user has a touch screen operation, the first judgment is made;
  • Step S84 determining whether the touch area is within the range of the floating interface. If the touch area is within the range of the floating interface, step S85 is performed. If the touch area is not within the range of the floating interface, the touch operation is performed according to the normal touch operation of the mobile terminal. This process;
  • Step S85 the floating interface reappears in the original position, and all the state parameters are consistent with those before being hidden;
  • Step S86 The floating interface is redisplayed, and each type of manipulation command initiated by the user is started to be executed and executed. If the user does not operate for a long time, the floating interface is re-hidden.
  • the hidden and appearing states of the floating interface are automatically converted from each other.
  • FIG. 9 is a schematic diagram of a flow adjustment and size adjustment process of a floating interface according to an embodiment of the present invention, which is briefly described below with reference to an embodiment:
  • Step S91 The user long presses the floating interface area
  • Step S92 detecting whether the user long press position is on the border of the floating interface, if the user long presses the position on the border of the floating interface, step S93 is performed; if the user long press position is not on the border of the floating interface, step S98 is performed;
  • Step S93 the position of the long press is at the right angle frame, or at the straight line frame, if it is at the right angle frame, step S94 is performed, if it is at the straight line frame, step S96 is performed;
  • Step S94 an icon of four arrow directions is displayed at the long press position, indicating that the floating interface can be dragged to any position on the screen at this time;
  • Step S95 Drag the floating interface to the position that meets the requirement, and end the long press, the floating interface will stay at the current position, and the processing flow is ended;
  • Step S96 a double-direction arrow perpendicular to the border of the frame is displayed at the long-press position, indicating that the size of the floating interface can be adjusted at this time;
  • Step S97 After the adjustment of the size of the floating interface is completed, the long press is ended, the size of the floating interface is fixed, and the mapping parameters are automatically modified to end the processing flow;
  • Step S98 mapping the long press operation from the floating interface to the display interface of the mobile terminal, and performing the same touch screen operation.
  • an embodiment of the present invention further provides an operating device for a mobile terminal.
  • the device includes a startup module 1001, a mapping module 1002, and an execution module 1003.
  • the startup module 1001 is configured to start a floating interface
  • the suspension interface may include different regions
  • the mapping module 1002 is configured to map the touch operation to the display interface of the mobile terminal according to the touch operation on the floating interface;
  • the executing module 1003 is configured to perform the touch operation on the mobile terminal display interface.
  • the mapping module 1002 maps the touch operation to a display interface of the mobile terminal.
  • the above apparatus further includes:
  • the setting module 1000 is configured to customize the floating interface, and divide the floating interface according to different operating functions
  • the floating interface may include at least one or more of the following regions:
  • mapping module 1002 may include: an obtaining module 10020 and a determining display module 10021; wherein
  • the acquiring module 10020 is configured to receive a touch operation in the touch area of the floating interface, and obtain information about the first position of the touch operation on the floating interface, where the information of the first location includes coordinates information;
  • the determining the display module 10021 is configured to determine that the first location of the touch operation is mapped to the second location of the display interface of the mobile terminal according to the zoom ratio of the floating interface and the display terminal length and width of the mobile terminal And display the touch operation identifier in the second position.
  • the setting module 1000, the starting module 1001, the mapping module 1002, and the executing module 1003 may each be a central processing unit (CPU, Central Processing Unit) and a microprocessor (MPU, Micro) located on a mobile terminal having a touch screen.
  • CPU Central Processing Unit
  • MPU Microprocessor
  • Processor Unit Digital Signal Processor
  • FPGA Field Programmable Gate Array
  • the embodiment of the present invention activates a floating interface, wherein the floating interface includes different regions; mapping the touch operation to the display interface of the mobile terminal according to the touch operation on the floating interface; and executing the display interface on the mobile terminal The touch operation.
  • the floating interface includes different regions; mapping the touch operation to the display interface of the mobile terminal according to the touch operation on the floating interface; and executing the display interface on the mobile terminal The touch operation.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

一种移动终端的操作方法和装置,其中,所述方法包括:启动悬浮界面,其中所述悬浮界面包括不同区域;根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;在所述移动终端显示界面执行所述触控操作。

Description

一种移动终端的操作方法和装置 技术领域
本文涉及但不限于移动终端人机交互技术领域,尤其涉及一种移动终端的操作方法和装置。
背景技术
随着社会的发展和科技的进步,移动终端逐渐成为人们生活中的必需品。在这几乎“人手一机”的时代,手机、平板电脑等多种移动终端的多元化功能使用需求越来越高,其中一个突出表现就是移动终端的屏幕尺寸越来越大,提高用户视觉体验。
然而,当屏幕尺寸超过一定大小,比如用户操作大于5寸屏幕的移动终端时,如果用户想要点击屏幕上方的应用,只能使握着移动终端的手向上移动,或者不得不两手齐上、借助于另一只手协助完成操作,失去单手操作的便捷性。
另外,在某些特定情况下,比如公交车上用户一只手抓着把手、或是一只手提着东西、或是吃饭时等等,若用户想要使用移动终端,如手机时,只能用一只手将手机攥紧防止掉落,同时还得用同一只手进行多种触屏操控,这时会发现差不多只有拇指在操作手机屏幕,感觉非常不方便。因此,如何在单手握住手机的同时,还能对其进行常规的操作,如移动、点击、拖动、返回、Home、参数设置等,对用户来说是非常重要的。
针对上述单手操作移动终端所带来不便的问题,,相关技术给出的解决方案是,通过将手持终端的显示区域划分为第一区域和第二区域,将手持终端的原显示画面显示在第一区域中,并根据在第二区域接收到的触控指令控制第一区域,由此通过触摸第二区域即可控制整个显示区域;其中,这里的操作仅包含两种类型:移动光标和选中光标所在的位置;,另一种解决方案是增加实体触摸按键控制终端屏幕光标移动,解决屏幕过大,单手操作困难的问题,其原理类似于笔记本电脑自带的触摸屏。
然而,上述相关技术中的移动终端的单手操作方法主要存在以下不足:
1)仅能实现部分操作功能,无法完全实现移动、点击、拖动、返回、Home、参数设置等操作功能;
2)需将原有图标按照比例缩小或者将多余图标移除,才能实现将原有图标全部放在第一区域中,这样就改变了移动终端的显示内容大小,无法充分利用大屏幕显示的优点,影响用户的体验度;
3)通过一个实体触摸键来实现光标到屏幕的映射,不仅会增加硬件成本,而且电路布局复杂,导致实际操作较繁琐或者困难。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本文提供一种移动终端的操作方法和装置,可以在单手不移动的情况下,方便、有效地操作大屏幕的移动终端,实现多种常用触屏功能,提升对移动终端的使用和体验,达到单手操作的效果。
本文提供一种移动终端的操作方法,所述方法包括:
启动悬浮界面;
根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;
在所述移动终端显示界面执行所述触控操作。
可选地,上述方法,在所述启动悬浮界面前,还包括:
自定义设置悬浮界面,并根据操作功能不同,对所述悬浮界面进行区域划分;
其中,所述悬浮界面包括如下一个或多个区域:
触控区域、虚拟按键区域、参数调整区域。
可选地,上述方法中,所述根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上,包括:
将在所述悬浮界面上的触控操作的位置映射到所述移动终端显示界面的对应位置上,并在所述对应位置显示触控操作标识。
可选地,上述方法中,将在所述悬浮界面上的触控操作的位置映射到所述移动终端显示界面的对应位置上,并在所述对应位置显示触控操作标识包括:
在所述悬浮界面的触控区域接收触控操作;
获取所述触控操作在所述悬浮界面的第一位置的信息,其中所述第一位置的信息包括坐标信息;
根据所述悬浮界面和所述移动终端显示界面长、宽的缩放比,确定所述触控操作的第一位置映射到所述移动终端显示界面的第二位置的信息,在所述第二位置显示触控操作标识。
可选地,上述方法中,所述参数调整区域用于调整渐变参数和开关参数,其中所述渐变参数至少包括如下一种或多种参数:
所述移动终端的屏幕亮度和声音大小、所述悬浮界面的透明度和映射灵敏度。
可选地,上述方法中,所述触控操作标识以光标或箭头的形式显示。
可选地,上述方法中,所述悬浮界面为悬浮于所述移动终端显示界面的透明框,其中所述透明框能够移动和隐藏,所述透明框的显示位置在所述移动终端显示界面的左下方或右下方。
可选地,上述方法还包括:
当对与所述悬浮界面重叠的所述移动终端显示界面中的应用图标进行操作时,所述触控操作标识保留在所述移动终端显示界面上。
本文还公开了一种移动终端的操作装置,包括:启动模块、映射模块、执行模块;其中,
所述启动模块,设置为启动悬浮界面;
所述映射模块,设置为根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;
所述执行模块,设置为在所述移动终端显示界面执行所述触控操作。
可选地,上述装置,还包括:
设置模块,设置为自定义设置悬浮界面,并根据操作功能不同,对所述悬浮界面进行区域划分;
其中,所述悬浮界面包括如下任一个或多个区域:
触控区域、虚拟按键区域、参数调整区域。
可选地,上述装置中,所述映射模块将所述触控操作映射到移动终端显示界面上,包括:
将在所述悬浮界面上的触控操作的位置映射到所述移动终端显示界面的对应位置上,并在所述对应位置显示触控操作标识。
可选地,上述装置中,所述映射模块包括:获取模块和确定显示模块,其中:
所述获取模块,设置为在所述悬浮界面的触控区域接收触控操作,获取所述触控操作在所述悬浮界面的第一位置的信息,其中所述第一位置的信息包括坐标信息;
所述确定显示模块,设置为根据所述悬浮界面和所述移动终端显示界面长、宽的缩放比,确定所述触控操作的第一位置映射到所述移动终端显示界面的第二位置的信息,并在所述第二位置显示触控操作标识。
本文所提供的移动终端的操作方法和装置,启动悬浮界面,其中所述悬浮界面包括不同区域;根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;在所述移动终端显示界面执行所述触控操作。如此,能够在单手不移动的情况下,通过在悬浮界面范围内进行多种触屏操作,可以让用户方便、有效地操作大屏幕的移动终端,提升对移动终端的使用和体验,达到单手操作的效果。并且该方法适用于所有移动终端,技术实现简单,功能强大,更加方便用户的操作。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为本发明实施例移动终端的操作方法的流程示意图;
图2为本发明实施例悬浮界面和移动终端显示界面分布及映射示意图;
图3为本发明实施例悬浮界面隐藏和出现控制示意图;
图4为本发明实施例悬浮界面的功能区域划分示意图;
图5为本发明实施例悬浮界面的位置和大小调整示意图;
图6为本发明实施例悬浮界面参数调整区域的一种实例示意图;
图7为本发明实施例悬浮界面触控区域灵敏度自适应调整及映射到移动终端显示界面的流程示意图;
图8为本发明实施例中的悬浮界面隐藏和出现控制策略流程示意图;
图9为本发明实施例中的悬浮界面位置和大小调整流程示意图;
图10为本发明实施例移动终端的操作装置的组成结构示意图。
本发明的实施方式
下文中将结合附图对本文的实施例进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。
在本发明实施例中,所述移动终端可以包括但不限于手机、平板、掌上电脑等移动设备。
如图1所示,本发明实施例中移动终端的操作方法的实现流程,包括以下步骤101至103:
步骤101:启动悬浮界面;
可选地,在所述启动悬浮界面前,所述方法还包括:
自定义设置悬浮界面,并根据操作功能不同,对所述悬浮界面进行区域划分;
其中,所述悬浮界面可以包括如下一个或多个区域:
触控区域、虚拟按键区域、参数调整区域。
在一个可选实施例中,所述悬浮界面可以为悬浮于所述移动终端显示界面的透明框,可以是一个独立窗口。可选地所述透明框可移动和隐藏,且所述透明框的显示位置在所述移动终端显示界面的左下方或右下方,用户可根据个人喜好和需要,对所述悬浮界面的颜色、大小、透明度等参数进行调整;在悬浮界面上集成了多种常用触屏功能,可以解决单手操作大屏幕移动终端不便的难题,能够实现单击、双击、滑动、拖动、返回、Home、参数设置等操作。
可选地,在触控区域中可以实现单击、双击、滑动和拖动四个基本操作,以及由这四个基本操作衍生的其它操作;在虚拟按键区域中设置了几个虚拟按键图标,所述虚拟按键区域用于执行虚拟按键操作的指令。可选地,所述虚拟按键操作至少包括如下之一:
返回按键、Home按键。
其中,上述两个按键的含义可以和功能与移动终端触屏功能相同;参数调整区域主要可以用来快捷调节一些参数,包括渐变参数和开关参数。其中,所述渐变参数可以至少包括如下之一:
所述移动终端的屏幕亮度和声音大小、所述悬浮界面的透明度和映射灵敏度。
步骤102:根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;
在一个可选实施例中,所述将所述触控操作映射到移动终端显示界面上,包括:
将在所述悬浮界面上的触控操作的位置映射到所述移动终端显示界面的对应位置上,并在所述对应位置显示触控操作标识;
实际应用中,映射过程可以包括:
在所述悬浮界面的触控区域接收触控操作;
获取所述触控操作在所述悬浮界面的第一位置的信息,其中所述第一位 置的信息包括坐标信息;
根据所述悬浮界面和所述移动终端显示界面长、宽的缩放比,确定所述触控操作的第一位置映射到所述移动终端显示界面的第二位置的信息,并在所述第二位置显示触控操作标识。
可选地,在移动终端显示界面上可以显示触控操作在悬浮界面上的移动轨迹。
需要说明的是,这里采用位置信息是因为触控操作的位置信息包括层(在悬浮层,或是在移动终端显示界面层)信息和坐标信息,而这里的位置信息为坐标信息;为方便区分,本发明实施例将进行触控操作时,在悬浮界面获取的点的坐标视为第一位置的信息,将该触控点映射到移动终端显示界面对应点的坐标视为第二位置的信息。
可选地,所述触控操作标识以光标或箭头的形式显示。
步骤103:在所述移动终端显示界面执行所述触控操作。
在一个可选实施例中,上述方法还可以包括:当对与所述悬浮界面重叠的所述移动终端显示界面中的应用图标进行操作时,所述触控操作标识保留在所述移动终端显示界面上。
下面对本发明实施例的移动终端的操作方法进行阐述。
图2给出了悬浮界面和移动终端显示界面分布及映射示意图,其中,21表示移动终端的显示界面,22表示悬浮于21上的悬浮界面,23表示一个光标或者箭头,光标或者箭头23用于将悬浮界面22上的触控操作位置映射到移动终端的显示界面21对应的位置。
需要说明的是,可以通过设置悬浮界面22的透明度,以不影响移动终端的显示界面21的整体视觉效果;其中,悬浮界面22在移动终端的显示界面21上的位置是不固定的,用户可以根据实际应用需要,在移动终端的显示界面21的范围内任意拖动或调整悬浮界面22的大小,该内容在后续会有介绍。
下面重点说明一下悬浮界面22和移动终端的显示界面21的映射实现,为了便于理解,先对坐标系、触控指令类型等概念做个简单介绍。
如图2所示,悬浮界面和移动终端显示界面所在的坐标系统是两个独立 的坐标系系统,都以左上点作为坐标原点,其中,悬浮界面的四个端点坐标按照顺时针方向分别是(0,0)、(x,0)、(x,y)和(0,y);移动终端显示界面的四个端点坐标按照顺时针方向分别是(0,0)、(X,0)、(X,Y)和(0,Y)。
在进行映射说明之前,还需要对悬浮界面的触控区域的指令进行说明,常用的触控指令主要有三种:点击、滑动和拖动。
移动终端系统可以自动判断用户触控的是哪种类型的指令,判断的依据是用户操作时,手指按下位置的坐标与手指离开位置的坐标是否大体一致,以及手指按下时是否按在应用图标上。简单来讲,当用户手指按下位置的坐标与手指离开位置的坐标基本一致时,则判断该操作指令为点击操作;当用户手指按下位置的坐标与手指离开位置的坐标不一致时,则判断该操作指令为滑动或者拖动操作。可选地,判断手指按下的位置是否有应用图标存在,若有,则为拖动操作;若无,则为滑动操作。
如图2所示,假设悬浮界面的长和宽分别是x和y,移动终端显示界面的长和宽分别是X和Y,分别计算出两个界面中长和宽的缩放比:
a=X/x;    (1)
b=Y/y;    (2)
下面介绍将悬浮界面上的触控操作位置映射到移动终端显示界面的对应位置上的实际实施方式:
1)点击操作映射:如图2所示,用户在悬浮界面的触控区域内进行点击操作,假设点击的点为A’点,A’点的坐标为(x1,y1),A’点映射到移动终端显示界面中为A点,则A点坐标(X1,Y1)的计算过程为:
X1=ax1;
Y1=by1;
即A点的实际坐标是(ax1,by1),系统会在移动终端显示界面的对应位置映射出一个虚拟标识,用于显示点击操作,至此,点击操作映射完成。
2)滑动操作映射:如图2所示,用户在悬浮界面的触控区域内进行滑动操作,假设滑动的起始点是A’(x1,y1),结束点是B’(x2,y2),该操作 可以分为三部分:首先确定在移动终端的映射起始点A(X1,Y1),然后确定移动的方向角α,最后确定每次移动的距离M。
现在分别求出上述三个参数,根据之前对点击操作的说明可知,根据A’(x1,y1)可知,在移动终端显示界面上映射出点的坐标为(ax1,by1),并在此处出现一个显示滑动操作的标识;其次,方向角α可以通过反正切函数获得:
α=arctan((y2-y1)/(x2-x1))    (3)
最后,计算移动距离M,至此,滑动操作映射完成。
其中,M与a、b、移动终端屏幕大小以及用户在悬浮界面区域滑动所用的时间有关。一般来说,a、b的数值越大,移动终端屏幕尺寸越大,用户在悬浮界面区域滑动操作时间越短,则M越大,反之M越小。本发明实施例通过实际操作,综合以上参数得出一组经验值,并将经验值存储在应用中,根据参数组合可以查询到最合适的移动距离M。
3)拖动操作映射:该映射的实现方式与滑动操作的映射实现方式很类似,不同之处在于,此操作是对某个应用图标进行操作,操作的目的是将指定的应用图标从A(X1,Y1)移动到B(X2,Y2),并固定下来,完成拖动操作映射。对于起始点的确定、方向角计算及M的选取,与滑动操作的映射过程一致。
需要指出的是,由于悬浮界面是悬浮于移动终端显示界面之上的,因此,有可能由A’点映射出的A点刚好落在悬浮界面所在的区域,这时,重叠区域只接收悬浮界面的指令,不接收移动终端显示界面的指令。一般来说,该重叠的区域在移动终端显示界面只能看,但不能直接操作,必须由悬浮界面进行映射操作。
图3给出了悬浮界面隐藏和出现控制示意图,在图3中,31表示用户在使用悬浮界面时(有触控时),悬浮界面以一定的透明度显示在移动终端显示界面上,32表示用户在一段时间内没有操控悬浮界面时(无触控时),悬浮界面直接隐藏起来,这样用户会有更好的视觉效果。其中,状态31和32之间是可以相互切换的。
图4是本发明实施例悬浮界面的功能区域划分示意图,在图4中,41表示触控区域,42表示虚拟按键区域;43表示参数调整区域。
其中,可以将用户在触控区域41上的触控操作映射到移动终端的显示界面21上,映射比例可以是按照悬浮界面22和移动终端的显示界面21的长、宽比决定的,但是用户也可以进行精度调节,以更符合用户操控习惯;虚拟按键区域42集成了常用的功能按键,如:back、Home、exit等,也可以根据需要添加其它常用虚拟按键;参数调整区域43是常用的参数调整区域,如:移动终端的屏幕亮度和声音调节、悬浮界面的透明度和映射灵敏度调节、以及Wifi、Bt等功能的开关控制。
图5是本发明实施例悬浮界面的位置和大小调整示意图,如5所示,用户将手放在悬浮界面的边框上长按,如果是长按后显示的光标或者箭头51位于直角框,则可以任意拖动悬浮界面移动位置;如果是长按后显示的光标或者箭头52位于直线框,则可以调整悬浮界面的大小。
图6是本发明实施例悬浮界面参数调整区域43的一个实例,大体可以分为两部分:61是渐变参数调整区域,如:移动终端声音和屏幕亮度调整,以及悬浮界面的透明度和映射灵敏度调整等,这些参数可以通过一个条状空间进行调节;62是一些非开即关的参数控制,如:Wifi、BT、GPS、飞行模式等参数的打开/关闭,这些参数可以用“+”来表示打开,用“-”来表示关闭。
图7是本发明实施例悬浮界面触控区域灵敏度自适应调整及映射到移动终端显示界面的流程示意图,包括以下步骤S71至S76:
步骤S71:打开悬浮界面,根据需要调整悬浮界面的位置和大小;
步骤S72:在移动终端显示界面出现一个箭头或者光标;
可选地,所述箭头或者光标用于指示映射位置。
步骤S73:分别计算悬浮界面和移动终端显示界面的长、宽缩放比a、b;
可选地,假设悬浮界面的长和宽分别是x和y,移动终端显示界面的长和宽分别是X和Y,则两个界面的长的缩放比a=X/x,宽的缩放比b=Y/y。
步骤S74:判断a、b是否在预设的最佳映射灵敏度区间范围(m,n)内,若a、b在预设的最佳映射灵敏度区间范围(m,n)内,则执行步骤S76,若 a、b不在预设的最佳映射灵敏度区间范围(m,n)内执行步骤S75;
步骤S75:结合移动终端屏幕的尺寸,查找最合适的灵敏度参数A和B,然后执行步骤S76;
可选地,对映射灵敏度进行自适应调整,是为方便用户更好地单手操作移动终端,不至于出现过于灵敏或者不灵敏的情况。其中,自适应调整是根据a、b、m、n,以及移动终端屏幕尺等参数综合得出的,本实例中使用了查表方式,当然,也可以通过计算公式直接计算出来。假设自适应调整后的灵敏度分别为A和B。
步骤S76:用户触控悬浮界面的触控区域时,根据触控类型进行不同灵敏度的映射。
可选地,若在悬浮界面的触控区域进行点击操作,则直接根据a和b的比例将光标映射到移动终端显示界面上;若在悬浮界面的触控区域进行滑动、拖动操作,则根据A和B进行光标移动映射操作。
图8是本发明实施例悬浮界面隐藏和出现控制策略流程示意图,下面结合实施例做简单说明:
步骤S81:打开悬浮界面,根据需要调整悬浮界面的位置和大小;
步骤S82:当用户在一段时间内不操控浮界面时,悬浮界面完全隐藏;
可选地,悬浮界面可以直接在原有位置隐藏起来;
步骤S83:当悬浮界面隐藏后,若检测到用户有触屏操作,则先判断;
步骤S84:判断触控区域是否在悬浮界面范围内,若触控区域在悬浮界面范围内,则执行步骤S85,若触控区域不在悬浮界面范围内则按照移动终端正常的触控操作进行,结束本次处理流程;
步骤S85:悬浮界面重新在原有位置出现,所有状态参数与隐藏前保持一致;
步骤S86:悬浮界面重新显示,开始接收用户发起的每种操控指令并执行,如果用户长时间不操作,则悬浮界面会重新隐藏。
其中,悬浮界面的隐藏和出现两种状态是相互自动转换的。
图9是本发明实施例悬浮界面的位置调整和大小调整流程示意图,下面结合实施例进行简单说明:
步骤S91:用户长按悬浮界面区域;
步骤S92:检测用户长按位置是否在悬浮界面的边框上,若用户长按位置在悬浮界面的边框上,则执行步骤S93;若用户长按位置不在悬浮界面的边框上则执行步骤S98;
步骤S93:长按的位置是在直角边框处,还是在直线边框处,若在直角边框处,则执行步骤S94,若在直线边框处则执行步骤S96;
步骤S94:在长按位置处会显示一个四个箭头方向的图标,表示此时可以拖动悬浮界面到屏幕任意位置;
步骤S95:将悬浮界面拖动到满足要求的位置,结束长按,悬浮界面就会停留在当前位置,结束本次处理流程;
步骤S96:在长按位置处会显示一个跟边框直线垂直的双方向箭头,表示此时可以调整悬浮界面的大小;
步骤S97:悬浮界面大小调整完成后,结束长按,悬浮界面大小固定,映射参数会自动修改,结束本次处理流程;
步骤S98:将长按操作从悬浮界面映射到移动终端显示界面上,执行同样的触屏操作。
为实现上述方法,本发明实施例还提供了一种移动终端的操作装置,如图10所示,该装置包括启动模块1001、映射模块1002、执行模块1003;其中,
所述启动模块1001,设置为启动悬浮界面;
可选地,所述悬浮界面可以包括不同区域;
所述映射模块1002,设置为根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;
所述执行模块1003,设置为在所述移动终端显示界面执行所述触控操作。
其中,所述映射模块1002将所述触控操作映射到移动终端显示界面上, 可以包括:
将在所述悬浮界面上的触控操作位置映射到所述移动终端显示界面的对应位置上,并在所述对应位置显示触控操作标识。
在一个可选实施例中,上述装置还包括:
设置模块1000,设置为自定义设置悬浮界面,并根据操作功能不同,对所述悬浮界面进行区域划分;
其中,所述悬浮界面可以至少包括如下一个或多个区域:
触控区域、虚拟按键区域、参数调整区域。
可选地,所述映射模块1002可以包括:获取模块10020和确定显示模块10021;其中,
所述获取模块10020,设置为在所述悬浮界面的触控区域接收触控操作,获取所述触控操作在所述悬浮界面的第一位置的信息,其中所述第一位置的信息包括坐标信息;
所述确定显示模块10021,设置为根据所述悬浮界面和所述移动终端显示界面长、宽的缩放比,确定所述触控操作的第一位置映射到所述移动终端显示界面的第二位置的信息,并在所述第二位置显示触控操作标识。
在实际应用中,所述设置模块1000、启动模块1001、映射模块1002、执行模块1003均可由位于具有触摸屏的移动终端上的中央处理器(CPU,Central Processing Unit)、微处理器(MPU,Micro Processor Unit)、数字信号处理器(DSP,Digital Signal Processor)、或现场可编程门阵列(FPGA,Field Programmable Gate Array)等实现。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可通过程序来指令相关硬件(例如处理器)完成,所述程序可以存储于计算机可读存储介质中,如只读存储器、磁盘或光盘等。可选地,上述实施例的全部或部分步骤也可以使用一个或多个集成电路来实现。相应地,上述实施例中的模块/单元可以采用硬件的形式实现,例如通过集成电路来实现其相应功能,也可以采用软件功能模块的形式实现,例如通过处理器执行存储于存储器中的程 序指令来实现其相应功能。本申请不限制于任何特定形式的硬件和软件的结合。
工业实用性
本发明实施例启动悬浮界面,其中所述悬浮界面包括不同区域;根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;在所述移动终端显示界面执行所述触控操作。如此,能够在单手不移动的情况下,通过在悬浮界面范围内进行多种触屏操作,可以让用户方便、有效地操作大屏幕的移动终端,提升对移动终端的使用和体验,达到单手操作的效果;并且该方法适用于所有移动终端,技术实现简单,功能强大,更加方便用户的操作。

Claims (12)

  1. 一种移动终端的操作方法,包括:
    启动悬浮界面;
    根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;
    在所述移动终端显示界面执行所述触控操作。
  2. 根据权利要求1所述的方法,其中,在所述启动悬浮界面前,还包括:
    自定义设置悬浮界面,并根据操作功能不同,对所述悬浮界面进行区域划分;
    其中,所述悬浮界面包括如下一个或多个区域:
    触控区域、虚拟按键区域、参数调整区域。
  3. 根据权利要求1所述的方法,其中,所述根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上,包括:
    将在所述悬浮界面上的触控操作的位置映射到所述移动终端显示界面的对应位置上,并在所述对应位置显示触控操作标识。
  4. 根据权利要求3所述的方法,其中,将在所述悬浮界面上的触控操作的位置映射到所述移动终端显示界面的对应位置上,并在所述对应位置显示触控操作标识包括:
    在所述悬浮界面的触控区域接收触控操作;
    获取所述触控操作在所述悬浮界面的第一位置的信息,其中所述第一位置的信息包括坐标信息;
    根据所述悬浮界面和所述移动终端显示界面长、宽的缩放比,确定所述触控操作的第一位置映射到所述移动终端显示界面的第二位置的信息,在所述第二位置显示触控操作标识。
  5. 根据权利要求2所述的方法,其中,所述参数调整区域用于调整渐变参数和开关参数,其中所述渐变参数至少包括如下一种或多种参数:
    所述移动终端的屏幕亮度和声音大小、所述悬浮界面的透明度和映射灵 敏度。
  6. 根据权利要求3所述的方法,其中,所述触控操作标识以光标或箭头的形式显示。
  7. 根据权利要求3、4或6所述的方法,其中,所述悬浮界面为悬浮于所述移动终端显示界面的透明框,其中所述透明框能够移动和隐藏,所述透明框的显示位置在所述移动终端显示界面的左下方或右下方。
  8. 根据权利要求7所述的方法,还包括:
    当对与所述悬浮界面重叠的所述移动终端显示界面中的应用图标进行操作时,所述触控操作标识保留在所述移动终端显示界面上。
  9. 一种移动终端的操作装置,包括:启动模块、映射模块、执行模块;其中,
    所述启动模块,设置为启动悬浮界面;
    所述映射模块,设置为根据对所述悬浮界面的触控操作,将所述触控操作映射到移动终端显示界面上;
    所述执行模块,设置为在所述移动终端显示界面执行所述触控操作。
  10. 根据权利要求9所述的装置,还包括:
    设置模块,设置为自定义设置悬浮界面,并根据操作功能不同,对所述悬浮界面进行区域划分;
    其中,所述悬浮界面包括如下任一个或多个区域:
    触控区域、虚拟按键区域、参数调整区域。
  11. 根据权利要求10所述的装置,其中,所述映射模块将所述触控操作映射到移动终端显示界面上,包括:
    将在所述悬浮界面上的触控操作的位置映射到所述移动终端显示界面的对应位置上,并在所述对应位置显示触控操作标识。
  12. 根据权利要求11所述的装置,其中,所述映射模块包括:获取模块和确定显示模块,其中:
    所述获取模块,设置为在所述悬浮界面的触控区域接收触控操作,获取 所述触控操作在所述悬浮界面的第一位置的信息,其中所述第一位置的信息包括坐标信息;
    所述确定显示模块,设置为根据所述悬浮界面和所述移动终端显示界面长、宽的缩放比,确定所述触控操作的第一位置映射到所述移动终端显示界面的第二位置的信息,并在所述第二位置显示触控操作标识。
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