WO2018072568A1 - 移动终端图标动态显示的方法及系统 - Google Patents

移动终端图标动态显示的方法及系统 Download PDF

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Publication number
WO2018072568A1
WO2018072568A1 PCT/CN2017/100492 CN2017100492W WO2018072568A1 WO 2018072568 A1 WO2018072568 A1 WO 2018072568A1 CN 2017100492 W CN2017100492 W CN 2017100492W WO 2018072568 A1 WO2018072568 A1 WO 2018072568A1
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WO
WIPO (PCT)
Prior art keywords
angle
mobile terminal
horizontal plane
display interface
icon
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PCT/CN2017/100492
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English (en)
French (fr)
Inventor
黄树伟
Original Assignee
捷开通讯(深圳)有限公司
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Application filed by 捷开通讯(深圳)有限公司 filed Critical 捷开通讯(深圳)有限公司
Priority to US16/343,972 priority Critical patent/US10845960B2/en
Publication of WO2018072568A1 publication Critical patent/WO2018072568A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/0482Interaction with lists of selectable items, e.g. menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1684Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675
    • G06F1/1694Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675 the I/O peripheral being a single or a set of motion sensors for pointer control or gesture input obtained by sensing movements of the portable computer
    • 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
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0346Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of the device orientation or free movement in a 3D space, e.g. 3D mice, 6-DOF [six degrees of freedom] pointers using gyroscopes, accelerometers or tilt-sensors
    • 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]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/04815Interaction with a metaphor-based environment or interaction object displayed as three-dimensional, e.g. changing the user viewpoint with respect to the environment or object
    • 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]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/04817Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance using icons

Definitions

  • the present invention relates to the field of display control technologies, and in particular, to a method and system for dynamically displaying an icon of a mobile terminal.
  • the use of mobile terminals in the prior art has become widespread and has become an indispensable tool in people's lives. Users can use the mobile terminal to make calls, send emails, send text messages, videos, watch news or listen to music, etc.
  • the development and use of various functions of the application brings convenience to people's lives, but in most In the mobile terminal, the icons are two-dimensional display.
  • the display will change with the position of the terminal, but the icons in the display interface cannot dynamically change with the rotation of the terminal, so the icon and the user
  • the interactivity is small and does not give the user a smart experience that the icon changes as the display interface changes.
  • the object of the present invention is to provide a method and system for dynamically displaying a mobile terminal icon, which overcomes the defect that the icon cannot dynamically change with the terminal or interface transmission tilt in the prior art.
  • a method for dynamically displaying a mobile terminal icon, wherein the icon of the display interface is displayed in a virtual three-dimensional manner includes the following steps:
  • Step A Obtain a spatial position status of the current mobile terminal, and obtain an angle between the mobile terminal and the horizontal plane according to the spatial position status;
  • Step B Obtain a spatial position state of the current mobile terminal display interface, and obtain an angle between the display interface and the horizontal plane according to the spatial position state of the display interface;
  • Step C According to the angle between the mobile terminal and the horizontal plane and the angle between the display interface and the horizontal plane, the angle of the icon in the display interface relative to the display interface is the same as the angle between the mobile terminal and the horizontal plane.
  • step A further includes:
  • Step A1 It is determined whether the angle between the acquired mobile terminal and the horizontal plane is even or odd. If it is an odd number, step A2 is performed, and if it is an even number, step A3 is performed:
  • Step A2 output a low-level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time;
  • Step A3 output a high level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • step B further includes:
  • step B1 it is determined whether the angle between the obtained display interface and the horizontal plane is even or odd. If it is an odd number, step B2 is performed, and if it is an even number, step B3 is performed:
  • Step B2 output a low-level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time;
  • Step B3 output a high level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • step C further includes:
  • Step C1 Calculate the clip between the icon and the horizontal plane according to the angle between the mobile terminal and the horizontal plane, the angle between the display interface and the horizontal plane, and the angle between the icon and the display interface and the angle between the mobile terminal and the horizontal plane. angle;
  • Step C2 Control the tilt angle between the virtual three-dimensional icon and the horizontal plane to be equal to the angle position calculated in the step C1.
  • the method for dynamically displaying the icon of the mobile terminal wherein in the step A, the spatial position state of the current mobile terminal is acquired by an acceleration sensor or a gyroscope built in the mobile terminal, and the motion of the current mobile terminal is obtained by acquiring The acceleration generated at the time determines the spatial position state of the current mobile terminal.
  • a system for dynamically displaying a mobile terminal icon comprising:
  • One or more processors are One or more processors;
  • One or more applications wherein the one or more applications are stored in the memory and configured to be executed by the processor;
  • a terminal tilt detecting module configured to acquire a spatial position state of the current mobile terminal, and obtain an angle between the mobile terminal and the horizontal plane according to the spatial position state;
  • the interface inclination detecting module is configured to acquire a spatial position state of the current mobile terminal display interface, and obtain an angle between the display interface and the horizontal plane according to the spatial position state of the display interface;
  • the icon tilt control module is configured to control the angle between the icon of the display interface and the display interface according to the angle between the mobile terminal and the horizontal plane and the angle between the display interface and the horizontal plane, and the angle between the mobile terminal and the horizontal plane.
  • the system for dynamically displaying a mobile terminal icon wherein the terminal tilt detection module includes:
  • the terminal angle and parity determination unit is configured to determine whether the angle between the acquired mobile terminal and the horizontal plane is even or odd:
  • the odd angle positioning unit is configured to output a low level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time;
  • the even-angle positioning unit is configured to output a high-level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • the system for dynamically displaying a mobile terminal icon wherein the interface tilt detection module comprises:
  • the interface angle and parity determination unit is configured to determine whether the angle between the acquired display interface and the horizontal plane is even or odd:
  • the interface odd-angle positioning unit is configured to output a low-level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time;
  • the interface even angle positioning unit is configured to output a high level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • the system for dynamically displaying a mobile terminal icon wherein the icon tilt control module includes:
  • the angle calculation unit is configured to calculate an icon and a horizontal plane according to an angle between the mobile terminal and the horizontal plane, an angle between the display interface and the horizontal plane, and an angle between the icon and the display interface and an angle between the mobile terminal and the horizontal plane. Angle between
  • the angle rotation control unit is configured to control the tilt angle between the virtual three-dimensional icon and the horizontal plane to be equal to an angular position between the mobile terminal and the horizontal plane.
  • the system for dynamically displaying the icon of the mobile terminal wherein, in the terminal tilt detecting module, the spatial position state of the current mobile terminal is acquired by an acceleration sensor or a gyroscope built in the mobile terminal.
  • the invention also provides a system for dynamically displaying a mobile terminal icon, which comprises:
  • One or more processors are One or more processors;
  • One or more applications wherein the one or more applications are stored in the memory and configured to perform the steps by the processor:
  • A. Obtain a spatial position status of the current mobile terminal, and obtain an angle between the mobile terminal and the horizontal plane according to the spatial position status;
  • the angle of the icon in the display interface relative to the display interface is the same as the angle between the mobile terminal and the horizontal plane.
  • step A further includes:
  • step A1 It is determined whether the angle between the acquired mobile terminal and the horizontal plane is even or odd. If it is an odd number, step A2 is performed, and if it is an even number, step A3 is performed:
  • A2 output a low-level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time;
  • A3 Output a high level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • step B further includes:
  • step B1 It is judged whether the angle between the obtained display interface and the horizontal plane is even or odd. If it is an odd number, step B2 is performed, and if it is an even number, step B3 is performed:
  • step C further includes:
  • the system for dynamically displaying the icon of the mobile terminal wherein in the step A, the spatial position state of the current mobile terminal is acquired by an acceleration sensor or a gyroscope built in the mobile terminal, and the motion of the current mobile terminal is obtained by acquiring The acceleration generated at the time determines the spatial position state of the current mobile terminal.
  • the present invention provides a method and system for dynamically displaying a mobile terminal icon, acquiring a spatial position state of a current mobile terminal, and obtaining an angle between the mobile terminal and a horizontal plane according to the spatial position state, and obtaining a current mobile terminal display.
  • the spatial position state of the interface, and the angle between the display interface and the horizontal plane is obtained according to the spatial position state of the display interface.
  • the icons in the control display interface are relatively
  • the inclination angle of the display interface is the same as the angle between the mobile terminal and the horizontal plane, so that the icon in the display interface rotates with the rotation or rotation of the mobile terminal, which satisfies the user's need for more intelligent display of the icon.
  • FIG. 1 is a flow chart showing the steps of a method for dynamically displaying a mobile terminal icon according to the present invention.
  • FIG. 2 is a schematic diagram showing the steps of detecting the angle between the terminal and the horizontal plane in a specific embodiment of the method of the present invention.
  • FIG. 3 is a schematic diagram showing the steps of detecting the angle between the interface and the horizontal plane in a specific embodiment of the method of the present invention.
  • FIG. 4 is a schematic structural diagram of a system for dynamically displaying an icon of a mobile terminal according to the present invention.
  • FIG. 5 is a schematic structural diagram of a system for dynamically displaying an icon of a mobile terminal according to an embodiment of the present invention.
  • the present invention provides a method for dynamically displaying a mobile terminal icon. As shown in FIG. 1 , the icon of the display interface is displayed in a virtual three-dimensional display, and includes the following steps:
  • Step S1 Obtain a spatial position state of the current mobile terminal, and obtain an angle between the mobile terminal and a horizontal plane according to the spatial location state.
  • the mobile terminal needs to have an acceleration sensor or a gyroscope module that acquires the spatial position state, and determines the spatial position status of the current mobile terminal by acquiring the acceleration generated when the current mobile terminal moves. .
  • the angle between the current mobile terminal and the horizontal plane is obtained by the location information of the current mobile terminal, and the three-dimensional coordinate data based on the state of the spatial position can be easily obtained according to the three-dimensional coordinate value. Get the angle between the current mobile terminal and the horizontal plane.
  • the step further includes the following steps:
  • the step S1 further includes:
  • step S11 it is determined whether the angle between the acquired mobile terminal and the horizontal plane is even or odd. If it is an odd number, step S12 is performed, and if it is an even number, step S13 is performed:
  • Step S12 output a low-level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time;
  • Step S13 output a high level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • the number of the obtained angle is an even number or an odd number. If the number is odd, the control end outputs a low level signal to the angle dynamic detecting unit, and the angle of the dynamic value detecting unit is controlled after the predetermined time. Further data value detection is performed, so that the angle between the terminal and the horizontal plane can be more accurately and quickly positioned. The same is that if the number is even, the output high level signal is controlled to the angle dynamic detecting unit, and the control angle dynamic detecting unit performs further data value detection on the angle of the even value after a predetermined time, thereby realizing the terminal and the horizontal plane. The angle makes a more accurate and fast positioning.
  • the angular dynamic detecting unit contains two different detecting subunits, an odd angle detecting positioning subunit specifically for tracking and positioning the odd value, and a special value for the dual value.
  • An even angle detection positioning sub-unit for tracking and positioning.
  • Step S2 Obtain a spatial position state of the current mobile terminal display interface, and obtain an angle between the display interface and the horizontal plane according to the spatial position state of the display interface.
  • the spatial position state of the display interface of the mobile terminal is detected, and the angle between the display interface and the horizontal plane is calculated according to the spatial position state of the display interface.
  • this step further includes:
  • step S21 it is determined whether the angle between the acquired display interface and the horizontal plane is even or odd. If it is an odd number, step S22 is performed, and if it is an even number, step S23 is performed:
  • Step S22 output a low-level signal to the angle dynamic detecting unit, and control the angle dynamic detecting unit to further detect the change value of the angle after the predetermined time;
  • Step S23 output a high level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • step S1 in order to locate the specific position of the display interface and the tilt angle thereof, the odd-numbered detection is performed on the angle between the detected display interface and the horizontal plane, and respectively according to the odd angle or the even angle. Further change detection of the angle allows for quicker determination of the next change in angle and more accurate angle data.
  • Step S3 According to the angle between the mobile terminal and the horizontal plane and the angle between the display interface and the horizontal plane, the angle of the icon in the display interface relative to the display interface is the same as the angle between the mobile terminal and the horizontal plane.
  • the icon in the control display interface is dynamically rotated relative to the display interface, and the rotation angle thereof is sandwiched between the mobile terminal and the horizontal plane.
  • the angle is the same.
  • the step S3 further includes:
  • Step S31 Calculate the clip between the icon and the horizontal plane according to the angle between the mobile terminal and the horizontal plane, the angle between the display interface and the horizontal plane, and the angle between the icon and the display interface and the angle between the mobile terminal and the horizontal plane. angle;
  • Step S32 controlling the tilt angle between the virtual three-dimensional icon and the horizontal plane to be equal to the angle position calculated in the step S1.
  • the icon in the present invention is a virtual three-dimensional icon, so that it can be set to have a certain angular disparity with the display interface, and provide a dynamic display of the icon for the user, which satisfies the user's need for more intelligent display of the icon.
  • the method provided by the present invention achieves the following effects: when the tablet computer is tilted on the left and right and up and down, the display interface is dynamically displayed, that is, the icon of the interface is referenced to the desktop of the display interface of the tablet computer, and the whole The tilt of the tablet then shows a dynamic tilt.
  • a terminal tilt detection module may be first set, and the terminal tilt detection module is configured to detect an inclination angle between the tablet computer and a horizontal plane.
  • An angle dynamic detecting sensing unit is disposed in the terminal tilt detecting module. The angle dynamic detection sensing unit is used to sense the tilt angle of the tablet, that is, the angle between the front side of the tablet and the horizontal plane.
  • the terminal angle and parity determination unit previously set in the terminal inclination detection module determines whether the angle a1 is odd or even, if the angle a1 is When the number is an odd number, the terminal angle and parity determination unit outputs a digital level 0 to an angle positioning unit, and the angle positioning unit further detects the change value of the odd angle after a predetermined time, thereby Quickly locate the angle between the terminal and the horizontal plane. If the number of the angle a1 is an even number, the terminal angle and parity determination unit outputs a digital level 1 to an angle positioning unit, and the angular positioning unit performs the change value of the even angle after a predetermined time. Further testing, thereby quickly positioning the angle between the terminal and the horizontal plane.
  • an interface tilt detection module may be firstly configured to detect an inclination angle between a tablet display interface and a horizontal plane.
  • An interface angle dynamic detection sensing unit is disposed in the interface inclination detecting module.
  • the interface angle dynamic detection sensing unit is configured to sense an inclination angle of the interface compared to a horizontal plane, that is, an angle between the display interface and the horizontal plane.
  • the interface angle and parity determination unit previously set in the interface inclination detection module determines whether the angle a2 is odd or even, if the angle is a2 When the number is an odd number, the interface angle and parity determination unit outputs a digital level 0 to an angle positioning unit, and the change value of the odd angle after a predetermined time is further detected by the interface angle positioning unit. Thereby quickly positioning the angle between the interface and the horizontal plane. If the number of the angle a1 is an even number, the interface angle and parity determination unit outputs a digital level 1 to an angle positioning unit, and the change value of the even angle after the predetermined time is obtained by the interface angle positioning unit. Further testing is performed to quickly locate the angle between the display interface and the horizontal plane.
  • the angle between the icon on the display interface and the display interface is controlled, so that the icon is displayed on the desktop of the display interface.
  • the angle of the tilt is equal to the angle between the terminal and the horizontal plane, so that the angle between the icon and the display interface is synchronized with the angle between the terminal and the horizontal plane.
  • the position of the display interface is positioned, and the virtual three-dimensional icon and the display interface in the display interface can be controlled according to the angle between the terminal and the horizontal plane.
  • the angle of the rotation is the same as the angle between the terminal and the horizontal plane.
  • the present invention also discloses a system for dynamically displaying a mobile terminal icon, as shown in FIG. 4, comprising:
  • the terminal tilt detecting module 110 is configured to acquire a spatial position state of the current mobile terminal, and obtain an angle between the mobile terminal and the horizontal plane according to the spatial position state;
  • the interface inclination detecting module 120 is configured to acquire a spatial position state of the current mobile terminal display interface, and obtain an angle between the display interface and the horizontal plane according to the spatial position state of the display interface;
  • the icon tilt control module 130 is configured to control an angle between an angle of the icon in the display interface relative to the display interface and an angle between the mobile terminal and the horizontal plane according to an angle between the mobile terminal and the horizontal plane and an angle between the display interface and the horizontal plane. the same.
  • the terminal tilt detection module includes:
  • the terminal angle and parity determination unit is configured to determine whether the angle between the acquired mobile terminal and the horizontal plane is even or odd:
  • the odd angle positioning unit is configured to output a low level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time;
  • the even-angle positioning unit is configured to output a high-level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • the interface tilt detection module includes:
  • the interface angle and parity determination unit is configured to determine whether the angle between the acquired display interface and the horizontal plane is even or odd:
  • the interface odd-angle positioning unit is configured to output a low-level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time;
  • the interface even angle positioning unit is configured to output a high level signal to the angle dynamic detecting unit, and the control angle dynamic detecting unit further detects the change value of the angle after the predetermined time.
  • the icon tilt control module includes:
  • the angle calculation unit is configured to calculate an icon and a horizontal plane according to an angle between the mobile terminal and the horizontal plane, an angle between the display interface and the horizontal plane, and an angle between the icon and the display interface and an angle between the mobile terminal and the horizontal plane. Angle between
  • the angle rotation control unit is configured to control the tilt angle between the virtual three-dimensional icon and the horizontal plane to be equal to an angular position between the mobile terminal and the horizontal plane.
  • the invention provides a method and a system for dynamically displaying a mobile terminal icon, obtains a spatial position state of a current mobile terminal, and obtains an angle between the mobile terminal and a horizontal plane according to the spatial position state, and acquires a space of a current mobile terminal display interface.
  • Position state, and according to the spatial position state of the display interface the angle between the display interface and the horizontal plane is obtained.
  • the icon in the display interface is controlled relative to the display interface.
  • the angle of inclination is the same as the angle between the mobile terminal and the horizontal plane, so that the icon in the display interface rotates with the rotation or rotation of the mobile terminal, which satisfies the user's need for more intelligent display of the icon.
  • the large-size photo loading system 500 includes a processor 501 and a memory 502, and the memory 502 is connected to the processor 501, and the program is stored in the In memory 502, and configured to be executed by processor 501.

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  • General Engineering & Computer Science (AREA)
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Abstract

一种移动终端图标动态显示的方法及系统,所述方法包括:A、获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角;步骤B、获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角;步骤C、根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。

Description

移动终端图标动态显示的方法及系统 技术领域
本发明涉及显示控制技术领域,尤其涉及的是一种移动终端图标动态显示的方法及系统。
背景技术
现有技术中移动终端的使用已经很普遍,成为人们生活中的必备工具。用户可以使用移动终端进行通话、发邮件、发短信、视频、看新闻或者听音乐等等,基于上述功能,各种功能的应用程序的开发及使用给人们的生活带来便利,但是在大多数的移动终端中,图标都是二维显示,当用户在使用终端时,显示屏会随着终端的位置发生变化,但是显示界面中的图标不能随着终端的转动进行动态变化,因此图标与用户之间的交互性小,不能给用户带来图标随着显示界面变化而变化的智能体验。
因此,现有技术有待于进一步的改进。
技术问题
鉴于上述现有技术中的不足之处,本发明的目的在于为用户提供一种移动终端图标动态显示的方法及系统,克服现有技术中图标不能随终端或者界面发送倾斜进行动态变化的缺陷。
技术解决方案
本发明解决技术问题所采用的技术方案如下:
一种移动终端图标动态显示的方法,其中,显示界面的图标虚拟三维立体显示,且包括以下步骤:
步骤A、获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角;
步骤B、获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角;
步骤C、根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。
所述移动终端图标动态显示的方法,其中,所述步骤A还包括:
步骤A1、判断获取的移动终端与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤A2,若是偶数,则执行步骤A3:
步骤A2、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
步骤A3、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
所述移动终端图标动态显示的方法,其中,所述步骤B还包括:
步骤B1、判断获取的显示界面与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤B2,若是偶数,则执行步骤B3:
步骤B2、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
步骤B3、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
所述移动终端图标动态显示的方法,其中,所述步骤C还包括:
步骤C1、根据移动终端与水平面之间夹角、显示界面与水平面之间夹角和图标与显示界面之间夹角与移动终端与水平面之间的夹角相等,计算图标与水平面之间的夹角;
步骤C2、控制虚拟三维图标与水平面之间的倾斜角旋转到等于所述步骤C1中计算出的夹角位置。
所述移动终端图标动态显示的方法,其中,在所述步骤A中,所述当前移动终端的空间位置状态通过移动终端内置的加速度传感器或陀螺仪来获取,并通过获取所述当前移动终端运动时产生的加速度来判断所述当前移动终端的空间位置状态。
一种移动终端图标动态显示的系统,其中,包括:
一个或多个处理器;
存储器;以及
一个或多个应用程序,其中所述一个或多个应用程序被存储于所述存储器中,并配置为由所述处理器执行;
终端倾角检测模块,用于获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角;
界面倾角检测模块,用于获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角;
图标倾角控制模块,用于根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。
所述移动终端图标动态显示的系统,其中,所述终端倾角检测模块包括:
终端夹角奇偶数判断单元,用于判断获取的移动终端与水平面之间夹角是偶数还是奇数:
奇数角度定位单元,用于输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
偶数角度定位单元,用于输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
所述移动终端图标动态显示的系统,其中,所述界面倾角检测模块包括:
界面夹角奇偶数判断单元,用于判断获取的显示界面与水平面之间夹角是偶数还是奇数:
界面奇数角度定位单元,用于输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
界面偶数角度定位单元,用于输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
所述移动终端图标动态显示的系统,其中,所述图标倾角控制模块包括:
夹角计算单元,用于根据移动终端与水平面之间夹角、显示界面与水平面之间夹角和图标与显示界面之间夹角与移动终端与水平面之间的夹角相等,计算图标与水平面之间的夹角;
角度旋转控制单元,用于控制虚拟三维图标与水平面之间的倾斜角旋转到等于移动终端与水平面之间的夹角位置。
所述移动终端图标动态显示的系统,其中,在终端倾角检测模块中,所述当前移动终端的空间位置状态通过移动终端内置的加速度传感器或陀螺仪来获取。
本发明还提供一种移动终端图标动态显示的系统,其中,包括:
一个或多个处理器;
存储器;以及
一个或多个应用程序,其中所述一个或多个应用程序被存储于所述存储器中,并配置为由所述处理器执行步骤:
A、获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角;
B、获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角;
C、根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。
所述移动终端图标动态显示的系统,其中,所述步骤A还包括:
A1、判断获取的移动终端与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤A2,若是偶数,则执行步骤A3:
A2、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
A3、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
所述移动终端图标动态显示的系统,其中,所述步骤B还包括:
B1、判断获取的显示界面与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤B2,若是偶数,则执行步骤B3:
B2、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
B3、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
所述移动终端图标动态显示的系统,其中,所述步骤C还包括:
C1、根据移动终端与水平面之间夹角、显示界面与水平面之间夹角和图标与显示界面之间夹角与移动终端与水平面之间的夹角相等,计算图标与水平面之间的夹角;
C2、控制虚拟三维图标与水平面之间的倾斜角旋转到等于所述步骤C1中计算出的夹角位置。
所述移动终端图标动态显示的系统,其中,在所述步骤A中,所述当前移动终端的空间位置状态通过移动终端内置的加速度传感器或陀螺仪来获取,并通过获取所述当前移动终端运动时产生的加速度来判断所述当前移动终端的空间位置状态。
有益效果
有益效果,本发明提供了一种移动终端图标动态显示的方法及系统,获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角,获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角,根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同,从而实现显示界面中的图标随着移动终端的旋转或者转动进行转动,满足了用户对图标显示更为智能性的需求。
附图说明
图1是本发明所述移动终端图标动态显示的方法的步骤流程图。
图2是本发明所述方法的具体实施例中对终端与水平面之间夹角进行检测的步骤示意图。
图3是本发明所述方法的具体实施例中对界面与水平面之间夹角进行检测的步骤示意图。
图4是本发明所述移动终端图标动态显示的系统的原理结构示意图。
图5为本发明实施例提供的移动终端图标动态显示的系统的结构示意图。
本发明的最佳实施方式
为使本发明的目的、技术方案及优点更加清楚、明确,以下参照附图并举实施例对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅仅用于解释本发明,并不用于限定本发明。
本发明提供了一种移动终端图标动态显示的方法,如图1所示,显示界面的图标虚拟三维立体显示,且包括以下步骤:
步骤S1、获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角。
本步骤中获取当前移动终端的空间位置状态,因此需要移动终端内置有获取空间位置状态的加速度传感器或者陀螺仪等模块,通过获取当前移动终端运动时产生的加速度来判断当前移动终端的空间位置状态。
当获取了当前移动终端的空间位置状态后,通过其所处的位置信息得到当前移动终端与水平面之间的夹角,由于基于其空间位置状态的三维坐标数据后,根据三维坐标值可以很轻松的得到当前移动终端与水平面之间的夹角。
具体的,为了对移动终端与水平面之间的夹角做更准确的定位,本步骤中还包括步骤:
所述步骤S1还包括:
步骤S11、判断获取的移动终端与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤S12,若是偶数,则执行步骤S13:
步骤S12、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
步骤S13、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
上述步骤中对获取的夹角的数字是偶数还是奇数的判断,若是奇数则控制端输出低电平信号到角度动态检测单元,控制角度动态检测单元在预定时间后,对该奇数值的夹角做进一步的数据值检测,从而可以实现终端与水平面的夹角做出更为准确和快速的定位。相同的是,若是偶数则控制输出高电平信号到角度动态检测单元,控制角度动态检测单元在预定时间后,对该偶数值的夹角做进一步的数据值检测,从而可以实现终端与水平面的夹角做出更为准确和快速的定位。因此可以看出,在角度动态检测单元里面含有两个不同的检测子单元,一个专门用于对奇数值的夹角进行追踪定位的奇数夹角检测定位子单元,和一个专门用于对偶数值的夹角进行追踪定位的偶数夹角检测定位子单元。
步骤S2、获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角。
为了对图标位置的准确定位,在本步骤中对移动终端显示界面的空间位置状态进行检测,并根据显示界面的空间位置状态计算得到显示界面与水平面之间的夹角。
具体的,本步骤中还包括:
步骤S21、判断获取的显示界面与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤S22,若是偶数,则执行步骤S23:
步骤S22、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
步骤S23、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
与上述步骤S1相同,为了对显示界面的具体位置及其倾斜角进行定位,采用对检测到的显示界面与水平面之间的夹角进行奇偶数检测,并分别根据奇数角度或者偶数角度分别对该角度的进一步的变化检测,从而可以快速的对角度的下一步变化进行判断,以及更获取更为准确的角度数据。
步骤S3、根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。
根据移动终端与水平面之间的夹角和显示界面与水平面之间的夹角,本步骤中,控制显示界面中的图标相对于显示界面进行动态旋转,且其旋转角度与移动终端与水平面的夹角相同。
所述步骤S3还包括:
步骤S31、根据移动终端与水平面之间夹角、显示界面与水平面之间夹角和图标与显示界面之间夹角与移动终端与水平面之间的夹角相等,计算图标与水平面之间的夹角;
步骤S32、控制虚拟三维图标与水平面之间的倾斜角旋转到等于所述步骤S1中计算出的夹角位置。
可以想到的是,本发明中图标为虚拟三维图标,因此可以设置其与显示界面之间具有一定的角度视差,为用户提供图标的动态显示,满足了用户对图标显示更为智能性的需求。
为了对上述方法进行更加详细的解释,下面以移动终端为平板电脑为例,对所述方法的具体实施例进行说明。
本发明所述提供的方法所要达到的效果为:当平板电脑在左右和上下产生倾斜时,其显示界面呈动态显示,即所述界面的图标以平板电脑的显示界面的桌面为参照面,整体随之平板电脑的倾斜呈现出动态倾斜。
具体的,在具体实施时,如图2所示,首先可以设置终端倾角检测模块,所述终端倾角检测模块,用于检测平板电脑与水平面之间的倾斜角度。 所述终端倾角检测模块内设置有角度动态检测感应单元。所述角度动态检测感应单元用于感应平板电脑的倾斜角度,也即是平板电脑的正面与水平面之间的夹角。譬如,所述平板电脑与水平面之间的夹角为a1,则使用预先设置在终端倾角检测模块内的终端夹角奇偶数判断单元对夹角a1是奇数还是偶数进行判断,若为夹角a1的数字为奇数时,则所述终端夹角奇偶数判断单元输出数字电平0到角度定位单元,通过所述角度定位单元对该奇数夹角在预定时间后的变化值做进一步的检测,从而快速的对终端与水平面之间的夹角进行定位。若为夹角a1的数字为偶数时,则所述终端夹角奇偶数判断单元输出数字电平1到角度定位单元,通过所述角度定位单元对该偶数夹角在预定时间后的变化值做进一步的检测,从而快速的对终端与水平面之间的夹角进行定位。
其次,如图3所示,首先可以设置界面倾角检测模块,所述界面倾角检测模块,用于检测平板电脑显示屏界面与水平面之间的倾斜角度。 所述界面倾角检测模块内设置有界面角度动态检测感应单元。所述界面角度动态检测感应单元用于感应界面与水平面相比的倾斜角度,也即是显示界面与水平面之间的夹角。譬如,所述显示界面与水平面之间的夹角为a2,则使用预先设置在界面倾角检测模块内的界面夹角奇偶数判断单元对夹角a2是奇数还是偶数进行判断,若为夹角a2的数字为奇数时,则所述界面夹角奇偶数判断单元输出数字电平0到角度定位单元,通过所述界面角度定位单元对该奇数夹角在预定时间后的变化值做进一步的检测,从而快速的对界面与水平面之间的夹角进行定位。若为夹角a1的数字为偶数时,则所述界面夹角奇偶数判断单元输出数字电平1到角度定位单元,通过所述界面角度定位单元对该偶数夹角在预定时间后的变化值做进一步的检测,从而快速的对显示界面与水平面之间的夹角进行定位。
最后,根据终端与水平面之间的夹角和显示界面与水平面之间的夹角,对显示界面上的图标与显示界面之间的夹角进行控制,使图标以显示界面的桌面为参照面,倾斜的角度与终端与水平面之间的夹角相等,从而实现图标与显示界面之间夹角与终端与水平面之间的夹角同步。
具体的,当已知显示界面与水平面之间的夹角后,对显示界面的位置进行了定位,则可以根据终端与水平面之间的夹角,控制显示界面中虚拟三维图标与显示界面之间的夹角旋转到和终端与水平面之间的夹角相同。
在上述方法的基础上,本发明还公开了一种移动终端图标动态显示的系统,如图4所示,包括:
终端倾角检测模块110,用于获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角;
界面倾角检测模块120,用于获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角;
图标倾角控制模块130,用于根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。
所述终端倾角检测模块包括:
终端夹角奇偶数判断单元,用于判断获取的移动终端与水平面之间夹角是偶数还是奇数:
奇数角度定位单元,用于输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
偶数角度定位单元,用于输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
所述界面倾角检测模块包括:
界面夹角奇偶数判断单元,用于判断获取的显示界面与水平面之间夹角是偶数还是奇数:
界面奇数角度定位单元,用于输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
界面偶数角度定位单元,用于输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
所述图标倾角控制模块包括:
夹角计算单元,用于根据移动终端与水平面之间夹角、显示界面与水平面之间夹角和图标与显示界面之间夹角与移动终端与水平面之间的夹角相等,计算图标与水平面之间的夹角;
角度旋转控制单元,用于控制虚拟三维图标与水平面之间的倾斜角旋转到等于移动终端与水平面之间的夹角位置。
本发明提供了一种移动终端图标动态显示的方法及系统,获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角,获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角,根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同,从而实现显示界面中的图标随着移动终端的旋转或者转动进行转动,满足了用户对图标显示更为智能性的需求。
需要说明的是,本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储介质中,存储介质可以包括:只读存储器(ROM,Read Only Memory)、随机存取记忆体(RAM,Random Access Memory)、磁盘或光盘等。例如,如图5所示,在本发明实施例中,所述大尺寸照片加载系统500包括处理器501和存储器502,所述存储器502与所述处理器501连接,所述程序被存储于所述存储器502中,并配置为由所述处理器501执行。
可以理解的是,对本领域普通技术人员来说,可以根据本发明的技术方案及其发明构思加以等同替换或改变,而所有这些改变或替换都应属于本发明所附的权利要求的保护范围。

Claims (15)

  1. 一种移动终端图标动态显示的方法,其中,显示界面的图标虚拟三维立体显示,且包括以下步骤:
    步骤A、获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角;
    步骤B、获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角;
    步骤C、根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。
  2. 根据权利要求1所述移动终端图标动态显示的方法,其中,所述步骤A还包括:
    步骤A1、判断获取的移动终端与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤A2,若是偶数,则执行步骤A3:
    步骤A2、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
    步骤A3、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
  3. 根据权利要求1所述移动终端图标动态显示的方法,其中,所述步骤B还包括:
    步骤B1、判断获取的显示界面与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤B2,若是偶数,则执行步骤B3:
    步骤B2、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
    步骤B3、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
  4. 根据权利要求1所述移动终端图标动态显示的方法,其中,所述步骤C还包括:
    步骤C1、根据移动终端与水平面之间夹角、显示界面与水平面之间夹角和图标与显示界面之间夹角与移动终端与水平面之间的夹角相等,计算图标与水平面之间的夹角;
    步骤C2、控制虚拟三维图标与水平面之间的倾斜角旋转到等于所述步骤C1中计算出的夹角位置。
  5. 根据权利要求1所述移动终端图标动态显示的方法,其中,在所述步骤A中,所述当前移动终端的空间位置状态通过移动终端内置的加速度传感器或陀螺仪来获取,并通过获取所述当前移动终端运动时产生的加速度来判断所述当前移动终端的空间位置状态。
  6. 一种移动终端图标动态显示的系统,其中,包括:
    一个或多个处理器;
    存储器;以及
    一个或多个应用程序,其中所述一个或多个应用程序被存储于所述存储器中,并配置为由所述处理器执行;
    终端倾角检测模块,用于获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角;
    界面倾角检测模块,用于获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角;
    图标倾角控制模块,用于根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。
  7. 根据权利要求6所述移动终端图标动态显示的系统,其中,所述终端倾角检测模块包括:
    终端夹角奇偶数判断单元,用于判断获取的移动终端与水平面之间夹角是偶数还是奇数:
    奇数角度定位单元,用于输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
    偶数角度定位单元,用于输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
  8. 根据权利要求6所述移动终端图标动态显示的系统,其中,所述界面倾角检测模块包括:
    界面夹角奇偶数判断单元,用于判断获取的显示界面与水平面之间夹角是偶数还是奇数:
    界面奇数角度定位单元,用于输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
    界面偶数角度定位单元,用于输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
  9. 根据权利要求6所述移动终端图标动态显示的系统,其中,所述图标倾角控制模块包括:
    夹角计算单元,用于根据移动终端与水平面之间夹角、显示界面与水平面之间夹角和图标与显示界面之间夹角与移动终端与水平面之间的夹角相等,计算图标与水平面之间的夹角;
    角度旋转控制单元,用于控制虚拟三维图标与水平面之间的倾斜角旋转到等于移动终端与水平面之间的夹角位置。
  10. 根据权利要求6所述移动终端图标动态显示的系统,其中,在终端倾角检测模块中,所述当前移动终端的空间位置状态通过移动终端内置的加速度传感器或陀螺仪来获取。
  11. 一种移动终端图标动态显示的系统,其中,包括:
    一个或多个处理器;
    存储器;以及
    一个或多个应用程序,其中所述一个或多个应用程序被存储于所述存储器中,并配置为由所述处理器执行步骤:
    A、获取当前移动终端的空间位置状态,并根据所述空间位置状态得到移动终端与水平面之间夹角;
    B、获取当前移动终端显示界面的空间位置状态,并根据显示界面的空间位置状态得到显示界面与水平面之间夹角;
    C、根据移动终端与水平面之间夹角和显示界面与水平面之间夹角,控制显示界面中的图标相对于显示界面的倾斜角与移动终端与水平面之间的夹角相同。
  12. 根据权利要求11所述移动终端图标动态显示的系统,其中,所述步骤A还包括:
    A1、判断获取的移动终端与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤A2,若是偶数,则执行步骤A3:
    A2、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
    A3、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
  13. 根据权利要求11所述移动终端图标动态显示的系统,其中,所述步骤B还包括:
    B1、判断获取的显示界面与水平面之间夹角是偶数还是奇数,若是奇数,则执行步骤B2,若是偶数,则执行步骤B3:
    B2、输出低电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测;
    B3、输出高电平信号到角度动态检测单元,控制角度动态检测单元对预定时间后夹角的变化值做进一步的检测。
  14. 根据权利要求11所述移动终端图标动态显示的系统,其中,所述步骤C还包括:
    C1、根据移动终端与水平面之间夹角、显示界面与水平面之间夹角和图标与显示界面之间夹角与移动终端与水平面之间的夹角相等,计算图标与水平面之间的夹角;
    C2、控制虚拟三维图标与水平面之间的倾斜角旋转到等于所述步骤C1中计算出的夹角位置。
  15. 根据权利要求11所述移动终端图标动态显示的系统,其中,在所述步骤A中,所述当前移动终端的空间位置状态通过移动终端内置的加速度传感器或陀螺仪来获取,并通过获取所述当前移动终端运动时产生的加速度来判断所述当前移动终端的空间位置状态。
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