WO2018126591A1 - 一种屏幕内容切换方法和双屏移动终端 - Google Patents

一种屏幕内容切换方法和双屏移动终端 Download PDF

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Publication number
WO2018126591A1
WO2018126591A1 PCT/CN2017/085200 CN2017085200W WO2018126591A1 WO 2018126591 A1 WO2018126591 A1 WO 2018126591A1 CN 2017085200 W CN2017085200 W CN 2017085200W WO 2018126591 A1 WO2018126591 A1 WO 2018126591A1
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WO
WIPO (PCT)
Prior art keywords
screen
dual
mobile terminal
target
application interface
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Application number
PCT/CN2017/085200
Other languages
English (en)
French (fr)
Inventor
李钊
Original Assignee
中兴通讯股份有限公司
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Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to EP17755045.6A priority Critical patent/EP3364282A4/en
Priority to US15/554,864 priority patent/US10649494B2/en
Priority to JP2017545754A priority patent/JP6552628B2/ja
Publication of WO2018126591A1 publication Critical patent/WO2018126591A1/zh

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    • 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
    • G06F1/1637Details related to the display arrangement, including those related to the mounting of the display in the housing
    • G06F1/1647Details related to the display arrangement, including those related to the mounting of the display in the housing including at least an additional display
    • 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
    • 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
    • G06F1/1637Details related to the display arrangement, including those related to the mounting of the display in the housing
    • G06F1/1641Details related to the display arrangement, including those related to the mounting of the display in the housing the display being formed by a plurality of foldable display components
    • 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
    • G06F2200/00Indexing scheme relating to G06F1/04 - G06F1/32
    • G06F2200/16Indexing scheme relating to G06F1/16 - G06F1/18
    • G06F2200/161Indexing scheme relating to constructional details of the monitor
    • G06F2200/1614Image rotation following screen orientation, e.g. switching from landscape to portrait mode

Definitions

  • the present application relates to, but is not limited to, the field of communications technologies, and in particular, to a screen content switching method and a dual screen mobile terminal.
  • the dual screen mobile terminal has a first screen and a second screen, and there may be three modes between the first screen and the second screen: a single screen mode, a dual screen mode, and a mirror mode.
  • a single screen mode When the first screen and the second screen are simultaneously expanded, the screen of the dual-screen mobile terminal is relatively large, and when the user operates with one hand, it is difficult to touch the application interface on the two screens.
  • the dual-screen mobile terminal is in the vertical display state, if the user operates the dual-screen mobile terminal with the right hand, it is difficult to touch the application interface displayed on the screen on the left side, which is inconvenient. Therefore, there is currently a problem that it is not convenient to operate an application on a dual-screen mobile terminal.
  • the embodiment of the invention provides a screen content switching method and a dual-screen mobile terminal, which solves the problem that the related art has insufficient operation when operating the application on the dual-screen mobile terminal.
  • the embodiment of the invention provides a screen content switching method, which is applied to a dual-screen mobile terminal, and includes:
  • the target screen When the target screen is displayed on the target screen, detecting a handheld state of the dual-screen mobile terminal, where the target screen is a screen of the dual-screen mobile terminal;
  • the target application interface is switched to another screen display of the dual-screen mobile terminal.
  • the embodiment of the invention further provides a dual-screen mobile terminal, including:
  • the first detecting module is configured to detect a handheld state of the dual-screen mobile terminal when the target screen displays the target application interface, where the target screen is a screen of the dual-screen mobile terminal;
  • a first determining module configured to determine whether the handheld state corresponds to the target screen
  • the first switching module is configured to switch the target application interface to another screen display of the dual-screen mobile terminal if the handheld state does not correspond to the target screen.
  • Embodiments of the present invention also provide a machine readable medium storing one or more programs executable by a computer, the one or more programs being executed by the computer to cause the computer to perform a screen as provided above Content switching method.
  • the target screen when the target screen is displayed on the target screen, the handheld state of the dual-screen mobile terminal is detected, the target screen is a screen of the dual-screen mobile terminal, and it is determined whether the handheld state corresponds to the target screen. And if the handheld state does not correspond to the target screen, switching the target application interface to another screen display of the dual-screen mobile terminal.
  • the dual-screen mobile terminal can automatically switch the application interface to the screen display corresponding to the handheld state, so that it is more convenient when the application is operated.
  • FIG. 1 is a schematic flowchart of a screen content switching method according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a screen display interface switched to a right screen according to an embodiment of the present invention
  • FIG. 3 is a schematic flowchart of another screen content switching method according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a display application interface when a dual-screen mobile terminal is rotated to a horizontal screen display state according to an embodiment of the present invention
  • FIG. 5 is a schematic diagram of another display application interface when a dual-screen mobile terminal is rotated to a horizontal screen display state according to an embodiment of the present invention
  • FIG. 6 is another embodiment of rotating a dual-screen mobile terminal into a horizontal screen display state according to an embodiment of the present invention. Display a schematic diagram of the application interface;
  • FIG. 7 is a schematic diagram of a display application interface when a dual-screen mobile terminal is rotated to a vertical screen display state according to an embodiment of the present invention
  • FIG. 8 is a schematic diagram of another display application interface when a dual-screen mobile terminal is rotated into a vertical screen display state according to an embodiment of the present invention.
  • FIG. 9 is a schematic flowchart of another screen content switching method according to an embodiment of the present invention.
  • FIG. 10 is a structural diagram of a dual-screen mobile terminal according to an embodiment of the present invention.
  • FIG. 11 is a structural diagram of another dual-screen mobile terminal according to an embodiment of the present invention.
  • FIG. 12 is a structural diagram of another dual-screen mobile terminal according to an embodiment of the present invention.
  • FIG. 13 is a structural diagram of another dual-screen mobile terminal according to an embodiment of the present invention.
  • an embodiment of the present invention provides a screen content switching method, which is applied to a dual-screen mobile terminal, and includes the following steps:
  • Step S101 When the target screen is displayed on the target screen, detecting a handheld state of the dual-screen mobile terminal, where the target screen is a screen of the dual-screen mobile terminal.
  • Step S102 Determine whether the handheld state corresponds to the target screen.
  • Step S103 If the handheld state does not correspond to the target screen, switch the target application interface to another screen display of the dual-screen mobile terminal.
  • step S101 first, the user expands the screen of the dual-screen mobile terminal, and the user can select the display state of the dual-screen mobile terminal, so that the dual-screen mobile terminal can be displayed in the horizontal screen state, or the dual-screen mobile terminal can be set as the vertical screen. Display state.
  • the two screens are horizontally arranged, which are the left screen and the right screen, and the user can operate on any of the two screens.
  • the user is working on the right screen at this time, for example, modifying the layout of multiple application icons on the right screen.
  • the screen mobile terminal obtains the operating frequency level of the application, and compares the operating frequency level of the application with the preset target level.
  • the application interface of the application can be used. Displayed on the screen operated by the previous user, that is, displayed on the screen on the right.
  • the application interface of the application can be displayed on the previous non-user operated screen, that is, displayed on the left screen.
  • the operating frequency level of each application may be preset or may be determined by the dual-screen mobile terminal according to the number of starts of each application. For example, applications such as social software are used more frequently, so applications such as social software can be set at a higher operating frequency level, while applications such as calendars are used less frequently. Then the operating frequency level of an application like the calendar can be set lower.
  • the dual-screen mobile terminal can record the number of times each application is activated, and the dual-screen mobile terminal can set the operating frequency level of the application with a higher number of startups to be higher, and the operating frequency level of the application with fewer startup times. Lower.
  • the dual-screen mobile terminal acquires the operating frequency level of the calendar application, and compares the operating frequency level of the calendar application with the preset target level, and the dual-screen mobile terminal judges If the operating frequency level of the application of the calendar is lower than the preset target level, the dual-screen mobile terminal displays the application interface of the calendar application on the screen operated by the previous non-user, that is, on the screen on the left.
  • the dual-screen mobile terminal detects the handheld state and determines whether the handheld state is a one-handed state or a two-handed state.
  • the dual-screen mobile terminal can detect the pressed position of the back surface, and determine whether the detected pressed positions are distributed on the same screen. If the detected pressed positions are distributed on the same screen, the current handheld state is In the one-handed state, if the detected pressing positions are not distributed on the same screen, but distributed on two screens, the current handheld state is the two-handed state.
  • the dual-screen mobile terminal determines that the pressed position is distributed on the right screen, indicating that the current handheld state is a one-handed handheld state, and is a right-hand handheld state, that is, the user is holding the right screen with the right hand, and the calendar
  • the application interface is displayed on the left screen, and the dual-screen mobile terminal determines that the screen displaying the application interface does not correspond to the handheld state.
  • step S103 the dual-screen mobile terminal determines the screen and the handheld state of the display application interface.
  • the calendar application interface is switched to another screen display, that is, the calendar application interface is switched to the right screen display.
  • the user can use the right hand to operate the calendar application on the right screen, which is more convenient and quicker.
  • FIG. 2 a schematic diagram of a screen display for switching the calendar application interface to the right.
  • the embodiment provides a screen content switching method, which is applied to a dual-screen mobile terminal.
  • the dual-screen mobile terminal can automatically switch the application interface to the screen display corresponding to the handheld state. This makes it easier to work with the app.
  • an embodiment of the present invention provides another method for switching a screen content, which is applied to a dual-screen mobile terminal, and includes the following steps:
  • Step S301 Receive a target operation input by the user, and determine a screen for receiving the target operation. If the target application interface of the target application needs to be displayed, obtain a preset operation frequency level of the target application, and preset the preset operation frequency level and the preset. Comparing the target levels, if the preset operating frequency level is higher than the preset target level, displaying the target application interface on the screen that receives the target operation, if the preset operating frequency level is not Above the preset target level, the target application interface is displayed on another screen of the dual screen mobile terminal.
  • step 301 when the dual-screen mobile terminal is in the vertical display state, the two screens are horizontally arranged, which are the left screen and the right screen, and the user can operate on any one of the two screens.
  • the user operates on the left screen at this time, for example, to modify the layout of multiple application icons on the left screen.
  • the dual-screen mobile terminal will acquire The operating frequency level of the application, and the operating frequency level of the application is compared with the preset target level.
  • the application interface of the application can be displayed on the previous user. On the screen that is operated, it is displayed on the screen on the left.
  • the application interface of the application can be displayed on the screen that is not operated by the user, that is, displayed on the screen on the right.
  • the dual-screen mobile terminal acquires the operating frequency level of the application of the game, and compares the operating frequency level of the application with the preset target level, and the dual-screen mobile terminal judges The operating frequency of this app is higher than the pre-operation level. Set the target level, then the dual-screen mobile terminal will display the application interface of the game application on the screen operated by the previous user, that is, on the screen on the left. After opening the game application, if the user still wants to open the browser application and clicks on the icon of the browser application, the application interface of the browser application is displayed on the other screen.
  • the preset operating frequency level may be a preset preset operating frequency level obtained in advance; or the preset operating frequency level may be initiated by the dual-screen mobile terminal according to the target application.
  • the preset operating frequency level determined by the number of times.
  • the operating frequency level of each application may be preset or may be determined by the dual-screen mobile terminal according to the number of starts of each application. For example, applications such as social software are used more frequently, so applications such as social software can be set at a higher operating frequency level, while applications such as calendars are used less frequently. Then the operating frequency level of an application like the calendar can be set lower.
  • the dual-screen mobile terminal can record the number of times each application is activated, and the dual-screen mobile terminal can set the operating frequency level of the application with a higher number of startups to be higher, and the operating frequency level of the application with fewer startup times. Lower.
  • Step S302 determining whether the dual-screen mobile terminal rotates, and if it is determined that the dual-screen mobile terminal has rotated, determining that the dual-screen mobile terminal has a rotated display state, if the dual-screen mobile terminal occurs After the rotation is a horizontal screen display state, determining the type of the screen displaying the target application interface, and if the screen of the target application interface is displayed as the first screen, switching the target application interface to the second screen display, if After the dual-screen mobile terminal rotates to be a vertical screen display state, the step of detecting the handheld state of the dual-screen mobile terminal is performed.
  • step S302 assuming that the current display state is a vertical screen display state, and the user has opened the first instant messaging mode application, the application interface of the first instant messaging mode application is displayed on the left screen, and if the user The dual-screen mobile terminal rotates ninety degrees clockwise, that is, the dual-screen mobile terminal is rotated to the horizontal screen display state. Under normal circumstances, the application interface of the first instant communication mode application should be displayed on the above screen.
  • the dual-screen mobile terminal When the dual-screen mobile terminal is in the horizontal display state, whether the user is one-handed or two-handed, it is accustomed to operate on the following screen, so that when the dual-screen mobile terminal is rotated to the horizontal display state, it can be preset If only one application is opened, the application interface of the opened application is displayed on the screen below, and if two applications are opened, the application with higher frequency level will be operated. The application interface is displayed on the screen below, and the application interface of the application with lower operating frequency level is displayed on the screen above.
  • the dual-screen mobile terminal displays the application interface of the first instant messaging mode application on the screen below.
  • FIG. 4 it is a schematic diagram of displaying an application interface when the dual-screen mobile terminal is rotated to the horizontal display state.
  • the current display state is the vertical screen display state
  • the user opens two applications, one is the first instant messaging mode application, and the other is the video player application.
  • the first instant messaging mode has an operating frequency level higher than that of the application.
  • the operating frequency level of the video player application the first instant messaging mode application interface of the application is displayed on the left screen, and the application interface of the video player application is displayed on the right screen. If the user rotates the dual-screen mobile terminal clockwise by ninety degrees, the dual-screen mobile terminal is rotated to the horizontal display state. Under normal circumstances, the application interface of the first instant messaging application should be displayed on the upper screen.
  • the application interface of the video player application should be displayed on the screen below.
  • the dual-screen mobile terminal compares the operating frequency level of the application of the first instant messaging mode with the operating frequency level of the application of the video player, and the dual-screen mobile terminal determines the operating frequency of the first instant messaging mode application.
  • the level is higher than the operating frequency level of the application of the video player, then the application interface of the application of the first instant messaging mode is displayed on the screen below, and the application interface of the application of the video player is displayed on the screen above.
  • FIG. 5 it is a schematic diagram showing another application interface when the dual-screen mobile terminal is rotated to the horizontal display state.
  • the dual-screen mobile terminal when the dual-screen mobile terminal is in the vertical display state, if the operating frequency levels of the two open applications are the same, then the application interface of the two applications is displayed when the dual-screen mobile terminal is rotated to the horizontal display state.
  • the state is determined by the operating state of the user before the rotation.
  • the dual-screen mobile terminal when the dual-screen mobile terminal is in the vertical display state, two applications are opened, one is the first instant communication mode application, and the other is the second instant communication mode application, and the two applications operate at the same frequency level, and
  • the first instant messaging mode The application interface of the application is displayed on the left screen, and the second instant messaging mode application interface of the application is displayed on the right screen. If the user rotates the dual-screen mobile terminal clockwise by ninety degrees, that is, the dual-screen mobile terminal is rotated to the horizontal display state, the dual-screen mobile terminal will operate the first instant messaging mode of the application with the second instant communication.
  • the operating frequency level of this application is compared, and the dual-screen mobile terminal will judge The operating frequency level of the application of the first instant messaging mode is equal to the operating frequency level of the second instant messaging mode, and the dual-screen mobile terminal further determines which application the user has operated before the rotation, if the rotation
  • the former user operates the first instant messaging mode application
  • the application interface of the first instant messaging mode application is displayed on the following screen after the rotation
  • the second instant messaging mode application interface of the application is displayed on the screen.
  • the purpose of this is to consider that the user is operating on the first instant messaging mode before the rotation, then the user may also want to operate the first instant messaging mode after the rotation, so the first instant messaging mode application is used.
  • the application interface is displayed on the screen below for user convenience.
  • FIG. 6 it is a schematic diagram showing another application interface when the dual-screen mobile terminal is rotated to the horizontal screen display state.
  • the handheld state of the dual-screen mobile terminal is also detected.
  • the dual-screen mobile terminal may use the direction sensor to detect the rotation state, or may use other methods to detect the rotation state, as long as the purpose of detecting the rotation state can be achieved.
  • the detecting the handheld state of the dual-screen mobile terminal may include:
  • Determining whether the handheld state corresponds to the target screen, and if the handheld state does not correspond to the target screen, switching the target application interface to another screen display of the dual-screen mobile terminal include:
  • the handheld state is the one-handed handheld state, determining whether the screen displaying the target application interface corresponds to the one-handed handheld state;
  • the handheld state is the two-handed state, determining whether the screen displaying the target application interface corresponds to the hand-held state;
  • the target application interface is switched to a screen display corresponding to the two-handed handheld state.
  • the dual-screen mobile terminal When the dual-screen mobile terminal is rotated to the vertical display state, the dual-screen mobile terminal also detects the handheld state.
  • the dual-screen mobile terminal can detect the pressed position of the back surface, and determine whether the detected pressing positions are distributed on the same screen. If the detected pressing positions are distributed on the same screen, the current handheld state is a one-handed handheld state. If the detected pressing positions are not distributed on the same screen but distributed on two screens, the current handheld state is the two-handed state.
  • the dual-screen mobile terminal can detect the pressing position using the pressure sensor, or can detect the pressing position by other means, as long as the purpose of detecting the pressing position can be achieved.
  • the current display state of the dual-screen mobile terminal is the horizontal display state
  • the application of the second instant communication mode has been opened
  • the application interface of the second instant communication mode application is displayed on the following screen
  • the mobile terminal rotates ninety degrees counterclockwise, that is, the dual screen mobile terminal is rotated to the vertical screen display state, then the application interface of the second instant communication mode application is displayed on the right screen, and at this time, the dual screen mobile terminal detects the handheld status.
  • the dual-screen mobile terminal can detect the pressing position of the back surface, and determine whether the detected pressing positions are distributed on the same screen. If the detected pressing positions are distributed on the left screen, the current handheld state is a one-handed handheld state. And the left hand is in the state of holding, that is, the user is holding the left screen with the left hand. Since the second instant messaging mode application interface of the application is displayed on the right screen, the dual screen mobile terminal determines the screen displaying the application interface. It does not correspond to the handheld state, so the application interface of the second instant messaging application is switched to the screen display corresponding to the current handheld state, that is, switched to the left screen display. As shown in FIG. 7, it is a schematic diagram of displaying an application interface when the dual-screen mobile terminal is rotated to the vertical screen display state.
  • the current handheld state is a one-handed handheld state
  • the right hand is in a handheld state, that is, the user is holding the right screen with the right hand, because the second instant communication at this time
  • the application interface of this application is displayed on the screen on the right, so the dual-screen mobile terminal does not need to switch the application interface.
  • the dual-screen mobile terminal will further determine which hand of the user is holding the dual-screen mobile terminal. If it is determined that the user's right hand is holding the dual-screen mobile terminal, the user should use the left hand to operate the application. Therefore, the dual-screen mobile terminal switches the application interface of the second instant messaging application to the left screen display. The purpose of this is to take into account that the user has to use the left hand to operate the application, then it will be more convenient for the user to operate by displaying the application interface on the left screen.
  • the user needs to operate the application with the right hand at this time, because the application interface of the second instant messaging mode application is displayed on the right screen, so the double The screen mobile terminal does not need to switch the application interface again.
  • the current display state of the dual-screen mobile terminal is the horizontal display state
  • the user opens two applications, one is the first instant communication mode application, the other is the video player application, and the first instant communication mode is the operation of the application.
  • the frequency level is higher than the operating frequency level of the application of the video player, and the application interface of the application of the first instant messaging mode is displayed on the screen below, and the application interface of the application of the video player is displayed on the screen above. If the user rotates the dual-screen mobile terminal clockwise by ninety degrees, that is, the dual-screen mobile terminal is rotated to the vertical screen display state, then the application interface of the first instant messaging mode application is displayed on the left screen, the video player The application interface of this application is displayed on the right screen. At this time, the dual-screen mobile terminal detects the handheld state.
  • the dual-screen mobile terminal can detect the pressed position of the back surface, and determine whether the detected pressing position is distributed on the same screen. If the detected pressing positions are distributed on the right screen, the current handheld state is a one-handed handheld state. And the state of the right hand is held, that is, the user is holding the right screen with the right hand. At this time, the dual-screen mobile terminal will operate the operating frequency level of the first instant messaging mode application and the operating frequency level of the video player application. For comparison, the dual-screen mobile terminal determines that the first instant messaging mode has an operating frequency level higher than the operating frequency level of the video player. Therefore, the dual-screen mobile terminal will apply the first instant messaging mode application.
  • the interface switches to the screen display corresponding to the current handheld state, that is, switches to the screen display on the right, and switches the application interface of the application of the video player to the screen display on the left.
  • FIG. 8 it is a schematic diagram showing another application interface when the dual-screen mobile terminal is rotated to the vertical screen display state.
  • the current handheld status is one-handed.
  • Hand-held state and is in the left-handed state, that is, the user is holding the left screen with the left hand, and the application interface of the application is displayed on the left screen because the first instant communication mode with a higher operating frequency level is displayed at this time.
  • the dual-screen mobile terminal does not need to switch the application interface again.
  • the dual-screen mobile terminal determines which hand of the user is holding the dual-screen mobile terminal, and if it is determined that the user is The left hand is holding the dual-screen mobile terminal, indicating that the user wants to operate the application with the right hand at this time, so the dual-screen mobile terminal will switch the application interface of the first instant messaging application to the right screen display, and the video player The application interface of this app switches to the screen display on the left.
  • the purpose of this is to take into account that the user has to use the right hand to operate the application, then it will be more convenient for the user to operate by displaying the application interface on the right screen.
  • the user needs to operate the application with the left hand at this time, because the application interface of the first instant communication mode with higher operating frequency level is displayed on the left side. On the screen, therefore, the dual-screen mobile terminal does not need to switch the application interface.
  • the application interface of the opened application switches to the corresponding screen display as the handheld state changes. For example, if the user opens the browser application at this time, and the application interface of the browser application is displayed on the right screen, the user is operating with one hand, that is, the application is being operated with the right hand. If the user wants to use the left hand to operate at this time, the dual-screen mobile terminal is operated with the left hand, and the dual-screen mobile terminal detects the pressed position of the back side, and the dual-screen mobile terminal detects that the pressed position is distributed on the left side.
  • the dual screen mobile terminal will switch the application interface of the browser application to the current The screen display corresponding to the handheld state, that is, switching to the screen display on the left.
  • Step S303 Determine whether the handheld state corresponds to a target screen.
  • step S303 after detecting the handheld state, the dual-screen mobile terminal determines whether the handheld state corresponds to the target screen, that is, determines whether the handheld state corresponds to the screen displaying the application interface.
  • Step S304 If the handheld state does not correspond to the target screen, switch the target application interface to another screen display of the dual-screen mobile terminal.
  • step S304 if the dual-screen mobile terminal determines that the handheld state does not correspond to the target screen, That is, the handheld state does not correspond to the screen displaying the application interface, and the dual-screen mobile terminal switches the application interface to the screen display corresponding to the handheld state.
  • the embodiment provides a screen content switching method, which is applied to a dual-screen mobile terminal.
  • the dual-screen mobile terminal can automatically switch the application interface to the screen display corresponding to the handheld state. This makes it easier to work with the app.
  • the embodiment of the present invention provides another screen content switching method, which is applied to a dual-screen mobile terminal, and includes the following steps:
  • Step S901 The user expands the screen of the dual-screen mobile terminal.
  • Step S902 The user operates on one of the two screens, and the dual-screen mobile terminal records the screen operated by the user.
  • Step S903 The user activates an application, and the dual-screen mobile terminal acquires an operating frequency level of the application, and compares the operating frequency level of the application with a preset target level. If the operating frequency level of the application is higher than the preset target level, Then, the application interface of the application is displayed on the screen operated by the previous user. If the operating frequency level of the application is lower than or equal to the preset target level, the application interface of the application is displayed on the previous non-user operated on the screen.
  • Step S904 detecting whether a rotation of the dual-screen mobile terminal has occurred.
  • Step S905 If it is detected that the dual-screen mobile terminal has rotated, determine the display state after the dual-screen mobile terminal is rotated.
  • Step S906 If the dual-screen mobile terminal rotates to display the state of the horizontal screen, determine whether the application interface is displayed on the screen below. If the application interface is displayed on the screen above, switch the application interface to the following screen display.
  • Step S907 If the dual-screen mobile terminal rotates to display the state of the vertical screen, detect the current handheld state, and determine whether the current handheld state is a one-handed handheld state or a two-handed handheld state.
  • Step S908 If the current handheld state is a one-handed handheld state, determine whether the screen displaying the application interface corresponds to the current one-hand handheld state.
  • Step S909 If the screen displaying the application interface does not correspond to the current one-hand handheld state, the application interface is switched to the screen display corresponding to the one-hand handheld state.
  • Step S9010 If the current handheld state is a two-handed handheld state, determine a screen displaying the application interface. Whether the screen corresponds to the current hand-held state.
  • Step S9011 If the screen displaying the application interface does not correspond to the current hand-held state, the application interface is switched to the screen display corresponding to the two-handed state.
  • the embodiment provides a screen content switching method, which is applied to a dual-screen mobile terminal.
  • the dual-screen mobile terminal can automatically switch the application interface to the screen display corresponding to the handheld state. This makes it easier to work with the app.
  • an embodiment of the present invention provides a dual-screen mobile terminal 100, which includes the following modules:
  • the first detecting module 1001 is configured to detect a handheld state of the dual-screen mobile terminal when the target screen displays the target application interface, where the target screen is a screen of the dual-screen mobile terminal;
  • the first determining module 1002 is configured to determine whether the handheld state corresponds to the target screen
  • the first switching module 1003 is configured to switch the target application interface to another screen display of the dual-screen mobile terminal if the handheld state does not correspond to the target screen.
  • the dual-screen mobile terminal 100 may further include:
  • the first determining module 1004 is configured to receive a target operation input by the user, and determine a screen for receiving the target operation;
  • the obtaining module 1005 is configured to acquire the preset operating frequency level of the target application if the target application interface of the target application needs to be displayed;
  • the comparing module 1006 is configured to compare the preset operating frequency level with a preset target level
  • the first display module 1007 is configured to display the target application interface on the screen that receives the target operation if the preset operating frequency level is higher than the preset target level;
  • the second display module 1008 is configured to display the target application interface on another screen of the dual-screen mobile terminal if the preset operating frequency level is lower than or equal to the preset target level.
  • the dual-screen mobile terminal 100 may further include:
  • the second determining module 1009 is configured to determine whether the dual-screen mobile terminal rotates
  • the third determining module 10010 is configured to: if it is determined that the dual-screen mobile terminal has rotated, determine a display state after the dual-screen mobile terminal rotates;
  • the fourth determining module 10011 is configured to determine a type of a screen for displaying the target application interface if the dual-screen mobile terminal is in a horizontal screen display state after being rotated;
  • the second switching module 10012 is configured to switch the target application interface to the second screen display if the screen of the target application interface is displayed as the first screen;
  • the executing module 10013 is configured to perform the step of detecting the handheld state of the dual-screen mobile terminal if the dual-screen mobile terminal is in a vertical display state after being rotated.
  • the first detecting module 1001 may include:
  • the detecting unit 100101 is configured to detect a pressing position on a back side of the dual screen mobile terminal
  • the first determining unit 100102 is configured to determine that the handheld state is a one-handed handheld state if the pressed positions are distributed on the same screen;
  • the second determining unit 100105 is configured to determine that the handheld state is a two-handed state if the pressing position is distributed on two screens;
  • the first determining module 1002 may be configured to determine, if the handheld state is the one-handed handheld state, whether the screen displaying the target application interface corresponds to the one-handed handheld state;
  • the first switching module 1003 may be configured to switch the target application interface to a screen display corresponding to the one-handed handheld state if the screen displaying the target application interface does not correspond to the one-handed handheld state;
  • the first determining module 1002 is further configured to: if the handheld state is the two-handed state, determine whether the screen displaying the target application interface corresponds to the two-handed state;
  • the first switching module 1003 may be further configured to switch the target application interface to a screen display corresponding to the two-handed handheld state if the screen displaying the target application interface does not correspond to the two-handed handheld state.
  • the preset operating frequency level may be a preset preset operating frequency level obtained in advance; or the preset operating frequency level may be initiated by the dual-screen mobile terminal according to the target application.
  • the preset operating frequency level determined by the number of times.
  • the dual-screen mobile terminal may be a dual-screen mobile terminal in the embodiment shown in FIG. 1, FIG. 3, and FIG. 9, and the dual-screen mobile in the embodiment shown in FIG. 1, FIG. 3, and FIG. Any implementation of the terminal can be implemented by the dual-screen mobile terminal in this embodiment, and details are not described herein again.
  • the embodiment provides a dual-screen mobile terminal, where the dual-screen mobile terminal includes a dual screen, and the screen content switching method can be implemented on the dual-screen mobile terminal.
  • the dual The screen mobile terminal can automatically switch the application interface to the screen display corresponding to the handheld state, which is more convenient when the application is operated.
  • the target screen When the target screen is displayed on the target screen, detecting a handheld state of the dual-screen mobile terminal, where the target screen is a screen of the dual-screen mobile terminal;
  • the target application interface is switched to another screen display of the dual-screen mobile terminal.
  • the method may further include: receiving a target operation input by the user before the step of detecting the handheld state of the dual-screen mobile terminal when the target screen is displayed on the target screen, And determining a screen to receive the target operation;
  • the preset operating frequency level is higher than the preset target level, displaying the target application interface on the screen that receives the target operation;
  • the preset operating frequency level is not higher than the preset target level, displaying the target application interface on another screen of the dual-screen mobile terminal.
  • the method may further include: determining, before the step of detecting the handheld state of the dual-screen mobile terminal, whether the dual-screen mobile terminal is rotated;
  • the dual-screen mobile terminal rotates and is in a horizontal screen display state, it is determined that the target should be displayed.
  • the type of screen used with the interface
  • the step of detecting the handheld state of the dual-screen mobile terminal is performed.
  • the detecting the handheld state of the dual-screen mobile terminal may include:
  • Determining whether the handheld state corresponds to the target screen, and if the handheld state does not correspond to the target screen, switching the target application interface to another screen display of the dual-screen mobile terminal include:
  • the handheld state is the one-handed handheld state, determining whether the screen displaying the target application interface corresponds to the one-handed handheld state;
  • the handheld state is the two-handed state, determining whether the screen displaying the target application interface corresponds to the hand-held state;
  • the target application interface is switched to a screen display corresponding to the two-handed handheld state.
  • the preset operating frequency level may be a preset preset operating frequency level obtained in advance
  • the preset operating frequency level may be a preset operating frequency level determined by the dual-screen mobile terminal according to the number of times the target application is activated.
  • the machine readable medium may include, for example, a read-only memory (Read-Only Memory, short for ROM), Random Access Memory (RAM), disk or optical disk.
  • Read-Only Memory short for ROM
  • RAM Random Access Memory
  • Such software may be distributed on a machine-readable medium, such as a computer-readable medium, which may include computer storage media (or non-transitory media) and communication media (or transitory media).
  • a computer-readable medium includes volatile and nonvolatile, implemented in any method or technology for storing information, such as computer readable instructions, data structures, program modules or other data. Sex, removable and non-removable media.
  • Computer storage media includes, but is not limited to, RAM, ROM, EEPROM, flash memory or other memory technology, CD-ROM, digital versatile disc (DVD) or other optical disc storage, magnetic cartridge, magnetic tape, magnetic disk storage or other magnetic storage device, or may Any other medium used to store the desired information and that can be accessed by the computer.
  • communication media typically includes computer readable instructions, data structures, program modules, or other data in a modulated data signal, such as a carrier wave or other transport mechanism, and can include any information delivery media. .
  • the embodiment of the present application provides a screen content switching method and a dual-screen mobile terminal.
  • the dual-screen mobile terminal can automatically switch the application interface to the screen display corresponding to the handheld state. This makes it easier to work with your app.

Abstract

一种屏幕内容切换方法和双屏移动终端,该方法包括:在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态(S101),所述目标屏幕为所述双屏移动终端的一屏幕;判断所述手持状态与所述目标屏幕是否对应(S102);若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示(S103)。当显示应用界面的屏幕与手持状态不对应时,双屏移动终端可以自动将应用界面切换至与手持状态相对应的屏幕显示,这样,在对应用进行操作时会更加便捷。

Description

一种屏幕内容切换方法和双屏移动终端 技术领域
本申请涉及但不限于通信技术领域,尤其涉及一种屏幕内容切换方法和双屏移动终端。
背景技术
双屏移动终端存在第一屏幕和第二屏幕,第一屏幕和第二屏幕之间可以有三种模式:单屏模式、双屏模式和镜像模式。将第一屏幕和第二屏幕同时展开时双屏移动终端的屏幕会比较大,当用户单手操作时,想要触摸到两块屏幕上的应用界面很困难。例如,当双屏移动终端为竖屏显示状态时,若用户使用右手对双屏移动终端进行操作,就很难触摸到显示于左面的屏幕上的应用界面,很不方便。因此,目前存在对双屏移动终端上的应用进行操作时不够便捷的问题。
发明概述
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。
本发明实施例提供一种屏幕内容切换方法和双屏移动终端,解决了相关技术存在的对双屏移动终端上的应用进行操作时不够便捷的问题。
本发明实施例提供一种屏幕内容切换方法,应用于双屏移动终端,包括:
在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态,所述目标屏幕为所述双屏移动终端的一屏幕;
判断所述手持状态与所述目标屏幕是否对应;
若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。
本发明实施例还提供一种双屏移动终端,包括:
第一检测模块,配置为在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态,其中,所述目标屏幕为所述双屏移动终端的一屏幕;
第一判断模块,配置为判断所述手持状态与所述目标屏幕是否对应;
第一切换模块,配置为若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。
本发明实施例还提供一种机器可读介质,存储有计算机可执行的一个或多个程序,所述一个或多个程序被所述计算机执行时使所述计算机执行如上述提供的一种屏幕内容切换方法。
上述技术方案中的一个技术方案具有如下优点或有益效果:
本发明实施例,在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态,所述目标屏幕为所述双屏移动终端的一屏幕;判断所述手持状态与所述目标屏幕是否对应;若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。当显示应用界面的屏幕与手持状态不对应时,双屏移动终端可以自动将应用界面切换至与手持状态相对应的屏幕显示,这样,在对应用进行操作时会更加便捷。
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为本发明实施例提供的一种屏幕内容切换方法的流程示意图;
图2为本发明实施例提供的一种日历应用界面切换到右边的屏幕显示的示意图;
图3为本发明实施例提供的另一种屏幕内容切换方法的流程示意图;
图4为本发明实施例提供的一种将双屏移动终端旋转为横屏显示状态时显示应用界面的示意图;
图5为本发明实施例提供的另一种将双屏移动终端旋转为横屏显示状态时显示应用界面的示意图;
图6为本发明实施例提供的另一种将双屏移动终端旋转为横屏显示状态 时显示应用界面的示意图;
图7为本发明实施例提供的一种将双屏移动终端旋转为竖屏显示状态时显示应用界面的示意图;
图8为本发明实施例提供的另一种将双屏移动终端旋转为竖屏显示状态时显示应用界面的示意图;
图9为本发明实施例提供的另一种屏幕内容切换方法的流程示意图;
图10为本发明实施例提供的一种双屏移动终端的结构图;
图11为本发明实施例提供的另一种双屏移动终端的结构图;
图12为本发明实施例提供的另一种双屏移动终端的结构图;
图13为本发明实施例提供的另一种双屏移动终端的结构图。
详述
下面将结合附图及实施例进行详细描述。
如图1所示,本发明实施例提供一种屏幕内容切换方法,应用于双屏移动终端,包括以下步骤:
步骤S101、在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态,其中,所述目标屏幕为所述双屏移动终端的一屏幕。
步骤S102、判断所述手持状态与所述目标屏幕是否对应。
步骤S103、若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。
在步骤S101中,首先,用户将双屏移动终端的屏幕展开,用户可以选择双屏移动终端的显示状态,可以使双屏移动终端为横屏显示状态,也可以使双屏移动终端为竖屏显示状态。
当双屏移动终端为竖屏显示状态时,两块屏幕水平排列,分别为左边的屏幕和右边的屏幕,用户可以在两块屏幕中的任意一块屏幕上进行操作。假设此时用户在右边的屏幕上进行操作,例如修改右边的屏幕上的多个应用图标的布局,若此时用户想要打开一个应用,并且点击了这个应用的图标,双 屏移动终端会获取这个应用的操作频率等级,并将这个应用的操作频率等级与预设目标等级进行比较,当这个应用的操作频率等级高于预设目标等级时,可以将这个应用的应用界面显示在之前的用户所操作的屏幕上,即显示于右边的屏幕上。当这个应用的操作频率等级低于或者等于预设目标等级时,可以将这个应用的应用界面显示在之前的非用户所操作的屏幕上,即显示于左边的屏幕上。
每个应用的操作频率等级可以是预先设置好的,也可以是双屏移动终端根据每个应用的启动次数所确定的。例如,像社交软件这一类应用的使用频度较高,那么像社交软件这一类的应用的操作频率等级就可以设置的高一些,而像日历这一类应用的使用频度较低,那么像日历这一类的应用的操作频率等级就可以设置的低一些。或者,双屏移动终端可以记录每个应用启动的次数,双屏移动终端可以将启动次数较多的应用的操作频率等级设置的高一些,而将启动次数较少的应用的操作频率等级设置的低一些。
假设此时用户点击了日历这个应用的图标,那么双屏移动终端会获取日历这个应用的操作频率等级,并将日历这个应用的操作频率等级与预设目标等级进行比较,双屏移动终端会判断出日历这个应用的操作频率等级低于预设目标等级,那么双屏移动终端会将日历这个应用的应用界面显示在之前的非用户所操作的屏幕上,即显示于左边的屏幕上。接下来,双屏移动终端会检测手持状态,判断手持状态为单手手持状态还是双手手持状态。
在步骤S102中,双屏移动终端可以对背面的按压位置进行检测,判断检测到的按压位置是否分布在同一块屏幕上,若检测到的按压位置分布在同一块屏幕上,说明当前手持状态为单手手持状态,若检测到的按压位置不是分布在同一块屏幕上,而是分布在两块屏幕上,说明当前手持状态为双手手持状态。
假设此时双屏移动终端判断出按压位置均分布于右边的屏幕上,说明当前手持状态为单手手持状态,且为右手手持状态,即此时用户正在用右手托着右边的屏幕,而日历应用界面正显示于左边的屏幕,双屏移动终端会判断出显示应用界面的屏幕与手持状态是不对应的。
在步骤S103中,双屏移动终端判断出显示应用界面的屏幕与手持状态 不对应后,即双屏移动终端判断出显示日历应用界面的左边的屏幕与右手手持状态不对应后,会将日历应用界面切换至另一个屏幕显示,即将日历应用界面切换至右边的屏幕显示,这样,用户就可以使用右手在右边的屏幕上对日历应用进行操作了,更加方便快捷。如图2所示,为将日历应用界面切换到右边的屏幕显示的示意图。
本实施例提出一种屏幕内容切换方法,应用于双屏移动终端,当显示应用界面的屏幕与手持状态不对应时,双屏移动终端可以自动将应用界面切换至与手持状态相对应的屏幕显示,这样,在对应用进行操作时会更加便捷。
如图3所示,本发明实施例提供另一种屏幕内容切换方法,应用于双屏移动终端,包括以下步骤:
步骤S301、接收用户输入的目标操作,并确定接收目标操作的屏幕,若需要显示目标应用的目标应用界面,则获取目标应用的预设操作频率等级,将所述预设操作频率等级与预设目标等级进行比较,若所述预设操作频率等级高于所述预设目标等级,则在所述接收所述目标操作的屏幕上显示所述目标应用界面,若所述预设操作频率等级不高于所述预设目标等级,则在所述双屏移动终端的另一屏幕上显示所述目标应用界面。
在步骤301中,当双屏移动终端为竖屏显示状态时,两块屏幕水平排列,分别为左边的屏幕和右边的屏幕,用户可以在两块屏幕中的任意一块屏幕上进行操作。假设此时用户在左边的屏幕上进行操作,例如修改左边的屏幕上的多个应用图标的布局,若此时用户想要打开一个应用,并且点击了这个应用的图标,双屏移动终端会获取这个应用的操作频率等级,并将这个应用的操作频率等级与预设目标等级进行比较,当这个应用的操作频率等级高于预设目标等级时,可以将这个应用的应用界面显示在之前的用户所操作的屏幕上,即显示于左边的屏幕上。当这个应用的操作频率等级低于或者等于预设目标等级时,可以将这个应用的应用界面显示在之前的非用户所操作的屏幕上,即显示于右边的屏幕上。
假设此时用户点击了游戏这个应用的图标,那么双屏移动终端会获取游戏这个应用的操作频率等级,并将游戏这个应用的操作频率等级与预设目标等级进行比较,双屏移动终端会判断出游戏这个应用的操作频率等级高于预 设目标等级,那么双屏移动终端会将游戏这个应用的应用界面显示在之前的用户所操作的屏幕上,即显示于左边的屏幕上。打开了游戏这个应用之后,若用户还想打开浏览器这个应用,并且点击了浏览器这个应用的图标,那么浏览器这个应用的应用界面会显示于另一个屏幕上。
在示例性实施方式中,所述预设操作频率等级可以为预先设置所获得的预设操作频率等级;或者,所述预设操作频率等级可以为所述双屏移动终端根据所述目标应用启动的次数所确定的预设操作频率等级。
每个应用的操作频率等级可以是预先设置好的,也可以是双屏移动终端根据每个应用的启动次数所确定的。例如,像社交软件这一类应用的使用频度较高,那么像社交软件这一类的应用的操作频率等级就可以设置的高一些,而像日历这一类应用的使用频度较低,那么像日历这一类的应用的操作频率等级就可以设置的低一些。或者,双屏移动终端可以记录每个应用启动的次数,双屏移动终端可以将启动次数较多的应用的操作频率等级设置的高一些,而将启动次数较少的应用的操作频率等级设置的低一些。
步骤S302、判断所述双屏移动终端是否发生旋转,若判断出所述双屏移动终端发生了旋转,则判断所述双屏移动终端发生旋转后的显示状态,若所述双屏移动终端发生旋转后是横屏显示状态,判断显示所述目标应用界面的屏幕的类型,若显示所述目标应用界面的屏幕为第一屏幕,则将所述目标应用界面切换至第二屏幕显示,若所述双屏移动终端发生旋转后是竖屏显示状态,则执行所述检测双屏移动终端的手持状态的步骤。
在步骤S302中,假设当前显示状态为竖屏显示状态,并且用户已经打开了第一即时通信方式这个应用,第一即时通信方式这个应用的应用界面显示于左边的屏幕上,若此时用户将双屏移动终端顺时针旋转九十度,即将双屏移动终端旋转为横屏显示状态,正常情况下,第一即时通信方式这个应用的应用界面应该显示于上面的屏幕上。
当双屏移动终端为横屏显示状态时,无论用户是单手操作还是双手操作,都习惯于在下面的屏幕上进行操作,因此可以预先设置当双屏移动终端被旋转为横屏显示状态时,若只打开了一个应用,则将打开的这个应用的应用界面显示于下面的屏幕上,若打开了两个应用,则将操作频率等级较高的应用 的应用界面显示于下面的屏幕上,而将操作频率等级较低的应用的应用界面显示于上面的屏幕上。
因此,当用户将双屏移动终端旋转为横屏显示状态时,双屏移动终端会将第一即时通信方式这个应用的应用界面显示于下面的屏幕上。如图4所示,为一种将双屏移动终端旋转为横屏显示状态时显示应用界面的示意图。
假设当前显示状态为竖屏显示状态,并且用户打开了两个应用,一个是第一即时通信方式这个应用,另一个是视频播放器这个应用,第一即时通信方式这个应用的操作频率等级高于视频播放器这个应用的操作频率等级,第一即时通信方式这个应用的应用界面显示于左边的屏幕上,视频播放器这个应用的应用界面显示于右边的屏幕上。若此时用户将双屏移动终端顺时针旋转九十度,即将双屏移动终端旋转为横屏显示状态,正常情况下,第一即时通信方式这个应用的应用界面应该显示于上面的屏幕上,视频播放器这个应用的应用界面应该显示于下面的屏幕上。
此时,双屏移动终端会将第一即时通信方式这个应用的操作频率等级与视频播放器这个应用的操作频率等级进行比较,双屏移动终端会判断出第一即时通信方式这个应用的操作频率等级高于视频播放器这个应用的操作频率等级,那么第一即时通信方式这个应用的应用界面就会显示于下面的屏幕上,而视频播放器这个应用的应用界面会显示于上面的屏幕上。如图5所示,为另一种将双屏移动终端旋转为横屏显示状态时显示应用界面的示意图。
需要说明的是,双屏移动终端为竖屏显示状态时,如果打开的两个应用的操作频率等级相同,那么将双屏移动终端旋转为横屏显示状态时,两个应用的应用界面的显示状态要由旋转前用户的操作状态来决定。
例如,双屏移动终端为竖屏显示状态时,打开了两个应用,一个是第一即时通信方式这个应用,另一个是第二即时通信方式这个应用,两个应用的操作频率等级相同,并且第一即时通信方式这个应用的应用界面显示于左边的屏幕上,第二即时通信方式这个应用的应用界面显示于右边的屏幕上。若此时用户将双屏移动终端顺时针旋转九十度,即将双屏移动终端旋转为横屏显示状态,双屏移动终端会将第一即时通信方式这个应用的操作频率等级与第二即时通信方式这个应用的操作频率等级进行比较,双屏移动终端会判断 出第一即时通信方式这个应用的操作频率等级与第二即时通信方式这个应用的操作频率等级是相等的,此时双屏移动终端会进一步判断旋转前用户对哪一个应用进行了操作,假如旋转前用户对第一即时通信方式这个应用进行了操作,那么旋转后第一即时通信方式这个应用的应用界面会显示于下面的屏幕上,而第二即时通信方式这个应用的应用界面会显示于上面的屏幕上。这样做的目的是考虑到旋转前用户正在对第一即时通信方式这个应用进行操作,那么旋转后用户可能还想对第一即时通信方式这个应用进行操作,因此就将第一即时通信方式这个应用的应用界面显示于下面的屏幕上,方便用户进行操作。如图6所示,为另一种将双屏移动终端旋转为横屏显示状态时显示应用界面的示意图。
当将双屏移动终端旋转为竖屏显示状态时,还要检测双屏移动终端的手持状态。
需要说明的是,双屏移动终端可以使用方向传感器检测旋转状态,也可以使用其他方式检测旋转状态,只要能达到检测旋转状态的目的实现方式不限。
在示例性实施方式中,所述检测双屏移动终端的手持状态,可以包括:
检测在所述双屏移动终端的背面的按压位置;
若所述按压位置分布在同一块屏幕上,则确定所述手持状态为单手手持状态;
若所述按压位置分布在两块屏幕上,则确定所述手持状态为双手手持状态;
所述判断所述手持状态与所述目标屏幕是否对应,若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示,可以包括:
若所述手持状态为所述单手手持状态,则判断显示所述目标应用界面的屏幕是否与所述单手手持状态相对应;
若显示所述目标应用界面的屏幕与所述单手手持状态不对应,则将所述目标应用界面切换至与所述单手手持状态相对应的屏幕显示;
若所述手持状态为所述双手手持状态,则判断显示所述目标应用界面的屏幕是否与所述双手手持状态相对应;
若显示所述目标应用界面的屏幕与所述双手手持状态不对应,则将所述目标应用界面切换至与所述双手手持状态相对应的屏幕显示。
当将双屏移动终端旋转为竖屏显示状态时,双屏移动终端还要检测手持状态。双屏移动终端可以对背面的按压位置进行检测,判断检测到的按压位置是否分布在同一块屏幕上,若检测到的按压位置分布在同一块屏幕上,说明当前手持状态为单手手持状态,若检测到的按压位置不是分布在同一块屏幕上,而是分布在两块屏幕上,说明当前手持状态为双手手持状态。双屏移动终端可以使用压力传感器检测按压位置,也可以利用其他方式检测按压位置,只要能达到检测按压位置的目的实现方式不限。
假设双屏移动终端当前显示状态为横屏显示状态,并且已经打开了第二即时通信方式这个应用,第二即时通信方式这个应用的应用界面显示于下面的屏幕上,若此时用户将双屏移动终端逆时针旋转九十度,即将双屏移动终端旋转为竖屏显示状态,那么第二即时通信方式这个应用的应用界面就显示于右边的屏幕上,此时,双屏移动终端会检测手持状态。
双屏移动终端可以对背面的按压位置进行检测,判断检测到的按压位置是否分布在同一块屏幕上,若检测到的按压位置均分布在左边的屏幕上,说明当前手持状态为单手手持状态,且为左手手持状态,即此时用户正在用左手托着左边的屏幕,由于第二即时通信方式这个应用的应用界面显示于右边的屏幕上,双屏移动终端会判断出显示应用界面的屏幕与手持状态是不对应的,因此会将第二即时通信方式这个应用的应用界面切换到与当前手持状态相对应的屏幕显示,即切换到左边的屏幕显示。如图7所示,为一种将双屏移动终端旋转为竖屏显示状态时显示应用界面的示意图。
若检测到的按压位置均分布在右边的屏幕上,说明当前手持状态为单手手持状态,且为右手手持状态,即此时用户正在用右手托着右边的屏幕,由于此时第二即时通信方式这个应用的应用界面就显示于右边的屏幕上,因此双屏移动终端就不需要再进行应用界面的切换了。
若检测到的按压位置分布在两个屏幕上,说明当前手持状态为双手手持 状态,双屏移动终端会进一步判断是用户的哪一只手在托着双屏移动终端,若判断出是用户的右手在托着双屏移动终端,说明此时用户要用左手对应用进行操作,因此双屏移动终端会将第二即时通信方式这个应用的应用界面切换到左边的屏幕显示。这样做的目的是考虑到用户要使用左手对应用进行操作,那么将应用的应用界面显示于左边的屏幕上会更方便于用户进行操作。若判断出是用户的左手在托着双屏移动终端,说明此时用户要用右手对应用进行操作,由于此时第二即时通信方式这个应用的应用界面就显示于右边的屏幕上,因此双屏移动终端就不需要再进行应用界面的切换了。
假设双屏移动终端当前显示状态为横屏显示状态,并且用户打开了两个应用,一个是第一即时通信方式这个应用,另一个是视频播放器这个应用,第一即时通信方式这个应用的操作频率等级高于视频播放器这个应用的操作频率等级,并且第一即时通信方式这个应用的应用界面显示于下面的屏幕上,视频播放器这个应用的应用界面显示于上面的屏幕上。若此时用户将双屏移动终端顺时针旋转九十度,即将双屏移动终端旋转为竖屏显示状态,那么第一即时通信方式这个应用的应用界面就显示于左边的屏幕上,视频播放器这个应用的应用界面就显示于右边的屏幕上,此时,双屏移动终端会检测手持状态。
双屏移动终端可以对背面的按压位置进行检测,判断检测到的按压位置是否分布在同一块屏幕上,若检测到的按压位置均分布在右边的屏幕上,说明当前手持状态为单手手持状态,且为右手手持状态,即此时用户正在用右手托着右边的屏幕,此时,双屏移动终端会将第一即时通信方式这个应用的操作频率等级与视频播放器这个应用的操作频率等级进行比较,双屏移动终端会判断出第一即时通信方式这个应用的操作频率等级高于视频播放器这个应用的操作频率等级,因此,双屏移动终端会将第一即时通信方式这个应用的应用界面切换到与当前手持状态相对应的屏幕显示,即切换到右边的屏幕显示,而将视频播放器这个应用的应用界面切换到左边的屏幕显示。如图8所示,为另一种将双屏移动终端旋转为竖屏显示状态时显示应用界面的示意图。
若检测到的按压位置均分布在左边的屏幕上,说明当前手持状态为单手 手持状态,且为左手手持状态,即此时用户正在用左手托着左边的屏幕,由于此时操作频率等级较高的第一即时通信方式这个应用的应用界面就显示于左边的屏幕上,因此双屏移动终端就不需要再进行应用界面的切换了。
若检测到的按压位置分布在两个屏幕上,说明当前手持状态为双手手持状态,双屏移动终端会进一步判断是用户的哪一只手在托着双屏移动终端,若判断出是用户的左手在托着双屏移动终端,说明此时用户要用右手对应用进行操作,因此双屏移动终端会将第一即时通信方式这个应用的应用界面切换到右边的屏幕显示,而将视频播放器这个应用的应用界面切换到左边的屏幕显示。这样做的目的是考虑到用户要使用右手对应用进行操作,那么将应用的应用界面显示于右边的屏幕上会更方便于用户进行操作。若判断出是用户的右手在托着双屏移动终端,说明此时用户要用左手对应用进行操作,由于此时操作频率等级较高的第一即时通信方式这个应用的应用界面就显示于左边的屏幕上,因此双屏移动终端就不需要再进行应用界面的切换了。
另外,当双屏移动终端为竖屏显示状态时,若只打开了一个应用,当手持状态改变时,打开的应用的应用界面会随着手持状态的改变而切换到相应的屏幕显示。例如,若此时用户打开了浏览器这个应用,并且浏览器这个应用的应用界面显示于右边的屏幕上,用户正在单手操作,即正在使用右手对应用进行操作。如果此时用户想要使用左手进行操作,就会用左手托着双屏移动终端进行操作,双屏移动终端会对背面的按压位置进行检测,双屏移动终端会检测到按压位置均分布在左边的屏幕上,说明当前手持状态已经由右手手持状态更新为左手手持状态,即此时用户正在用左手托着左边的屏幕,那么双屏移动终端会将浏览器这个应用的应用界面切换到与当前手持状态相对应的屏幕显示,即切换到左边的屏幕显示。
步骤S303、判断所述手持状态与目标屏幕是否对应。
在步骤S303中,双屏移动终端检测出手持状态后,会判断手持状态与目标屏幕是否对应,即判断手持状态与显示应用界面的屏幕是否对应。
步骤S304、若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。
在步骤S304中,若双屏移动终端判断出手持状态与目标屏幕不对应, 即手持状态与显示应用界面的屏幕不对应,双屏移动终端会将应用界面切换至与手持状态相对应的屏幕显示。
本实施例提出一种屏幕内容切换方法,应用于双屏移动终端,当显示应用界面的屏幕与手持状态不对应时,双屏移动终端可以自动将应用界面切换至与手持状态相对应的屏幕显示,这样,在对应用进行操作时会更加便捷。
如图9所示,本发明实施例提供另一种屏幕内容切换方法,应用于双屏移动终端,包括以下步骤:
步骤S901、用户展开双屏移动终端的屏幕。
步骤S902、用户在两块屏幕中的一块屏幕上进行操作,双屏移动终端记录用户所操作的屏幕。
步骤S903、用户启动一个应用,双屏移动终端获取这个应用的操作频率等级,并将这个应用的操作频率等级与预设目标等级进行比较,若这个应用的操作频率等级高于预设目标等级,则将该应用的应用界面显示在之前的用户所操作的屏幕上,若这个应用的操作频率等级低于或者等于预设目标等级,则将该应用的应用界面显示在之前的非用户所操作的屏幕上。
步骤S904、检测双屏移动终端是否发生了旋转。
步骤S905、若检测到双屏移动终端发生了旋转,判断双屏移动终端旋转后的显示状态。
步骤S906、若双屏移动终端旋转后为横屏显示状态,判断应用界面是否显示于下面的屏幕,若应用界面显示于上面的屏幕,则将应用界面切换至下面的屏幕显示。
步骤S907、若双屏移动终端旋转后为竖屏显示状态,检测当前手持状态,并判断当前手持状态为单手手持状态,还是双手手持状态。
步骤S908、若当前手持状态为单手手持状态,判断显示应用界面的屏幕与当前单手手持状态是否对应。
步骤S909、若显示应用界面的屏幕与当前单手手持状态不对应,则将应用界面切换至与单手手持状态相对应的屏幕显示。
步骤S9010、若当前手持状态为双手手持状态,判断显示应用界面的屏 幕与当前双手手持状态是否对应。
步骤S9011、若显示应用界面的屏幕与当前双手手持状态不对应,则将应用界面切换至与双手手持状态相对应的屏幕显示。
本实施例提出一种屏幕内容切换方法,应用于双屏移动终端,当显示应用界面的屏幕与手持状态不对应时,双屏移动终端可以自动将应用界面切换至与手持状态相对应的屏幕显示,这样,在对应用进行操作时会更加便捷。
如图10所示,本发明实施例提供一种双屏移动终端100,包括以下模块:
第一检测模块1001,配置为在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态,其中,所述目标屏幕为所述双屏移动终端的一屏幕;
第一判断模块1002,配置为判断所述手持状态与所述目标屏幕是否对应;
第一切换模块1003,配置为若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。
在示例性实施方式中,如图11所示,所述双屏移动终端100还可以包括:
第一确定模块1004,配置为接收用户输入的目标操作,并确定接收所述目标操作的屏幕;
获取模块1005,配置为若需要显示目标应用的所述目标应用界面,则获取所述目标应用的预设操作频率等级;
比较模块1006,配置为将所述预设操作频率等级与预设目标等级进行比较;
第一显示模块1007,配置为若所述预设操作频率等级高于所述预设目标等级,则在所述接收所述目标操作的屏幕上显示所述目标应用界面;
第二显示模块1008,配置为若所述预设操作频率等级低于或等于所述预设目标等级,则在所述双屏移动终端的另一屏幕上显示所述目标应用界面。
在示例性实施方式中,如图12所示,所述双屏移动终端100还可以包括:
第二判断模块1009,配置为判断所述双屏移动终端是否发生旋转;
第三判断模块10010,配置为若判断出所述双屏移动终端发生了旋转,则判断所述双屏移动终端发生旋转后的显示状态;
第四判断模块10011,配置为若所述双屏移动终端发生旋转后是横屏显示状态,判断显示所述目标应用界面的屏幕的类型;
第二切换模块10012,配置为若显示所述目标应用界面的屏幕为第一屏幕,则将所述目标应用界面切换至第二屏幕显示;
执行模块10013,配置为若所述双屏移动终端发生旋转后是竖屏显示状态,则执行所述检测双屏移动终端的手持状态的步骤。
在示例性实施方式中,如图13所示,第一检测模块1001可以包括:
检测单元100101,配置为检测在所述双屏移动终端的背面的按压位置;
第一确定单元100102,配置为若所述按压位置分布在同一块屏幕上,则确定所述手持状态为单手手持状态;
第二确定单元100105,配置为若所述按压位置分布在两块屏幕上,则确定所述手持状态为双手手持状态;
第一判断模块1002,可以配置为若所述手持状态为所述单手手持状态,则判断显示所述目标应用界面的屏幕是否与所述单手手持状态相对应;
第一切换模块1003,可以配置为若显示所述目标应用界面的屏幕与所述单手手持状态不对应,则将所述目标应用界面切换至与所述单手手持状态相对应的屏幕显示;
第一判断模块1002,还可以配置为若所述手持状态为所述双手手持状态,则判断显示所述目标应用界面的屏幕是否与所述双手手持状态相对应;
第一切换模块1003,还可以配置为若显示所述目标应用界面的屏幕与所述双手手持状态不对应,则将所述目标应用界面切换至与所述双手手持状态相对应的屏幕显示。
在示例性实施方式中,所述预设操作频率等级可以为预先设置所获得的预设操作频率等级;或者,所述预设操作频率等级可以为所述双屏移动终端根据所述目标应用启动的次数所确定的预设操作频率等级。
本实施例中,上述双屏移动终端可以是图1、图3和图9所示的实施例中的双屏移动终端,且图1、图3和图9所示的实施例中双屏移动终端的任何实施方式都可以被本实施例中的双屏移动终端所实现,这里不再赘述。
本实施例提出一种双屏移动终端,这种双屏移动终端包含双屏,屏幕内容切换方法可以在这种双屏移动终端上实现,当显示应用界面的屏幕与手持状态不对应时,双屏移动终端可以自动将应用界面切换至与手持状态相对应的屏幕显示,这样,在对应用进行操作时会更加便捷。
本领域普通技术人员可以理解实现上述实施例方法的全部或者部分步骤是可以通过程序指令相关的硬件来完成,所述的程序可以存储于一机器可读介质中,该程序在执行时,包括以下步骤:
在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态,所述目标屏幕为所述双屏移动终端的一屏幕;
判断所述手持状态与所述目标屏幕是否对应;
若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。
在示例性实施方式中,该程序在执行时,还可以包括以下步骤:在所述在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态的步骤之前,接收用户输入的目标操作,并确定接收所述目标操作的屏幕;
若需要显示目标应用的所述目标应用界面,则获取所述目标应用的预设操作频率等级;
将所述预设操作频率等级与预设目标等级进行比较;
若所述预设操作频率等级高于所述预设目标等级,则在所述接收所述目标操作的屏幕上显示所述目标应用界面;
若所述预设操作频率等级不高于所述预设目标等级,则在所述双屏移动终端的另一屏幕上显示所述目标应用界面。
在示例性实施方式中,该程序在执行时,还可以包括以下步骤:在所述检测双屏移动终端的手持状态的步骤之前,判断所述双屏移动终端是否发生旋转;
若判断出所述双屏移动终端发生了旋转,则判断所述双屏移动终端发生旋转后的显示状态;
若所述双屏移动终端发生旋转后是横屏显示状态,判断显示所述目标应 用界面的屏幕的类型;
若显示所述目标应用界面的屏幕为第一屏幕,则将所述目标应用界面切换至第二屏幕显示;
若所述双屏移动终端发生旋转后是竖屏显示状态,则执行所述检测双屏移动终端的手持状态的步骤。
在示例性实施方式中,所述检测双屏移动终端的手持状态,可以包括:
检测在所述双屏移动终端的背面的按压位置;
若所述按压位置分布在同一块屏幕上,则确定所述手持状态为单手手持状态;
若所述按压位置分布在两块屏幕上,则确定所述手持状态为双手手持状态;
所述判断所述手持状态与所述目标屏幕是否对应,若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示,可以包括:
若所述手持状态为所述单手手持状态,则判断显示所述目标应用界面的屏幕是否与所述单手手持状态相对应;
若显示所述目标应用界面的屏幕与所述单手手持状态不对应,则将所述目标应用界面切换至与所述单手手持状态相对应的屏幕显示;
若所述手持状态为所述双手手持状态,则判断显示所述目标应用界面的屏幕是否与所述双手手持状态相对应;
若显示所述目标应用界面的屏幕与所述双手手持状态不对应,则将所述目标应用界面切换至与所述双手手持状态相对应的屏幕显示。
在示例性实施方式中,所述预设操作频率等级可以为预先设置所获得的预设操作频率等级;
或者,所述预设操作频率等级可以为所述双屏移动终端根据所述目标应用启动的次数所确定的预设操作频率等级。
所述机器可读介质,可以包括如只读存储器(Read-Only Memory,简称 ROM)、随机存取存储器(Random Access Memory,简称RAM)、磁碟或者光盘等。
本领域普通技术人员可以理解,上文中所公开方法中的全部或某些步骤、系统、装置中的功能模块/单元可以被实施为软件、固件、硬件及其适当的组合。在硬件实施方式中,在以上描述中提及的功能模块/单元之间的划分不一定对应于物理组件的划分;例如,一个物理组件可以具有多个功能,或者一个功能或步骤可以由若干物理组件合作执行。某些组件或所有组件可以被实施为由处理器,如数字信号处理器或微处理器执行的软件,或者被实施为硬件,或者被实施为集成电路,如专用集成电路。这样的软件可以分布在机器可读介质(比如,计算机可读介质)上,计算机可读介质可以包括计算机存储介质(或非暂时性介质)和通信介质(或暂时性介质)。如本领域普通技术人员公知的,术语计算机存储介质包括在用于存储信息(诸如计算机可读指令、数据结构、程序模块或其他数据)的任何方法或技术中实施的易失性和非易失性、可移除和不可移除介质。计算机存储介质包括但不限于RAM、ROM、EEPROM、闪存或其他存储器技术、CD-ROM、数字多功能盘(DVD)或其他光盘存储、磁盒、磁带、磁盘存储或其他磁存储装置、或者可以用于存储期望的信息并且可以被计算机访问的任何其他的介质。此外,本领域普通技术人员公知的是,通信介质通常包含计算机可读指令、数据结构、程序模块或者诸如载波或其他传输机制之类的调制数据信号中的其他数据,并且可包括任何信息递送介质。
以上所述是本申请的示例性实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本申请所述原理的前提下,还可以作出若干改进和润饰,这些改进和润饰也应视为本申请的保护范围。
工业实用性
本申请实施例提供一种屏幕内容切换方法和双屏移动终端,当显示应用界面的屏幕与手持状态不对应时,双屏移动终端可以自动将应用界面切换至与手持状态相对应的屏幕显示,这样,在对应用进行操作时会更加便捷。

Claims (11)

  1. 一种屏幕内容切换方法,应用于双屏移动终端,包括:
    在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态,其中,所述目标屏幕为所述双屏移动终端的一屏幕;
    判断所述手持状态与所述目标屏幕是否对应;
    若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。
  2. 如权利要求1所述的方法,在所述在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态的步骤之前,所述方法还包括:
    接收用户输入的目标操作,并确定接收所述目标操作的屏幕;
    若需要显示目标应用的所述目标应用界面,则获取所述目标应用的预设操作频率等级;
    将所述预设操作频率等级与预设目标等级进行比较;
    若所述预设操作频率等级高于所述预设目标等级,则在所述接收所述目标操作的屏幕上显示所述目标应用界面;
    若所述预设操作频率等级低于或等于所述预设目标等级,则在所述双屏移动终端的另一屏幕上显示所述目标应用界面。
  3. 如权利要求2所述的方法,在所述检测双屏移动终端的手持状态的步骤之前,所述方法还包括:
    判断所述双屏移动终端是否发生旋转;
    若判断出所述双屏移动终端发生了旋转,则判断所述双屏移动终端发生旋转后的显示状态;
    若所述双屏移动终端发生旋转后是横屏显示状态,判断显示所述目标应用界面的屏幕的类型;
    若显示所述目标应用界面的屏幕为第一屏幕,则将所述目标应用界面切换至第二屏幕显示;
    若所述双屏移动终端发生旋转后是竖屏显示状态,则执行所述检测双屏 移动终端的手持状态的步骤。
  4. 如权利要求3所述的方法,其中,所述检测双屏移动终端的手持状态,包括:
    检测在所述双屏移动终端的背面的按压位置;
    若所述按压位置分布在同一块屏幕上,则确定所述手持状态为单手手持状态;
    若所述按压位置分布在两块屏幕上,则确定所述手持状态为双手手持状态;
    所述判断所述手持状态与所述目标屏幕是否对应,若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示,包括:
    若所述手持状态为所述单手手持状态,则判断显示所述目标应用界面的屏幕是否与所述单手手持状态相对应;
    若显示所述目标应用界面的屏幕与所述单手手持状态不对应,则将所述目标应用界面切换至与所述单手手持状态相对应的屏幕显示;
    若所述手持状态为所述双手手持状态,则判断显示所述目标应用界面的屏幕是否与所述双手手持状态相对应;
    若显示所述目标应用界面的屏幕与所述双手手持状态不对应,则将所述目标应用界面切换至与所述双手手持状态相对应的屏幕显示。
  5. 如权利要求2至4中任一项所述的方法,其中,所述预设操作频率等级为预先设置所获得的预设操作频率等级;
    或者,所述预设操作频率等级为所述双屏移动终端根据所述目标应用启动的次数所确定的预设操作频率等级。
  6. 一种双屏移动终端,包括:
    第一检测模块,配置为在目标屏幕显示目标应用界面时,检测双屏移动终端的手持状态,其中,所述目标屏幕为所述双屏移动终端的一屏幕;
    第一判断模块,配置为判断所述手持状态与所述目标屏幕是否对应;
    第一切换模块,配置为若所述手持状态与所述目标屏幕不对应,则将所述目标应用界面切换至所述双屏移动终端的另一屏幕显示。
  7. 如权利要求6所述的双屏移动终端,所述双屏移动终端还包括:
    第一确定模块,配置为接收用户输入的目标操作,并确定接收所述目标操作的屏幕;
    获取模块,配置为若需要显示目标应用的所述目标应用界面,则获取所述目标应用的预设操作频率等级;
    比较模块,配置为将所述预设操作频率等级与预设目标等级进行比较;
    第一显示模块,配置为若所述预设操作频率等级高于所述预设目标等级,则在所述接收所述目标操作的屏幕上显示所述目标应用界面;
    第二显示模块,配置为若所述预设操作频率等级低于或等于所述预设目标等级,则在所述双屏移动终端的另一屏幕上显示所述目标应用界面。
  8. 如权利要求7所述的双屏移动终端,所述双屏移动终端还包括:
    第二判断模块,配置为判断所述双屏移动终端是否发生旋转;
    第三判断模块,配置为若判断出所述双屏移动终端发生了旋转,则判断所述双屏移动终端发生旋转后的显示状态;
    第四判断模块,配置为若所述双屏移动终端发生旋转后是横屏显示状态,判断显示所述目标应用界面的屏幕的类型;
    第二切换模块,配置为若显示所述目标应用界面的屏幕为第一屏幕,则将所述目标应用界面切换至第二屏幕显示;
    执行模块,配置为若所述双屏移动终端发生旋转后是竖屏显示状态,则执行所述检测双屏移动终端的手持状态的步骤。
  9. 如权利要求8所述的双屏移动终端,其中,所述第一检测模块包括:
    检测单元,配置为检测在所述双屏移动终端的背面的按压位置;
    第一确定单元,配置为若所述按压位置分布在同一块屏幕上,则确定所述手持状态为单手手持状态;
    第二确定单元,配置为若所述按压位置分布在两块屏幕上,则确定所述 手持状态为双手手持状态;
    所述第一判断模块,配置为若所述手持状态为所述单手手持状态,则判断显示所述目标应用界面的屏幕是否与所述单手手持状态相对应;
    所述第一切换模块,配置为若显示所述目标应用界面的屏幕与所述单手手持状态不对应,则将所述目标应用界面切换至与所述单手手持状态相对应的屏幕显示;
    所述第一判断模块,还配置为若所述手持状态为所述双手手持状态,则判断显示所述目标应用界面的屏幕是否与所述双手手持状态相对应;
    所述第一切换模块,还配置为若显示所述目标应用界面的屏幕与所述双手手持状态不对应,则将所述目标应用界面切换至与所述双手手持状态相对应的屏幕显示。
  10. 如权利要求7至9中任一项所述的双屏移动终端,其中,所述预设操作频率等级为预先设置所获得的预设操作频率等级;
    或者,所述预设操作频率等级为所述双屏移动终端根据所述目标应用启动的次数所确定的预设操作频率等级。
  11. 一种机器可读介质,存储有计算机可执行程序,所述计算机可执行程序被处理器执行时实现权利要求1至5中任一项所述的屏幕内容切换方法。
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