Page switching method, vehicle-mounted terminal and vehicle
By receiving and responding to user gestures on the vehicle terminal, controlling the change of the page lens perspective, and achieving coherent switching of the page, solving the problems of difficult page switching operations and poor user experience in the prior art, and improving the fluency and convenience of page switching.
Patent Information
- Application Number
- CN202311494620.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-09
- Publication Date
- 2025-05-13
AI Technical Summary
The page switching method of existing vehicle terminals requires users to click on controls, which increases the difficulty of users' operation and affects the user experience.
By receiving the user's gesture input on the current page, responding to the gesture and controlling the change in the lens viewing angle of the corresponding page, the page can be switched coherently. For example, switching pages by zooming out or zooming in gestures to achieve smooth and coherent page switching effects.
It reduces the difficulty of users' operation, improves the smoothness and convenience of page switching, improves the user's operation experience, and provides a visual effect with a sense of technology.
Smart Images

Figure CN119987597A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of vehicle control technology, and in particular to a page switching method, a vehicle-mounted terminal and a vehicle. Background Art
[0002] A smart car usually includes an on-board terminal, and a display page of the on-board terminal can display a variety of vehicle machine pages, such as a wallpaper page, a map page, and a 3D (Three-Dimensional) car model page.
[0003] On the vehicle terminal, the user is allowed to switch the above-mentioned multiple pages according to needs. For example, the user can perform a pull-down operation on the current page to pop up the control center, which includes controls for entering different page modes. The user controls the vehicle terminal to switch page modes by clicking different controls. Alternatively, controls for entering different page modes are set on the sidebar of the current page, and the user controls the vehicle terminal to switch page modes by clicking different controls.
[0004] However, no matter which of the above page switching methods is used, the user is required to click on different controls to switch between the pages, which not only increases the difficulty of the user's operation, but also affects the user's experience. Summary of the invention
[0005] The embodiments of the present application provide a page switching method, a vehicle-mounted terminal and a vehicle, which can perform continuous page switching operations according to user gestures, reduce the user's operation difficulty, enhance the fluency, continuity and convenience of page switching operations on the vehicle-mounted terminal, and improve the user's operation experience.
[0006] To achieve the above objectives, the embodiments of the present application adopt the following technical solutions:
[0007] In a first aspect, a page switching method is provided, in which a first gesture input by a user on a first page currently displayed is first received; thereafter, in response to the first gesture, the lens perspective corresponding to the first page is controlled to change until a second page associated with the first page and the first gesture is displayed.
[0008] In the above method, the displayed page can be changed according to the gesture operation, which visually improves the smoothness and continuity of page switching. In addition, the user can achieve the purpose of page switching through gesture operation without clicking other controls, which improves the convenience of user operation and thus enhances the user's operating experience.
[0009] In an implementation method of the first aspect, the above-mentioned first gesture is triggered by at least three fingers, specifically, including a zoom-out gesture; then, in response to the first gesture, the lens angle of view corresponding to the first page is controlled to change until the second page associated with the first page and the first gesture is displayed, specifically including: in response to the zoom-out gesture, the lens angle of view corresponding to the first page is controlled to zoom out until the second page associated with the first page and the zoom-out gesture is displayed.
[0010] In this implementation, when the first gesture received from the user is a zoom-out gesture triggered by at least three fingers, the lens angle corresponding to the first page can be continuously zoomed out, so that the content of the first page is also correspondingly zoomed out, and the scene is switched to the second page through a visual "one-shot" transition effect, thereby achieving smooth switching between the first and second pages, giving the user a visual experience with a sense of technology and characteristics.
[0011] In an implementation method of the first aspect, the first page is a wallpaper page displayed on the vehicle terminal inside the 3D car model, and the second page is a 3D car model page, wherein the 3D car model page is used to display the above-mentioned 3D car model; then, when the first gesture is a zoom-out gesture, the lens viewing angle corresponding to the first page is controlled to zoom out until the second page associated with the first page and the zoom-out gesture is displayed, specifically including: controlling the lens viewing angle corresponding to the wallpaper page to zoom out from the wallpaper page inside the 3D car model to the outside of the 3D car model, and displaying the 3D car model page.
[0012] In this implementation, the wallpaper page exists inside the 3D car model. When a zoom-out gesture is received, the camera angle zooms out, continuously zooming out from the inside of the 3D car model to the outside of the 3D car model, achieving a visual "crossing effect" and a "one-shot" from the inside of the 3D car model to the outside of the 3D car model, ensuring the continuity of switching from the wallpaper page to the 3D car model page.
[0013] In an implementation method of the first aspect, the first page is a 3D car model page, and the second page is a map page, wherein the 3D car model page is used to display the 3D car model, and the map page is used to display the position of the 3D car model on the map; then, when the first gesture is a zoom-out gesture, the lens viewing angle corresponding to the first page is controlled to zoom out until the second page associated with the first page and the zoom-out gesture is displayed, specifically including: controlling the lens viewing angle corresponding to the 3D car model page to zoom out from the 3D car model page to the map where the 3D car model is located, and displaying the map page.
[0014] In this implementation, when a zoom-out gesture is received, the lens angle of the 3D car model is zoomed out and displayed on the map, and finally the map page is presented, ensuring the continuity of switching from the 3D car model page to the map page.
[0015] In an implementation manner of the first aspect, the above-mentioned first gesture is triggered by at least three fingers, specifically, including a zoom-in gesture; then, in response to the first gesture, the lens angle of view corresponding to the first page is controlled to change until the second page associated with the first page and the first gesture is displayed, specifically including: in response to the zoom-in gesture, the lens angle of view corresponding to the first page is controlled to zoom in until the second page associated with the first page and the zoom-in gesture is displayed.
[0016] In this implementation, when the first gesture received from the user input is a zoom-in gesture triggered by at least three fingers, the content of the first page can be continuously zoomed in, and switched to the second page through a visual "one-shot" transition effect, thereby achieving smooth switching between the first page and the second page, giving the user a visual experience with a sense of technology and characteristics.
[0017] In an implementation method of the first aspect, the first page is a 3D car model page for displaying a 3D car model, and the second page is a wallpaper page displayed on a vehicle terminal inside the 3D car model; then, when the first gesture is a zoom gesture, the lens angle of view corresponding to the first page is controlled to zoom in until the second page associated with the first page and the zoom gesture is displayed, specifically including: controlling the lens angle of view corresponding to the 3D car model page to zoom in from the 3D car model page to the wallpaper page inside the 3D car model, and displaying the wallpaper page.
[0018] In this implementation, the wallpaper page is displayed on the in-vehicle terminal inside the 3D car model. When a zoom-in gesture is received, the lens angle of the 3D car model is enlarged, and it is continuously enlarged from the outside of the 3D car model to the inside of the 3D car model, achieving a visual "crossing effect" and a "one-shot" from the outside of the 3D car model to the inside of the 3D car model, ensuring the continuity of switching from the 3D car model page to the wallpaper page.
[0019] In an implementation method of the first aspect, the first page is a map page, and the second page is a 3D car model page, wherein the 3D car model page is used to display the 3D car model, and the map page is used to display the position of the 3D car model on the map; then, when the first gesture is a zoom-in gesture, the lens angle corresponding to the map page is controlled to zoom in until the second page associated with the first page and the zoom-in gesture is displayed, specifically including: controlling the lens angle corresponding to the map page to zoom in from the map page to the outside of the 3D car model, and displaying the 3D car model page.
[0020] In this implementation, when a zoom-in gesture is received, the camera angle is magnified, the 3D car model on the original map page is gradually enlarged, and finally a 3D car model page is presented, ensuring the continuity of switching from the wallpaper page to the 3D car model page.
[0021] It can be understood that the above-mentioned zoom-in gesture or zoom-out gesture triggered by at least three fingers can be triggered by three fingers, or by four fingers, or by five fingers.
[0022] In an implementation method of the first aspect, the above-mentioned first gesture is triggered by two fingers, specifically, including a zoom-out gesture; then, in response to the first gesture, the lens angle of view corresponding to the first page is controlled to change until the second page associated with the first page and the first gesture is displayed, specifically including: in response to the zoom-out gesture, controlling the lens angle of view corresponding to the first page to zoom out; when the degree of zoom-out of the lens angle of view corresponding to the first page is equal to a first threshold, displaying the second page associated with the first page and the zoom-out gesture.
[0023] In this implementation, when the first gesture received from the user is a two-finger zoom-out gesture, the content of the first page can be continuously zoomed out, and when the zoom-out degree reaches a first threshold, the second page is displayed, thereby achieving smooth switching between the first page and the second page.
[0024] In addition, by setting the first threshold, the mutual influence between the operation of switching pages by pinching out with two fingers and the operation of pinching out the page content can be avoided. That is, when the zoom-out degree of the lens angle of view of the first page does not reach the first threshold, the zoom-out operation of the first page content can be implemented, and when the zoom-out degree of the lens angle of view of the first page reaches the first threshold, the switching between the first page and the second page can be implemented.
[0025] In an implementation manner of the first aspect, the above-mentioned first gesture is triggered by two fingers, specifically, including a zoom-in gesture; then, in response to the first gesture, the lens angle of view corresponding to the first page is controlled to change until the second page associated with the first page and the first gesture is displayed, specifically including: in response to the zoom-in gesture, controlling the lens angle of view corresponding to the first page to zoom in; when the degree of zooming in of the lens angle of view corresponding to the first page is equal to a first threshold, displaying the second page associated with the first page and the zoom-in gesture.
[0026] In this implementation, when the first gesture received from the user is a two-finger zoom-in gesture, the content of the first page can be continuously zoomed in, and when the zoom level reaches a second threshold, the second page is displayed, thereby achieving smooth switching between the first page and the second page.
[0027] In addition, by setting the second threshold, the mutual influence between the operation of switching pages by pinching in with two fingers and the operation of pinching in with two fingers to zoom in on the page content can be avoided. That is, when the magnification degree of the lens angle of view of the first page does not reach the second threshold, the zooming in operation of the first page content can be implemented, and when the magnification degree of the lens angle of view of the first page reaches the second threshold, the switching between the first page and the second page can be implemented.
[0028] In a second aspect, a vehicle-mounted terminal is provided, comprising a memory and one or more processors; the memory is coupled to the processor; wherein computer program code is stored in the memory, and the computer program code comprises computer instructions, and when the computer instructions are executed by the processor, the vehicle-mounted terminal executes a page switching method as in the first aspect and any implementation thereof.
[0029] According to a third aspect, a vehicle is provided, comprising the vehicle-mounted terminal as described in the second aspect.
[0030] In a fourth aspect, a computer-readable storage medium is provided, comprising computer instructions. When the computer instructions are executed on a vehicle-mounted terminal, the vehicle-mounted terminal executes the page switching method in the first aspect and any implementation thereof.
[0031] In a fifth aspect, a computer program product is provided. When the computer program product is run on a computer, the computer is caused to execute the page switching method in the first aspect and any implementation manner thereof.
[0032] It can be understood that the beneficial effects that can be achieved by the vehicle-mounted terminal described in the second aspect, the vehicle described in the third aspect, the computer-readable storage medium described in the fourth aspect, and the computer program product described in the fifth aspect can be referred to the beneficial effects in the first aspect and any possible design method thereof, and will not be repeated here. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 A schematic diagram of a method for switching pages in a pull-down control center in the prior art;
[0034] Figure 2 A schematic diagram of a method for switching pages in a sidebar in the prior art;
[0035] Figure 3 A schematic diagram of a vehicle including a vehicle-mounted terminal is shown in an embodiment of the present application;
[0036] Figure 4 Schematic diagram of the page that can be displayed by the vehicle terminal shown in the embodiment of the present application
[0037] Figure 5 A schematic diagram of the conditions required for switching different gestures shown in an embodiment of the present application;
[0038] Figure 6 A schematic diagram of a page switching method according to an embodiment of the present application;
[0039] Figure 7 A schematic diagram of a pinch-to-zoom gesture triggered by two fingers according to an embodiment of the present application;
[0040] Figure 8This is a schematic diagram of a zoom-in or zoom-out gesture triggered by three fingers according to an embodiment of the present application;
[0041] Fig. 9 A schematic diagram of optional positions and directions of a sliding gesture according to an embodiment of the present application;
[0042] Fig.10 Schematic diagram of page switching shown in the embodiment of the present application Figure 1 ;
[0043] Fig.11 Schematic diagram of page switching shown in the embodiment of the present application Figure 2 ;
[0044] Fig.12 Schematic diagram of page switching shown in the embodiment of the present application Figure 3 ;
[0045] Fig.13 Schematic diagram of page switching shown in the embodiment of the present application Figure 4 ;
[0046] Fig.14 Schematic diagram of page switching shown in the embodiment of the present application Figure 5 ;
[0047] Fig.15 Schematic diagram of page switching shown in the embodiment of the present application Figure 6 ;
[0048] Fig.16 Schematic diagram of page switching shown in the embodiment of the present application Figure 7 ;
[0049] Fig.17 Schematic diagram of page switching shown in the embodiment of the present application Figure 8 ;
[0050] Fig.18 Schematic diagram of page switching shown in the embodiment of the present application Figure 9 ;
[0051] Fig.19 This is a schematic diagram of the structure of the vehicle-mounted terminal shown in an embodiment of the present application. DETAILED DESCRIPTION
[0052] The technical solutions in the embodiments of the present application will be described below in conjunction with the drawings in the embodiments of the present application. Among them, in the description of the present application, unless otherwise specified, " / " indicates that the objects associated before and after are in an "or" relationship, for example, A / B can represent A or B; "and / or" in the present application is only a description of the association relationship of the associated objects, indicating that there can be three relationships, for example, A and / or B, which can represent: A exists alone, A and B exist at the same time, and B exists alone, where A and B can be singular or plural. And, in the description of the present application, unless otherwise specified, "multiple" refers to two or more than two. "At least one of the following" or similar expressions refers to any combination of these items, including any combination of single items or plural items. For example, at least one of a, b, or c can represent: a, b, c, ab, ac, bc, or abc, where a, b, c can be single or multiple. In addition, in order to facilitate the clear description of the technical solutions of the embodiments of the present application, in the embodiments of the present application, the words "first", "second" and the like are used to distinguish the same items or similar items with substantially the same functions and effects. Those skilled in the art will understand that the words "first", "second" and the like do not limit the quantity and execution order, and the words "first", "second" and the like do not necessarily limit the differences. At the same time, in the embodiments of the present application, the words "exemplary" or "for example" are used to indicate examples, illustrations or explanations. Any embodiment or design described as "exemplary" or "for example" in the embodiments of the present application should not be interpreted as being more preferred or more advantageous than other embodiments or design solutions. Specifically, the use of words such as "exemplary" or "for example" is intended to present related concepts in a concrete manner for ease of understanding.
[0053] In addition, the business scenarios described in the embodiments of the present application are intended to more clearly illustrate the technical solutions of the embodiments of the present application, and do not constitute a limitation on the technical solutions provided in the embodiments of the present application. A person of ordinary skill in the art can appreciate that with the emergence of new business scenarios, the technical solutions provided in the embodiments of the present application are also applicable to similar technical problems.
[0054] The vehicle terminal system (or vehicle terminal) on the vehicle is used to display vehicle information and entertainment system content. The display page of the vehicle terminal can display a variety of vehicle pages, such as wallpaper page, map page and 3D car model page.
[0055] Among them, the wallpaper page uses wallpaper as a decorative background to provide an aesthetic experience for the vehicle terminal, and other functional operations are superimposed on it. The map page uses the map and navigation as the functional background to facilitate users to quickly start driving and navigation, and other functional operations are arranged around the map. The 3D car model page uses the 3D environment and 3D vehicle model (or 3D car model) to occupy the main display area of the vehicle terminal page. Users can directly use single-finger rotation, double-finger zoom and other operations to view the 3D car model, or click on the specified part of the 3D car model to control the corresponding hardware, providing users with a technological operating experience.
[0056] These page modes have their own advantages and convenient use scenarios. Currently, more and more vehicle terminals are compatible with multiple page modes at the same time and allow users to switch as needed. Common page switching methods include clicking the controls corresponding to the page mode to switch between page modes. In one example, the controls corresponding to the page mode can be displayed on the control center page. Users can click the controls representing different pages on the control center page to control the vehicle terminal screen to display the corresponding page. For example, the control center page can be viewed at the top of the page. Figure 1 As shown, control 101 is a live desktop control. When a user clicks control 101, the vehicle terminal can display a 3D car model page. Control 102 is a map desktop control. When a user clicks control 102, the vehicle terminal can display a map page. Control 103 is a wallpaper desktop control. When a user clicks control 103, the vehicle terminal can display a wallpaper page.
[0057] In another example, the controls corresponding to the page mode can be displayed in a zoomable manner in a control bar, such as in a sidebar of the display interface, and the user can click on the controls representing different pages on the sidebar to control the vehicle terminal screen to display the corresponding page. Figure 2 As shown in (a), when the current page is a 3D car model page, the control 201 on the sidebar indicates switching to a map page. Clicking the control 201 switches to, for example, Figure 2 See the page shown in (b) in Figure 2 As shown in (b), when the current page is a map page, the control 202 on the sidebar indicates switching to the 3D car model page. After clicking the control 202, the page is switched to, for example, Figure 2 The page shown in (a) in .
[0058] The above page switching methods all require users to switch to the corresponding page by clicking on different controls, which not only increases the difficulty of user operation, but also affects the user experience. For example, if the current page is a 3D car model page, clicking on the control switch cannot form an integrated experience with other 3D car model operation gestures. Users need to remember the position of the switch control separately, and when operating, they need to leave their fingers in the main control area of the 3D car model, and pull down the control center or sidebar to find the corresponding control to click, and cannot complete the switch in the main operation area coherently and smoothly.
[0059] A page switching method is provided in an embodiment of the present application. First, a first gesture input by a user on a first page currently displayed is received. Then, in response to the first gesture, the lens perspective corresponding to the first page is controlled to change until a second page associated with the first page and the first gesture is displayed.
[0060] In the above method, the displayed page can be changed according to the gesture operation, which visually improves the smoothness and continuity of page switching. In addition, the user can achieve the purpose of page switching through gesture operation without clicking other controls, which improves the convenience of user operation and thus enhances the user's operating experience.
[0061] The page switching method provided in the embodiment of the present application can be applied to vehicles. Figure 3 As shown, the vehicle may include structures such as a steering wheel 301 , a dashboard 302 , a shift knob 303 , and a seat 304 . Exemplarily, the vehicle may also include an in-vehicle terminal 305 .
[0062] In some possible application scenarios, the vehicle first displays a first page, such as a wallpaper page, a 3D car model page, a map page, a globe page, etc., through the vehicle terminal 305. When the vehicle receives a first gesture input by the user on the currently displayed first page through the vehicle terminal 305, the vehicle responds to the first gesture and controls the change of the lens angle corresponding to the first page until a second page associated with the first page and the first gesture is displayed.
[0063] The wallpaper page is used to display the background image of the screen, making the content displayed on the screen more beautiful and providing users with a better user experience. Figure 4 As shown in (a) in .
[0064] The 3D car model page is used to display or show the 3D car model corresponding to the current vehicle, that is, the 3D model of the vehicle, and the user can also move and rotate the 3D car model by sliding, clicking, etc. on the 3D car model page, or enter the interior of the 3D car model, so as to view the external and internal simulated parts (or virtual parts) of the 3D car model from different perspectives or angles. Figure 4 As shown in (b) in .
[0065] The simulated parts included in the 3D car model correspond to the real parts of the vehicle, for example Figure 3 As shown, the interior of the 3D car model may also include a steering wheel, an instrument panel, a shift knob, a seat, an in-vehicle terminal, etc. of the car model, and the in-vehicle terminal of the car model may display a wallpaper page.
[0066] The map page is used to display or show the location of the 3D car model corresponding to the current vehicle on the map, and can also provide navigation functions for users. Figure 4 As shown in (c) in .
[0067] The Earth page is used to display or show the location of the city where the current vehicle is located on the Earth. For example, see Figure 4 As shown in (d) in .
[0068] It should be understood that the present application includes but is not limited to the above-mentioned page modes, and may also include other page modes without limitation. At this time, in addition to displaying the above-mentioned pages, the vehicle's on-board terminal 305 can also interact with the user, such as collecting ambient sound, identifying the user's voice from the ambient sound, and responding to the user's voice to implement corresponding functions, thereby enabling the user to voice control the on-board terminal 305; or, the on-board terminal 305 can also pre-set various gestures and gesture-corresponding functions, so as to obtain various gestures input by the user on the screen, such as click, slide, double-click, zoom in, zoom out, etc., and respond to the user's gestures to implement corresponding functions, thereby enabling the user to gesture control the on-board terminal 305.
[0069] The click gesture may refer to the user's finger or knuckle, etc., clicking the screen of the vehicle terminal 305. The double-click gesture may refer to the user's finger or knuckle, etc., clicking the same position on the screen of the vehicle terminal 305 twice in a row, and the two consecutive clicks may specifically be that the time interval between the two clicks is less than or equal to a preset time length, or the time interval between the two clicks is very short.
[0070] The sliding gesture may refer to the user's fingers or knuckles sliding on the screen of the vehicle-mounted terminal 305 .
[0071] Among them, the zoom-in gesture may include but is not limited to two-finger zoom-in, three-finger zoom-in, etc.; the zoom-out gesture may include but is not limited to two-finger zoom-out, three-finger zoom-out, etc.
[0072] In some possible application scenarios, the first gesture received by the vehicle via the vehicle terminal 305 may be a zoom-in gesture or a zoom-in gesture. Further, the camera angle change of the first page may be controlled to zoom out following the zoom-out gesture or to zoom in following the zoom-in gesture.
[0073] In some possible application scenarios, the zoom-out gesture or the zoom-in gesture includes at least three-finger triggering or two-finger triggering. Figure 5 As shown: when the zoom-out gesture is triggered by at least three fingers, the lens angle of view corresponding to the first page is zoomed out until the second page associated with the first page and the zoom-out gesture is displayed; when the zoom-in gesture is triggered by at least three fingers, the lens angle of view corresponding to the first page is zoomed in until the second page associated with the first page and the zoom-in gesture is displayed. When the zoom-out gesture is triggered by two fingers, the lens angle of view corresponding to the first page is first zoomed out, and it is determined whether the zoom-out degree of the lens angle of view has reached a first threshold. If it has not reached the first threshold, the lens angle of view of the first page continues to be zoomed out. If it has reached the first threshold, the second page associated with the first page and the zoom-out gesture is displayed; when the zoom-in gesture is triggered by two fingers, the lens angle of view corresponding to the first page is first zoomed in, and it is determined whether the zoom-out degree of the lens angle of view has reached a second threshold. If it has not reached the second threshold, the lens angle of view corresponding to the first page continues to be zoomed in. If it has reached the second threshold, the second page is displayed.
[0074] In the present application, when displaying the first page, the vehicle-mounted terminal 305 can respond to a zoom-out gesture triggered by at least three fingers of the user to control the lens angle of the first page to zoom out, thereby switching the first page to the second page.
[0075] For example, the first page displayed by the vehicle through the vehicle terminal 305 can be a wallpaper page displayed by the vehicle terminal inside the 3D car model, and the second page can be a 3D car model page, wherein the 3D car model page can be used to display the above-mentioned 3D car model; when a zoom-out gesture triggered by at least three fingers is adopted, the vehicle can control the lens perspective corresponding to the wallpaper page to zoom out from the wallpaper page inside the 3D car model to the outside of the 3D car model, and display the 3D car model page.
[0076] For another example, the first page displayed by the vehicle through the on-board terminal 305 may be a 3D car model page, and the second page may be a map page, wherein the 3D car model page is used to display the 3D car model, and the map page is used to display the position of the 3D car model on the map; when a zoom-out gesture triggered by at least three fingers is adopted, the vehicle can control the lens perspective corresponding to the above-mentioned 3D car model page to zoom out from the 3D car model page to the map where the 3D car model is located, and display the map page.
[0077] In the present application, when displaying the first page, the vehicle-mounted terminal 305 can also respond to a zoom-in gesture triggered by at least three fingers of the user to control the lens angle of the first page to zoom in, thereby switching the first page to the second page.
[0078] For example, the first page displayed by the vehicle through the vehicle terminal 305 can be a 3D car model page, and the second page can be a wallpaper page displayed by the vehicle terminal inside the 3D car model, wherein the 3D car model page can be used to display the above-mentioned 3D car model; when a zoom gesture triggered by at least three fingers is adopted, the vehicle can control the lens perspective corresponding to the 3D car model page to zoom in from the 3D car model page to the wallpaper page inside the 3D car model, and display the wallpaper page.
[0079] For another example, the first page displayed by the vehicle through the on-board terminal 305 may be a map page, and the second page may be a 3D car model page, wherein the 3D car model page is used to display the 3D car model, and the map page is used to display the position of the 3D car model on the map; when a zoom gesture triggered by at least three fingers is used, the vehicle can control the lens perspective corresponding to the map page to zoom in from the map page to the outside of the 3D car model, and display the 3D car model page.
[0080] Optionally, in the present application, in order to improve the user experience, a preset switching effect can be used when switching between different page modes. The preset switching effect may include but is not limited to a time-travel effect, a "one-shot" effect, etc.
[0081] Among them, the time-travel effect and the "one-shot" effect can refer to the continuous change process of perspective, scene, and content.
[0082] For example, taking the switching from the 3D car model page to the wallpaper page as an example, the vehicle terminal 305 controls the lens angle corresponding to the 3D car model page in response to the gesture input by the user (such as a zoom-in gesture or a zoom-out gesture, etc.), and zooms in from the outside of the 3D car model currently displayed on the 3D car model page to the wallpaper page displayed inside the 3D car model, and the vehicle terminal 305 displays the wallpaper page. Also, in the process of zooming in the lens angle, the content displayed by the vehicle terminal 305 follows the change of the lens angle, and gradually displays from the outside of the 3D car model to the inside of the 3D car model, until the wallpaper page on the vehicle terminal inside the 3D car model is displayed, thereby presenting an effect of crossing from the outside of the 3D car model to the inside of the 3D car model, which is similar to the transition method of "one shot to the end".
[0083] For another example, taking the switching from the wallpaper page to the 3D car model page as an example, the vehicle terminal 305 can respond to the gesture input by the user (such as a zoom-in gesture or a zoom-out gesture, etc.) to control the lens angle corresponding to the wallpaper page, zooming out from the wallpaper page to the inside of the 3D car model, and then zooming out to the 3D car model page. At this time, the vehicle terminal 305 displays the 3D car model page, thereby presenting an effect of passing from the inside of the 3D car model to the outside of the 3D car model, similar to the "one shot to the end" transition method. In addition, during the process of the lens angle changing inside the 3D car model, the wallpaper page gradually becomes smaller, and other components in the 3D car model cabin gradually appear, until the lens angle is pushed out of the 3D car model.
[0084] From the above content, it can be seen that the page switching method provided in the embodiment of the present application can realize page switching according to the user's zoom-in gesture or zoom-in gesture, such as switching from a 3D car model page to other pages, without the user manually clicking on the controls corresponding to different pages, thereby reducing the user's operation difficulty.
[0085] In addition, during the page switching process, the camera perspective can also achieve a "crossing" or "one-shot" transition effect, making the page switching process smoother and more coherent, and also bringing a better visual experience to users, thereby enhancing the user experience.
[0086] Optionally, in the present application, when displaying the first page, the vehicle-mounted terminal 305 of the vehicle can also respond to the user's sliding gesture to control the movement of the lens perspective of the first page, thereby switching the first page to the second page. The sliding gesture includes a single-finger sliding or a multi-finger sliding, and the position of the sliding gesture can be any position on the screen of the vehicle-mounted terminal 305 displaying the first page, including the center of the screen, the lower left position of the screen, or the upper right position of the screen.
[0087] For example, when the sliding direction of the sliding gesture is upward or downward, the moving direction of the first page is also upward or downward; when the sliding direction of the sliding gesture is leftward or rightward, the moving direction of the first page is also leftward or rightward. When the sliding gesture ends, the vehicle terminal 305 displays the second page according to the pre-set corresponding relationship.
[0088] It can be understood that the above-mentioned vehicle-mounted terminal 305 in the embodiment of the present application can be a vehicle central control screen or some electronic device with display function, and the vehicle-mounted terminal 305 that receives the first gesture input by the user is the vehicle-mounted terminal of the vehicle, rather than the vehicle-mounted terminal in the 3D car model.
[0089] In combination with the above content, it can be seen that the page switching method on the vehicle in the embodiment of the present application can change the first page accordingly according to the gesture operation, visually improving the smoothness and continuity of the page switching. In addition, the user can achieve the purpose of page switching through gesture operation without clicking other controls, which improves the convenience of user operation and thus enhances the user's operating experience.
[0090] Take the page switching method in the embodiment of the present application as an example, which is applied to the vehicle-mounted terminal 305 of the above vehicle. Figure 6 As shown, the method may include the following steps S601-S603.
[0091] S601. The vehicle-mounted terminal displays the first page.
[0092] For example, the first page may include Figure 4 The wallpaper page shown in (a) Figure 4The 3D car model page shown in (b) Figure 4 The map page shown in (c) and Figure 4 The Earth page shown in (d) in the figure, etc.
[0093] S602: The vehicle-mounted terminal receives a first gesture input by a user on a first page.
[0094] In some embodiments, the first gesture may be triggered by two fingers, including a zoom-out gesture triggered by two fingers and a zoom-in gesture triggered by two fingers.
[0095] For example, see Figure 7 As shown in (a), when the first page is a 3D car model page, a zoom-out gesture triggered by two fingers is used on the current page, and the positions of the two fingers on the screen are respectively the first finger contact point 701 and the second finger contact point 702, and the directions of movement are respectively the directions of the dotted arrow 703 and the directions of the dotted arrow 704.
[0096] For example, see Figure 7 As shown in (b), when the first page is a 3D car model page, a zoom-in gesture triggered by two fingers is used on the current page, and the positions of the two fingers on the screen are respectively the first finger contact point 705 and the second finger contact point 706, and the directions of movement are respectively the directions of the dotted arrow 707 and the dotted arrow 708.
[0097] In some embodiments, the first gesture may be triggered by at least three fingers, including a zoom-out gesture triggered by at least three fingers and a zoom-in gesture triggered by at least three fingers.
[0098] For example, see Figure 8 As shown in (a), when the first page is a 3D car model page, a zoom-out gesture triggered by three fingers is used on the current page, and the positions of the three fingers on the screen are respectively the first finger contact point 801, the second finger contact point 802 and the third finger contact point 803, and the directions of movement are respectively the direction of the dotted arrow 804, the direction of the dotted arrow 805 and the direction of the dotted arrow 806.
[0099] For example, see Figure 8 As shown in (b), when the first page is a 3D car model page, a zoom-in gesture triggered by three fingers is used on the current page, and the positions of the three fingers on the screen are respectively the first finger contact point 807, the second finger contact point 808 and the third finger contact point 809, and the directions of movement are respectively the direction of the dotted arrow 810, the direction of the dotted arrow 811 and the direction of the dotted arrow 812.
[0100] In some embodiments, the first gesture may also be a sliding gesture, including a single-finger sliding gesture and a multi-finger sliding gesture. The sliding position may include multiple positions, for example, see Fig. 9 As shown in (a) of FIG. 1 , the sliding direction may be at the center of the screen for finger 901, the lower left position for finger 902, or the upper right position for finger 903. The sliding direction may include multiple directions, for example, see Fig. 9 As shown in (b) in FIG. 1 , it may be upward as shown by arrow 904, downward as shown by arrow 905, leftward as shown by arrow 906, or rightward as shown by arrow 907, etc.
[0101] S603: The vehicle-mounted terminal responds to the first gesture and controls the change of the lens viewing angle corresponding to the first page until a second page associated with the first page and the first gesture is displayed.
[0102] The first gesture may be a sliding gesture, a zoom-in gesture, a zoom-out gesture, etc. Furthermore, the zoom-in gesture, the zoom-out gesture, etc. may be triggered by two fingers or by at least three fingers.
[0103] In some embodiments, when the first gesture is a zoom-out gesture of at least three fingers, the vehicle-mounted terminal responds to the zoom-out gesture by controlling the lens angle corresponding to the first page to zoom out until the second page associated with the first page and the zoom-out gesture is displayed, thereby improving the smoothness and continuity of page switching.
[0104] For example, Fig.10 The wallpaper page shown in (a) switches to Fig.10 The 3D car model page shown in (d) is as follows Fig.10 The three-finger zoom-out gesture shown in (a) of FIG. Fig.10 The 3D car model page shown in (d) is used to display the 3D car model, and the vehicle terminal inside the 3D car model displays Fig.10 It can be understood that the current camera angle follows the zoom-out gesture to zoom out from the wallpaper page inside the 3D car model to the outside of the 3D car model. At this time, the field of view is widened to a larger physical size, that is, the 3D car model page is one level larger than the wallpaper page. Fig.10 (a) via Fig.10 (b) Fig.10 (c) in the figure is reduced to Fig.10 (d) in the figure is a continuous process.
[0105] The lens perspective corresponding to the wallpaper page travels from the inside of the 3D car model to the outside of the 3D car model, and the vehicle terminal can synchronously display the page corresponding to the constantly changing perspective of the lens perspective during the crossing process, thereby presenting the effect of crossing and "one shot to the end".
[0106] For example, Fig.11 The 3D car model page shown in (a) switches to Fig.11 The map page shown in (d) is as follows: Fig.11 The three-finger zoom-out gesture shown in (a) of FIG. Fig.11 The 3D car model page shown in (a) is used to display the 3D car model. Fig.11 The map page shown in (d) is used to display the location of the 3D car model on the map. It can be understood that the current camera angle follows the zoom-out gesture to zoom out from the 3D car model page to the map where the 3D car model is located. At this time, the field of view is widened to a larger physical size, that is, the map page is one level larger than the 3D car model page. Fig.11 (a) via Fig.11 (b) Fig.11 (c) in the figure is reduced to Fig.11 (d) in the figure is a continuous process.
[0107] When the lens angle corresponding to the 3D car model page is reduced to the map page, the lens angle can be reduced from the outside of the 3D car model to the parking lot where the 3D car model is located, and then to the street where the 3D car model is located, etc. At this time, the 3D car model and the street can be displayed on the map. The vehicle terminal can synchronously display the page corresponding to the changing angle of view during the change of the angle of view, thereby presenting the effect of traveling through and "one shot to the end".
[0108] In other embodiments, when the first gesture is a zoom-in gesture of at least three fingers, the vehicle-mounted terminal responds to the zoom-in gesture by controlling the lens angle corresponding to the first page to zoom in until the second page associated with the first page and the zoom-in gesture is displayed, thereby improving the smoothness and continuity of page switching.
[0109] For example, Fig.12 The 3D car model page shown in (a) switches to Fig.12 The wallpaper page shown in (d) is as follows: Fig.12 The three-finger zoom-in gesture shown in (a) of FIG. Fig.12 The 3D car model page shown in (a) is used to display the 3D car model, and the vehicle terminal inside the 3D car model displays Fig.12 It can be understood that the current camera perspective follows the zoom gesture to zoom in from the outside of the 3D car model to the wallpaper page inside the 3D car model. At this time, the field of view is focused on a smaller physical size, that is, the wallpaper page is one level smaller than the 3D car model page. Fig.12 (a) via Fig.12 (b) Fig.12 (c) in the figure is enlarged to Fig.12(d) in the figure is a continuous process.
[0110] The lens perspective corresponding to the 3D car model page travels from the outside of the 3D car model to the inside of the 3D car model, and the vehicle terminal can synchronously display the page corresponding to the constantly changing perspective of the lens perspective during the crossing process, thereby presenting the effect of crossing and "one shot to the end".
[0111] For example, Fig.13 The map page shown in (a) switches to Fig.13 The 3D car model page shown in (d) is as follows Fig.13 The three-finger zoom-in gesture shown in (a) of FIG. Fig.13 The 3D car model page shown in (d) is used to display the 3D car model. Fig.13 The map page shown in (a) is used to display the location of the 3D car model on the map. It can be understood that the current camera perspective follows the zoom gesture to zoom in from the map page to the outside of the 3D car model. At this time, the field of view is focused on a smaller physical size, that is, the 3D car model page is one level smaller than the map page. Fig.13 (a) via Fig.13 (b) Fig.13 (c) in the figure is enlarged to Fig.13 (d) in the figure is a continuous process.
[0112] When the lens perspective corresponding to the map page is enlarged to the 3D page, the lens perspective can be enlarged from the street where the 3D car model is located (the map page includes the 3D car model and the street where the 3D car model is located, etc.) to the parking lot where the 3D car model is located, and then to the outside of the 3D car model. At this time, the 3D car model page only displays the 3D car model, or when displaying the 3D car model, the virtual space where the 3D is located, the virtual background, etc. can also be displayed. The vehicle terminal can synchronously display the page corresponding to the constantly changing perspective during the change of perspective, thereby presenting the effect of traveling through and "one shot to the end".
[0113] In some embodiments, when the first page is a 3D car model page, the 3D car model on the 3D car model page can move, rotate, enlarge, shrink, etc. following the user's gestures, wherein the gesture for controlling the movement and rotation of the 3D car model can be triggered by a single finger of the user, for example, single-finger click, single-finger double-click, single-finger drag, single-finger slide, etc.; and the operation of controlling the enlargement and reduction of the 3D car model can be triggered by two fingers of the user, for example, two-finger zoom in, two-finger zoom out, etc.
[0114] In other embodiments, when the first gesture is a two-finger zoom-out, the vehicle-mounted terminal responds to the zoom-out gesture and controls the lens angle corresponding to the first page to zoom out, and accordingly, the content of the first page will be zoomed out, thereby also realizing page switching. In order to avoid the mutual influence between the operation of zooming out with two fingers to realize page switching and the operation of zooming out with two fingers to realize only zooming out of the page content in the aforementioned embodiment, a first threshold value can be set, that is, when the zooming degree of the lens angle of view of the first page does not reach the first threshold value, the zooming out operation of the content of the first page can be realized, and when the zooming degree of the lens angle of view of the first page reaches the first threshold value, the switching between the first page and the second page can be realized.
[0115] For example, Fig.14 The map page shown in (a) switches to Fig.14 The Earth page shown in (d) is taken as follows Fig.14 It can be understood that the current camera angle is reduced following the reduction gesture, and accordingly, the content of the current page is reduced from Fig.14 (a) via Fig.14 (b) in the figure is continuously reduced. When it is reduced to Fig.14 When (c) in the figure, the zoom degree of the lens angle corresponding to the current page is equal to the first threshold, and the page is switched to Fig.14 (d) in the figure shows the Earth page, where the field of view is widened to a larger physical size, that is, the Earth page is one level larger than the map page.
[0116] In other embodiments, when the first gesture is a two-finger zoom-in, the vehicle-mounted terminal responds to the zoom-in gesture and controls the lens angle corresponding to the first page to zoom in. Correspondingly, the content of the first page will be zoomed in, and page switching can also be achieved. In order to avoid the mutual influence between the operation of switching pages by two-finger zoom-in and the operation of only zooming in the page content by two-finger zoom-in in the aforementioned embodiment, a second threshold value can be set, that is, when the zoom-in degree of the lens angle of the first page does not reach the second threshold value, the zoom-in operation of the first page content can be achieved, and when the zoom-in degree of the lens angle of the first page reaches the second threshold value, the switching between the first page and the second page can be achieved.
[0117] For example, Fig.15 The Earth page shown in (a) switches to Fig.15 The map page shown in (d) is as follows: Fig.15 It can be understood that the current camera angle is enlarged following the enlargement gesture, and accordingly, the content of the current page is enlarged from Fig.15 (a) via Fig.15 (b) in the figure is continuously enlarged. When enlarged to Fig.15When (c) in the figure, the magnification degree of the lens angle corresponding to the current page is equal to the second threshold, and the page is switched to Fig.15 (d) in the figure shows a map page, where the field of view is focused on a smaller physical size, that is, the map page is one level smaller than the earth page.
[0118] From the above content, it can be seen that the page switching method provided in the embodiment of the present application can perform continuous page switching operations according to user gestures, reduce the user's operation difficulty, enhance the fluency, continuity and convenience of page switching operations on the vehicle terminal, and improve the user's operation experience.
[0119] In addition, when the first page is a 3D car model page, the 3D car model page originally has operations such as single-finger rotation and double-finger zooming for viewing different parts of the car model, as well as a single-finger click on a specified part of the 3D car model for controlling the corresponding hardware components of the vehicle. The page switching method provided in the embodiment of the present application also adopts the form of gesture operation, which can form an integrated process with the existing gesture operation to enhance the user's operating experience.
[0120] In the above embodiments, the page switching method is described by taking the zoom-in or zoom-out gesture as an example. In some other embodiments, other gestures may be used to present the above page switching method with the effects of "travel through" or "one shot to the end", such as a sliding gesture, a dragging gesture, etc. This is not specifically limited in the embodiments of the present application.
[0121] In some embodiments, when the first gesture is a sliding gesture, the content of the first page will move continuously in the direction of the sliding, and when the sliding gesture ends, the page displayed by the vehicle terminal switches to the second page, which can also ensure the continuity of page switching. The position where the user makes the sliding gesture can be any position on the screen of the vehicle terminal displaying the first page, including the center of the screen, the lower left position of the screen, or the upper right position of the screen.
[0122] For example, Fig.16 The wallpaper page shown in (a) switches to Fig.16 The process of the 3D car model page shown in (d) is as follows Fig.16 The single-finger upward sliding gesture shown in (a) of FIG. Fig.16 (a) via Fig.16 (b) Move to Fig.16 (c) in the figure is a continuous process. When the sliding gesture ends, it switches to Fig.16 The 3D car model page shown in (d).
[0123] For example, Fig.17 The 3D car model page shown in (a) switches to Fig.17 The process of the wallpaper page shown in (d) is as follows Fig.17 The single-finger downward sliding gesture shown in (a) of FIG. Fig.17 (a) via Fig.17 (b) Move to Fig.17 (c) is a continuous process. When the sliding gesture ends, switch to Fig.17 The wallpaper page shown in (d) in the figure.
[0124] In the above embodiment, a continuous page switching operation may also be performed according to user gestures, thereby enhancing the fluency, continuity and convenience of the page switching operation on the vehicle terminal and improving the user's operating experience.
[0125] In the above embodiment, switching the wallpaper page to the 3D car model page can be a zoom-in gesture, and the gesture of switching the 3D car model page to the map page can also be a zoom-in gesture. Correspondingly, the gesture of switching the map page to the 3D car model page can be a zoom-out gesture, and the gesture of switching the 3D car model page to the wallpaper page can also be a zoom-out gesture. The above gestures for switching pages are only exemplary descriptions, and are not specifically limited in the embodiments of the present application.
[0126] In the above-mentioned embodiment, the user can switch the first page on the vehicle terminal to the second page according to his or her needs, such as switching the wallpaper page to the 3D car model page, switching the 3D car model page to the map page, etc. These two switching processes can be regarded as separate switching processes. In this case, the gestures corresponding to the two switching processes can be the same or different.
[0127] In other embodiments, the user can also use the same gesture operation to continuously switch pages on the vehicle terminal. For example, the user uses a three-finger pinch gesture to switch the wallpaper page to the 3D car model page, and then uses a three-finger pinch gesture on the 3D car model page to switch the 3D car model page to the map page. From wallpaper to 3D car model, there is a continuous change in perspective, and from 3D car model to map, there is a continuous change in perspective, so that from wallpaper to map, continuous change in perspective can also be achieved, achieving a page switching effect similar to "one shot to the end".
[0128] For example, Fig.18 The wallpaper page shown in (a) is zoomed out using a three-finger zoom gesture, and the current camera angle zooms out following the zoom gesture. The current page is zoomed out via Fig.18 (b) Fig.18 (c) in the switch to Fig.18 The 3D car model page shown in (d) in the figure expands the field of view to a larger physical size, that is, the 3D car model page is one level larger than the wallpaper page; Fig.18The 3D car model page shown in (d) continues to zoom out using the three-finger zoom gesture, and the current camera angle continues to zoom out following the zoom gesture. The current page is zoomed out through Fig.18 (e) Fig.18 (f) in the final switch Fig.18 The map page shown in (g) in the figure expands the field of view to a larger physical size, that is, the map page is one level larger than the 3D car model page. The whole process is continuous, ensuring the integrity of page switching. And when more page modes are expanded, the expanded pages can continue to be switched, making the page switching method scalable.
[0129] In other embodiments, by taking a zoom-out gesture on the wallpaper page, you can also switch to a cockpit page that displays the interior environment of the car, such as Fig.10 As shown in (c) in the figure, it is used to visually control various hardware functions such as seats and air conditioners, which is convenient for users to operate. For example, the user can click on the driver's seat in the cockpit page and adjust the angle of the driver's seat to control the change of the angle of the driver's seat on the vehicle. After that, the user can continue to input the zoom-out gesture on the cockpit page, so that the vehicle terminal responds to the zoom-out gesture and switches the cockpit page to the 3D car model page. In the process of switching, effects such as crossing and "one shot to the end" can also be displayed.
[0130] In the above process, the user can continuously switch pages on the vehicle terminal through the same gesture. Correspondingly, the vehicle terminal can also respond to the user's continuous gestures and perform continuous page switching, providing the user with a more convenient switching method and bringing a better operating experience.
[0131] In some embodiments, the page switching operation can also automatically switch from the first page to the second page according to the state of the vehicle, so that the page displayed by the vehicle terminal matches the current vehicle state, allowing users to more intuitively and quickly understand the information related to the current vehicle state. For example, when the current gear state of the vehicle is switched from P gear to D gear, the vehicle changes from a stationary state to a driving state, and the vehicle terminal will switch to Figure 4 The map page shown in (c) in the figure is displayed, so that users can view navigation information easily; when the vehicle's current gear state is switched from D gear to P gear, the vehicle changes from driving state to stationary state, and the vehicle terminal will switch to Figure 4 The 3D car model page shown in (b) above makes it easy for users to view the vehicle status, operate the vehicle hardware components, etc.
[0132] In other embodiments, the vehicle can also respond to the user's operation on the vehicle hardware components (such as windows, doors, trunk, charging port, fuel filler, etc.) and control the vehicle terminal to switch to the page corresponding to the function of the hardware component. For example, when the driver and passengers use buttons to control the windows, the vehicle terminal needs to display the location of the windows, so it switches to Figure 4 The 3D car model page shown in (b) in FIG. Moreover, the 3D car model in the 3D car model page can also produce a linkage effect with the vehicle itself. For example, when the user operates the vehicle window to raise or lower, the window in the 3D car model will also rise or lower along with the vehicle's own window.
[0133] The above-mentioned method of automatically switching display pages according to the vehicle status of the vehicle terminal makes the page displayed on the vehicle terminal match the current vehicle status, and can provide display services to users more intelligently without the need for users to manually operate the vehicle terminal, thereby freeing the user's hands and allowing users to use the vehicle more intuitively and conveniently, and understand the situations or information related to the current vehicle status.
[0134] It can be understood that the second page associated with the first page and the first gesture can be pre-set according to the type of the first page, the type of the first gesture, etc. For example, when the first page is a wallpaper page, if the first gesture is a zoom-out gesture, the second page is a 3D car model page; when the first page is a 3D car model page, if the first gesture is a zoom-out gesture, the second page is a map page, and if the first gesture is a zoom-in gesture, the second page is a wallpaper page; when the first page is a map page, if the first gesture is a zoom-out gesture, the second page is a globe page, and if the first gesture is a zoom-in gesture, the second page is a 3D car model page; when the first page is a globe page, if the first gesture is a zoom-in gesture, the second page is a map page.
[0135] In some schemes, multiple embodiments of the present application can be combined, and the combined scheme can be implemented. Optionally, some operations in the process of each method embodiment are optionally combined, and / or the order of some operations is optionally changed. In addition, the execution order between the steps of each process is only exemplary and does not constitute a restriction on the execution order between the steps. There can also be other execution orders between the steps. It is not intended to show that the execution order is the only order in which these operations can be performed. A person of ordinary skill in the art will think of a variety of ways to reorder the operations described in the embodiments of the present application. In addition, it should be noted that the process details involved in a certain embodiment of the present application are also applicable to other embodiments in a similar manner, or different embodiments can be used in combination.
[0136] In addition, some steps in the method embodiment may be equivalently replaced by other possible steps. Alternatively, some steps in the method embodiment may be optional and may be deleted in certain usage scenarios. Alternatively, other possible steps may be added to the method embodiment.
[0137] Furthermore, the various method embodiments may be implemented separately or in combination.
[0138] It is understandable that in order to achieve the above functions, the aforementioned vehicle includes hardware and / or software modules corresponding to the execution of each function. In combination with the algorithm steps of each example described in the embodiments disclosed herein, the present application can be implemented in the form of hardware or a combination of hardware and computer software. Whether a function is executed in the form of hardware or computer software driving hardware depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application in combination with the embodiments, but such implementation should not be considered to be beyond the scope of this application.
[0139] In this embodiment, the functional modules of the vehicle can be divided according to the above method example. For example, each functional module can be divided according to each function, or two or more functions can be integrated into one processing module. The above integrated modules can be implemented in the form of hardware. It should be noted that the division of modules in this embodiment is schematic and is only a logical function division. There may be other division methods in actual implementation.
[0140] The present application also provides a vehicle-mounted terminal. Fig.19 As shown, the vehicle terminal may include one or more processors 1901 , a memory 1902 and a communication interface 1903 .
[0141] The memory 1902 and the communication interface 1903 are coupled to the processor 1901. For example, the memory 1902, the communication interface 1903 and the processor 1901 may be coupled together via a bus 1904.
[0142] The communication interface 1903 is used to transmit data with other devices. The memory 1902 stores computer program codes. The computer program codes include computer instructions. When the computer instructions are executed by the processor 1901, the electronic device executes the page switching method in the embodiment of the present application.
[0143] Among them, the processor 1901 can be a processor or a controller, for example, a central processing unit (CPU), a general processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field programmable gate array (FPGA) or other programmable logic devices, transistor logic devices, hardware components or any combination thereof. It can implement or execute various exemplary logic blocks, modules and circuits described in conjunction with the present disclosure. The processor can also be a combination that implements computing functions, such as a combination of one or more microprocessors, a combination of a DSP and a microprocessor, and the like.
[0144] The bus 1904 may be a Peripheral Component Interconnect (PCI) bus or an Extended Industry Standard Architecture (EISA) bus. The bus 1904 may be divided into an address bus, a data bus, a control bus, etc. For ease of representation, Fig.19 Only one thick line is used in the diagram, but this does not mean that there is only one bus or only one type of bus.
[0145] An embodiment of the present application also provides a vehicle, which includes the vehicle-mounted terminal as in the above embodiment.
[0146] An embodiment of the present application also provides a computer-readable storage medium, which includes computer instructions. When the computer instructions are in a vehicle-mounted terminal, the vehicle-mounted terminal executes the relevant method steps in the above method embodiment.
[0147] The embodiment of the present application also provides a computer program product. When the computer program product is run on a computer, it enables the computer to execute the relevant method steps in the above method embodiment.
[0148] Among them, the vehicle, vehicle-mounted terminal, computer storage medium or computer program product provided in this application are all used to execute the corresponding methods provided above. Therefore, the beneficial effects that can be achieved can refer to the beneficial effects in the corresponding methods provided above, and will not be repeated here.
[0149] Through the description of the above implementation methods, technical personnel in the relevant field can clearly understand that for the convenience and simplicity of description, only the division of the above-mentioned functional modules is used as an example. In actual applications, the above-mentioned functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above.
[0150] In the several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. For example, the device embodiments described above are only schematic. For example, the division of the modules or units is only a logical function division. There may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another device, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms.
[0151] The units described as separate components may or may not be physically separated, and the components shown as units may be one physical unit or multiple physical units, that is, they may be located in one place or distributed in multiple different places. Some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.
[0152] In addition, each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of software functional units.
[0153] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a readable storage medium. Based on this understanding, the technical solution of the embodiment of the present application is essentially or the part that contributes or all or part of the technical solution can be embodied in the form of a software product, which is stored in a storage medium, including several instructions to enable a device (which can be a single-chip microcomputer, chip, etc.) or a processor (processor) to perform all or part of the steps of the method described in each embodiment of the present application. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM), random access memory (RAM), disk or optical disk and other media that can store program code.
[0154] The above contents are only specific implementation methods of the present application, but the protection scope of the present application is not limited thereto. Any changes or substitutions within the technical scope disclosed in the present application shall be included in the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.
Claims
1. A page switching method, characterized in that: The method comprises: Receiving a first gesture input by a user on a first page currently displayed; In response to the first gesture, the camera angle corresponding to the first page is controlled to change until a second page associated with the first page and the first gesture is displayed.
2. The method according to claim 1, characterized in that The first gesture is triggered by at least three fingers, and the first gesture includes a zoom-out gesture; In response to the first gesture, controlling the camera angle corresponding to the first page to change until a second page associated with the first page and the first gesture is displayed includes: In response to the zoom-out gesture, the lens angle of view corresponding to the first page is controlled to zoom out until a second page associated with the first page and the zoom-out gesture is displayed.
3. The method according to claim 2, characterized in that The first page is a wallpaper page displayed by the vehicle terminal inside the three-dimensional 3D car model, and the second page is a 3D car model page, and the 3D car model page is used to display the 3D car model; When the first gesture is a zoom-out gesture, the lens viewing angle corresponding to the first page is controlled to zoom out until a second page associated with the first page and the zoom-out gesture is displayed, including: controlling the lens viewing angle corresponding to the wallpaper page to zoom out from the wallpaper page inside the 3D car model to the outside of the 3D car model, and displaying the 3D car model page.
4. The method according to claim 2, characterized in that: The first page is a 3D car model page, and the second page is a map page, wherein the 3D car model page is used to display the 3D car model, and the map page is used to display the position of the 3D car model on the map; When the first gesture is a zoom-out gesture, the lens viewing angle corresponding to the first page is controlled to zoom out until a second page associated with the first page and the zoom-out gesture is displayed, including: controlling the lens viewing angle corresponding to the 3D car model page to zoom out from the 3D car model page to the map where the 3D car model is located, and displaying the map page.
5. The method according to claim 1, characterized in that The first gesture is triggered by at least three fingers, and the first gesture includes a zoom-in gesture; In response to the first gesture, controlling the camera angle corresponding to the first page to change until a second page associated with the first page and the first gesture is displayed includes: In response to the zoom-in gesture, the lens angle of view corresponding to the first page is controlled to zoom in until a second page associated with the first page and the zoom-in gesture is displayed.
6. The method according to claim 5, characterized in that The first page is a 3D car model page, which is used to display the 3D car model, and the second page is a wallpaper page displayed by the vehicle terminal inside the 3D car model; When the first gesture is a zoom-in gesture, the lens viewing angle corresponding to the first page is controlled to zoom in until a second page associated with the first page and the zoom-in gesture is displayed, including: controlling the lens viewing angle corresponding to the 3D car model page to zoom in from the 3D car model page to the wallpaper page inside the 3D car model, and displaying the wallpaper page.
7. The method according to claim 5, characterized in that The first page is a map page, and the second page is a 3D car model page, wherein the 3D car model page is used to display a 3D car model, and the map page is used to display the position of the 3D car model on the map; When the first gesture is a zoom-in gesture, the lens viewing angle corresponding to the map page is controlled to zoom in until a second page associated with the first page and the zoom-in gesture is displayed, including: controlling the lens viewing angle corresponding to the map page to zoom in from the map page to the outside of the 3D car model, and displaying the 3D car model page.
8. The method according to claim 1, characterized in that The first gesture is triggered by two fingers, and the first gesture includes a zoom-out gesture. In response to the first gesture, controlling the change of the lens angle of view corresponding to the first page until a second page associated with the first page and the first gesture is displayed includes: In response to the zoom-out gesture, controlling the camera angle corresponding to the first page to zoom out; When the zoom-out degree of the lens viewing angle corresponding to the first page is equal to a first threshold, a second page associated with the first page and the zoom-out gesture is displayed.
9. The method according to claim 1, characterized in that: The first gesture is triggered by two fingers, and the first gesture includes a zoom-in gesture. In response to the first gesture, controlling the change of the lens angle of view corresponding to the first page until a second page associated with the first page and the first gesture is displayed includes: In response to the zoom-in gesture, controlling the camera angle corresponding to the first page to zoom in; When the magnification degree of the lens viewing angle corresponding to the first page is equal to a second threshold, a second page associated with the first page and the magnification gesture is displayed.
10. A vehicle-mounted terminal, characterized in that: It includes a memory and one or more processors; the memory is coupled to the processor; the memory stores computer program code, and the computer program code includes computer instructions. When the computer instructions are executed by the processor, the vehicle terminal executes the page switching method as described in any one of claims 1-9.
11. A vehicle, characterized in that: Comprising the vehicle-mounted terminal as claimed in claim 10.
12. A computer-readable storage medium, characterized in that: It comprises computer instructions, and when the computer instructions are executed on the vehicle-mounted terminal, the vehicle-mounted terminal executes the page switching method as described in any one of claims 1 to 9.
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