WO2017181868A1 - 应用处理方法、设备、界面系统、控制设备及操作系统 - Google Patents

应用处理方法、设备、界面系统、控制设备及操作系统 Download PDF

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Publication number
WO2017181868A1
WO2017181868A1 PCT/CN2017/080029 CN2017080029W WO2017181868A1 WO 2017181868 A1 WO2017181868 A1 WO 2017181868A1 CN 2017080029 W CN2017080029 W CN 2017080029W WO 2017181868 A1 WO2017181868 A1 WO 2017181868A1
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Prior art keywords
interface
application
display
navigation
instruction
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PCT/CN2017/080029
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English (en)
French (fr)
Inventor
王人杰
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斑马网络技术有限公司
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Publication of WO2017181868A1 publication Critical patent/WO2017181868A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction 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
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • 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

Definitions

  • the present application relates to Internet technologies, and in particular, to an application processing method, device, interface system, control device, and operating system.
  • navigation devices In order to meet the user's demand for driving efficiency and driving safety, current airborne devices, such as navigation devices, can usually be installed with navigation applications.
  • the navigation device can provide navigation for the user's travel by running the navigation application.
  • the navigation device can typically be installed with other types of applications, such as audio and video, image applications, and the like.
  • the navigation device In the case where the navigation function of the navigation device is turned on, that is, in the case where the navigation application is running, the navigation device can present the navigation information by displaying the map on the display area.
  • the navigation application needs to be exited, that is, at the same time, only one application interface can be displayed on the display area of the navigation device. This makes it necessary for the user to frequently switch the display interface of the display area to obtain application information corresponding to different interfaces, and the operation process is cumbersome, so that the processing efficiency is low.
  • the application provides an application processing method, device, interface system, control device and operating system to simplify the operation process and improve the processing efficiency.
  • the application provides an application processing method, including:
  • the application icon display interface and the navigation interface are simultaneously displayed on the display area, and the application icon display interface does not block the main display area of the navigation interface.
  • the application processing method can display the application icon display interface and the navigation interface on the display area in response to the received application retrieval instruction, and the application icon display interface and the The navigation interface is presented on the display area, so that the user does not need to repeatedly switch the display boundary on the display area.
  • the application information corresponding to different interfaces can be obtained, the operation flow is simplified, the processing efficiency is improved, the interference caused by the repeated operation of the user to the driving vehicle is avoided, and the driving safety is ensured.
  • the application processing method when the application icon display interface and the navigation interface are displayed, it is only required to ensure that the application icon display interface does not block the main display area of the navigation interface, and the application icon display interface and the navigation interface are not required in the display area.
  • the partition display is performed in the middle, and thus the application processing method can also improve the space utilization of the display area.
  • the method further includes:
  • the application icon display interface is displayed in full screen on the display area in response to the full screen operation instruction.
  • the application processing method can display the application icon display interface on the display area in full screen in response to the full screen operation instruction, so that the display of the application icon display interface is clearer, more complete, more convenient for the user to operate, and avoids misoperation Waste of processing resources.
  • the full screen operation instruction input for the application icon display interface is received, including any of the following:
  • the application icon display interface and the navigation interface are simultaneously displayed on the display area, including:
  • the application icon display interface and the reduced navigation interface are simultaneously displayed on the display area.
  • the navigation interface is reduced, including:
  • the navigation interface is reduced in the display dimensions of the Y-axis and the Z-axis.
  • the method further includes:
  • the navigation interface is redisplayed on the display area in response to the resume operation instruction.
  • the application processing method may redisplay the navigation interface on the display area in response to the resume operation instruction
  • the display of the navigation interface can be made clearer and more complete, so that the user can obtain accurate navigation information based on the navigation interface.
  • the recovery operation instruction input for the reduced navigation interface is received, including any of the following:
  • the application receiving the input invokes an instruction, including any of the following:
  • the method further includes:
  • page switching is performed on the application icon display interface.
  • the application processing method may receive an icon page switching instruction input for the application icon display interface, and perform page switching on the application icon display interface in response to the icon page switching instruction, so that the current display of the application icon display interface is enabled.
  • the page changes to display the application icons of different pages to the user, which satisfies the needs of the application corresponding to the application icons of different pages, and improves the user experience.
  • the icon page switching instruction input for the application icon display interface is received, including:
  • the icon page switching instruction input through the control button is received.
  • the icon page switching instruction input by the sliding operation gesture on the application icon display interface includes:
  • the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining that the instruction corresponding to the sliding operation gesture is an icon page switching instruction.
  • the icon page switching instruction input by the sliding operation gesture on the application icon display interface includes:
  • the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, it is determined that the instruction corresponding to the sliding operation gesture is an icon page switching instruction.
  • the method may further include:
  • an application interface corresponding to the icon is displayed on the display area.
  • the application processing method can display an application interface on the display area in response to an opening operation instruction of the application icon on the application icon display interface, implement the operation of the application by the user, satisfy the user's demand for the application, and improve the user experience.
  • the application interface corresponding to displaying the icon on the display area includes:
  • the application interface is displayed in full screen on the display area.
  • the method further includes:
  • the application icon display interface and the navigation interface are simultaneously displayed on the display area.
  • the application return instruction input for the application interface is received, including any of the following:
  • the main display area of the navigation interface includes at least one of a current location, an area where the user is set, and a search box of the navigation interface.
  • the application further provides a navigation device, including:
  • a display processing module configured to display a navigation interface on the display area
  • a receiving module configured to receive an input application call instruction
  • the display processing module is further configured to simultaneously display the application icon display interface and the navigation interface on the display area in response to the application retrieval instruction; the application icon display interface does not block the main display area of the navigation interface.
  • the receiving module is further configured to: after the display processing module simultaneously displays the application icon display interface and the navigation interface on the display area, receive a full-screen operation instruction input for the application icon display interface;
  • the display processing module is further configured to perform full screen display on the display area on the application icon in response to the full screen operation instruction.
  • the receiving module is further configured to receive the full screen operation instruction in any of the following manners:
  • the display processing module is further configured to perform a reduction process on the navigation interface, and simultaneously display an application icon display interface and a reduced navigation interface on the display area.
  • the display processing module is further configured to perform a reduction process on the display dimensions of the Y-axis and the Z-axis of the navigation interface.
  • the receiving module is further configured to: after the display processing module simultaneously displays the application icon display interface and the reduced navigation interface on the display area, receive a recovery operation instruction input for the reduced navigation interface. ;
  • the display processing module is further configured to redisplay the navigation interface on the display area in response to the resume operation instruction.
  • the receiving module is further configured to receive the recovery operation instruction in any of the following manners:
  • the receiving module is further configured to receive the application retrieval instruction by any one of the following methods:
  • the receiving module is further configured to: after the display processing module simultaneously displays the application icon display interface and the navigation interface on the display area, receive an icon page switching instruction input for the application icon display interface;
  • the display processing module is further configured to perform page switching on the application icon display interface in response to the icon page switching instruction.
  • the receiving module is further configured to receive an icon page switching instruction by using any one of the following manners:
  • the icon page switching instruction input through the control button is received.
  • the receiving module includes:
  • a first detecting unit configured to detect a sliding speed of the sliding operation gesture input on the application icon display interface
  • a second determining unit configured to determine, according to the sliding speed, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction; if the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining that the instruction corresponding to the sliding operation gesture is Icon page switching instruction.
  • the receiving module includes:
  • a second detecting unit configured to detect a sliding distance of the sliding operation gesture input on the application icon display interface
  • a second determining unit configured to determine, according to the sliding distance, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction; if the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining that the instruction corresponding to the sliding operation gesture is an icon page Switch instructions.
  • the receiving module is further configured to: after the display processing module displays the application icon display interface and the navigation interface on the display area, receive an open operation instruction for any icon in the application icon display interface;
  • the display processing module is further configured to display an application interface corresponding to the icon on the display area in response to the opening operation instruction.
  • the display processing module is further configured to display the application interface in full screen on the display area.
  • the receiving module is further configured to: after the display processing module displays the application interface corresponding to the icon on the display area, receive an application return instruction input for the application interface;
  • the display processing module is further configured to simultaneously display the application icon display interface and the navigation interface on the display area in response to the application return instruction.
  • the receiving module is further configured to receive an application return instruction by using any one of the following methods:
  • the main display area of the navigation interface includes at least one of a current location, an area where the user is set, and a search box of the navigation interface.
  • the application further provides a navigation device, including: an input device, a processor, and a display device;
  • Display device for displaying a navigation interface
  • An input device for receiving an input application call instruction
  • a processor coupled to the input device and the display device for controlling the display device to simultaneously display the application icon display interface and the navigation interface in response to the application retrieval instruction;
  • the application icon display interface does not block the main display area of the navigation interface.
  • the input device is further configured to receive a full-screen operation instruction input for the application icon display interface
  • the processor is further configured to control the display device to display the application icon display interface in full screen in response to the full screen operation instruction
  • the processor is further configured to perform a reduction process on the navigation interface, and control the display device to simultaneously display the application icon display interface and the reduced navigation interface.
  • the processor is further configured to perform a reduction process on the display dimensions of the navigation interface on the Y axis and the Z axis.
  • the input device is further configured to receive a recovery operation instruction input for the reduced navigation interface
  • the processor is further configured to control the display device to redisplay the navigation interface in response to the resume operation instruction.
  • the input device is further configured to receive an icon page switching instruction input for the application icon display interface
  • the processor is further configured to control the display device to perform an icon display interface in response to the icon page switching instruction Page switching.
  • the input device is further configured to receive an open operation instruction for any icon in the application icon display interface
  • the processor is further configured to control the display device to display an application interface corresponding to the icon in response to the opening operation instruction.
  • the input device is further configured to receive an application return instruction input for the application interface
  • the processor is further configured to control the display device to simultaneously display the application icon display interface and the navigation interface in response to the application return instruction.
  • the application further provides an interface system, including:
  • a display component for displaying a navigation interface
  • a processor configured to trigger the display component to simultaneously display the application icon display interface and the navigation interface in response to the received application retrieval instruction
  • the application icon display interface does not block the main display area of the navigation interface.
  • the processor is further configured to trigger the display component to perform full screen display on the application icon display interface in response to the received full screen operation instruction for the application icon display interface.
  • the processor is further configured to perform a reduction process on the navigation interface, and trigger the display component to simultaneously display the application icon display interface and the reduced navigation interface.
  • the processor is further configured to perform a reduction process on the display dimensions of the navigation interface on the Y axis and the Z axis.
  • the processor is further configured to trigger the display component to redisplay the navigation interface in response to the received recovery operation instruction for the reduced navigation interface.
  • the processor is further configured to trigger the display component to perform page switching on the application icon display interface in response to the received icon page switching instruction for the application icon display interface.
  • the processor is further configured to trigger the display component to display the application interface corresponding to the icon in response to the received open operation instruction for any of the application icon display interfaces.
  • the processor is further configured to trigger the display component to simultaneously display the application icon display interface and the navigation interface in response to the received application return instruction for the application interface.
  • the application further provides a vehicle control device, including an onboard command input device, an onboard display device, and an onboard processor;
  • An onboard display device for displaying a navigation interface
  • An onboard command input device for receiving an input application call instruction
  • the onboard processor is coupled to the onboard command input device and the onboard display device for triggering the onboard display device to simultaneously display the application icon display interface and the navigation interface in response to the application call instruction;
  • the application icon display interface does not block the main display area of the navigation interface.
  • the onboard command input device is further configured to receive a full screen operation instruction input for the application icon display interface
  • the onboard processor is further configured to control the onboard display device to display an application icon display interface in full screen in response to the full screen operation instruction.
  • the onboard processor is further configured to perform a reduction process on the navigation interface, and control the onboard display device to simultaneously display the application icon display interface and the reduced navigation interface.
  • the onboard processor is further configured to perform a reduction process on the display dimensions of the navigation interface on the Y axis and the Z axis.
  • the onboard command input device is further configured to receive a resume operation instruction input for the reduced navigation interface
  • the onboard processor is further configured to control the onboard display device to redisplay the navigation interface in response to the resume operation instruction.
  • the onboard command input device is further configured to receive an icon page switching instruction input for the application icon display interface
  • the onboard processor is further configured to control the onboard display device to perform page switching on the application icon display interface in response to the icon page switching instruction.
  • the onboard command input device is further configured to receive an open operation instruction for any icon in the application icon display interface
  • the onboard processor is further configured to control the onboard display device to display an application interface corresponding to the icon in response to the opening operation instruction.
  • the onboard command input device is further configured to receive an application return instruction input for the application interface
  • the onboard processor is further configured to control the onboard display device to simultaneously display the application icon display interface and the navigation interface in response to the application return instruction.
  • the onboard command input device includes one or more of the following:
  • the application further provides an in-vehicle internet operating system, including:
  • a display control unit that controls the in-vehicle display device to display a navigation interface
  • the input control unit controls the vehicle command input device to acquire an application call instruction
  • the display control unit further controls the in-vehicle display device to simultaneously display the application icon display interface and the navigation interface in response to the application retrieval instruction; wherein the application icon display interface does not block the main display area of the navigation interface.
  • the application icon may be simultaneously displayed on the display area in response to the received application call instruction in the case that the navigation interface is displayed on the display area.
  • the display interface and the navigation interface can make the application icon display interface and the navigation interface appear on the display area as much as possible, so that the user can obtain application information corresponding to different interfaces without repeatedly switching the display interface on the display area. Simplify the operation process, improve the processing efficiency, avoid the interference caused by the repeated operation of the user to the driving vehicle, and ensure the safety of driving.
  • FIG. 1 is a schematic diagram of an optional networking manner of the present application
  • FIG. 3 is a schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 2 of the present application;
  • FIG. 5 is a schematic diagram of another state of a user interface implemented by an application processing method according to Embodiment 2 of the present application;
  • FIG. 6 is a schematic diagram of still another state of a user interface implemented by an application processing method according to Embodiment 2 of the present application;
  • FIG. 7 is still another state diagram of a user interface implemented by an application processing method according to Embodiment 2 of the present application; intention;
  • FIG. 8 is a flowchart of another application processing method according to Embodiment 2 of the present application.
  • FIG. 9 is a schematic diagram of a state of a user interface implemented by another application processing method according to Embodiment 2 of the present application.
  • FIG. 10 is a schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 3 of the present application;
  • FIG. 11 is a flowchart of another application processing method according to Embodiment 3 of the present application.
  • FIG. 12 is a schematic diagram of a state of a user interface implemented by another application processing method according to Embodiment 3 of the present application.
  • FIG. 13 is a flowchart of still another application processing method according to Embodiment 3 of the present application.
  • FIG. 14 is a flowchart of still another application processing method according to Embodiment 3 of the present application.
  • FIG. 16 is a schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 4 of the present application;
  • FIG. 17 is a schematic diagram of another state of a user interface implemented by an application processing method according to Embodiment 4 of the present application.
  • FIG. 18 is still another schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 4 of the present application;
  • FIG. 19 is a schematic diagram of still another state of a user interface implemented by an application processing method according to Embodiment 4 of the present application.
  • FIG. 20 is a schematic diagram of a state of a user interface implemented by another application processing method according to Embodiment 4 of the present application;
  • FIG. 21 is a schematic structural diagram of a navigation device according to Embodiment 5 of the present application.
  • FIG. 22 is a schematic structural diagram of a navigation device according to Embodiment 6 of the present application.
  • FIG. 23 is a schematic structural diagram of an interface system according to Embodiment 7 of the present application.
  • FIG. 24 is a schematic structural diagram of a navigation device according to Embodiment 8 of the present application.
  • FIG. 25 is a schematic structural diagram of a vehicle control device according to Embodiment 9 of the present application.
  • FIG. 26 is a schematic structural diagram of a vehicle-mounted Internet operating system according to Embodiment 10 of the present application.
  • Each application processing method, navigation device, interface system, and vehicle control device provided by the present application can be applied to a vehicle-based IoT system.
  • the Internet of Things can combine the communication technology (Telecommunication) and information technology (Informatics) to provide effective cooperation between the rider, the road and the vehicle by using the vehicle as a carrier, thereby providing the information service required by the rider.
  • the “vehicles” referred to in the present application include but are not limited to internal combustion engine vehicles, internal combustion engine motorcycles, electric vehicles, electric motorcycles, hybrid electric vehicles, hybrid electric motorcycles, electric mopeds, electric balance vehicles, and remote controls. Electric vehicles, aircraft (such as unmanned aerial vehicles, small manned aircraft, remotely piloted aircraft), etc., as well as various deformations.
  • FIG. 1 is a schematic diagram of an optional networking manner of the present application.
  • a client device 102 in the vehicle network, a client device 102 can be installed in the vehicle 101, and the client device 102 in the vehicle 101 can be connected to the server 103 through a network.
  • At least one application can be installed on the client device 102.
  • the server 103 can also obtain application data transmitted by the client device 102 of the vehicle 101.
  • the application data is analyzed and processed by the server 103 to provide the vehicle 101 with the application services required by the user.
  • the car networking networking mode shown in FIG. 1 is only an example, and the present application is not limited thereto.
  • the application processing method provided by the embodiments of the present application may be performed by a navigation device.
  • the navigation device may be the client device 102 installed in the vehicle 101 as described above.
  • the navigation device may be integrated into any device such as a mobile terminal, an onboard mobile device, and a vehicle control device that installs and runs the navigation application by software and/or hardware.
  • the mobile terminal and the onboard mobile device may be installed in the vehicle after being shipped from the vehicle or fixed in an operable area within the vehicle.
  • Vehicle control equipment such as a vehicle, can be integrated into the vehicle's central control system, which is already available when the vehicle is shipped from the factory.
  • the mobile terminal may include, for example, a smart phone, a tablet, and the like.
  • the onboard mobile device can include an onboard navigator or the like.
  • the application processing method provided by the embodiments of the present application can display the navigation interface of the navigation application on the display area of the navigation device, other interfaces can also be displayed, and the display interface of the display area does not need to be repeatedly switched, thereby simplifying the operation flow and improving The processing efficiency and the need to exit the navigation application can effectively ensure travel safety and travel efficiency.
  • Embodiment 1 of the present application provides an application processing method.
  • FIG. 2 is an application of the first embodiment of the present application. Flow chart of the method. As shown in FIG. 2, the application processing method may include:
  • the navigation interface may be displayed on a navigation device, or on a display area of other devices in the vehicle, such as a vehicle.
  • the navigation device may be a navigation interface displaying the navigation application on the display area only if the navigation application is running in the foreground.
  • the navigation application can be, for example, a high-definition navigation application, a Baidu navigation application, or any other navigation-enabled application.
  • the display area may be all display areas of the display device, or may be part of the display area of the display device.
  • the partial display area may be a display area of a preset ratio on the display device, and the preset ratio may be, for example, 80%, or 90%, or the like. It should be noted that when the display area is a partial display area of the display device, other display areas of the display device may be used to display other information of the vehicle, such as vehicle condition information and the like.
  • the application icon display interface and the navigation interface are simultaneously displayed on the display area in response to the received application call instruction.
  • the application icon display interface does not block the main display area of the navigation interface.
  • the application icon display interface includes: at least one application icon, wherein the at least one application icon can be arranged in a list form.
  • the application call instruction may be a call instruction corresponding to the application icon display interface.
  • the area where the current location is located may be an area within a preset range centered on the current location; the area where the user-set location is located may be an area within a preset range centered on the user-set location.
  • the application icon display interface or the navigation interface may be transparently processed in response to the application call instruction, so that the application icon display interface and the navigation interface are simultaneously displayed on the display area.
  • the application icon display interface can not obscure the main display area of the navigation interface, and ensure visualization of the main display area.
  • the application icon display interface is displayed in the first preset area of the display area, and the navigation interface is displayed in the second preset area, the first preset area and the The second preset area partially overlaps or does not overlap, so that when the application icon display interface and the navigation interface are simultaneously displayed on the display area, the application icon display interface may not block the main display area of the navigation interface, and the main display area is ensured. Visualization.
  • the S202 may further perform a reduction process on the navigation interface, and simultaneously display the application icon display interface and the reduced navigation interface on the display area, thereby avoiding or reducing the occlusion of the navigation interface by the application icon display interface. Thereby, the application icon display interface and the navigation interface are both presented on the display area as much as possible.
  • the application processing method provided in Embodiment 1 of the present application can be performed by displaying a navigation interface on a display area.
  • the application icon display interface and the navigation interface are simultaneously displayed on the display area in response to the received application call instruction, wherein the application icon display interface does not block the main display area of the navigation interface.
  • the application processing method can receive an application retrieval instruction when the navigation interface is displayed on the display area, so that the application icon display interface and the navigation interface are simultaneously displayed on the display area, so that the user does not need to repeatedly switch the display interface on the display area.
  • the application information corresponding to different interfaces can be obtained, the operation flow is simplified, the processing efficiency is improved, the interference caused by the repeated operation of the user to the driving vehicle is avoided, and the driving safety is ensured.
  • the application processing method of the present application when the application icon display interface and the navigation interface are simultaneously displayed on the display area, it is only required to ensure that the application icon display interface does not block the main display area of the navigation interface, and the application icon is not needed.
  • the display interface and the navigation interface are displayed in the display area, and thus the application processing method can also improve the space utilization of the display area.
  • the second embodiment of the present application further provides an application processing method.
  • simultaneously displaying the application icon display interface and the navigation interface on the display area in S202 may include:
  • the navigation interface is reduced,
  • the application icon display interface and the reduced navigation interface are displayed on the display area.
  • the navigation device may receive a zoom-out operation instruction for the navigation interface and perform a reduction process on the navigation interface according to the zoom-out operation instruction.
  • the navigation device may receive the reduced operation instruction input on the navigation interface, or may receive the reduction operation instruction input through a voice or a reduction control button.
  • the narrowing down the navigation interface in the application processing method of the foregoing embodiment may include:
  • the navigation interface is reduced in the display dimensions of the Y-axis and the Z-axis.
  • the navigation interface may be a three-dimensional navigation interface
  • the display dimension of the X-axis of the navigation interface may be a display dimension of the navigation interface in a horizontal direction on the display area
  • the display dimension of the Y-axis of the navigation interface may be The display dimension of the navigation interface in the portrait orientation on the display area
  • the display dimension of the Z axis of the navigation interface may be a display dimension of the navigation interface in a direction perpendicular to the display area.
  • FIG. 3 is a schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 2 of the present application.
  • the navigation interface 301 displayed on the display area may perform a reduction process on the navigation interface 301, and simultaneously display the application icon display interface 302 and the reduced navigation on the display area.
  • the application icon display interface 302 may include at least one application icon 303, such as the application 1, the application 2, the application 3, the application 4, the application 5, the application 6, and the like as shown in FIG.
  • the application icon display interface 302 The main display area of the navigation interface 301 may not be blocked.
  • the primary display area can include a location area 304.
  • the location area 304 may be an area within a preset range centered on the preset location 305.
  • the preset position 305 can be the current location or a location selected by the user.
  • the navigation device may display the application icon display interface 302 in the upper half of the display area shown in FIG. 3, and display the reduced navigation interface in the lower half of the top of the display area shown in FIG. 301. It should be noted that the application icon display interface 302 and the reduced navigation interface 301 may also be displayed in other positions of the display area.
  • FIG. 3 is only an example, and the present application is not limited thereto.
  • the display area in FIG. 3 is an example of the display area of the display device.
  • the display area may also be a partial display area of the display device, and details are not described herein.
  • the navigation interface 301 and the application icon display interface 302 can be simultaneously displayed on the display area, so that the user does not need to repeatedly switch the display interface on the display area to obtain application information corresponding to different interfaces, and simplify navigation.
  • the operation process of the equipment improves the processing efficiency.
  • the application icon display interface does not block the main display area of the navigation interface 301, and the partition display is not required.
  • the application processing method described in the first embodiment further improves the space utilization ratio of the display area.
  • FIG. 4 is a flowchart of an application processing method according to Embodiment 2 of the present application. As shown in FIG. 4, after the application icon display interface and the navigation interface are simultaneously displayed on the display area in response to the application call instruction in the above S202, the method may further include:
  • S402. Perform full screen display on the application icon display interface on the display area in response to the full screen operation instruction.
  • the application icon display interface is displayed in full screen on the display area, that is, in response to the full screen operation instruction, only the application icon display interface is displayed on the display area, and the navigation interface is not displayed.
  • the S402 performs full-screen display on the application icon display interface on the display area in response to the full-screen operation instruction, so that the display of the application icon display interface in the display area is clearer, more complete, and more convenient for the user to operate, thereby avoiding misoperation Waste of processing resources.
  • FIG. 5 is a schematic diagram of another state of a user interface implemented by an application processing method according to Embodiment 2 of the present application.
  • an application icon display interface 302 may be displayed on the display area.
  • the navigation interface 301 a full screen operation instruction input for the application icon display interface is received; and the application icon display interface 302 is displayed in full screen as shown in FIG. 5 on the display area in response to the full screen operation instruction.
  • the application icon display interface 302 is displayed in full screen in FIG. 5, only the application icon display interface 302 may be displayed on the display area.
  • the application icon display interface 302 may be displayed when the number of application icons included in the application icon display interface 302 displayed on the display area is greater than or equal to that of the application icon display interface 302 and the navigation interface 301 displayed on the display area. The number of app icons included in the app.
  • the application icon display interface 302 may include an application 1, an application 2, an application 3, and an application 4. , application 5, application 6, 6 application icons; the application icon display interface 302 displayed in full screen on the display area may include application 1, application 2, application 3, application 4, application 5, application 6, application 7, application 8. Apply 9, 9 application icons.
  • FIG. 5 is merely an example, and the application is not limited thereto.
  • the application icon display interface 302 is displayed in full screen on the display area in FIG. 5, so that the display of the application icon display interface 302 on the display area is clearer, more complete, and more convenient for the user to operate, and avoid processing resources caused by misoperation. waste.
  • the full-screen operation command input in the S401 for the application icon display interface may be implemented by any possible implementation manner as shown below.
  • the receiving, by the S401, the full-screen operation instruction input by the application icon display interface may include:
  • the operation icon may be a full screen operation icon.
  • FIG. 6 is still another schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 2 of the present application.
  • the navigation device may receive a full-screen operation instruction input by the click operation icon 601 on the application icon display interface 302, and display the application icon display interface 302 on the display area in full screen based on the full-screen operation instruction.
  • the operation icons shown in FIG. 6 are only examples, and the operation icons may also be icons of other shapes, which is not limited thereto.
  • the receiving, by the S401, the full-screen operation instruction input by the application icon display interface may include:
  • the full-screen gesture operation may be a combo gesture operation of an area outside the application icon on the application icon display interface, such as a double-click gesture operation. It should be noted that the full-screen gesture operation can also be used for other gesture operations. No longer.
  • FIG. 7 is a schematic diagram of still another state of a user interface implemented by an application processing method according to Embodiment 2 of the present application.
  • the navigation device may be a full-screen operation command input by receiving a full-screen gesture operation of an area other than the application icon 303 on the application icon display interface 302, such as a double-click gesture operation, and based on the full-screen operation instruction.
  • the application icon display interface 302 is displayed in full screen on the area.
  • the full-screen gesture operation shown in FIG. 7 is only an example, and the full-screen gesture operation may also be other forms of gesture operations, which is not limited thereto.
  • the receiving, by the S401, the full-screen operation instruction input by the application icon display interface may include:
  • the full screen operation instruction input by voice is received.
  • the receiving, by the S401, the full-screen operation instruction input by the application icon display interface may include:
  • control button may be, for example, a navigation device or other devices in the vehicle such as a center console control button, a control button of a steering wheel, and the like.
  • FIG. 8 is a flowchart of another application processing method according to Embodiment 2 of the present application. As shown in FIG. 8, after the application icon display interface and the reduced navigation interface are simultaneously displayed on the display area, the method may further include:
  • the navigation device may be a recovery operation instruction inputting any position on the reduced navigation interface, or may receive the recovery operation instruction by voice input, or may be the resume operation instruction input through the control button.
  • the navigation interface is redisplayed on the display area, that is, in response to the resume operation instruction, only the navigation interface is displayed on the display area, and the application icon display interface is not displayed, that is, the application icon is exited.
  • the S802 re-displays the navigation interface on the display area in response to the recovery operation instruction, so that the display of the navigation interface in the display area is clearer and more complete, so that the user can obtain accurate navigation information based on the navigation interface. .
  • receiving the recovery operation instruction input to the reduced navigation interface in S801 as described above may include:
  • the receiving the recovery operation instruction input for the reduced navigation interface in S801 as described above may also include:
  • the receiving the recovery operation instruction input for the reduced navigation interface in S801 as described above may further include:
  • the recovery operation instruction input by voice is received.
  • the receiving the recovery operation instruction input for the reduced navigation interface in S801 as described above may also include:
  • the recovery operation command input through the control button is received.
  • FIG. 9 is a schematic diagram of a state of a user interface implemented by another application processing method according to Embodiment 2 of the present application.
  • the navigation device may receive a recovery operation instruction input by the click operation icon 901 on the reduced navigation interface 301, and display the navigation interface 301 on the display area based on the recovery operation instruction.
  • the navigation device may be a recovery operation instruction input by receiving a manipulation gesture input on any area of the reduced navigation interface 301, and displaying the navigation on the display area based on the recovery operation instruction. Interface 301.
  • the operation gestures shown in FIG. 9 are only examples, and the operation gestures may also be other forms of operation gestures, which is not limited thereto.
  • the navigation device may further receive a recovery operation instruction input through the control button 902, and display the navigation interface 301 on the display area based on the recovery operation instruction.
  • the navigation device may further receive a recovery operation instruction input by using a voice, and display the navigation interface 301 on the display area based on the recovery operation instruction.
  • the application processing method provided in the second embodiment of the present application may further receive the full-screen operation instruction input on the application icon display interface, and in response to the full-screen operation instruction, on the basis of the application processing method described in the first embodiment.
  • the application icon display interface is displayed in full screen on the display area, so that the display of the application icon display interface in the display area is clearer, more complete, and more convenient for the user to operate, thereby avoiding waste of processing resources caused by misoperation.
  • the application processing method may further receive a recovery operation instruction input on the reduced navigation interface, and redisplay the navigation interface on the display area in response to the recovery operation instruction, so that the navigation interface is displayed in the display area. It is clearer and more complete, so that users can obtain accurate navigation information based on the navigation interface.
  • the third embodiment of the present application further provides multiple applications.
  • the application retrieving instruction that receives the input by S202 as described above may be implemented by any of the following embodiments.
  • the S202 receiving the input application retrieval instruction may include:
  • control button may be a virtual button on the navigation interface.
  • the application call instruction may be a click operation instruction input on the control key, or a long press operation instruction.
  • the S202 receiving the input application retrieval instruction may include:
  • the S202 receiving the input application retrieval instruction may include:
  • the S202 receiving the input application retrieval instruction may include:
  • control button may be located on a virtual control button on the navigation interface, or may be located outside the display area of the navigation device, such as other locations of the navigation device, a vehicle, or other devices in the vehicle, such as a steering wheel. Physical button.
  • FIG. 10 is a schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 3 of the present application.
  • the navigation device may be an application retrieval command input through a control key 1001 outside the display area of the navigation device when the navigation interface 301 is displayed on the display display area.
  • the application call instruction may be a click operation instruction input on the control key 1001, or a long press operation instruction. It should be noted that the application call instruction may also be other types of operation instructions, which are merely examples, and the application is not limited thereto.
  • Embodiment 3 of the present invention further provides an application processing method.
  • FIG. 11 is a flowchart of another application processing method according to Embodiment 3 of the present application. As shown in FIG. 11, the application processing method may be further provided after the application icon display interface and the navigation interface are simultaneously displayed on the display area in response to the application retrieval instruction in S202, according to the method as described above. include:
  • S1102 Perform page switching on the application icon display interface in response to the icon page switching instruction.
  • the application icon display interface displayed on the display area in response to the application retrieval instruction may be an application icon first page. If the application icon first page is not enough to display all the applications in the navigation device, the application icon display interface also has other application icon display pages. If the application icon display interface has other The icon is displayed by the icon, and the icon switching instruction input for the application icon display interface is received, so that the current page displayed on the application icon display interface is switched to another page, and the page switching of the application icon display interface is implemented.
  • the application may be made The current display page of the icon display interface changes, and the application icons of different pages are displayed to the user, which satisfies the needs of the application corresponding to the application icons of different pages, and improves the user experience.
  • the receiving an icon page switching instruction input by the application icon display interface in the S1101, as described above, may include:
  • the sliding operation gesture may be, for example, a single-finger or multi-finger swipe operation gesture.
  • the receiving the icon page switching instruction input for the application icon display interface in S1101 as described above may include:
  • the receiving the icon page switching instruction input for the application icon display interface in S1101 as described above may include:
  • the icon page switching instruction input by voice is received.
  • the receiving the icon page switching instruction input for the application icon display interface in S1101 as described above may include:
  • the icon page switching instruction input through the control button is received.
  • FIG. 12 is a schematic diagram of a state of a user interface implemented by another application processing method according to Embodiment 3 of the present application.
  • the navigation device may be configured to receive an icon page switching instruction input by the left sliding operation gesture on the application icon display interface 302, and cause the application icon display interface 302 to be current in response to the icon page switching instruction. The page switches to the next page.
  • the navigation device may further be: receiving an icon page switching instruction input by the right sliding operation gesture on the application icon display interface 302, and causing the application icon display interface 302 to be current in response to the icon page switching instruction.
  • the page switches to the previous page.
  • FIG. 12 is a schematic diagram corresponding to a sliding operation gesture to the left, and a schematic diagram corresponding to a sliding operation gesture to the right is not described herein.
  • the navigation device may receive an icon page switching instruction input by clicking the page turning button 1201 shown in FIG. 12 on the application icon display interface 302, and respond to the icon page switching instruction to make the response The current page of the icon display interface 302 is switched to the next page.
  • the page turning button 1201 can also be in other shapes, and FIG. 12 is only an example, and the present application is not limited thereto.
  • the navigation device does not perform page switching on the application icon display interface 302, that is, displays the current page of the application icon display interface 302.
  • the navigation device may also perform page bounce on the current page of the application icon display interface 302 on the display area.
  • FIG. 12 is only an example, and the icon page switching instruction may be implemented by using a voice input or a control button input, and details are not described herein again.
  • the receiving the icon page switching instruction input for the application icon display interface in S1101 as described above may include:
  • the page drag operation gesture may long press the finger on the current page of the application icon display interface, and drag the operation gesture of the current page.
  • the client device After receiving the page drag operation gesture input on the application icon display interface, the client device further determines whether the drag distance of the page drag operation gesture is greater than or equal to a preset distance, and determines whether the page drag operation gesture is The page switches the operation gesture corresponding to the instruction. If the dragging distance of the page drag operation gesture is greater than or equal to the preset distance, the navigation device may determine that the page drag operation gesture is an operation gesture corresponding to the page switching instruction. If the dragging distance of the page drag operation gesture is less than the preset distance, the navigation device may determine that the page drag operation gesture is not an operation gesture corresponding to the page switching instruction.
  • the dragging distance of the page drag operation gesture may be the start position of the page drag operation gesture and the end position of the page drag operation gesture.
  • the preset distance may be determined, for example, according to the side length of the display area in the drag direction of the page drag operation gesture. If the drag direction of the page drag operation gesture is the left and right drag direction, the preset distance may be 20% of the horizontal length of the display area. It should be noted that the preset distance may also be other distances, and details are not described herein again.
  • Embodiment 3 of the present application further provides an application processing method.
  • FIG. 13 is a flowchart of still another application processing method according to Embodiment 3 of the present application.
  • the icon page switching instruction that is input by the sliding operation gesture on the application icon display interface is as follows:
  • the sliding speed may be a ratio of a sliding distance of the sliding operation gesture to a sliding time.
  • the sliding distance may be a distance between a starting position and an exiting position corresponding to the sliding operation gesture. Sliding time for the slip The duration of the gesture is continued.
  • S1302 Determine, according to the sliding speed, whether the sliding operation operation gesture is an operation gesture corresponding to the icon page switching instruction.
  • the navigation device may compare whether the sliding speed is greater than or equal to the preset speed. If the sliding speed is greater than or equal to the preset speed, determine that the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction. If the sliding speed is less than the preset speed, the sliding operation gesture is not an operation gesture corresponding to the icon page switching instruction.
  • the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining that the instruction corresponding to the sliding operation gesture is the icon page switching instruction.
  • Embodiment 3 of the present application further provides an application processing method.
  • FIG. 14 is a flowchart of still another application processing method according to Embodiment 3 of the present application.
  • the application page processing instruction method receives the icon page switching instruction input by the sliding operation gesture on the application icon display interface, and may also be:
  • the sliding distance may be a distance between a starting position and an exiting position corresponding to the sliding operation gesture on the display area.
  • S1402 Determine, according to the sliding distance, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction.
  • the navigation device may compare whether the sliding distance is greater than or equal to the preset distance. If the sliding speed is greater than or equal to the preset distance, determine that the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction. If the sliding speed is less than the preset distance, the sliding operation gesture is not an operation gesture corresponding to the icon page switching instruction.
  • the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining that the instruction corresponding to the sliding operation gesture is the icon page switching instruction.
  • a plurality of different application processing methods for receiving icon switching instructions are provided, so that a plurality of different page switching solutions of the application icon display interface are displayed, and different pages are displayed to the user.
  • the application icon satisfies the user's demand for an application corresponding to the application icon of the different page, thereby improving the user experience.
  • Embodiment 4 of the present application further provides an application processing method.
  • FIG. 15 is a flowchart of an application processing method according to Embodiment 4 of the present application. As shown in FIG. 15, the method further displays an application icon display interface and navigation on the display area in response to the application retrieving instruction in S203, based on the application processing method described in any of the above embodiments. After the interface, the method further includes:
  • S1501 Receive an open operation instruction for any icon in the application icon display interface.
  • the navigation device may be an open operation instruction input by receiving an icon click operation gesture on the icon on the application icon display interface.
  • the application interface corresponding to the icon displayed on the display area of the S1502 includes:
  • the application interface is displayed in full screen on the display area.
  • FIG. 16 is a schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 4 of the present application.
  • the navigation device can receive an open operation instruction of the application 3 input by clicking the icon of the application 3 at the icon of the application 3 of the application icon display interface 302, according to the open operation instruction of the application 3, in the display
  • the application 3 first page 1601 in the application interface of the application 3 is displayed in full on the area.
  • FIG. 17 is a schematic diagram of another state of a user interface implemented by an application processing method according to Embodiment 4 of the present application.
  • the navigation device may further receive an open operation instruction corresponding to any function input by any function control key on the first page 1601 of the application 3 in the application interface of the application 3, and corresponding to the function according to any function.
  • the open operation instruction displays the application 3 secondary page 1701 in full screen on the display area.
  • the application 3 secondary page 1701 may be a display page corresponding to any of the functions of the application 3.
  • FIG. 18 is still another schematic diagram of a state of a user interface implemented by an application processing method according to Embodiment 4 of the present application.
  • the navigation device may further receive an application return instruction input by clicking the return key 1801 on the application 3 secondary page 1701 in the application interface of the application 3, and display the application on the display area in response to the application return instruction. 3 first page 1601.
  • the navigation device may further receive an application return instruction input by the user through the control button 1802 outside the display area of the navigation device, and display the application 3 first page 1601 on the display area in response to the application return instruction.
  • the return key 1801 and the control button 1802 in FIG. 18 are only examples, and the present application is not limited thereto.
  • the method may further include:
  • the application icon display interface and the navigation interface are simultaneously displayed on the display area in response to the application returning an instruction.
  • receiving the application return instruction for the input on the application interface as described above may be through the following A possible implementation of the described implementation.
  • receiving an application return instruction for input on the application interface may include:
  • receiving an application return instruction for input on the application interface may include:
  • the application that receives the voice input returns an instruction.
  • receiving an application return instruction for input on the application interface may include:
  • FIG. 19 is a schematic diagram of still another state of a user interface implemented by an application processing method according to Embodiment 4 of the present application.
  • the navigation device may further receive an application return instruction input by clicking the return key 1901 on the application 3 first page 1601 in the application interface of the application 3, and display the application on the display area in response to the application return instruction.
  • the icon displays interface 302 and navigation interface 301.
  • the navigation device may further receive an application return instruction input by clicking a control button 1902 outside the display area of the navigation device, and simultaneously display the application icon display interface 302 on the display area in response to the application return instruction.
  • the navigation interface 301 It should be noted that the return key 1901 and the control button 1902 in FIG. 19 are only examples, and the application is not limited thereto.
  • the application processing method is based on the method described in the foregoing embodiment, where the main display area of the navigation interface may include: an area where the current location is located, an area where the user is set, and a search box of the navigation interface. at least one.
  • FIG. 20 is a schematic diagram of a state of a user interface implemented by another application processing method according to Embodiment 4 of the present application.
  • the navigation device may simultaneously display the application icon display interface and the navigation interface on the display area, wherein the main display area of the navigation interface 301 includes: a search box 2001 and a location area 304 of the navigation interface 302.
  • the location area 304 can be the area where the current location is located and/or the area where the location is set by the user.
  • the display position of the search box 2001 in the display area in FIG. 20 is only an example, and the search box 2001 may also be displayed in other areas of the display area, which is not limited thereto.
  • the navigation device may display an application interface on the display area according to an open operation instruction corresponding to the application icon of the application icon display interface, so as to implement the operation of the application by the user, and satisfy the user's demand for the application. Improve the user experience.
  • a navigation device will be described in detail below. These navigation devices can be implemented in the infrastructure of the vehicle or mobile terminal, or can be implemented in an interactive system of servers and client devices. Those skilled in the art can understand that these navigation devices can use the commercially available hardware components through the solution.
  • the steps taught are configured to be constructed.
  • the processor component or processing module, processing unit
  • Embodiment 5 of the present application further provides a navigation device.
  • FIG. 21 is a schematic structural diagram of a navigation device according to Embodiment 5 of the present application.
  • the navigation device 2100 may include a display processing module 2101 and a receiving module 2102.
  • the navigation device 2100 can be integrated in any device such as a mobile terminal, an onboard mobile device, a control device of a vehicle, or the like by software and/or hardware.
  • the display processing module 2101 is configured to display a navigation interface on the display area.
  • the receiving module 2102 is configured to receive an input application retrieval instruction.
  • the display processing module 2101 is further configured to simultaneously display an application icon display interface and a navigation interface on the display area in response to the application retrieval instruction.
  • the application icon display interface includes: at least one application icon.
  • the application icon display interface does not obscure the main display area of the navigation interface.
  • the receiving module 2102 is further configured to: after the display processing module 2101 simultaneously displays the application icon display interface and the navigation interface on the display area, receive a full-screen operation instruction input for the application icon display interface.
  • the display processing module 2101 is further configured to perform full screen display on the application icon display interface on the display area in response to the full screen operation instruction.
  • the receiving module 2102 is further configured to receive the full-screen operation instruction by: receiving a full-screen operation instruction input by the click operation icon on the application icon display interface; receiving the full-screen gesture operation on the application icon display interface The input full screen operation instruction; receiving the full screen operation instruction by voice input; receiving the full screen operation instruction input through the control button.
  • the navigation device 2100 further includes:
  • the display processing module 2101 is further configured to perform a reduction process on the navigation interface, and display the application icon display interface and the reduced navigation interface simultaneously on the display area.
  • the display processing module 2101 is further configured to perform a reduction process on the display dimensions of the Y-axis and the Z-axis of the navigation interface.
  • the receiving module 2102 is further configured to: after the display processing module 2101 simultaneously displays the application icon display interface and the reduced navigation interface on the display area, receive a recovery operation instruction input for the reduced navigation interface. .
  • the display processing module 2101 is further configured to: in response to the recovery operation instruction, the navigation interface on the display area Redisplay.
  • the receiving module 2102 is further configured to: receive the recovery operation instruction by receiving the recovery operation instruction input by the click operation icon on the reduced navigation interface; and receiving the reduced navigation interface through the full screen a resume operation instruction for operating a gesture input; receiving the resume operation instruction by voice input; receiving the resume operation instruction input through the control button.
  • the receiving module 2102 is further configured to receive, by using any one of the following methods, the application retrieving instruction: receiving an application retrieving instruction input by clicking a control key on the navigation interface; receiving an application retrieving instruction by using a voice input; and receiving The application interface is invoked by the operation gesture input on the navigation interface; and the application retrieval instruction input through the control button is received.
  • the receiving module 2102 is further configured to: after the display processing module 2101 simultaneously displays the application icon display interface and the navigation interface on the display area, receive an icon page switching instruction input for the application icon display interface.
  • the display processing module 2101 is further configured to perform page switching on the application icon display interface in response to the icon page switching instruction.
  • the receiving module 2102 is further configured to receive the icon page switching instruction by: receiving an icon page switching instruction input by the sliding operation gesture on the application icon display interface; receiving the application icon display interface Clicking the icon page switching instruction input by the page turning button; receiving the icon page switching instruction input by voice; receiving the icon page switching instruction input through the control button.
  • the receiving module 2102 further includes:
  • the first detecting unit is configured to detect a sliding speed of the sliding operation gesture input on the application icon display interface.
  • a second determining unit configured to determine, according to the sliding speed, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction; if the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining the sliding The instruction corresponding to the operation gesture is the icon page switching instruction.
  • the receiving module 2102 includes:
  • the second detecting unit is configured to detect a sliding distance of the sliding operation gesture input on the application icon display interface.
  • a second determining unit configured to determine, according to the sliding distance, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction; if the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining the sliding operation gesture The corresponding instruction is the icon page switching instruction.
  • the receiving module 2102 is further configured to: after the display processing module 2101 simultaneously displays the application icon display interface and the navigation interface on the display area, receive any icon in the application icon display interface. Open operation instruction;
  • the display processing module 2101 is further configured to display an application interface corresponding to the icon on the display area in response to the opening operation instruction.
  • the display processing module 2101 is further configured to display the application interface in full screen on the display area.
  • the receiving module 2102 is further configured to: after the display processing module 2101 displays the application interface corresponding to the icon on the display area, receive an application return instruction input for the application interface.
  • the receiving module 2102 is further configured to: receive the application return instruction by receiving the application return instruction input by clicking the return button on the application interface; receiving the application return instruction by voice input; receiving The application returned by the control button returns an instruction.
  • the display processing module 2101 is further configured to simultaneously display the application icon display interface and the navigation interface on the display area in response to the application return instruction.
  • the main display area of the navigation interface includes: an area where the current location is located, an area where the user is set, and at least one of the search boxes of the navigation interface.
  • the navigation device provided in the fifth embodiment of the present application can be used to perform the application processing method in any one of the foregoing Embodiments 1 to 4, and the specific implementation process and the beneficial effects are similar to the foregoing embodiments, and details are not described herein again.
  • Embodiment 6 of the present application further provides a navigation device.
  • FIG. 22 is a schematic structural diagram of a navigation device according to Embodiment 6 of the present application.
  • the navigation device 2200 can include an input device 2201, a processor 2202, and a display device 2203.
  • the navigation device 2200 can be integrated in any device such as a mobile terminal, an onboard mobile device, a control device of a vehicle, or the like by software and/or hardware.
  • the display device 2203 is configured to display a navigation interface.
  • An input device 2201 configured to receive an input application call instruction
  • the processor 2202 is coupled to the input device 2201 and the display device 2203 for controlling the display device 2203 to simultaneously display the application icon display interface and the navigation interface in response to the application retrieval instruction.
  • the application icon display interface includes: at least one application icon; the application icon display interface does not block the main display area of the navigation interface.
  • the input device 2201 is further configured to receive a full-screen operation instruction input for the application icon display interface.
  • the processor 2202 is further configured to control the display device 2203 to display the application icon display interface in full screen in response to the full screen operation instruction.
  • the input device 2201 is further configured to receive a full screen operation instruction by: receiving the application icon a full-screen operation instruction input by clicking an operation icon on the display interface; receiving a full-screen operation instruction input by a full-screen gesture operation on the application icon display interface; receiving the full-screen operation instruction by voice input; receiving the full-screen operation instruction input through the control button .
  • the processor 2202 is further configured to perform a reduction process on the navigation interface, and control the display device 2203 to simultaneously display the application icon display interface and the reduced navigation interface.
  • the processor 2202 is further configured to perform a reduction process on the display dimensions of the Y-axis and the Z-axis of the navigation interface.
  • the input device 2201 is further configured to receive a recovery operation instruction input for the reduced navigation interface.
  • the processor 2202 is further configured to control the display device 2203 to redisplay the navigation interface in response to the resume operation instruction.
  • the input device 2201 is further configured to receive a recovery operation instruction by: receiving a resume operation instruction input by the click operation icon on the reduced navigation interface; receiving the full screen manipulation gesture on the reduced navigation interface An input recovery operation instruction; receiving the resume operation instruction by voice input; receiving the resume operation instruction input through the control button.
  • the input device 2201 is further configured to: receive an application call instruction by: receiving an application call instruction input by clicking a control key on the navigation interface; receiving an application call instruction by using a voice input; and receiving the navigation interface
  • the application invokes an instruction by operating a gesture input; receives an application retrieval instruction input through the control button.
  • the input device 2201 is further configured to receive an icon page switching instruction input for the application icon display interface.
  • the processor 2202 is further configured to control the display device to perform page switching on the application icon display interface in response to the icon page switching instruction.
  • the input device 2201 is further configured to receive an icon page switching instruction by receiving an icon page switching instruction input by the sliding operation gesture on the application icon display interface, and receiving the application icon display interface.
  • the icon page switching instruction input by clicking the page turning button; receiving the icon page switching instruction by voice input; and receiving the icon page switching instruction input through the control button.
  • the processor 2202 is further configured to detect a sliding speed of the sliding operation gesture input on the application icon display interface, and determine, according to the sliding speed, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction. If the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining that the instruction corresponding to the sliding operation gesture is the icon page switching instruction.
  • the processor 2202 is further configured to detect a sliding distance of the sliding operation gesture input on the application icon display interface, and determine, according to the sliding distance, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction;
  • the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, and determining that the instruction corresponding to the sliding operation gesture is the icon page switching instruction.
  • the input device 2201 is further configured to receive an open operation instruction for any icon in the application icon display interface.
  • the processor 2202 is further configured to control the display device 2203 to display an application interface corresponding to the icon in response to the opening operation instruction.
  • the processor 2202 is further configured to control the display device 2203 to display the application interface in full screen.
  • the input device 2201 is further configured to receive an application return instruction input for the application interface.
  • the processor 2202 is further configured to control the display device 2203 to simultaneously display the application icon display interface and the navigation interface in response to the application return instruction.
  • the input device 2201 is further configured to receive an application return instruction by receiving an application return instruction input by clicking a return button on the application interface, and receiving the application return instruction by using a voice input; Receiving the application return instruction input through the control button.
  • the main display area of the navigation interface includes: an area where the current location is located, an area where the user is set, and at least one of the search boxes of the navigation interface.
  • the navigation device provided in Embodiment 6 of the present application can be used to perform the application processing method according to any one of the foregoing Embodiments 1 to 4, and the specific implementation process and the beneficial effects are similar to those in the foregoing embodiment, and details are not described herein again.
  • Embodiment 6 of the present application also provides a processor readable storage medium.
  • the program medium is stored in the storage medium, and the program instruction is used to cause the processor to execute the application processing method according to any one of the foregoing Embodiments 1 to 4, and details are not described herein.
  • the readable storage medium described above can be implemented by any type of volatile or non-volatile storage device, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read only memory (EEPROM), Erasable Programmable Read Only Memory (EPROM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), Magnetic Memory, Flash Memory, Disk or Optical Disk.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read only memory
  • EPROM Erasable Programmable Read Only Memory
  • PROM Programmable Read Only Memory
  • ROM Read Only Memory
  • Magnetic Memory Flash Memory
  • Disk Disk or Optical Disk.
  • FIG. 23 is a schematic structural diagram of an interface system according to Embodiment 7 of the present application.
  • the interface system 2300 can be a user interface system within the navigation device.
  • the interface system 2300 can include a display component 2301 and a processor 2302.
  • the display component 2301 is configured to display a navigation interface.
  • the processor 2302 is configured to trigger the display component to simultaneously display the application icon display interface and the navigation interface in response to the received application call instruction.
  • the application icon display interface includes: at least one application icon; the application icon display interface does not block the main display area of the navigation interface.
  • the processor 2302 is further configured to trigger the display component 2301 to perform full screen display on the application icon display interface in response to the received full screen operation instruction for the application icon display interface.
  • the interface system 2300 may further include: an input component, configured to: receive the full-screen operation instruction by receiving the full-screen operation instruction input by the click operation icon on the application icon display interface; and receiving the application icon display interface The full-screen operation instruction input through the full-screen gesture operation; receiving the full-screen operation instruction through the voice input; and receiving the full-screen operation instruction input through the control button.
  • an input component configured to: receive the full-screen operation instruction by receiving the full-screen operation instruction input by the click operation icon on the application icon display interface; and receiving the application icon display interface The full-screen operation instruction input through the full-screen gesture operation; receiving the full-screen operation instruction through the voice input; and receiving the full-screen operation instruction input through the control button.
  • the processor 2302 is further configured to perform a reduction process on the navigation interface, and trigger the display component 2301 to simultaneously display the application icon display interface and the reduced navigation interface.
  • the processor 2302 is further configured to perform a reduction process on the display dimensions of the Y-axis and the Z-axis of the navigation interface.
  • the processor 2302 is further configured to trigger the display component 2301 to redisplay the navigation interface in response to the received recovery operation instruction for the reduced navigation interface.
  • the interface system 2300 may further include: an input component, configured to receive the recovery operation instruction by receiving the resume operation instruction input by the click operation icon on the reduced navigation interface; and receiving the reduced operation instruction a recovery operation instruction input by a full screen manipulation gesture on the navigation interface; receiving the resume operation instruction by voice input; receiving the resume operation instruction input through the control button.
  • an input component configured to receive the recovery operation instruction by receiving the resume operation instruction input by the click operation icon on the reduced navigation interface; and receiving the reduced operation instruction a recovery operation instruction input by a full screen manipulation gesture on the navigation interface; receiving the resume operation instruction by voice input; receiving the resume operation instruction input through the control button.
  • the input component is further configured to receive the application retrieval instruction by: receiving an application retrieval instruction input by clicking a control key on the navigation interface; receiving an application retrieval instruction by using a voice input; and receiving the navigation
  • the application is invoked by the operation gesture input on the interface; and the application retrieval instruction input through the control button is received.
  • the processor 2302 is further configured to trigger the display component 2301 to perform page switching on the application icon display interface in response to the received icon page switching instruction for the application icon display interface.
  • the processor 2302 is further configured to detect a sliding speed of the sliding operation gesture input on the application icon display interface, and determine, according to the sliding speed, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction;
  • the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, and determining that the instruction corresponding to the sliding operation gesture is the icon page switching instruction.
  • the processor 2302 is further configured to detect a sliding distance of the sliding operation gesture input on the application icon display interface, and determine, according to the sliding distance, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction;
  • the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, and determining that the instruction corresponding to the operation gesture is the icon page switching instruction.
  • the processor 2302 is further configured to trigger the display component 2301 to display an application interface corresponding to the icon in response to the received open operation instruction for any one of the application icon display interfaces.
  • the processor 2302 is further configured to trigger the display component 2301 to display the application interface in full screen in response to the opening operation instruction.
  • the processor 2302 is further configured to trigger the display component 2301 to simultaneously display the application icon display interface and the navigation interface in response to the received application return instruction for the application interface.
  • the interface system 2300 may further include: an input component, configured to receive the application return instruction by receiving the application return instruction input by clicking the return key on the application interface; and receiving the application input by voice Returning an instruction; receiving the application return instruction input through the control button.
  • an input component configured to receive the application return instruction by receiving the application return instruction input by clicking the return key on the application interface; and receiving the application input by voice Returning an instruction; receiving the application return instruction input through the control button.
  • the main display area of the navigation interface includes: an area where the current location is located, an area where the user is set, and at least one of the search boxes of the navigation interface.
  • the interface system provided in the seventh embodiment of the present application can be used to perform the application processing method in any one of the foregoing Embodiments 1 to 4, and the specific implementation process and the beneficial effects are similar to the foregoing embodiments, and details are not described herein again.
  • Embodiment 8 of the present application also provides a navigation device.
  • FIG. 24 is a schematic structural diagram of a navigation device according to Embodiment 8 of the present application.
  • the navigation device 2400 can be integrated in any device such as a mobile terminal, a personal digital assistant, an onboard mobile device, a control device of a vehicle, or the like by software and/or hardware.
  • the navigation device 2400 can include one or more of the following components: a processing component 2402, a memory 2404, a power component 2406, a multimedia component 2408, an audio component 2410, an input/output (I/O) interface 2412, and a sensor component 2414. And communication component 2416.
  • Processing component 2402 typically controls the overall operations of navigation device 2400, such as operations associated with display, telephone calls, data communications, camera operations, and recording operations.
  • Processing component 2402 can include one or more processors 2420 to execute instructions to perform all or part of the steps of the application processing method described above in any of Figures 2-20.
  • processing component 2402 can include one or more modules to facilitate interaction between component 2402 and other components.
  • the processing component 2402 can include a multimedia module to facilitate interaction between the multimedia component 2408 and the processing component 2402.
  • the memory 2404 is configured to store various types of data to support operation at the navigation device 2400. These numbers Examples of data include instructions for any application or method operating on the navigation device 2400, contact data, phone book data, messages, pictures, videos, and the like.
  • the memory 2404 can be implemented by any type of volatile or non-volatile storage device, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read only memory (EEPROM), erasable.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read only memory
  • EPROM Programmable Read Only Memory
  • PROM Programmable Read Only Memory
  • ROM Read Only Memory
  • Magnetic Memory Flash Memory
  • Disk Disk or Optical Disk.
  • Power component 2406 provides power to various components of navigation device 2400.
  • Power component 2406 can include a power management system, one or more power sources, and other components associated with generating, managing, and distributing power for navigation device 2400.
  • the multimedia component 2408 includes a screen between the navigation device 2400 and the user that provides an output interface.
  • the screen can include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen can be implemented as a touch screen to receive input signals from the user.
  • the touch panel includes one or more touch sensors to sense touches, slides, and gestures on the touch panel. The touch sensor may sense not only the boundary of the touch or sliding action, but also the duration and pressure associated with the touch or slide operation.
  • the multimedia component 2408 includes a front camera and/or a rear camera. When the navigation device 2400 is in an operation mode, such as a shooting mode or a video mode, the front camera and/or the rear camera can receive external multimedia data. Each front and rear camera can be a fixed optical lens system or have focal length and optical zoom capabilities.
  • the audio component 2410 is configured to output and/or input an audio signal.
  • the audio component 2410 includes a microphone (MIC) that is configured to receive an external audio signal when the navigation device 2400 is in an operational mode, such as a call mode, a recording mode, and a voice recognition mode.
  • the received audio signal may be further stored in memory 2404 or transmitted via communication component 2416.
  • audio component 2410 also includes a speaker for outputting an audio signal.
  • the I/O interface 2412 provides an interface between the processing component 2402 and the peripheral interface module, which may be a keyboard, a click wheel, a button, or the like. These buttons may include, but are not limited to, a home button, a volume button, a start button, and a lock button.
  • Sensor assembly 2414 includes one or more sensors for providing navigation device 2400 with status assessments of various aspects.
  • sensor component 2414 can detect an open/closed state of navigation device 2400, a relative positioning of components, such as the display and keypad of navigation device 2400, and sensor component 2414 can also detect navigation device 2400 or navigation device 2400. The position of the component changes, the presence or absence of contact of the user with the navigation device 2400, the navigation device 2400 orientation or acceleration/deceleration, and the temperature of the navigation device 2400.
  • Sensor assembly The 2414 can include a proximity sensor configured to detect the presence of nearby objects without any physical contact.
  • Sensor assembly 2414 may also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications.
  • the sensor assembly 2414 can also include an acceleration sensor, a gyro sensor, a magnetic sensor, a pressure sensor, or a temperature sensor.
  • Communication component 2416 is configured to facilitate wired or wireless communication between navigation device 2400 and other devices.
  • the navigation device 2400 can access a wireless network based on a communication standard, such as WiFi, 2G or 3G, or a combination thereof.
  • communication component 2416 receives broadcast signals or broadcast associated information from an external broadcast management system via a broadcast channel.
  • the communication component 2416 also includes a near field communication (NFC) module to facilitate short range communication.
  • NFC near field communication
  • the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology, and other technologies.
  • RFID radio frequency identification
  • IrDA infrared data association
  • UWB ultra-wideband
  • Bluetooth Bluetooth
  • navigation device 2400 may be implemented by one or more application specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), A program gate array (FPGA), controller, microcontroller, microprocessor, or other electronic component implementation for performing the application processing method of any of embodiments 1 through 4.
  • ASICs application specific integrated circuits
  • DSPs digital signal processors
  • DSPDs digital signal processing devices
  • PLDs programmable logic devices
  • FPGA A program gate array
  • controller microcontroller, microprocessor, or other electronic component implementation for performing the application processing method of any of embodiments 1 through 4.
  • the navigation device provided in Embodiment 8 of the present application can be used to perform the application processing method in any one of the foregoing Embodiments 1 to 4, and the specific implementation process and the beneficial effects are similar to those in the foregoing embodiment, and details are not described herein again.
  • Embodiment 9 of the present application also provides a vehicle control device.
  • FIG. 25 is a schematic structural diagram of a vehicle control device according to Embodiment 9 of the present application. As shown in FIG. 25, the vehicle control device 2500 can include an onboard command input device 2501, an onboard processor 2502, and an onboard display device 2503.
  • the onboard display device 2503 is configured to display a navigation interface.
  • the onboard command input device 2501 is configured to receive an input application call instruction.
  • the onboard processor 2502 is coupled to the onboard command input device 2501 and the onboard display device 2503 for triggering the onboard display device 2503 to simultaneously display the application icon display interface and the navigation interface in response to the application call instruction.
  • the application icon display interface does not block the main display area of the navigation interface.
  • the onboard command input device 2501 is further configured to receive a full screen operation instruction input for the application icon display interface.
  • the onboard processor 2502 is further configured to control the onboard display device 2503 to display the application icon display interface in full screen in response to the full screen operation instruction.
  • the onboard command input device 2501 is further configured to receive the full screen operation instruction by receiving the full screen operation instruction input by the click operation icon on the application icon display interface; receiving the application icon display interface The full-screen operation instruction input by the full-screen gesture operation; receiving the full-screen operation instruction by voice input; and receiving the full-screen operation instruction input through the control button.
  • the onboard processor 2502 is further configured to perform a reduction process on the navigation interface, and control the onboard display device 2503 to simultaneously display the application icon display interface and the reduced navigation interface.
  • the onboard processor 2502 is further configured to perform a reduction process on the display dimensions of the navigation interface on the Y axis and the Z axis.
  • the onboard command input device 2501 is further configured to receive a resume operation instruction input for the reduced navigation interface
  • the onboard processor 2502 is further configured to control the onboard display device 2503 to redisplay the navigation interface in response to the resume operation instruction.
  • the onboard command input device 2501 is further configured to receive the resume operation instruction by receiving the resume operation instruction input by clicking the operation icon on the reduced navigation interface; receiving the reduced navigation The resume operation instruction input by the full screen operation gesture on the interface; receiving the resume operation instruction by voice input; receiving the resume operation instruction input through the control button.
  • the onboard command input device 2501 is further configured to receive the application call instruction in any one of the following manners: receiving the application call instruction input by clicking a control button on the navigation interface; and receiving the application call by voice input Taking an instruction; receiving the application retrieval instruction input by the operation gesture on the navigation interface; and receiving the application retrieval instruction input through the control button.
  • the onboard command input device 2501 is further configured to receive an icon page switching instruction input for the application icon display interface
  • the onboard processor 2502 is further configured to control the onboard display device 2503 to perform page switching on the application icon display interface in response to the icon page switching instruction.
  • the onboard command input device 2501 is further configured to receive the icon page switching instruction by receiving the icon page switching instruction input by the sliding operation gesture on the application icon display interface; receiving the application icon display The icon page switching instruction input by clicking the page turning button on the interface; receiving the icon page switching instruction by voice input; and receiving the icon page switching instruction input through the control button.
  • the onboard processor 2502 is further configured to detect a sliding speed of the sliding operation gesture input on the application icon display interface, and determine, according to the sliding speed, whether the sliding operation gesture is corresponding to the icon page switching instruction. If the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining that the instruction corresponding to the sliding operation gesture is the icon page switching instruction.
  • the onboard processor 2502 is further configured to detect a sliding distance of the sliding operation gesture input on the application icon display interface, and determine, according to the sliding distance, whether the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction. If the sliding operation gesture is an operation gesture corresponding to the icon page switching instruction, determining that the instruction corresponding to the operation gesture is the icon page switching instruction.
  • the onboard command input device 2501 is further configured to receive an open operation instruction for any icon in the application icon display interface
  • the onboard processor 2502 is further configured to control the onboard display device 2503 to display an application interface corresponding to the icon in response to the opening operation instruction.
  • the onboard command input device 2501 is further configured to receive an application return instruction input for the application interface;
  • the onboard processor 2502 is further configured to control the onboard display device 2503 to simultaneously display the application icon display interface and the navigation interface in response to the application return instruction.
  • the onboard processor device 2501 is further configured to receive the application return instruction by receiving the application return instruction input by clicking the return button on the application interface, and receiving the application return instruction by using the voice input. ; receiving the application return instruction input through the control button.
  • the onboard command input device 2501 may include at least one of: a center console control button, a steering wheel control button, a tone receiving device, a touch sensing device, and the like.
  • the onboard command input device 2501 may be a user-oriented command input device
  • the vehicle control device 2500 may further include a device-oriented onboard transceiver device for transmitting information with the mobile terminal, the server or other devices.
  • the onboard transceiver device may include: a wired interface device, a wireless interface device, and the like.
  • the wired interface device may include a Universal Serial Bus (USB) interface device or other onboard communication interface device.
  • the wireless interface device can include a transceiver.
  • airborne command input device may be "vehicle command input device”, “vehicle output device” and " The vehicle-mounted processor may also be an "airborne input device”, an “airborne output device”, an “airborne processor” carried on the aircraft, or a device carried on other types of vehicles, which is implemented by the present application.
  • the meaning of "airborne” is not limited.
  • control device for a vehicle provided in Embodiment 9 of the present application may perform the application processing described in any of the above embodiments.
  • application processing described in any of the above embodiments.
  • Embodiment 10 of the present application further provides an in-vehicle Internet operating system.
  • the in-vehicle Internet operating system can manage and control the hardware of the navigation device described above in FIG. 21 or FIG. 22 or the hardware of the vehicle control device according to the present application and the computer program of the software resources involved in the present application, which are directly operated on The system software on the above navigation device or vehicle control device.
  • the operating system is an interface between the user and the navigation device or the control device of the vehicle, and is also an interface between the hardware and other software.
  • the in-vehicle Internet operating system provided by the present application can interact with other modules or functional devices on the vehicle to implement intelligent control of the corresponding module or functional device.
  • the vehicle is no longer independent of the communication network.
  • the vehicle can be interconnected with the server side to form a network to form an in-vehicle Internet.
  • the in-vehicle Internet system can provide voice communication services, location services, navigation services, mobile internet access, vehicle emergency rescue, vehicle data and management services, in-vehicle entertainment services, and the like.
  • FIG. 26 is a schematic structural diagram of a vehicle-mounted Internet operating system according to Embodiment 10 of the present application.
  • the in-vehicle Internet operating system 2600 may include a display control unit 2601 and an input control unit 2602.
  • the display control unit 2601 controls the in-vehicle display device to display the navigation interface.
  • the input control unit 2602 controls the onboard command input device to acquire an application call instruction.
  • the display control unit 2601 further controls the in-vehicle display device to simultaneously display the application icon display interface and the navigation interface in response to the application retrieval instruction; wherein the application icon display interface does not block the main display area of the navigation interface.
  • the in-vehicle Internet operating system may control the corresponding components to perform the above-described methods of FIGS. 2 to 20 by using the above-described display control unit 2601 and the input control unit 2602, or in combination with other units on the basis of the above units.

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Abstract

一种应用处理方法、设备、界面系统、控制设备及操作系统。所述应用处理方法可包括:在显示区域上显示导航界面(S201);响应于接收到的应用调取指令,在显示区域上同时显示应用图标显示界面和导航界面;其中,该应用图标显示界面不遮挡该导航界面的主要显示区域(S202)。所述方法可简化导航设备的操作流程,提高处理效率,避免用户的反复操作对驾驶交通工具带来的干扰,保证行车安全。

Description

应用处理方法、设备、界面系统、控制设备及操作系统
本申请要求2016年04月20日递交的申请号为201610250110.2、发明名称为“应用处理方法、设备、界面系统、控制设备及操作系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及互联网技术,尤其涉及一种应用处理方法、设备、界面系统、控制设备及操作系统。
背景技术
随着通信技术的飞速发展,机载设备的智能化、信息化和网络化程度日益提高。
为满足用户对行车效率及行车安全的需求,目前的机载设备,如导航设备通常可安装导航应用。导航设备可通过运行该导航应用为用户的出行提供导航。然而,随着用户对导航设备的功能需求的多样化,该导航设备通常还可安装有其他类型的应用,如影音类、图像类应用等。导航设备的导航功能开启的情况下,也就是导航应用运行的情况下,该导航设备可在显示区域上通过显示地图呈现导航信息。
在此情况下,用户若需开启其他的应用,则需退出该导航应用,也就是说,在同一时刻,导航设备的显示区域上仅可显示一个应用界面。这使得用户需频繁切换显示区域的显示界面,以获取不同界面对应的应用信息,操作过程繁琐,使得处理效率较低。
发明内容
本申请提供一种应用处理方法、设备、界面系统、控制设备及操作系统,以简化操作流程,提高处理效率。
一个方面,本申请提供一种应用处理方法,包括:
在显示区域上显示导航界面;
响应于接收到的应用调取指令,在显示区域上同时显示应用图标显示界面和导航界面,应用图标显示界面不遮挡导航界面的主要显示区域。
该应用处理方法,可在显示区域上显示导航界面的情况下,响应于接收到的应用调取指令在该显示区域上同时显示应用图标显示界面和导航界面,可使得该应用图标显示界面和该导航界面均呈现在该显示区域上,使得用户无需反复切换显示区域上的显示界 面,即可获取不同界面对应的应用信息,简化操作流程,提高处理效率,避免用户的反复操作对驾驶交通工具带来的干扰,保证行车安全性。
由于该应用处理方法中,显示应用图标显示界面和导航界面时,只需保证应用图标显示界面不遮挡导航界面的主要显示区域即可,无需对该应用图标显示界面和该导航界面在该显示区域中进行分区显示,因而,该应用处理方法还可提高显示区域的空间利用率。
在一种可能的实施方式中,在显示区域上同时显示应用图标显示界面和导航界面之后,该方法还包括:
接收针对应用图标显示界面所输入的全屏操作指令;
响应于全屏操作指令,在显示区域上对应用图标显示界面进行全屏显示。
该应用处理方法,可响应于该全屏操作指令在该显示区域上对该应用图标显示界面进行全屏显示,可使得该应用图标显示界面的显示更清楚,更完整,更方便用户操作,避免误操作带来的处理资源浪费。
在另一种可能实施方式中,接收针对应用图标显示界面所输入的全屏操作指令,包括以下任一:
接收应用图标显示界面上通过点击操作图标输入的全屏操作指令;
接收应用图标显示界面上通过全屏手势操作输入的全屏操作指令;
接收通过语音输入的全屏操作指令;
接收通过控制按钮输入的全屏操作指令。
在又一种可能实施方式中,在显示区域上同时显示应用图标显示界面和导航界面,包括:
对导航界面进行缩小处理,
在显示区域上同时显示应用图标显示界面和缩小后的导航界面。
在又一种可能实施方式中,对导航界面进行缩小处理,包括:
对导航界面在Y轴和Z轴的显示维度上进行缩小处理。
在又一种可能实施方式中,在显示区域上同时显示应用图标显示界面和缩小后的导航界面之后,该方法还包括:
接收针对缩小后的导航界面上输入的恢复操作指令;
响应于恢复操作指令,在显示区域上对导航界面重新进行显示。
该应用处理方法可响应于该恢复操作指令在该显示区域上对该导航界面重新进行显 示,可使得该导航界面的显示更清楚,更完整,使得用户可基于该导航界面获取准确的导航信息。
在又一种可能实施方式中,接收针对缩小后的导航界面所输入的恢复操作指令,包括以下任一:
接收缩小后的导航界面上通过点击操作图标输入的恢复操作指令;
接收缩小后的导航界面上通过全屏操作手势输入的恢复操作指令;
接收通过语音输入的恢复操作指令;
接收通过控制按钮输入的恢复操作指令。
在又一种可能实施方式中,接收输入的应用调取指令,包括以下任一:
接收导航界面上通过点击控制键输入的应用调取指令;
接收导航界面上通过操作手势输入的应用调取指令;
接收通过语音输入的应用调取指令;
接收通过控制按钮输入的应用调取指令。
在又一种可能实施方式中,在显示区域上同时显示应用图标显示界面和导航界面之后,该方法还包括:
接收针对应用图标显示界面所输入的图标页面切换指令;
响应于图标页面切换指令,对应用图标显示界面进行页面切换。
该应用处理方法中,可接收针对该应用图标显示界面所输入的图标页面切换指令,响应于该图标页面切换指令,对该应用图标显示界面进行页面切换,可使得该应用图标显示界面的当前显示页面发生变化,从而向用户展示不同页面的应用图标,满足用户对不同页面的应用图标对应的应用的需求,提高用户体验。
在又一种可能实施方式中,接收针对应用图标显示界面所输入的图标页面切换指令,包括:
接收应用图标显示界面上通过滑动操作手势输入的图标页面切换指令;
接收应用图标显示界面上通过点击翻页按键输入的图标页面切换指令;
接收通过语音输入的图标页面切换指令;
接收通过控制按钮输入的图标页面切换指令。
在又一种可能实施方式中,接收应用图标显示界面上通过滑动操作手势输入的图标页面切换指令,包括:
检测应用图标显示界面上输入的滑动操作手势的滑动速度;
根据滑动速度确定滑动操作手势是否为图标页面切换指令所对应的操作手势;
若滑动操作手势为图标页面切换指令所对应的操作手势,则确定滑动操作手势对应的指令为图标页面切换指令。
在又一种可能实施方式中,接收应用图标显示界面上通过滑动操作手势输入的图标页面切换指令,包括:
检测应用图标显示界面上输入的滑动操作手势的滑动距离;
根据滑动距离确定滑动操作手势是否为图标页面切换指令对应的操作手势;
若滑动操作手势为图标页面切换指令对应的操作手势,则确定滑动操作手势对应的指令为图标页面切换指令。
在又一种可能实施方式中,在显示区域上同时显示应用图标显示界面和导航界面之后,该方法还可包括:
接收针对应用图标显示界面中的任一图标的打开操作指令;
响应于打开操作指令,在显示区域上显示图标对应的应用界面。
该应用处理方法,可响应于针对应用图标显示界面上的应用图标的打开操作指令,在该显示区域上显示应用界面,实现用户对应用的操作,满足用户对应用的需求,提高用户体验。
在又一种可能实施方式中,在显示区域上显示图标对应的应用界面包括:
在显示区域上全屏显示应用界面。
在又一种可能实施方式中,在显示区域上显示图标对应的应用界面之后,该方法还包括:
接收针对应用界面所输入的应用返回指令;
响应于应用返回指令,在显示区域上同时显示应用图标显示界面和导航界面。
在又一种可能实施方式中,接收针对应用界面所输入的应用返回指令,包括以下任一:
接收应用界面上通过点击返回按键输入的应用返回指令;
接收通过语音输入的应用返回指令;
接收通过控制按钮输入的应用返回指令。
在又一种可能实施方式中,导航界面的主要显示区域包括:当前位置所在区域、用户设定位置所在的区域和导航界面的搜索框中至少一个。
另一个方面,本申请还提供一种导航设备,包括:
显示处理模块,用于在显示区域上显示导航界面;
接收模块,用于接收输入的应用调取指令;
显示处理模块,还用于响应于应用调取指令,在显示区域上同时显示应用图标显示界面和导航界面;应用图标显示界面不遮挡导航界面的主要显示区域。
在一种可能实施方式中,接收模块,还用于显示处理模块在显示区域上同时显示应用图标显示界面和导航界面之后,接收针对应用图标显示界面所输入的全屏操作指令;
显示处理模块,还用于响应于全屏操作指令,在显示区域上对应用图标显示界面进行全屏显示。
在另一种可能实施方式中,接收模块,还用于通过以下任一方式接收全屏操作指令:
接收应用图标显示界面上通过点击操作图标输入的全屏操作指令;
接收应用图标显示界面上通过全屏手势操作输入的全屏操作指令;
接收通过语音输入的全屏操作指令;
接收通过控制按钮输入的全屏操作指令。
在另一种可能实施方式中,
显示处理模块,还用于对导航界面进行缩小处理,并在显示区域上同时显示应用图标显示界面和缩小后的导航界面。
在另一种可能实施方式中,显示处理模块,还用于对导航界面在Y轴和Z轴的显示维度上进行缩小处理。
在再一种可能实施方式中,接收模块,还用于在显示处理模块在显示区域上同时显示应用图标显示界面和缩小后的导航界面之后,接收针对缩小后的导航界面所输入的恢复操作指令;
显示处理模块,还用于响应于恢复操作指令,在显示区域上对导航界面重新进行显示。
在又一种可能实施方式中,接收模块,还用于通过如下任一方式接收恢复操作指令:
接收缩小后的导航界面上通过点击操作图标输入的恢复操作指令;
接收缩小后的导航界面上通过全屏操纵手势输入的恢复操作指令;
接收通过语音输入的恢复操作指令;
接收通过控制按钮输入的恢复操作指令。
在又一种可能实施方式中,接收模块,还用于通过如下任一方式接收所述应用调取指令:
接收导航界面上通过点击控制键输入的应用调取指令;
接收通过语音输入的应用调取指令;
接收导航界面上通过操作手势输入的应用调取指令;
接收通过控制按钮输入的应用调取指令。
在又一种可能实施方式中,接收模块,还用于在显示处理模块在显示区域上同时显示应用图标显示界面和导航界面之后,接收针对应用图标显示界面所输入的图标页面切换指令;
显示处理模块,还用于响应于图标页面切换指令,对应用图标显示界面进行页面切换。
在又一种可能实施方式中,接收模块,还用于通过如下任一方式接收图标页面切换指令:
接收应用图标显示界面上通过滑动操作手势输入的图标页面切换指令;
接收应用图标显示界面上通过点击翻页按键输入的图标页面切换指令;
接收通过语音输入的图标页面切换指令;
接收通过控制按钮输入的图标页面切换指令。
在又一种可能实施方式中,接收模块包括:
第一检测单元,用于检测应用图标显示界面上输入的滑动操作手势的滑动速度;
第二确定单元,用于根据滑动速度确定滑动操作手势是否为图标页面切换指令所对应的操作手势;若滑动操作手势为图标页面切换指令所对应的操作手势,则确定滑动操作手势对应的指令为图标页面切换指令。
在又一种可能实施方式中,接收模块包括:
第二检测单元,用于检测应用图标显示界面上输入的所述滑动操作手势的滑动距离;
第二确定单元,用于根据滑动距离确定滑动操作手势是否为图标页面切换指令对应的操作手势;若滑动操作手势为图标页面切换指令对应的操作手势,则确定滑动操作手势对应的指令为图标页面切换指令。
在又一种可能实施方式中,接收模块,还用于在显示处理模块在显示区域上显示应用图标显示界面和导航界面之后,接收针对应用图标显示界面中的任一图标的打开操作指令;
显示处理模块,还用于响应于打开操作指令,在显示区域上显示图标对应的应用界面。
在又一种可能实施方式中,显示处理模块,还用于在显示区域上全屏显示应用界面。
在又一种可能实施方式中,接收模块,还用于在显示处理模块在显示区域上显示图标对应的应用界面之后,接收针对应用界面所输入的应用返回指令;
显示处理模块,还用于响应于应用返回指令,在显示区域上同时显示应用图标显示界面和导航界面。
在又一种可能实施方式中,接收模块,还用于通过如下任一方式接收应用返回指令:
接收应用界面上通过点击返回按键输入的应用返回指令;
接收通过语音输入的应用返回指令;
接收通过控制按钮输入的应用返回指令。
在又一种可能实施方式中,导航界面的主要显示区域包括:当前位置所在区域、用户设定位置所在的区域和导航界面的搜索框中至少一个。
另一个方面,本申请还提供一种导航设备,包括:输入设备、处理器和显示设备;
显示设备,用于显示导航界面;
输入设备,用于接收输入的应用调取指令;
处理器,耦合到输入设备和显示设备,用于响应于应用调取指令,控制显示设备同时显示应用图标显示界面和导航界面;
其中,所述应用图标显示界面不遮挡所述导航界面的主要显示区域。
在一种可能实施方式中,输入设备,还用于接收针对应用图标显示界面所输入的全屏操作指令;
处理器,还用于响应于全屏操作指令,控制显示设备全屏显示应用图标显示界面
在另一种可能实施方式中,处理器,还用于对导航界面进行缩小处理,控制显示设备同时显示应用图标显示界面和缩小后的导航界面。
在又一种可能实施方式中,处理器,还用于对导航界面在Y轴和Z轴的显示维度上进行缩小处理。
在又一种可能实施方式中,输入设备,还用于接收针对缩小后的导航界面所输入的恢复操作指令;
处理器,还用于响应于恢复操作指令,控制显示设备重新显示导航界面。
在又一种可能实施方式中,输入设备,还用于接收针对应用图标显示界面所输入的图标页面切换指令;
处理器,还用于响应于图标页面切换指令,控制显示设备对应用图标显示界面进行 页面切换。
在又一种可能实施方式中,输入设备,还用于接收针对应用图标显示界面中的任一图标的打开操作指令;
处理器,还用于响应于打开操作指令,控制显示设备显示图标对应的应用界面。
在又一种可能实施方式中,输入设备,还用于接收针对应用界面所输入的应用返回指令;
处理器,还用于响应于应用返回指令,控制显示设备同时显示应用图标显示界面和导航界面。
又一个方面,本申请还提供一种界面系统,包括:
显示组件,用于显示导航界面;
处理器,用于响应于接收到的应用调取指令,触发显示组件同时显示应用图标显示界面和导航界面;
其中,应用图标显示界面不遮挡导航界面的主要显示区域。
在一种可能实施方式中,处理器,还用于响应于接收到的针对应用图标显示界面的全屏操作指令,触发显示组件对应用图标显示界面进行全屏显示。
在另一种可能实施方式中,处理器,还用于对导航界面进行缩小处理,并触发显示组件同时显示应用图标显示界面和缩小后的导航界面。
在又一种可能实施方式中,处理器,还用于对导航界面在Y轴和Z轴的显示维度上进行缩小处理。
在再一种可能实施方式中,处理器,还用于响应于接收到的针对缩小后的导航界面的恢复操作指令,触发显示组件对导航界面重新进行显示。
在再一种可能实施方式中,处理器,还用于响应于接收到的针对应用图标显示界面的图标页面切换指令,触发显示组件对应用图标显示界面进行页面切换。
在再一种可能实施方式中,处理器,还用于响应于接收到的针对应用图标显示界面中的任一图标的打开操作指令,触发显示组件显示图标对应的应用界面。
在再一种可能实施方式中,处理器,还用于响应于接收到的针对应用界面的应用返回指令,触发显示组件同时显示应用图标显示界面和导航界面。
再一方面,本申请还提供一种交通工具控制设备,包括机载指令输入设备、机载显示设备和机载处理器;
机载显示设备,用于显示导航界面;
机载指令输入设备,用于接收输入的应用调取指令;
机载处理器,耦合到机载指令输入设备和机载显示设备,用于响应于应用调取指令,触发机载显示设备同时显示应用图标显示界面和导航界面;
其中,应用图标显示界面不遮挡导航界面的主要显示区域。
在一种可能实施方式中,机载指令输入设备,还用于接收针对应用图标显示界面所输入的全屏操作指令;
机载处理器,还用于响应于全屏操作指令,控制机载显示设备全屏显示应用图标显示界面。
在另一种可能实施方式中,机载处理器,还用于对导航界面进行缩小处理,控制机载显示设备同时显示应用图标显示界面和缩小后的导航界面。
在又一种可能实施方式中,机载处理器,还用于对导航界面在Y轴和Z轴的显示维度上进行缩小处理。
在再一种可能实施方式中,机载指令输入设备,还用于接收针对缩小后的导航界面所输入的恢复操作指令;
机载处理器,还用于响应于恢复操作指令,控制机载显示设备重新显示导航界面。
在再一种可能实施方式中,机载指令输入设备,还用于接收针对应用图标显示界面所输入的图标页面切换指令;
机载处理器,还用于响应于图标页面切换指令,控制机载显示设备对应用图标显示界面进行页面切换。
在再一种可能实施方式中,机载指令输入设备,还用于接收针对应用图标显示界面中的任一图标的打开操作指令;
机载处理器,还用于响应于打开操作指令,控制机载显示设备显示图标对应的应用界面。
在再一种可能实施方式中,机载指令输入设备,还用于接收针对应用界面所输入的应用返回指令;
机载处理器,还用于响应于应用返回指令,控制机载显示设备同时显示应用图标显示界面和导航界面。
在再一种可能实施方式中,机载指令输入设备包括以下一个或多个:
中控台控制按键;
方向盘控制按键;
语音接收设备;
触摸感知设备。
再一方面,本申请还提供一种车载互联网操作系统,包括:
显示控制单元,控制车载显示设备显示导航界面;
输入控制单元,控制车载指令输入设备获取应用调取指令;
显示控制单元,还响应于应用调取指令,控制车载显示设备同时显示应用图标显示界面和所述导航界面;其中,应用图标显示界面不遮挡导航界面的主要显示区域。
在本申请提供的应用处理方法、设备、界面系统、控制设备及操作系统中,可在显示区域上显示导航界面的情况下响应于接收到的应用调取指令在该显示区域上同时显示应用图标显示界面和导航界面,可使得该应用图标显示界面和该导航界面尽可能的均呈现在该显示区域上,使得用户无需反复切换显示区域上的显示界面,便可获取不同界面对应的应用信息,简化操作流程,提高处理效率,避免用户的反复操作对驾驶交通工具带来的干扰,保证行车安全。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本申请的一种可选的组网方式的示意图;
图2为本申请实施例一提供的一种应用处理方法的流程图;
图3为本申请实施例二提供的一种应用处理方法所实现的用户界面的一种状态示意图;
图4为本申请实施例二提供的一种应用处理方法的流程图;
图5为本申请实施例二提供的一种应用处理方法所实现的用户界面的另一种状态示意图;
图6为本申请实施例二提供的一种应用处理方法所实现的用户界面的又一种状态示意图;
图7为本申请实施例二提供的一种应用处理方法所实现的用户界面的再一种状态示 意图;
图8为本申请实施例二提供的另一种应用处理方法的流程图;
图9为本申请实施例二提供的另一种应用处理方法所实现的用户界面的一种状态示意图;
图10为本申请实施例三提供的一种应用处理方法所实现的用户界面的一种状态示意图;
图11为本申请实施例三提供的另一种应用处理方法的流程图;
图12为本申请实施例三提供的另一种应用处理方法所实现的用户界面的一种状态示意图;
图13为本申请实施例三提供的又一种应用处理方法的流程图;
图14为本申请实施例三提供的再一种应用处理方法的流程图;
图15为本申请实施例四提供的一种应用处理方法的流程图;
图16为本申请实施例四提供的一种应用处理方法所实现的用户界面的一种状态示意图;
图17为本申请实施例四提供的一种应用处理方法所实现的用户界面的另一种状态示意图;
图18为本申请实施例四提供的一种应用处理方法所实现的用户界面的又一种状态示意图;
图19为本申请实施例四提供的一种应用处理方法所实现的用户界面的再一种状态示意图;
图20为本申请实施例四提供的另一种应用处理方法所实现的用户界面的状态示意图;
图21为本申请实施例五提供的一种导航设备的结构示意图;
图22为本申请实施例六提供的一种导航设备的结构示意图;
图23为本申请实施例七提供的一种界面系统的结构示意图;
图24为本申请实施例八提供的一种导航设备的结构示意图;
图25为本申请实施例九提供的一种交通工具控制设备的结构示意图;
图26为本申请实施例十提供的一种车载互联网操作系统的结构示意图。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本发明相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本申请的一些方面相一致的装置和方法的例子。
本申请提供的各应用处理方法、导航设备、界面系统及交通工具控制设备,可适用于基于交通工具的物联网系统中。该物联网可通过将通信技术(Telecommunication)与信息技术(Informatics)进行结合,以交通工具为载体,实现乘坐人、路及交通工具的有效协同,从而提供乘坐人所需的信息服务。还需要说明的是,本申请所指的“交通工具”包括但不限于内燃机汽车、内燃机摩托车、电动汽车、电动摩托车、混合能源汽车、混合能源摩托车、电动助力车、电动平衡车、遥控电动车辆、飞行器(如无人驾驶飞行器、有人小型飞行器、遥控飞行器)等,以及各种变形。
举例来说,如下本申请可提供一种可选的物联网的组网方式。图1为本申请的一种可选的组网方式的示意图。如图1所示,在该物车联网中,该交通工具101中可装设有客户端设备102,交通工具101中的客户端设备102可通过网络与服务器103连接。该客户端设备102上可装设有至少一个应用。该服务器103还可获取交通工具101的客户端设备102传输的应用数据。由该服务器103对该应用数据进行分析处理,从而为交通工具101提供用户所需的应用服务。需要说明的是,如上图1所示的车联网组网方式仅为一种实例,本申请并不以此作为限制。
本申请各实施例提供的应用处理方法可以是由导航设备执行。其中,该导航设备可以为上述如1所示的装设在交通工具101内的客户端设备102。其中,该导航设备可通过软件和/或硬件的方式集成在安装并运行导航应用程序的移动终端、机载移动设备和交通工具控制设备等任一设备中。其中,移动终端和机载移动设备可以是交通工具出厂后安装或是固定在交通工具内的可操作区域内。交通工具控制设备如车机可以集成在交通工具的中控系统中,在交通工具出厂后便已配备。其中,移动终端例如可包括:智能手机、平板电脑等。机载移动设备可以包括机载导航仪等。通过执行本申请各实施例提供的应用处理方法可在导航设备的显示区域上显示导航应用的导航界面的情况下,还可显示其他界面,无需反复切换显示区域的显示界面,简化操作流程,提高处理效率,并且,无需退出该导航应用,因而还可有效保障出行安全及出行效率。
本申请实施例一提供一种应用处理方法。图2为本申请实施例一提供的一种应用处 理方法的流程图。如图2所示,该应用处理方法可包括:
S201、在显示区域上显示导航界面。
具体地,该S201中可以是在导航设备,或,交通工具内其他设备如车机的显示区域上显示该导航界面。该导航设备可以是仅在前台运行导航应用的情况下,在该显示区域上显示该导航应用的导航界面。该导航应用例如可以为高德导航应用、百度导航应用,或者其他任一具有导航功能的应用。该显示区域可以为显示设备的全部显示区域,也可以为该显示设备的部分显示区域。该部分显示区域可以为该显示设备上预设比例的显示区域,该预设比例例如可以为80%、或90%等。需要说明的是,当该显示区域为该显示设备的部分显示区域,该显示设备的其他显示区域可用于显示该交通工具的其他信息,如车况信息等。
S202、响应于接收到的应用调取指令,在该显示区域上同时显示应用图标显示界面和该导航界面;该应用图标显示界面不遮挡该导航界面的主要显示区域。
具体地,该应用图标显示界面包括:至少一个应用图标,在该应用图标显示界面上,该至少一个应用图标可通过列表形式进行排列。该应用调取指令可以为应用图标显示界面对应的调用指令。该当前位置所在区域可以为以该当前位置为中心的预设范围内的区域;该用户设定位置所在的区域可以为以该用户设定位置为中心的预设范围内的区域。
举例来说,该S202中可以是响应于该应用调取指令,对该应用图标显示界面或该导航界面进行透明处理,使得在该显示区域上同时显示应用图标显示界面和该导航界面情况下,该应用图标显示界面可不遮挡该导航界面的主要显示区域,保证该主要显示区域的可视化。
该S202中还可以是响应于该应用调取指令,在显示区域的第一预设区域显示该应用图标显示界面,在第二预设区域内显示该导航界面,该第一预设区域与该第二预设区域部分重叠或不重叠,使得在该显示区域上同时显示应用图标显示界面和该导航界面情况下,该应用图标显示界面可不遮挡该导航界面的主要显示区域,保证该主要显示区域的可视化。
该S202中还可以是对该导航界面进行缩小处理,并在该显示区域上同时显示该应用图标显示界面和缩小后的导航界面,可避免或减小应用图标显示界面对该导航界面的遮挡,从而使得该应用图标显示界面和该导航界面尽可能的均呈现在该显示区域上。
需要说明的是,如上所述的实现方式仅为实例说明,本申请不以此作为限制。
本申请实施例一提供的应用处理方法,可通过在显示区域上显示导航界面的情况下, 响应于接收到的应用调取指令在该显示区域上同时显示应用图标显示界面和导航界面,其中该应用图标显示界面不遮挡该导航界面的主要显示区域。该应用处理方法可在显示区域上显示导航界面的情况下接收应用调取指令,使得该应用图标显示界面和该导航界面同时显示在该显示区域上,使得用户无需反复切换显示区域上的显示界面,即可获取不同界面对应的应用信息,简化操作流程,提高处理效率,避免用户的反复操作对驾驶交通工具带来的干扰,保证行车安全性。
由于本申请的应用处理方法中,在显示区域上同时显示该应用图标显示界面和该导航界面时只需保证该应用图标显示界面不遮挡该导航界面的主要显示区域即可,无需对该应用图标显示界面和该导航界面在该显示区域中进行分区显示,因而,该应用处理方法还可提高显示区域的空间利用率。
可选的,在上述实施例一提供的应用处理方法的基础上,本申请实施例二还提供一种应用处理方法。如上所述的应用处理方法中,S202中在该显示区域上同时显示应用图标显示界面和该导航界面可以包括:
对该导航界面进行缩小处理,
在该显示区域上显示该应用图标显示界面和缩小后的导航界面。
具体地,该导航设备可以是接收针对该导航界面的缩小操作指令并根据该缩小操作指令,对该导航界面进行缩小处理。其中,该导航设备可以是接收在该导航界面上输入的该缩小操作指令,还可以是接收通过语音或缩小控制按钮输入的该缩小操作指令。
可选的,如上所述实施例的应用处理方法中对该导航界面进行缩小处理可以是包括:
对该导航界面在Y轴和Z轴的显示维度上进行缩小处理。
具体地,该导航界面可以为三维的导航界面,该导航界面的X轴的显示维度可为该导航界面在显示区域上的横向方向的显示维度;该导航界面的Y轴的显示维度可为该导航界面在显示区域上的纵向方向的显示维度。该导航界面的Z轴的显示维度可为该导航界面在垂直于显示区域的方向的显示维度。
下面,通过一个具体示例对图1所示的应用处理方法进行实例说明。
图3为本申请实施例二提供的一种应用处理方法所实现的用户界面的一种状态示意图。如图3所示,在显示区域上显示的导航界面301,接收应用调取指令后,可对导航界面301进行缩小处理,并在该显示区域上同时显示应用图标显示界面302和缩小后的导航界面301。其中,该应用图标显示界面302中可包括至少一个应用图标303,如图3所示的应用1、应用2、应用3、应用4、应用5、应用6等。该应用图标显示界面302 可不遮挡导航界面301的主要显示区域。该主要显示区域可包括:位置区域304。该位置区域304可以为预设位置305为中心的预设范围内的区域。该预设位置305可以为当前位置或者用户选定的位置。
该导航设备可以是在图3所示的显示区域的顶部开始的上半部分显示该应用图标显示界面302,在图3所示的显示区域的顶部开始的下半部分显示该缩小后的导航界面301。需要说明的是,该应用图标显示界面302和该缩小后的导航界面301还可以是在显示区域的其他位置显示,图3仅为实例说明,本申请不以此作为限制。并且,该图3中该显示区域是以显示设备的全部显示区域为例进行实例说明,该显示区域还可以为该显示设备的部分显示区域,在此不再赘述。
通过执行上述应用处理方法,可使得显示区域上同时显示该导航界面301和应用图标显示界面302,无需得用户无需反复切换显示区域上的显示界面,即可获取不同界面对应的应用信息,简化导航设备的操作流程,提高处理效率。并且,可通过对导航界面301缩小处理,因而同时缩小后的导航界面301和应用图标显示界面302的情况下,该应用图标显示界面不遮挡导航界面301的主要显示区域,且无需分区显示,因而,上述实施例一所述的应用处理方法还提高了显示区域的空间利用率。
可选的,在如上所述应用处理方法的基础上,本申请实施例二还提供一种应用处理方法。图4为本申请实施例二提供的一种应用处理方法的流程图。如图4所示,在上述S202中响应于该应用调取指令在该显示区域上同时显示应用图标显示界面和导航界面之后,该方法还可包括:
S401、接收针对该应用图标显示界面所输入的全屏操作指令。
S402、响应于该全屏操作指令,在该显示区域上对该应用图标显示界面进行全屏显示。
具体地,在该显示区域上对该应用图标显示界面进行全屏显示,也就是说,响应于该全屏操作指令,在该显示区域上仅显示该应用图标显示界面,而不显示该导航界面。该S402中响应于该全屏操作指令在该显示区域上对该应用图标显示界面进行全屏显示,可使得该应用图标显示界面在显示区域的显示更清楚,更完整,更方便用户操作,避免误操作带来的处理资源浪费。
下面,通过多个具体示例对图2所示的应用处理方法进行实例说明。
图5为本申请实施例二提供的一种应用处理方法所实现的用户界面的另一种状态示意图。如图5所示,该应用处理方法中,可以在显示区域上显示应用图标显示界面302 和导航界面301的情况下,接收针对该应用图标显示界面所输入的全屏操作指令;响应于该全屏操作指令在该显示区域上对应用图标显示界面302进行如图5所示的全屏显示。图5中对应用图标显示界面302进行全屏显示的情况下,在显示区域上可仅显示应用图标显示界面302。该显示区域上全屏显示的该应用图标显示界面302中包括的应用图标个数可大于或等于在该显示区域上同时显示该应用图标显示界面302和导航界面301的情况下,应用图标显示界面302中包括的应用图标个数。
举例来说,在该图5中,在该显示区域上同时显示该应用图标显示界面302和导航界面301的情况下,应用图标显示界面302中可包括应用1、应用2、应用3、应用4、应用5、应用6,6个应用图标;在该显示区域上全屏显示的该应用图标显示界面302可包括应用1、应用2、应用3、应用4、应用5、应用6、应用7,应用8、应用9,9个应用图标。该图5仅为实例说明,本申请不以此作为限制。
图5中在该显示区域上全屏显示该应用图标显示界面302,可使得该应用图标显示界面302在显示区域上的显示更清楚,更完整,更方便用户操作,避免误操作带来的处理资源浪费。
可选的,如上实施例二所述的应用处理方法中,S401中接收针对该应用图标显示界面所输入的全屏操作指令,可通过如下所示的任一种可能的实施方式实现。
在一种可能的实施方式中,S401中接收针对该应用图标显示界面所输入的全屏操作指令,可以包括:
接收该应用图标显示界面上通过点击操作图标输入的全屏操作指令。
具体地,该操作图标可以为全屏操作图标。图6为本申请实施例二提供的一种应用处理方法所实现的用户界面的又一种状态示意图。如图6所示,该导航设备可以是接收该应用图标显示界面302上通过点击操作图标601输入的全屏操作指令,并基于该全屏操作指令在该显示区域上全屏显示该应用图标显示界面302。需要说明的是,该图6中所示的操作图标仅为实例说明,该操作图标还可以为其他形状的图标,本申请不以此作为限制。
在一种可能的实施方式中,S401中接收针对该应用图标显示界面所输入的全屏操作指令,可以包括:
接收该应用图标显示界面上通过全屏手势操作输入的全屏操作指令。
具体地,该全屏手势操作可以为该应用图标显示界面上应用图标外的区域的连击手势操作如双击手势操作。需要说明的是,还全屏手势操作还可以为其他手势操作,在此 不再赘述。
图7为本申请实施例二提供的一种应用处理方法所实现的用户界面的再一种状态示意图。如图7所示,该导航设备可以是接收该应用图标显示界面302上应用图标303外的区域输入的全屏手势操作如双击手势操作所输入的全屏操作指令,并基于该全屏操作指令在该显示区域上全屏显示该应用图标显示界面302。需要说明的是,该图7中所示的全屏手势操作仅为实例说明,该全屏手势操作还可以为其他形式的手势操作,本申请不以此作为限制。
在一种可能的实施方式中,S401中接收针对该应用图标显示界面所输入的全屏操作指令,可以包括:
接收通过语音输入的该全屏操作指令。
在一种可能的实施方式中,S401中接收针对该应用图标显示界面所输入的全屏操作指令,可以包括:
接收通过控制按钮输入的该全屏操作指令。
具体的,该控制按钮例如可以为导航设备或者交通工具内其他设备如中控台控制按键、方向盘的控制按键等。
可选的,本申请实施例二还提供一种应用处理方法。图8为本申请实施例二提供的另一种应用处理方法的流程图。如图8所示,如上所述的在该显示区域上同时显示应用图标显示界面和缩小后的导航界面之后,该方法还可包括:
S801、接收针对该缩小后的导航界面所输入的恢复操作指令。
具体地,导航设备可以是接收该缩小后的导航界面上任一位置输入的恢复操作指令,还可以是接收通过语音输入该恢复操作指令,也可以是通过控制按钮输入的该恢复操作指令。
S802、响应于该恢复操作指令,在该显示区域上对该导航界面重新进行显示。
具体地,在该显示区域上对该导航界面重新进行显示,也就是说,响应于该恢复操作指令,在该显示区域上仅显示该导航界面,而不显示应用图标显示界面,即退出应用图标显示界面的显示。该S802中响应于该恢复操作指令在该显示区域上对该导航界面重新进行显示,可使得该导航界面在显示区域的显示更清楚,更完整,使得用户可基于该导航界面获取准确的导航信息。
可选的,如上所述的S801中接收针对缩小后的导航界面所输入的恢复操作指令,可以包括:
接收该缩小后的导航界面上通过点击操作图标输入的恢复操作指令。
可替代地,如上所述的S801中接收针对缩小后的导航界面所输入的恢复操作指令,也可以包括:
接收该缩小后的导航界面上通过全屏操纵手势输入的恢复操作指令。
可替代地,如上所述的S801中接收针对缩小后的导航界面所输入的恢复操作指令,还可以包括:
接收通过语音输入的该恢复操作指令。
可替代地,如上所述的S801中接收针对缩小后的导航界面所输入的恢复操作指令,也可以包括:
接收通过控制按钮输入的该恢复操作指令。
如下通过实例进行说明。图9为本申请实施例二提供的另一种应用处理方法所实现的用户界面的一种状态示意图。如图9所示,该导航设备可以是接收该缩小后的导航界面301上通过点击操作图标901输入的恢复操作指令,并基于该恢复操作指令在该显示区域上显示该导航界面301。
可选的,如图9所示,该导航设备可以是接收该缩小后的导航界面301上任一区域输入的操纵手势所输入恢复操作指令,并基于该恢复操作指令在该显示区域上显示该导航界面301。需要说明的是,该图9中所示的操作手势仅为实例说明,该操作手势还可以为其他形式的操作手势,本申请不以此作为限制。
可选的,如图9所述,该导航设备还可以是接收通过控制按钮902所输入的恢复操作指令,并基于该恢复操作指令在该显示区域上显示该导航界面301。
可选的,如图9所述,该导航设备还可以是接收通过语音所输入的恢复操作指令,并基于该恢复操作指令在该显示区域上显示该导航界面301。
本申请实施例二提供的应用处理方法,在上述实施例一所述的应用处理方法的基础上,还可接收该应用图标显示界面上输入的全屏操作指令,并响应于该全屏操作指令,在该显示区域上对该应用图标显示界面进行全屏显示,可使得该应用图标显示界面在显示区域的显示更清楚,更完整,更方便用户操作,避免误操作带来的处理资源浪费。该应用处理方法还可接收该缩小后的导航界面上输入的恢复操作指令,响应于该恢复操作指令,在该显示区域上对该导航界面重新进行显示,可使得该导航界面在显示区域的显示更清楚,更完整,使得用户可基于该导航界面获取准确的导航信息。
在如上任一实施例所述的应用处理方法的基础上,本申请实施例三还提供多种应用 处理方法。可选的,如上所述的S202接收输入的应用调取指令可以是通过如下任一所述的实施方式实现。
在一种可能的实施方法中,S202接收输入的应用调取指令可包括:
接收该导航界面上通过点击控制键输入的应用调取指令。
具体地,该控制键可以为该导航界面上的虚拟按键。该应用调取指令可以为该控制键上输入的点击操作指令,或者,长按操作指令。
在另一种可能的实施方法中,S202接收输入的应用调取指令可包括:
接收通过语音输入的应用调取指令。
在又一种可能的实施方法中,S202接收输入的应用调取指令可包括:
接收该导航界面上通过操作手势输入的应用调取指令。
在再一种可能的实施方法中,S202接收输入的应用调取指令可包括:
接收通过控制按钮输入的应用调取指令。
具体地,该控制按钮可以位于该导航界面上的虚拟控制键,也可以为位于该导航设备的显示区域外,如该导航设备的其他位置、车机或交通工具内其他设备如方向盘等上的实体按钮。
举例来说,图10为本申请实施例三提供的一种应用处理方法所实现的用户界面的一种状态示意图。如图10所示,该导航设备可以是接收显示区域上显示该导航界面301的情况下,通过该导航设备的显示区域外的控制键1001输入的应用调取指令。该应用调取指令可以为该控制键1001上输入的点击操作指令,或者,长按操作指令。需要说明的是,该应用调取指令还可以为其他类型的操作指令,在此仅为实例说明,本申请不以此作为限制。
本发明实施例三还提供一种应用处理方法。图11为本申请实施例三提供的另一种应用处理方法的流程图。如图11所示,该应用处理方法在如上所述的方法的基础上,在S202中响应于该应用调取指令在该显示区域上同时显示应用图标显示界面和导航界面之后,该方法可还包括:
S1101、接收针对该应用图标显示界面所输入的图标页面切换指令。
S1102、响应于该图标页面切换指令,对该应用图标显示界面进行页面切换。
具体地,响应于该应用调取指令在该显示区域上显示的应用图标显示界面可以为应用图标首页面。若该应用图标首页面不足以显示该导航设备内的所有应用的情况下,该应用图标显示界面还具有其他应用图标显示页面。若该应用图标显示界面还具有其他应 用图标显示页面,接收到针对该应用图标显示界面所输入的图标页面切换指令,可使得该应用图标显示界面上显示的当前页面切换为其他页面,实现该应用图标显示界面的页面切换。
本申请实施例三提供的该应用处理方法中,接收针对该应用图标显示界面所输入的图标页面切换指令,响应于该图标页面切换指令,对该应用图标显示界面进行页面切换,可使得该应用图标显示界面的当前显示页面发生变化,向用户展示不同页面的应用图标,满足用户对不同页面的应用图标对应的应用的需求,提高用户体验。
可选的,如上所述的S1101中接收针对该应用图标显示界面所输入的图标页面切换指令,可以包括:
接收该应用图标显示界面上通过滑动操作手势输入的图标页面切换指令。
具体地,该滑动操作手势例如可以为单指或多手指滑动操作手势。
可替代地,如上所述的S1101中接收针对该应用图标显示界面所输入的图标页面切换指令,可以包括:
接收该应用图标显示界面上通过点击翻页按键输入的图标页面切换指令。
可替代地,如上所述的S1101中接收针对该应用图标显示界面所输入的图标页面切换指令,可以包括:
接收通过语音输入的该图标页面切换指令。
可替代地,如上所述的S1101中接收针对该应用图标显示界面所输入的图标页面切换指令,可以包括:
接收通过控制按钮输入的该图标页面切换指令。
举例来说,图12为本申请实施例三提供的另一种应用处理方法所实现的用户界面的一种状态示意图。如图12所示,该导航设备可以是接收该应用图标显示界面302上通过向左的滑动操作手势输入的图标页面切换指令,并响应于该图标页面切换指令使得该应用图标显示界面302的当前页面切换至下一页。需要说明的是,该导航设备还可以是接收该应用图标显示界面302上通过向右的滑动操作手势输入的图标页面切换指令,并响应于该图标页面切换指令使得该应用图标显示界面302的当前页面切换至前一页。该图12通过向左的滑动操作手势对应的一种示意图进行说明,对于向右滑动操作手势对应示意图,在此不再赘述。
如图12所示,该导航设备可以是接收该应用图标显示界面302上通过点击如图12所示的翻页按键1201输入的图标页面切换指令,并响应于该图标页面切换指令使得该应 用图标显示界面302的当前页面切换至下一页。需要说明的是,翻页按键1201还可以为其他的形状,图12仅为实例说明,本申请不以此作为限制。
若该当前页面为最后一页或是首页,则该导航设备不对该应用图标显示界面302进行页面切换,即显示继续显示该应用图标显示界面302的当前页面。为使用户更清楚获知当前页面为最后一页或是首页,该导航设备还可以在显示区域上对该应用图标显示界面302的当前页面进行页面回弹。
需要说明的是,该图12仅为实例说明,该图标页面切换指令还可以是通过语音输入或者控制按钮输入等方式实现,在此不再赘述。
可替代地,如上所述的S1101中接收针对该应用图标显示界面所输入的图标页面切换指令,可以包括:
接收该应用图标显示界面上通过页面拖动操作手势输入的图标页面切换指令。
具体地,该页面拖动操作手势可以为手指长按该应用图标显示界面的当前页面,并拖动该当前页面的操作手势。该客户端设备在接收该应用图标显示界面上输入的页面拖动操作手势后,还判断该页面拖动操作手势的拖动距离是否大于或等于预设距离,确定该页面拖动操作手势是否为该页面切换指令对应的操作手势。若该页面拖动操作手势的拖动距离大于或等于预设距离,则导航设备可确定该页面拖动操作手势为该页面切换指令对应的操作手势。若该页面拖动操作手势的拖动距离小于预设距离,则导航设备可确定该页面拖动操作手势不为该页面切换指令对应的操作手势。其中,该页面拖动操作手势的拖动距离可以为页面拖动操作手势的起始位置与,页面拖动操作手势的结束位置。其中,起始位置可以为手指开始点击在该应用图标显示界面的位置;结束位置可以为手指离开在该应用图标显示界面的位置。该预设距离例如可以是根据该页面拖动操作手势的拖动方向上该显示区域的边长确定的。若该页面拖动操作手势的拖动方向为左右拖动方向,则该预设距离可以为该显示区域在横向边长上的20%。需要说明的是,该预设距离还可以为其他距离,在此不再赘述。
可选的,本申请实施例三还提供一种应用处理方法。图13为本申请实施例三提供的又一种应用处理方法的流程图。如图13所示,如上所述应用处理方法中接收该应用图标显示界面上通过滑动操作手势输入的图标页面切换指令,可以包括:
S1301、检测该应用图标显示界面上输入的该滑动操作手势的滑动速度。
具体地,该滑动速度可以为该滑动操作手势的滑动距离,与滑动时间的比值。该滑动距离可以为该滑动操作手势对应的起始位置与离开位置之间的距离。滑动时间为该滑 动操作手势持续的时间。
S1302、根据该滑动速度确定该滑动操作操作手势是否为该图标页面切换指令所对应的操作手势。
具体地,导航设备可以是比较该滑动速度是否大于或等于预设速度,若该滑动速度大于或等于该预设速度,则确定该滑动操作手势为该图标页面切换指令所对应的操作手势。若该滑动速度小于该预设速度,则该滑动操作手势不为该图标页面切换指令所对应的操作手势。
S1303、若该滑动操作手势为该图标页面切换指令所对应的操作手势,则确定该滑动操作手势对应的指令为该图标页面切换指令。
可替代地,本申请实施例三还提供一种应用处理方法。图14为本申请实施例三提供的再一种应用处理方法的流程图。如图14所示,如上所述应用处理方法中接收该应用图标显示界面上通过滑动操作手势输入的图标页面切换指令,还可以是:
S1401、检测该应用图标显示界面上输入的该滑动操作手势的滑动距离。
该滑动距离可以为显示区域上该滑动操作手势对应的起始位置与离开位置之间的距离。
S1402、根据该滑动距离确定该滑动操作手势是否为该图标页面切换指令对应的操作手势。
具体地,导航设备可以是比较该滑动距离是否大于或等于预设距离,若该滑动速度大于或等于该预设距离,则确定该滑动操作手势为该图标页面切换指令所对应的操作手势。若该滑动速度小于该预设距离,则该滑动操作手势不为该图标页面切换指令所对应的操作手势。
S1403、若该滑动操作手势为该图标页面切换指令对应的操作手势,则确定该滑动操作手势对应的指令为该图标页面切换指令。
本申请实施例三还通过提供的多种不同接收图标页面切换指令的实现方案,提供多种不同的应用处理方法,使得该应用图标显示界面的多种不同页面切换方案,向用户展示不同页面的应用图标,满足用户对不同页面的应用图标对应的应用的需求,提高用户体验。
本申请实施例四还提供一种应用处理方法。图15为本申请实施例四提供的一种应用处理方法的流程图。如图15所示,该方法在如上任一实施例所述的应用处理方法的基础上,在S203中响应于该应用调取指令在该显示区域上同时显示应用图标显示界面和导航 界面之后,该方法还包括:
S1501、接收针对该应用图标显示界面中的任一图标的打开操作指令。
具体地,导航设备可以是接收该应用图标显示界面上该任一图标上通过输入的图标点击操作手势所输入的打开操作指令。
S1502、响应于该打开操作指令,在该显示区域上显示该图标对应的应用界面。
可选的,S1502中显示区域上显示该图标对应的应用界面包括:
在该显示区域上全屏显示该应用界面。
如下通过具体实例进行说明。
图16为本申请实施例四提供的一种应用处理方法所实现的用户界面的一种状态示意图。如图16所示,导航设备可以接收应用图标显示界面302的应用3的图标处通过点击该应用3的图标输入的该应用3的打开操作指令,根据该应用3的打开操作指令,在该显示区域上全屏显示该应用3的应用界面中的应用3首页面1601。
图17为本申请实施例四提供的一种应用处理方法所实现的用户界面的另一种状态示意图。如图17所示,导航设备还可以接收该应用3的应用界面中的应用3首页面1601上点击任一功能控制键输入的该任一功能对应的打开操作指令,并根据该任一功能对应的打开操作指令在显示区域上全屏显示该应用3二级页面1701。该应用3二级页面1701可以为该应用3的该任一功能对应的显示页面。
图18为本申请实施例四提供的一种应用处理方法所实现的用户界面的又一种状态示意图。如图18所示,导航设备还可以接收该应用3的应用界面中的应用3二级页面1701上点击返回键1801输入的应用返回指令,并响应于该应用返回指令在显示区域上显示该应用3首页面1601。如图18所示,导航设备还可以接收用户通过在点击导航设备的显示区域外的控制按钮1802输入的应用返回指令,并响应于该应用返回指令在显示区域上显示该应用3首页面1601。需要说明的是,图18中的返回键1801和控制按钮1802仅为实例说明,本申请不以此作为限制。
可选的,在如上所述实施例提供的应用处理方法的基础上,S1502中在该显示区域上显示该图标对应的应用界面之后,该方法还可包括:
接收针对该应用界面上输入的应用返回指令;
响应于该应用返回指令,在该显示区域上同时显示该应用图标显示界面和该导航界面。
可选的,如上所述的接收针对该应用界面上输入的应用返回指令可以是通过如下任 一所述的可能实现方式实现。
在一种可能实现方式中,接收针对该应用界面上输入的应用返回指令可包括:
接收该应用界面上通过点击返回按键输入的该应用返回指令。
在另一种可能实现方式中,接收针对该应用界面上输入的应用返回指令可包括:
接收通过语音输入的该应用返回指令。
在又一种可能实现方式中,接收针对该应用界面上输入的应用返回指令可包括:
接收通过控制按钮输入的该应用返回指令。
如下通过具体实例进行说明。图19为本申请实施例四提供的一种应用处理方法所实现的用户界面的再一种状态示意图。如图19所示,导航设备还可以接收该应用3的应用界面中的应用3首页面1601上点击返回键1901输入的应用返回指令,并响应于该应用返回指令在该显示区域上显示该应用图标显示界面302和导航界面301。如图19所示,导航设备还可以接收通过点击导航设备的显示区域外的控制按钮1902输入的应用返回指令,并响应于该应用返回指令在该显示区域上同时显示该应用图标显示界面302和该导航界面301。需要说明的是,图19中的返回键1901和控制按钮1902仅为实例说明,本申请不以此作为限制。
可选的,该应用处理方法在上述实施例所述的方法的基础上,该导航界面的主要显示区域可包括:当前位置所在区域、用户设定位置所在的区域和该导航界面的搜索框中至少一个。
如下通过具体实例进行说明。图20为本申请实施例四提供的另一种应用处理方法所实现的用户界面的状态示意图。该导航设备可以是在该显示区域上同时显示该应用图标显示界面和该导航界面,其中,该导航界面301的主要显示区域包括:搜索框2001和该导航界面302的位置区域304。该位置区域304可以为当前位置所在区域和/或用户设定位置所在的区域。图20中搜索框2001在显示区域的显示位置仅为示例说明,搜索框2001还可以在该显示区域的其他区域显示,本申请不以此作为限制。
本申请实施例四的方法中,导航设备可根据针对应用图标显示界面的应用图标对应的打开操作指令,在该显示区域上显示应用界面,实现用户对应用的操作,满足用户对应用的需求,提高用户体验。
以下将详细描述根据本申请的一个或多个实施例的导航设备。这些导航设备可以被实现在交通工具或移动终端的基础架构中,也可以被实现在服务器和客户端设备的交互系统中。本领域技术人员可以理解,这些导航设备均可使用市售的硬件组件通过本方案 所教导的步骤进行配置来构成。例如,处理器组件(或处理模块、处理单元)可以使用来自德州仪器公司、英特尔公司、ARM公司、等企业的单片机、微控制器、微处理器等组件。
本申请实施例五还提供一种导航设备。图21为本申请实施例五提供的一种导航设备的结构示意图。如图21所示,该导航设备2100可包括:显示处理模块2101和接收模块2102。该导航设备2100可以通过软件和/或硬件的方式集成在移动终端、机载移动设备、交通工具的控制设备等任一设备中。
显示处理模块2101,用于在显示区域上显示导航界面。
接收模块2102,用于接收输入的应用调取指令。
显示处理模块2101,还用于响应于该应用调取指令,在该显示区域上同时显示应用图标显示界面和导航界面。
其中,该应用图标显示界面包括:至少一个应用图标。该应用图标显示界面不遮挡该导航界面的主要显示区域。
可选的,接收模块2102,还用于显示处理模块2101在该显示区域上同时显示该应用图标显示界面和导航界面之后,接收针对该应用图标显示界面所输入的全屏操作指令。
显示处理模块2101,还用于响应于该全屏操作指令,在该显示区域上对该应用图标显示界面进行全屏显示。
可选的,接收模块2102,还用于通过以下任一方式接收该全屏操作指令:接收该应用图标显示界面上通过点击操作图标输入的全屏操作指令;接收该应用图标显示界面上通过全屏手势操作输入的全屏操作指令;接收通过语音输入的该全屏操作指令;接收通过控制按钮输入的该全屏操作指令。
可选的,导航设备2100还包括:
显示处理模块2101,还用于对该导航界面进行缩小处理,在该显示区域上同时显示该应用图标显示界面和缩小后的导航界面。
可选的,显示处理模块2101,还用于对该导航界面在Y轴和Z轴的显示维度上进行缩小处理。
可选的,接收模块2102,还用于在显示处理模块2101在该显示区域上同时显示该应用图标显示界面和该缩小后的导航界面之后,接收针对缩小后的导航界面所输入的恢复操作指令。
显示处理模块2101,还用于响应于该恢复操作指令,在该显示区域上对该导航界面 重新进行显示。
可选的,接收模块2102,还用于通过如下任一方式接收该恢复操作指令:接收该缩小后的导航界面上通过点击操作图标输入的恢复操作指令;接收该缩小后的导航界面上通过全屏操作手势输入的恢复操作指令;接收通过语音输入的该恢复操作指令;接收通过控制按钮输入的该恢复操作指令。
可选的,接收模块2102,还用于通过如下任一方式接收该应用调取指令:接收该导航界面上通过点击控制键输入的应用调取指令;接收通过语音输入的应用调取指令;接收该导航界面上通过操作手势输入的应用调取指令;接收通过控制按钮输入的该应用调取指令。
可选的,接收模块2102,还用于在显示处理模块2101在该显示区域上同时显示该应用图标显示界面和该导航界面之后,接收针对该应用图标显示界面所输入的图标页面切换指令。
显示处理模块2101,还用于响应于该图标页面切换指令,对该应用图标显示界面进行页面切换。
可选的,接收模块2102,还用于通过如下任一方式接收所述图标页面切换指令:接收该应用图标显示界面上通过滑动操作手势输入的图标页面切换指令;接收该应用图标显示界面上通过点击翻页按键输入的图标页面切换指令;接收通过语音输入的该图标页面切换指令;接收通过控制按钮输入的该图标页面切换指令。
可选的,接收模块2102还包括:
第一检测单元,用于检测该应用图标显示界面上输入的该滑动操作手势的滑动速度。
第二确定单元,用于根据该滑动速度确定该滑动操作手势是否为该图标页面切换指令所对应的操作手势;若该滑动操作手势为该图标页面切换指令所对应的操作手势,则确定该滑动操作手势对应的指令为该图标页面切换指令。
可选的,接收模块2102包括:
第二检测单元,用于检测该应用图标显示界面上输入的该滑动操作手势的滑动距离。
第二确定单元,用于根据该滑动距离确定该滑动操作手势是否为该图标页面切换指令对应的操作手势;若该滑动操作手势为该图标页面切换指令对应的操作手势,则确定该滑动操作手势对应的指令为该图标页面切换指令。
可选的,接收模块2102,还用于在显示处理模块2101在该显示区域上同时显示该应用图标显示界面和该导航界面之后,接收针对该应用图标显示界面中的任一图标的打 开操作指令;
显示处理模块2101,还用于响应于该打开操作指令,在该显示区域上显示该图标对应的应用界面。
可选的,显示处理模块2101,还用于在该显示区域上全屏显示该应用界面。
可选的,接收模块2102,还用于在显示处理模块2101在该显示区域上显示该图标对应的应用界面之后,接收针对该应用界面所输入的应用返回指令。
可选的,接收模块2102,还用于通过如下任一方式接收所述应用返回指令:接收该应用界面上通过点击返回按键输入的该应用返回指令;接收通过语音输入的该应用返回指令;接收通过控制按钮输入的该应用返回指令。
显示处理模块2101,还用于响应于该应用返回指令,在该显示区域上同时显示该应用图标显示界面和该导航界面。
可选的,该导航界面的主要显示区域包括:当前位置所在区域、用户设定位置所在的区域和该导航界面的搜索框中至少一个。
本申请实施例五提供的导航设备,可用于执行上述实施例一至实施例四中任一所述的应用处理方法,其具体的实现过程及有益效果与上述实施例类似,在此不再赘述。
本申请实施例六还提供一种导航设备。图22为本申请实施例六提供的一种导航设备的结构示意图。如图22所示,该导航设备2200可包括:输入设备2201、处理器2202和显示设备2203。该导航设备2200可以通过软件和/或硬件的方式集成在移动终端、机载移动设备、交通工具的控制设备等任一设备中。
显示设备2203用于显示导航界面。
输入设备2201,用于接收输入的应用调取指令;
处理器2202,耦合到输入设备2201和显示设备2203,用于响应于该应用调取指令,控制该显示设备2203同时显示应用图标显示界面和该导航界面。
其中,该应用图标显示界面包括:至少一个应用图标;该应用图标显示界面不遮挡该导航界面的主要显示区域。
可选的,输入设备2201,还用于接收针对该应用图标显示界面所输入的全屏操作指令。
处理器2202,还用于响应于该全屏操作指令,控制该显示设备2203全屏显示该应用图标显示界面。
可选的,输入设备2201,还用于通过如下任一接收全屏操作指令:接收该应用图标 显示界面上通过点击操作图标输入的全屏操作指令;接收该应用图标显示界面上通过全屏手势操作输入的全屏操作指令;接收通过语音输入的该全屏操作指令;接收通过控制按钮输入的该全屏操作指令。
可选的,处理器2202,还用于对该导航界面进行缩小处理,并控制显示设备2203同时显示该应用图标显示界面和缩小后的导航界面。
可选的,处理器2202,还用于对该导航界面在Y轴和Z轴的显示维度上进行缩小处理。
可选的,输入设备2201,还用于接收针对该缩小后的导航界面所输入的恢复操作指令。
处理器2202,还用于响应于该恢复操作指令,控制显示设备2203重新显示该导航界面。
可选的,输入设备2201,还用于通过如下任一接收恢复操作指令:接收该缩小后的导航界面上通过点击操作图标输入的恢复操作指令;接收该缩小后的导航界面上通过全屏操纵手势输入的恢复操作指令;接收通过语音输入的该恢复操作指令;接收通过控制按钮输入的该恢复操作指令。
可选的,输入设备2201,还用于通过如下任一接收应用调取指令:接收导航界面上通过点击控制键输入的应用调取指令;接收通过语音输入的应用调取指令;接收导航界面上通过操作手势输入的应用调取指令;接收通过控制按钮输入的应用调取指令。
可选的,输入设备2201,还用于接收针对该应用图标显示界面所输入的图标页面切换指令。
处理器2202,还用于响应于该图标页面切换指令,控制显示设备对该应用图标显示界面进行页面切换。
可选的,输入设备2201,还用于通过如下任一所述的方式接收图标页面切换指令:接收该应用图标显示界面上通过滑动操作手势输入的图标页面切换指令;接收该应用图标显示界面上通过点击翻页按键输入的图标页面切换指令;接收通过语音输入的该图标页面切换指令;接收通过控制按钮输入的该图标页面切换指令。
可选的,处理器2202,还用于检测该该应用图标显示界面上输入的该滑动操作手势的滑动速度;根据该滑动速度确定该滑动操作手势是否为该图标页面切换指令所对应的操作手势;若该滑动操作手势为该图标页面切换指令所对应的操作手势,则确定该滑动操作手势对应的指令为该图标页面切换指令。
可选的,处理器2202,还用于检测该应用图标显示界面上输入的该滑动操作手势的滑动距离;根据该滑动距离确定该滑动操作手势是否为该图标页面切换指令对应的操作手势;若该滑动操作手势为该图标页面切换指令对应的操作手势,则确定该滑动操作手势对应的指令为该图标页面切换指令。
可选的,输入设备2201,还用于接收针对该应用图标显示界面中的任一图标的打开操作指令。
处理器2202,还用于响应于该打开操作指令,控制该显示设备2203显示该图标对应的应用界面。
可选的,处理器2202,还用于控制显示设备2203全屏显示该应用界面。
可选的,输入设备2201,还用于接收针对该应用界面所输入的应用返回指令。
处理器2202,还用于响应于该应用返回指令,控制显示设备2203同时显示该应用图标显示界面和该导航界面。
可选的,输入设备2201,还用于通过如下任一所述的方式接收应用返回指令:接收该应用界面上通过点击返回按键输入的该应用返回指令;接收通过语音输入的该应用返回指令;接收通过控制按钮输入的该应用返回指令。
可选的,导航界面的主要显示区域包括:当前位置所在区域、用户设定位置所在的区域和该导航界面的搜索框中至少一个。
本申请实施例六提供的导航设备,可用于执行上述实施例一至实施例四中任一所述的应用处理方法,其具体的实现过程及有益效果与上述实施例类似,在此不再赘述。
本申请实施例六还提供一种处理器可读存储介质。该存储介质中存储有程序指令,该程序指令用于使处理器执行上述实施例一至实施例四中任一所述的应用处理方法,具体在此不再赘述。
上述可读存储介质可以是由任何类型的易失性或非易失性存储设备或者它们的组合实现,如静态随机存取存储器(SRAM),电可擦除可编程只读存储器(EEPROM),可擦除可编程只读存储器(EPROM),可编程只读存储器(PROM),只读存储器(ROM),磁存储器,快闪存储器,磁盘或光盘。
本申请实施例七还提供一种界面系统。图23为本申请实施例七提供的一种界面系统的结构示意图。如图23所示,该界面系统2300可以为导航设备内的用户界面系统。该界面系统2300可包括:显示组件2301和处理器2302。
显示组件2301,用于显示导航界面。
处理器2302,用于响应于接收到的应用调取指令,触发显示组件同时显示应用图标显示界面和该导航界面。
其中,该应用图标显示界面包括:至少一个应用图标;该应用图标显示界面不遮挡该导航界面的主要显示区域。
可选的,处理器2302还用于响应于接收到的针对该应用图标显示界面的该全屏操作指令,触发显示组件2301对该应用图标显示界面进行全屏显示。
可选的,界面系统2300还可包括:输入组件,用于执行如下任一方式接收该全屏操作指令:接收该应用图标显示界面上通过点击操作图标输入的全屏操作指令;接收该应用图标显示界面上通过全屏手势操作输入的全屏操作指令;接收通过语音输入的该全屏操作指令;接收通过控制按钮输入的该全屏操作指令。
可选的,处理器2302还可用于对该导航界面进行缩小处理,并触发显示组件2301同时显示该应用图标显示界面和缩小后的导航界面。
可选的,处理器2302还可用于对该导航界面在Y轴和Z轴的显示维度上进行缩小处理。
可选的,处理器2302还可用于响应于接收到的针对该缩小后的导航界面的恢复操作指令,触发显示组件2301对该导航界面重新进行显示。
可选的,界面系统2300还可包括:输入组件,用于执行如下任一方式接收该恢复操作指令:接收该缩小后的导航界面上通过点击操作图标输入的恢复操作指令;接收该缩小后的导航界面上通过全屏操纵手势输入的恢复操作指令;接收通过语音输入的该恢复操作指令;接收通过控制按钮输入的该恢复操作指令。
可选的,输入组件还可用于执行如下任一方式接收该应用调取指令:接收该导航界面上通过点击控制键输入的应用调取指令;接收通过语音输入的应用调取指令;接收该导航界面上通过操作手势输入的应用调取指令;接收通过控制按钮输入的该应用调取指令。
可选的,处理器2302还可用于响应于接收到的针对该应用图标显示界面的图标页面切换指令,触发显示组件2301对该应用图标显示界面进行页面切换。
可选的,处理器2302还可用于检测该应用图标显示界面上输入的该滑动操作手势的滑动速度;根据该滑动速度确定该滑动操作手势是否为该图标页面切换指令所对应的操作手势;若该滑动操作手势为该图标页面切换指令所对应的操作手势,则确定该滑动操作手势对应的指令为该图标页面切换指令。
可选的,处理器2302还可用于检测该应用图标显示界面上输入的该滑动操作手势的滑动距离;根据该滑动距离确定该滑动操作手势是否为该图标页面切换指令对应的操作手势;若该滑动操作手势为该图标页面切换指令对应的操作手势,则确定该操作手势对应的指令为该图标页面切换指令。
可选的,处理器2302还可用于响应于接收到的针对该应用图标显示界面中的任一图标的打开操作指令,触发显示组件2301显示该图标对应的应用界面。
可选的,处理器2302还可用于响应于该打开操作指令,触发显示组件2301全屏显示该应用界面。
可选的,处理器2302还可用于响应于接收到的针对该应用界面的应用返回指令,触发显示组件2301同时显示该应用图标显示界面和该导航界面。
可选的,界面系统2300还可包括:输入组件,用于执行如下任一方式接收该应用返回指令:接收该应用界面上通过点击返回按键输入的该应用返回指令;接收通过语音输入的该应用返回指令;接收通过控制按钮输入的该应用返回指令。
可选的,该导航界面的主要显示区域包括:当前位置所在区域、用户设定位置所在的区域和该导航界面的搜索框中至少一个。
本申请实施例七提供的界面系统,可用于执行上述实施例一至实施例四中任一所述的应用处理方法,其具体的实现过程及有益效果与上述实施例类似,在此不再赘述。
本申请实施例八还提供一种导航设备。图24为本申请实施例八提供的一种导航设备的结构示意图。例如,导航设备2400可以通过软件和/或硬件的方式集成在移动终端、个人数字助理、机载移动设备、交通工具的控制设备等任一设备中。
参照图24,导航设备2400可以包括以下一个或多个组件:处理组件2402,存储器2404,电源组件2406,多媒体组件2408,音频组件2410,输入/输出(I/O)的接口2412,传感器组件2414,以及通信组件2416。
处理组件2402通常控制导航设备2400的整体操作,诸如与显示,电话呼叫,数据通信,相机操作和记录操作相关联的操作。处理组件2402可以包括一个或多个处理器2420来执行指令,以完成上述图2-图20中任一所述的应用处理方法的全部或部分步骤。此外,处理组件2402可以包括一个或多个模块,便于处理组件2402和其他组件之间的交互。例如,处理组件2402可以包括多媒体模块,以方便多媒体组件2408和处理组件2402之间的交互。
存储器2404被配置为存储各种类型的数据以支持在导航设备2400的操作。这些数 据的示例包括用于在导航设备2400上操作的任何应用程序或方法的指令,联系人数据,电话簿数据,消息,图片,视频等。存储器2404可以由任何类型的易失性或非易失性存储设备或者它们的组合实现,如静态随机存取存储器(SRAM),电可擦除可编程只读存储器(EEPROM),可擦除可编程只读存储器(EPROM),可编程只读存储器(PROM),只读存储器(ROM),磁存储器,快闪存储器,磁盘或光盘。
电源组件2406为导航设备2400的各种组件提供电力。电源组件2406可以包括电源管理系统,一个或多个电源,及其他与为导航设备2400生成、管理和分配电力相关联的组件。
多媒体组件2408包括在所述导航设备2400和用户之间的提供一个输出接口的屏幕。在一些实施例中,屏幕可以包括液晶显示器(LCD)和触摸面板(TP)。如果屏幕包括触摸面板,屏幕可以被实现为触摸屏,以接收来自用户的输入信号。触摸面板包括一个或多个触摸传感器以感测触摸、滑动和触摸面板上的手势。所述触摸传感器可以不仅感测触摸或滑动动作的边界,而且还检测与所述触摸或滑动操作相关的持续时间和压力。在一些实施例中,多媒体组件2408包括一个前置摄像头和/或后置摄像头。当导航设备2400处于操作模式,如拍摄模式或视频模式时,前置摄像头和/或后置摄像头可以接收外部的多媒体数据。每个前置摄像头和后置摄像头可以是一个固定的光学透镜系统或具有焦距和光学变焦能力。
音频组件2410被配置为输出和/或输入音频信号。例如,音频组件2410包括一个麦克风(MIC),当导航设备2400处于操作模式,如呼叫模式、记录模式和语音识别模式时,麦克风被配置为接收外部音频信号。所接收的音频信号可以被进一步存储在存储器2404或经由通信组件2416发送。在一些实施例中,音频组件2410还包括一个扬声器,用于输出音频信号。
I/O接口2412为处理组件2402和外围接口模块之间提供接口,上述外围接口模块可以是键盘,点击轮,按钮等。这些按钮可包括但不限于:主页按钮、音量按钮、启动按钮和锁定按钮。
传感器组件2414包括一个或多个传感器,用于为导航设备2400提供各个方面的状态评估。例如,传感器组件2414可以检测到导航设备2400的打开/关闭状态,组件的相对定位,例如所述组件为导航设备2400的显示器和小键盘,传感器组件2414还可以检测导航设备2400或导航设备2400一个组件的位置改变,用户与导航设备2400接触的存在或不存在,导航设备2400方位或加速/减速和导航设备2400的温度变化。传感器组件 2414可以包括接近传感器,被配置用来在没有任何的物理接触时检测附近物体的存在。传感器组件2414还可以包括光传感器,如CMOS或CCD图像传感器,用于在成像应用中使用。在一些实施例中,该传感器组件2414还可以包括加速度传感器,陀螺仪传感器,磁传感器,压力传感器或温度传感器。
通信组件2416被配置为便于导航设备2400和其他设备之间有线或无线方式的通信。导航设备2400可以接入基于通信标准的无线网络,如WiFi,2G或3G,或它们的组合。在一个示例性实施例中,通信组件2416经由广播信道接收来自外部广播管理系统的广播信号或广播相关信息。在一个示例性实施例中,所述通信组件2416还包括近场通信(NFC)模块,以促进短程通信。例如,在NFC模块可基于射频识别(RFID)技术,红外数据协会(IrDA)技术,超宽带(UWB)技术,蓝牙(BT)技术和其他技术来实现。
在示例性实施例中,导航设备2400可以被一个或多个应用专用集成电路(ASIC)、数字信号处理器(DSP)、数字信号处理设备(DSPD)、可编程逻辑器件(PLD)、现场可编程门阵列(FPGA)、控制器、微控制器、微处理器或其他电子元件实现,用于执行实施例一至实施例四中任一实施例所述的应用处理方法。
本申请实施例八提供的导航设备,可用于执行上述实施例一至实施例四中任一所述的应用处理方法,其具体的实现过程及有益效果与上述实施例类似,在此不再赘述。
本申请实施例九还提供一种交通工具控制设备。图25为本申请实施例九提供的一种交通工具控制设备的结构示意图。如图25所示,该交通工具控制设备2500可包括:机载指令输入设备2501、机载处理器2502和机载显示设备2503。
机载显示设备2503,用于显示导航界面。
机载指令输入设备2501,用于接收输入的应用调取指令。
机载处理器2502,耦合到该机载指令输入设备2501和机载显示设备2503,用于响应于该应用调取指令,触发该机载显示设备2503同时显示应用图标显示界面和该导航界面。
其中,该应用图标显示界面不遮挡该导航界面的主要显示区域。
可选的,机载指令输入设备2501,还用于接收针对该应用图标显示界面所输入的全屏操作指令。
机载处理器2502,还用于响应于该全屏操作指令,控制该机载显示设备2503全屏显示该应用图标显示界面。
可选的,机载指令输入设备2501,还用于采用如下任一方式接收该全屏操作指令:接收该应用图标显示界面上通过点击操作图标输入的该全屏操作指令;接收该应用图标显示界面上通过全屏手势操作输入的该全屏操作指令;接收通过语音输入的该全屏操作指令;接收通过控制按钮输入的该全屏操作指令。
可选的,机载处理器2502,还用于对该导航界面进行缩小处理,控制该机载显示设备2503同时显示该应用图标显示界面和缩小后的导航界面。
可选的,机载处理器2502,还用于对该导航界面在Y轴和Z轴的显示维度上进行缩小处理。
可选的,机载指令输入设备2501,还用于接收针对该缩小后的导航界面所输入的恢复操作指令;
机载处理器2502,还用于响应于该恢复操作指令,控制该机载显示设备2503重新显示该导航界面。
可选的,机载指令输入设备2501,还用于采用如下任一方式接收该恢复操作指令:接收该缩小后的导航界面上通过点击操作图标输入的该恢复操作指令;接收该缩小后的导航界面上通过全屏操作手势输入的该恢复操作指令;接收通过语音输入的该恢复操作指令;接收通过控制按钮输入的该恢复操作指令。
可选的,机载指令输入设备2501,还用于如下任一方式接收该应用调取指令:接收该导航界面上通过点击控制键输入的该应用调取指令;接收通过语音输入的该应用调取指令;接收该导航界面上通过操作手势输入的该应用调取指令;接收通过控制按钮输入的该应用调取指令。
可选的,机载指令输入设备2501,还用于接收针对该应用图标显示界面所输入的图标页面切换指令;
机载处理器2502,还用于响应于该图标页面切换指令,控制机载显示设备2503对该应用图标显示界面进行页面切换。
可选的,机载指令输入设备2501,还用于采用如下任一方式接收该图标页面切换指令:接收该应用图标显示界面上通过滑动操作手势输入的该图标页面切换指令;接收该应用图标显示界面上通过点击翻页按键输入的该图标页面切换指令;接收通过语音输入的该图标页面切换指令;接收通过控制按钮输入的该图标页面切换指令。
可选的,机载处理器2502,还用于检测该应用图标显示界面上输入的该滑动操作手势的滑动速度;根据该滑动速度确定该滑动操作手势是否为该图标页面切换指令所对应 的操作手势;若该滑动操作手势为该图标页面切换指令所对应的操作手势,则确定该滑动操作手势对应的指令为该图标页面切换指令。
可替代地,机载处理器2502,还用于检测该应用图标显示界面上输入的该滑动操作手势的滑动距离;根据该滑动距离确定该滑动操作手势是否为该图标页面切换指令对应的操作手势;若该滑动操作手势为该图标页面切换指令对应的操作手势,则确定该操作手势对应的指令为该图标页面切换指令。
可选的,机载指令输入设备2501,还用于接收针对该应用图标显示界面中的任一图标的打开操作指令;
机载处理器2502,还用于响应于该打开操作指令,控制机载显示设备2503显示该图标对应的应用界面。
可选的,机载指令输入设备2501,还用于接收针对该应用界面所输入的应用返回指令;
机载处理器2502,还用于响应于该应用返回指令,控制机载显示设备2503同时显示该应用图标显示界面和该导航界面。
可选的,机载处理器设备2501,还用于采用如下任一方式接收该应用返回指令:接收该应用界面上通过点击返回按键输入的该应用返回指令;接收通过语音输入的该应用返回指令;接收通过控制按钮输入的该应用返回指令。
可选的,机载指令输入设备2501可包括如下至少一个:中控台控制按键、方向盘控制按键、音接收设备、触摸感知设备等。
需要说明的是,机载指令输入设备2501可以为面向用户的指令输入设备,该交通工具控制设备2500还可包括面向设备的机载收发设备,以与移动终端、服务器或其他设备传输信息。该机载收发设备可包括:有线接口设备、无线接口设备等。该有线接口设备可以包括:通用串行总线(Universal Serial Bus,简称USB)接口设备或其他机载通信接口设备。该无线接口设备可以包括收发信机。
本申请实施例所涉及的“机载指令输入设备”、“机载输出设备”、“机载处理器”,可以是承载于车辆上的“车载指令输入设备”、“车载输出设备”以及“车载处理器”,还可以是承载于飞行器上的“机载输入设备”、“机载输出设备”、“机载处理器”,还可以是承载于其他类型交通工具上的设备,本申请实施例对“机载”的含义并不做限定。
本申请实施例九提供的交通工具的控制设备可执行上述任一实施例所述的应用处理 方法,其具体的实现过程及有益效果可参照上述实施例,在此不再赘述。
本申请实施例十还提供一种车载互联网操作系统。该车载互联网操作系统可以管理和控制上述图21或图22所述的导航设备的硬件或者本申请所涉及的交通工具控制设备的硬件以及本申请所涉及的软件资源的计算机程序,是直接运行在上述导航设备或交通工具控制设备上的系统软件。该操作系统是用户与上述导航设备或者交通工具的控制设备的接口,也是硬件与其它软件的接口。
本申请提供的车载互联网操作系统,可以与车辆上的其他模块或功能设备进行交互,以实现对相应模块或功能设备的智能化控制。
具体地,以上述实施例中的交通工具为车辆、该导航设备为车载导航设备为例,基于本申请提供的车载互联网操作系统以及车辆通信技术的发展,使得车辆不再独立于通信网络以外,车辆可以与服务器侧互相连接起来组成网络,从而形成车载互联网。该车载互联网系统可以提供语音通信服务、定位服务、导航服务、移动互联网接入、车辆紧急救援、车辆数据和管理服务、车载娱乐服务等。
图26为本申请实施例十提供的一种车载互联网操作系统的结构示意图。如图26所示,车载互联网操作系统2600可包括显示控制单元2601和输入控制单元2602。
显示控制单元2601,控制车载显示设备显示导航界面。
输入控制单元2602,控制车载指令输入设备获取应用调取指令。
显示控制单元2601,还响应于该应用调取指令,控制该车载显示设备同时显示应用图标显示界面和该导航界面;其中,该应用图标显示界面不遮挡该导航界面的主要显示区域。
进一步地,该车载互联网操作系统可以通过上述的显示控制单元2601和输入控制单元2602,或者在上述单元基础上结合其它单元,控制相应的组件以执行上述图2至图20所述的方法。
最后应说明的是:以上各实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述各实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的范围。

Claims (60)

  1. 一种应用处理方法,其特征在于,包括:
    在显示区域上显示导航界面;
    响应于接收到的应用调取指令,在所述显示区域上同时显示应用图标显示界面和所述导航界面;
    其中,所述应用图标显示界面不遮挡所述导航界面的主要显示区域。
  2. 根据权利要求1所述的方法,其特征在于,在所述显示区域上同时显示应用图标显示界面和所述导航界面之后,所述方法还包括:
    接收针对所述应用图标显示界面所输入的全屏操作指令;
    响应于所述全屏操作指令,在所述显示区域上对所述应用图标显示界面进行全屏显示。
  3. 根据权利要求2所述的方法,其特征在于,所述接收针对所述应用图标显示界面所输入的全屏操作指令,包括以下任一:
    接收所述应用图标显示界面上通过点击操作图标输入的所述全屏操作指令;
    接收所述应用图标显示界面上通过全屏手势操作输入的所述全屏操作指令;
    接收通过语音输入的所述全屏操作指令;
    接收通过控制按钮输入的所述全屏操作指令。
  4. 根据权利要求1所述的方法,其特征在于,所述在所述显示区域上同时显示应用图标显示界面和所述导航界面,包括:
    对所述导航界面进行缩小处理,
    在所述显示区域上同时显示所述应用图标显示界面和缩小后的导航界面。
  5. 根据权利要求4所述的方法,其特征在于,所述对所述导航界面进行缩小处理,包括:
    对所述导航界面在Y轴和Z轴的显示维度上进行缩小处理。
  6. 根据权利要求4所述的方法,其特征在于,所述在所述显示区域上同时显示所述应用图标显示界面和缩小后的导航界面之后,所述方法还包括:
    接收针对所述缩小后的导航界面所输入的恢复操作指令;
    响应于所述恢复操作指令,在所述显示区域上对所述导航界面重新进行显示。
  7. 根据权利要求6所述的方法,其特征在于,所述接收针对所述缩小后的导航界面 所输入的恢复操作指令,包括以下任一:
    接收所述缩小后的导航界面上通过点击操作图标输入的所述恢复操作指令;
    接收所述缩小后的导航界面上通过全屏操作手势输入的所述恢复操作指令;
    接收通过语音输入的所述恢复操作指令;
    接收通过控制按钮输入的所述恢复操作指令。
  8. 根据权利要求1-7中任一项所述的方法,其特征在于,所述响应于接收到的应用调取指令,在所述显示区域上同时显示应用图标显示界面和所述导航界面之前,所述方法还包括:
    采用以下任一方式接收所述应用调取指令:
    接收所述导航界面上通过点击控制键输入的所述应用调取指令;
    接收通过语音输入的所述应用调取指令;
    接收所述导航界面上通过操作手势输入的所述应用调取指令;
    接收通过控制按钮输入的所述应用调取指令。
  9. 根据权利要求1-7中任一项所述的方法,其特征在于,所述在所述显示区域上同时显示所述应用图标显示界面和所述导航界面之后,所述方法还包括:
    接收针对所述应用图标显示界面所输入的图标页面切换指令;
    响应于所述图标页面切换指令,对所述应用图标显示界面进行页面切换。
  10. 根据权利要求9所述的方法,其特征在于,所述接收针对所述应用图标显示界面所输入的图标页面切换指令,包括以下任一:
    接收所述应用图标显示界面上通过滑动操作手势输入的所述图标页面切换指令;
    接收所述应用图标显示界面上通过点击翻页按键输入的所述图标页面切换指令;
    接收通过语音输入的所述图标页面切换指令;
    接收通过控制按钮输入的所述图标页面切换指令。
  11. 根据权利要求10所述的方法,其特征在于,所述接收所述应用图标显示界面上通过滑动操作手势输入的所述图标页面切换指令,包括:
    检测所述应用图标显示界面上输入的所述滑动操作手势的滑动速度;
    根据所述滑动速度确定所述滑动操作手势是否为所述图标页面切换指令所对应的操作手势;
    若所述滑动操作手势为所述图标页面切换指令所对应的操作手势,则确定所述滑动操作手势对应的指令为所述图标页面切换指令。
  12. 根据权利要求10所述的方法,其特征在于,所述接收所述应用图标显示界面上通过滑动操作手势输入的所述图标页面切换指令,包括:
    检测所述应用图标显示界面上输入的所述滑动操作手势的滑动距离;
    根据所述滑动距离确定所述滑动操作手势是否为所述图标页面切换指令对应的操作手势;
    若所述滑动操作手势为所述图标页面切换指令对应的操作手势,则确定所述操作手势对应的指令为所述图标页面切换指令。
  13. 根据权利要求1-7中任一项所述的方法,其特征在于,所述在所述显示区域上同时显示所述应用图标显示界面和所述导航界面之后,所述方法还包括:
    接收针对所述应用图标显示界面中的任一图标的打开操作指令;
    响应于所述打开操作指令,在所述显示区域上显示所述图标对应的应用界面。
  14. 根据权利要求13所述的方法,其特征在于,在所述显示区域上显示所述图标对应的应用界面包括:
    在所述显示区域上全屏显示所述应用界面。
  15. 根据权利要求13所述的方法,其特征在于,在所述显示区域上显示所述图标对应的应用界面之后,所述方法还包括:
    接收针对所述应用界面所输入的应用返回指令;
    响应于所述应用返回指令,在所述显示区域上同时显示所述应用图标显示界面和所述导航界面。
  16. 根据权利要求15所述的方法,其特征在于,所述接收针对所述应用界面所输入的应用返回指令,包括以下任一:
    接收所述应用界面上通过点击返回按键输入的所述应用返回指令;
    接收通过语音输入的所述应用返回指令;
    接收通过控制按钮输入的所述应用返回指令。
  17. 根据权利要求1-7中任一项所述的方法,其特征在于,所述导航界面的主要显示区域包括:当前位置所在区域、用户设定位置所在的区域和所述导航界面的搜索框中至少一个。
  18. 一种导航设备,其特征在于,包括:
    显示处理模块,用于在显示区域上显示导航界面;
    接收模块,用于接收输入的应用调取指令;
    所述显示处理模块,还用于响应于所述应用调取指令,在所述显示区域上同时显示应用图标显示界面和所述导航界面;其中,所述应用图标显示界面不遮挡所述导航界面的主要显示区域。
  19. 根据权利要求18所述的导航设备,其特征在于,
    所述接收模块,还用于所述显示处理模块在所述显示区域上同时显示所述应用图标显示界面和所述导航界面之后,接收针对所述应用图标显示界面所输入的全屏操作指令;
    所述显示处理模块,还用于响应于所述全屏操作指令,在所述显示区域上对所述应用图标显示界面进行全屏显示。
  20. 根据权利要求19所述的导航设备,其特征在于,
    所述接收模块,还用于通过以下任一方式接收所述全屏操作指令:
    接收所述应用图标显示界面上通过点击操作图标输入的所述全屏操作指令;
    接收所述应用图标显示界面上通过全屏手势操作输入的全屏操作指令;
    接收通过语音输入的所述全屏操作指令;
    接收通过控制按钮输入的所述全屏操作指令。
  21. 根据权利要求18所述的导航设备,其特征在于,
    所述显示处理模块,还用于对所述导航界面进行缩小处理,并在所述显示区域上同时显示所述应用图标显示界面和缩小后的导航界面。
  22. 根据权利要求21所述的导航设备,其特征在于,
    所述显示处理模块,还用于对所述导航界面在Y轴和Z轴的显示维度上进行缩小处理。
  23. 根据权利要求21所述的导航设备,其特征在于,
    所述接收模块,还用于在所述显示处理模块在所述显示区域上同时显示所述应用图标显示界面和所述缩小后的导航界面之后,接收针对所述缩小后的导航界面所输入的恢复操作指令;
    所述显示处理模块,还用于响应于所述恢复操作指令,在所述显示区域上对所述导航界面重新进行显示。
  24. 根据权利要求23所述的导航设备,其特征在于,
    所述接收模块,还用于通过如下任一方式接收所述恢复操作指令:接收所述缩小后的导航界面上通过点击操作图标输入的所述恢复操作指令;接收所述缩小后的导航界面 上通过全屏操作手势输入的所述恢复操作指令;接收通过语音输入的所述恢复操作指令;接收通过控制按钮输入的所述恢复操作指令。
  25. 根据权利要求18-24中任一项所述的导航设备,其特征在于,
    所述接收模块,还用于通过如下任一方式接收所述应用调取指令:接收所述导航界面上通过点击控制键输入的所述应用调取指令;接收所述导航界面上通过操作手势输入的应用调取指令;接收通过语音输入的所述应用调取指令;接收通过控制按钮输入的所述应用调取指令。
  26. 根据权利要求18-24中任一项所述的导航设备,其特征在于,
    所述接收模块,还用于在所述显示处理模块在所述显示区域上同时显示所述应用图标显示界面和所述导航界面之后,接收针对所述应用图标显示界面所输入的图标页面切换指令;
    所述显示处理模块,还用于响应于所述图标页面切换指令,对所述应用图标显示界面进行页面切换。
  27. 根据权利要求26所述的导航设备,其特征在于,
    所述接收模块,还用于通过如下任一方式接收所述图标页面切换指令:接收所述应用图标显示界面上通过滑动操作手势输入的所述图标页面切换指令;接收所述应用图标显示界面上通过点击翻页按键输入的所述图标页面切换指令;接收通过语音输入的所述图标页面切换指令;接收通过控制按钮输入的所述图标页面切换指令。
  28. 根据权利要求27所述的导航设备,其特征在于,所述接收模块包括:
    第一检测单元,用于检测所述应用图标显示界面上输入的所述滑动操作手势的滑动速度;
    第二确定单元,用于根据所述滑动速度确定所述滑动操作手势是否为所述图标页面切换指令所对应的操作手势;若所述滑动操作手势为所述图标页面切换指令所对应的操作手势,则确定所述滑动操作手势对应的指令为所述图标页面切换指令。
  29. 根据权利要求27所述的导航设备,其特征在于,所述接收模块包括:
    第二检测单元,用于检测所述应用图标显示界面上输入的所述滑动操作手势的滑动距离;
    第二确定单元,用于根据所述滑动距离确定所述滑动操作手势是否为所述图标页面切换指令对应的操作手势;若所述滑动操作手势为所述图标页面切换指令对应的操作手势,则确定所述滑动操作手势对应的指令为所述图标页面切换指令。
  30. 根据权利要求18-24中任一项所述的导航设备,其特征在于,
    所述接收模块,还用于在所述显示处理模块在所述显示区域上同时显示所述应用图标显示界面和所述导航界面之后,接收针对所述应用图标显示界面中的任一图标的打开操作指令;
    所述显示处理模块,还用于响应于所述打开操作指令,在所述显示区域上显示所述图标对应的应用界面。
  31. 根据权利要求30所述的导航设备,其特征在于,
    所述显示处理模块,还用于在所述显示区域上全屏显示所述应用界面。
  32. 根据权利要求30所述的导航设备,其特征在于,
    所述接收模块,还用于在所述显示处理模块在所述显示区域上显示所述图标对应的应用界面之后,接收针对所述应用界面所输入的应用返回指令;
    所述显示处理模块,还用于响应于所述应用返回指令,在所述显示区域上同时显示所述应用图标显示界面和所述导航界面。
  33. 根据权利要求30所述的导航设备,其特征在于,
    所述接收模块,还用于通过如下任一方式接收所述应用返回指令:接收所述应用界面上通过点击返回按键输入的所述应用返回指令;接收通过语音输入的所述应用返回指令;接收通过控制按钮输入的所述应用返回指令。
  34. 根据权利要求18-24中任一项所述的导航设备,其特征在于,所述导航界面的主要显示区域包括:当前位置所在区域、用户设定位置所在的区域和所述导航界面的搜索框中至少一个。
  35. 一种导航设备,其特征在于,包括:输入设备、处理器和显示设备;
    所述显示设备,用于显示导航界面;
    所述输入设备,用于接收输入的应用调取指令;
    所述处理器,耦合到所述输入设备和所述显示设备,用于响应于所述应用调取指令,控制所述显示设备同时显示应用图标显示界面和所述导航界面;
    其中,所述应用图标显示界面不遮挡所述导航界面的主要显示区域。
  36. 根据权利要求35所述的导航设备,其特征在于,
    所述输入设备,还用于接收针对所述应用图标显示界面所输入的全屏操作指令;
    所述处理器,还用于响应于所述全屏操作指令,控制所述显示设备全屏显示所述应用图标显示界面。
  37. 根据权利要求35所述的导航设备,其特征在于,
    所述处理器,还用于对所述导航界面进行缩小处理,控制所述显示设备同时显示所述应用图标显示界面和缩小后的导航界面。
  38. 根据权利要求37所述的导航设备,其特征在于,
    所述处理器,还用于对所述导航界面在Y轴和Z轴的显示维度上进行缩小处理。
  39. 根据权利要求37所述的导航设备,其特征在于,
    所述输入设备,还用于接收针对所述缩小后的导航界面所输入的恢复操作指令;
    所述处理器,还用于响应于所述恢复操作指令,控制所述显示设备重新显示所述导航界面。
  40. 根据权利要求35-39中任一项所述的导航设备,其特征在于,
    所述输入设备,还用于接收针对所述应用图标显示界面所输入的图标页面切换指令;
    所述处理器,还用于响应于所述图标页面切换指令,控制所述显示设备对所述应用图标显示界面进行页面切换。
  41. 根据权利要求35-39中任一项所述的导航设备,其特征在于,
    所述输入设备,还用于接收针对所述应用图标显示界面中的任一图标的打开操作指令;
    所述处理器,还用于响应于所述打开操作指令,控制所述显示设备显示所述图标对应的应用界面。
  42. 根据权利要求41所述的导航设备,其特征在于,
    所述输入设备,还用于接收针对所述应用界面所输入的应用返回指令;
    所述处理器,还用于响应于所述应用返回指令,控制所述显示设备同时显示所述应用图标显示界面和所述导航界面。
  43. 一种界面系统,其特征在于,包括:
    显示组件,用于显示导航界面;
    处理器,用于响应于接收到的应用调取指令,触发所述显示组件同时显示应用图标显示界面和所述导航界面;
    其中,所述应用图标显示界面不遮挡所述导航界面的主要显示区域。
  44. 根据权利要求43所述的界面系统,其特征在于,
    所述处理器,还用于响应于接收到的针对所述应用图标显示界面的全屏操作指令, 触发所述显示组件对所述应用图标显示界面进行全屏显示。
  45. 根据权利要求44所述的界面系统,其特征在于,
    所述处理器,还用于对所述导航界面进行缩小处理,并触发所述显示组件同时显示所述应用图标显示界面和缩小后的导航界面。
  46. 根据权利要求45所述的界面系统,其特征在于,
    所述处理器,还用于对所述导航界面在Y轴和Z轴的显示维度上进行缩小处理。
  47. 根据权利要求45所述的界面系统,其特征在于,
    所述处理器,还用于响应于接收到的针对所述缩小后的导航界面的恢复操作指令,触发所述显示组件对所述导航界面重新进行显示。
  48. 根据权利要求43-47中任一项所述的界面系统,其特征在于,
    所述处理器,还用于响应于接收到的针对所述应用图标显示界面的图标页面切换指令,触发所述显示组件对所述应用图标显示界面进行页面切换。
  49. 根据权利要求43-47中任一项所述的界面系统,其特征在于,
    所述处理器,还用于响应于接收到的针对所述应用图标显示界面中的任一图标的打开操作指令,触发所述显示组件显示所述图标对应的应用界面。
  50. 根据权利要求49所述的界面系统,其特征在于,
    所述处理器,还用于响应于接收到的针对所述应用界面的应用返回指令,触发所述显示组件同时显示所述应用图标显示界面和所述导航界面。
  51. 一种交通工具控制设备,其特征在于,包括:机载指令输入设备、机载处理器和机载显示设备;
    所述机载显示设备,用于显示导航界面;
    所述机载指令输入设备,用于接收输入的应用调取指令;
    所述机载处理器,耦合到所述机载指令输入设备和所述机载显示设备,用于响应于所述应用调取指令,触发所述机载显示设备同时显示应用图标显示界面和所述导航界面;
    其中,所述应用图标显示界面不遮挡所述导航界面的主要显示区域。
  52. 根据权利要求51所述的交通工具控制设备,其特征在于,
    所述机载指令输入设备,还用于接收针对所述应用图标显示界面所输入的全屏操作指令;
    所述机载处理器,还用于响应于所述全屏操作指令,控制所述机载显示设备全屏显 示所述应用图标显示界面。
  53. 根据权利要求51所述的交通工具控制设备,其特征在于,
    所述机载处理器,还用于对所述导航界面进行缩小处理,控制所述机载显示设备同时显示所述应用图标显示界面和缩小后的导航界面。
  54. 根据权利要求53所述的交通工具控制设备,其特征在于,
    所述机载处理器,还用于对所述导航界面在Y轴和Z轴的显示维度上进行缩小处理。
  55. 根据权利要求53所述的交通工具控制设备,其特征在于,
    所述机载指令输入设备,还用于接收针对所述缩小后的导航界面所输入的恢复操作指令;
    所述机载处理器,还用于响应于所述恢复操作指令,控制所述机载显示设备重新显示所述导航界面。
  56. 根据权利要求51-55中任一项所述的交通工具控制设备,其特征在于,
    所述机载指令输入设备,还用于接收针对所述应用图标显示界面所输入的图标页面切换指令;
    所述机载处理器,还用于响应于所述图标页面切换指令,控制所述机载显示设备对所述应用图标显示界面进行页面切换。
  57. 根据权利要求51-55中任一项所述的交通工具控制设备,其特征在于,
    所述机载指令输入设备,还用于接收针对所述应用图标显示界面中的任一图标的打开操作指令;
    所述机载处理器,还用于响应于所述打开操作指令,控制所述机载显示设备显示所述图标对应的应用界面。
  58. 根据权利要求57所述的交通工具控制设备,其特征在于,
    所述机载指令输入设备,还用于接收针对所述应用界面所输入的应用返回指令;
    所述机载处理器,还用于响应于所述应用返回指令,控制所述机载显示设备同时显示所述应用图标显示界面和所述导航界面。
  59. 根据权利要求51-55中任一项所述的交通工具控制设备,其特征在于,所述机载指令输入设备包括如下至少一个:
    中控台控制按键;
    方向盘控制按键;
    语音接收设备;
    触摸感知设备。
  60. 一种车载互联网操作系统,其特征在于,包括:
    显示控制单元,控制车载显示设备显示导航界面;
    输入控制单元,控制车载指令输入设备获取应用调取指令;
    所述显示控制单元,还响应于所述应用调取指令,控制所述车载显示设备同时显示应用图标显示界面和所述导航界面;其中,所述应用图标显示界面不遮挡所述导航界面的主要显示区域。
PCT/CN2017/080029 2016-04-20 2017-04-11 应用处理方法、设备、界面系统、控制设备及操作系统 WO2017181868A1 (zh)

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