Finger bonding type interactive page turning method, system, equipment and program product
Through the finger-adhesive interactive page turning method, users' finger sliding operations are monitored in real time and page turning control signals are generated, solving the problem that traditional page turning methods are not smooth, coherent and natural enough, and achieving a smoother and more natural page turning experience.
Patent Information
- Application Number
- CN202510207573.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2025-05-27
AI Technical Summary
The traditional method of page turning on the screen display content has problems such as not being smooth, coherent and natural enough. For example, clicking the screen button to turn the page is not smooth enough, sliding the page turning may cause lag or misoperation. The gestures to turn the page require users to remember the gestures, and the automatic page turning control is not flexible enough. The physical buttons to turn the page limits the flexibility of the device, the scroll bar page turning is not intuitive enough, and segmented loading requires users to take the initiative to operate, affecting the continuous reading experience.
The finger-adhesive interactive page turning method is adopted to monitor the sliding operation of the user's fingers in real time, and the corresponding page turning control signals are generated, and the dynamic changes in the shadow transparency of the page and the rotation angle between the pages are adjusted, so that the previous page displayed on the screen gradually transitions to the next page.
It significantly improves the response speed and fluency of page turnover of the screen display content, achieves natural and accurate page turnover effects, and provides a better user experience.
Smart Images

Figure CN120045116A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of screen display, and particularly relates to a finger adhesion type interactive page turning method, system, device and program product. Background Art
[0002] Traditional screen (such as mobile phone screen, computer screen, etc.) display content page turning technical solutions mainly include clicking on screen buttons to turn pages, swiping to turn pages, gesture page turning, automatic page turning, physical button page turning, scroll bar page turning, and segmented loading, etc. These page turning solutions achieve content switching and browsing through user interactions (such as clicking, swiping or gestures) or system settings (such as automatic page turning).
[0003] During the browsing process of application content, optimizing the user's page turning experience is crucial. However, traditional screen display content page turning methods often have problems such as insufficiently smooth, coherent and natural operations. For example: clicking on screen buttons to turn pages may not be smooth enough; swiping to turn pages may experience lags or misoperations; gesture page turning requires users to remember gestures and adapt; automatic page turning control is not flexible enough and may miss interesting content; physical button page turning limits the flexibility of the device; scroll bar page turning may not be intuitive enough; segmented loading requires users to actively operate, affecting the continuous reading experience. Therefore, there is an urgent need for a more smooth and natural screen display content page turning solution. Summary of the Invention
[0004] The purpose of the present invention is to provide a finger adhesion type interactive page turning method, system, device and program product to solve the above problems existing in the prior art.
[0005] To achieve the above purpose, the present invention adopts the following technical solutions:
[0006] In the first aspect, a finger adhesion type interactive page turning method is provided, including:
[0007] In the state where the second page is pre-loaded and the screen currently displays the first page, the sliding operation of the user's finger sensed by the screen is monitored in real time, and when it is determined that the sliding operation of the user's finger reaches the first sliding distance, a first page turning control signal is generated;
[0008] The first page turning control signal is fed back to the screen so that the screen performs a first interactive page turning visual effect display according to the first page turning control signal. In the first interactive page turning visual effect, both the first page and the second page are divided into upper half pages and lower half pages, and a first display flip angle is reached between the lower half page of the first page and the lower half page of the second page;
[0009] When it is determined that the sliding operation of the user's finger reaches the second sliding distance, a second page turning control signal is generated, and the second sliding distance is greater than the first sliding distance;
[0010] Feed the second page turning control signal back to the screen so that the screen displays a second interactive page turning visual effect according to the second page turning control signal. In the second interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a second display turning angle is reached between the lower half page of the first page and the lower half page of the second page, and the second display turning angle is greater than the first display turning angle;
[0011] When it is determined that the sliding operation of the user's finger reaches a third sliding distance, generate a third page turning control signal, and the third sliding distance is greater than the second sliding distance;
[0012] Feed the third page turning control signal back to the screen so that the screen displays a third interactive page turning visual effect according to the third page turning control signal. In the third interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a third display turning angle is reached between the lower half page of the first page and the lower half page of the second page, and the third display turning angle is greater than the second display turning angle;
[0013] When it is determined that the sliding operation of the user's finger reaches a fourth sliding distance, generate a fourth page turning control signal, and the fourth sliding distance is greater than the third sliding distance;
[0014] Feed the fourth page turning control signal back to the screen so that the screen displays a fourth interactive page turning visual effect according to the fourth page turning control signal. In the fourth interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a fourth display turning angle is reached between the lower half page of the first page and the lower half page of the second page, and the fourth display turning angle is greater than the third display turning angle;
[0015] When it is determined that the sliding operation of the user's finger ends, generate a fifth page turning control signal;
[0016] Feed the fifth page turning control signal back to the screen so that the screen displays a fifth interactive page turning visual effect according to the fifth page turning control signal, and the fifth interactive page turning visual effect finally fully displays the static second page.
[0017] In a possible design, the sliding operation is an operation of sliding from the lower half area of the screen to the upper half area of the screen after contacting the lower half area of the screen.
[0018] In a possible design, the first interactive page turning visual effect further includes: the upper half page of the first page is fully displayed, the lower half page of the first page has a black shadow effect with 80% transparency, the upper half page of the second page is hidden behind the lower half page of the first page, and the lower half page of the second page has a black shadow effect with 80% transparency.
[0019] In a possible design, the second interactive page-turning visual effect further includes: the upper half of the first page is fully displayed, the lower half of the first page has a black shadow effect with 40% transparency, the upper half of the second page is hidden behind the lower half of the first page, and the lower half of the second page has a black shadow effect with 60% transparency.
[0020] In a possible design, the third interactive page-turning visual effect further includes: the upper half of the first page has a black shadow effect with 60% transparency, the lower half of the first page is hidden behind the upper half of the second page, the upper half of the second page has a black shadow effect with 40% transparency, and the lower half of the second page is fully displayed.
[0021] In a possible design, the fourth interactive page-turning visual effect further includes: the upper half of the first page has a black shadow effect with 80% transparency, the lower half of the first page is hidden behind the upper half of the second page, the upper half of the second page has a black shadow effect with 20% transparency, and the lower half of the second page is fully displayed.
[0022] In a possible design, the fifth interactive page-turning visual effect includes: the lower half of the first page is hidden, the upper half of the first page transitions to being hidden, the upper half of the second page transitions to being fully displayed, and the lower half of the second page is fully displayed.
[0023] In a second aspect, a finger-bonding interactive page-turning system, a sliding detection unit, a signal generation unit, and an interaction execution unit are provided, where:
[0024] The sliding detection unit is used to monitor the sliding operation of the user's finger sensed by the screen in real time and determine the operation state of the sliding operation.
[0025] The signal generation unit is used to generate a first page-turning control signal when it is determined that the sliding operation of the user's finger reaches the first sliding distance; generate a second page-turning control signal when it is determined that the sliding operation of the user's finger reaches the second sliding distance, where the second sliding distance is greater than the first sliding distance; generate a third page-turning control signal when it is determined that the sliding operation of the user's finger reaches the third sliding distance, where the third sliding distance is greater than the second sliding distance; generate a fourth page-turning control signal when it is determined that the sliding operation of the user's finger reaches the fourth sliding distance, where the fourth sliding distance is greater than the third sliding distance; and generate a fifth page-turning control signal when it is determined that the sliding operation of the user's finger ends.
[0026] An interactive execution unit, configured to feedback a first page-turning control signal to a screen, so that the screen performs a first interactive page-turning visual effect display according to the first page-turning control signal. In the first interactive page-turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a first display flipping angle is achieved between the lower half page of the first page and the lower half page of the second page; feedback a second page-turning control signal to the screen, so that the screen performs a second interactive page-turning visual effect display according to the second page-turning control signal. In the second interactive page-turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a second display flipping angle is achieved between the lower half page of the first page and the lower half page of the second page, and the second display flipping angle is greater than the first display flipping angle; feedback a third page-turning control signal to the screen, so that the screen performs a third interactive page-turning visual effect display according to the third page-turning control signal. In the third interactive page-turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a third display flipping angle is achieved between the lower half page of the first page and the lower half page of the second page, and the third display flipping angle is greater than the second display flipping angle; feedback a fourth page-turning control signal to the screen, so that the screen performs a fourth interactive page-turning visual effect display according to the fourth page-turning control signal. In the fourth interactive page-turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a fourth display flipping angle is achieved between the lower half page of the first page and the lower half page of the second page, and the fourth display flipping angle is greater than the third display flipping angle; and feedback a fifth page-turning control signal to the screen, so that the screen performs a fifth interactive page-turning visual effect display, and the fifth interactive page-turning visual effect finally fully displays the static second page.
[0027] In a third aspect, there is provided a finger-bonding type interactive page-turning device, including:
[0028] A screen, configured to sense a sliding operation of a user's finger and perform a corresponding interactive page-turning visual effect display after receiving a corresponding page-turning control signal;
[0029] A memory, configured to store instructions;
[0030] A processor, configured to read the instructions stored in the memory and execute the method according to any one of the above-mentioned first aspects according to the instructions.
[0031] In a fourth aspect, there is provided a computer-readable storage medium, on which instructions are stored. When the instructions run on a computer, the computer is caused to execute the method according to any one of the first aspects. Meanwhile, there is also provided a computer program product, which, when running on a computer, executes the method according to any one of the first aspects.
[0032] Advantageous effects: By responding in real time to the sliding operation state of the user's finger on the screen, the present invention adjusts the visual effects of the display page, including the dynamic changes in the shadow transparency of the page and the axis rotation angle between pages, enabling the previous page displayed on the screen to gradually transition to the next page, thereby providing a smoother and more natural user touch-based page turning experience. Through the finger adhesion-based interactive page turning method, the present invention ensures that the user's finger sliding operation can be mapped to the page turning effect in real time and accurately, significantly improving the response speed and smoothness of the page turning of the content displayed on the screen, achieving a natural and precise page turning operation effect, and thus providing a better user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0034] Figure 1 It is a schematic diagram of the steps of the method in Embodiment 1 of the present invention;
[0035] Figure 2 It is a schematic diagram of the composition of the device in Embodiment 3 of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0036] It should be noted here that the description of these embodiments is used to help understand the present invention, but does not constitute a limitation to the present invention. The specific structures and functional details disclosed herein are only used to describe the exemplary embodiments of the present invention. However, the present invention can be embodied in many alternative forms and should not be construed as limited to the embodiments set forth herein.
[0037] It should be understood that unless otherwise clearly specified and defined, the corresponding terms should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and can be the internal communication of two components. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments can be understood according to specific circumstances.
[0038] Specific details are provided in the following description to facilitate a complete understanding of the exemplary embodiments. However, those of ordinary skill in the art should understand that the exemplary embodiments can be implemented without these specific details. For example, a device can be shown in a block diagram to avoid obscuring the example with unnecessary details. In other embodiments, well-known processes, structures, and technologies can be shown without unnecessary details to avoid obscuring the embodiments.
[0039] Example 1:
[0040] This example provides a finger-bonding interactive page-turning method, which can be applied to a corresponding screen display processor, such as Figure 1 As shown, the method includes the following steps:
[0041] S1. In the state where the second page is pre-loaded and the first page is currently displayed on the screen, the sliding operation of the user's finger sensed by the screen is monitored in real time, and when it is determined that the sliding operation of the user's finger reaches the first sliding distance, a first page-turning control signal is generated.
[0042] Specifically, in the state where the second page is pre-loaded by the processor and the first page is currently displayed on the screen (i.e., the first page is statically and fully displayed), if the user touches the screen with a finger to perform a sliding operation, and the sliding operation is an operation of sliding from the lower half area of the screen to the upper half area of the screen after touching the lower half area of the screen, the screen can sense the sliding operation of the user's finger, and the processor monitors the sliding operation of the user's finger sensed by the screen in real time. When it is determined that the sliding operation of the user's finger reaches the first sliding distance, a first page-turning control signal is generated.
[0043] S2. Feed the first page-turning control signal back to the screen so that the screen displays a first interactive page-turning visual effect according to the first page-turning control signal. In the first interactive page-turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a first display flip angle is reached between the lower half page of the first page and the lower half page of the second page.
[0044] Specifically, the processor feeds the first page-turning control signal back to the screen so that the screen displays a first interactive page-turning visual effect according to the first page-turning control signal. In the first interactive page-turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a first display flip angle is reached between the lower half page of the first page and the lower half page of the second page (taking the content page statically displayed on the screen as a two-dimensional plane, and using the midline between the upper half page and the lower half page of the content page as the rotation axis to form a 180° display flip angle range from the lower half page of the content page to the upper half page of the content page). Exemplarily, the first display flip angle can be set to 180°×0.2 = 36°. Also, the upper half page of the first page is fully displayed, the lower half page of the first page has a black shadow effect with 80% transparency, the upper half page of the second page is hidden behind the lower half page of the first page, and the lower half page of the second page has a black shadow effect with 80% transparency.
[0045] S3. When it is determined that the sliding operation of the user's finger reaches the second sliding distance, generate a second page-turning control signal, where the second sliding distance is greater than the first sliding distance.
[0046] In specific implementation, when the processor monitors and determines that the sliding operation of the user's finger reaches the second sliding distance, a second page turning control signal is generated, and the second sliding distance is set to be greater than the first sliding distance.
[0047] S4. Feed the second page turning control signal back to the screen so that the screen performs a second interactive page turning visual effect display according to the second page turning control signal. In the second interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a second display turning angle is reached between the lower half page of the first page and the lower half page of the second page, and the second display turning angle is greater than the first display turning angle.
[0048] In specific implementation, the processor feeds the second page turning control signal back to the screen so that the screen performs a second interactive page turning visual effect display according to the second page turning control signal. In the second interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a second display turning angle (taking the content page statically displayed on the screen as a two-dimensional plane, and using the midline between the upper half page and the lower half page of the content page as the rotation axis to form a 180° display turning angle range from the lower half page of the content page to the upper half page of the content page) is reached between the lower half page of the first page and the lower half page of the second page. The second display turning angle is greater than the first display turning angle. Exemplarily, the second display turning angle can be set to 180°×0.4 = 72°. Also, the upper half page of the first page is fully displayed, the lower half page of the first page has a black shadow effect with 40% transparency, the upper half page of the second page is hidden behind the lower half page of the first page, and the lower half page of the second page has a black shadow effect with 60% transparency.
[0049] S5. When it is determined that the sliding operation of the user's finger reaches the third sliding distance, a third page turning control signal is generated, and the third sliding distance is greater than the second sliding distance.
[0050] In specific implementation, when the processor monitors and determines that the sliding operation of the user's finger reaches the third sliding distance, a third page turning control signal is generated, and the third sliding distance is set to be greater than the second sliding distance.
[0051] S6. Feed the third page turning control signal back to the screen so that the screen performs a third interactive page turning visual effect display according to the third page turning control signal. In the third interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a third display turning angle is reached between the lower half page of the first page and the lower half page of the second page, and the third display turning angle is greater than the second display turning angle.
[0052] During specific implementation, the processor feeds back the third page turning control signal to the screen, so that the screen displays a third interactive page turning visual effect according to the third page turning control signal. In the third interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a third display turning angle is achieved between the lower half page of the first page and the lower half page of the second page (taking the content page statically displayed on the screen as a two-dimensional plane, and using the midline between the upper half page and the lower half page of the content page as the rotation axis to form a 180° display turning angle range from the lower half page of the content page to the upper half page of the content page). The third display turning angle is greater than the second display turning angle. Exemplarily, the third display turning angle can be set to 180°×0.6 = 108°. Moreover, the upper half page of the first page has a black shadow effect with 60% transparency, the lower half page of the first page is hidden behind the upper half page of the second page, the upper half page of the second page has a black shadow effect with 40% transparency, and the lower half page of the second page is fully displayed.
[0053] S7. When it is determined that the sliding operation of the user's finger reaches a fourth sliding distance, a fourth page turning control signal is generated, and the fourth sliding distance is greater than the third sliding distance.
[0054] During specific implementation, when the processor monitors and determines that the sliding operation of the user's finger reaches the fourth sliding distance, a fourth page turning control signal is generated, and the fourth sliding distance is set to be greater than the third sliding distance.
[0055] S8. The fourth page turning control signal is fed back to the screen, so that the screen displays a fourth interactive page turning visual effect according to the fourth page turning control signal. In the fourth interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a fourth display turning angle is achieved between the lower half page of the first page and the lower half page of the second page, and the fourth display turning angle is greater than the third display turning angle.
[0056] During specific implementation, the processor feeds back the fourth page turning control signal to the screen, so that the screen displays a fourth interactive page turning visual effect according to the fourth page turning control signal. In the fourth interactive page turning visual effect, both the first page and the second page are divided into an upper half page and a lower half page, and a fourth display turning angle is achieved between the lower half page of the first page and the lower half page of the second page (taking the content page statically displayed on the screen as a two-dimensional plane, and using the midline between the upper half page and the lower half page of the content page as the rotation axis to form a 180° display turning angle range from the lower half page of the content page to the upper half page of the content page). The fourth display turning angle is greater than the third display turning angle. Exemplarily, the third display turning angle can be set to 180°×0.8 = 144°. Moreover, the upper half page of the first page has a black shadow effect with 80% transparency, the lower half page of the first page is hidden behind the upper half page of the second page, the upper half page of the second page has a black shadow effect with 20% transparency, and the lower half page of the second page is fully displayed.
[0057] S9. When it is determined that the sliding operation of the user's finger ends, a fifth page turning control signal is generated.
[0058] In specific implementation, when the processor monitors and determines that the sliding operation of the user's finger ends, that is, when the user's finger releases the screen, a fifth page turning control signal is generated.
[0059] S10. Feed the fifth page turning control signal back to the screen so that the screen performs a fifth interactive page turning visual effect display according to the fifth page turning control signal, and the fifth interactive page turning visual effect finally fully displays the static second page.
[0060] In specific implementation, the processor feeds the fifth page turning control signal back to the screen so that the screen performs a fifth interactive page turning visual effect display according to the fifth page turning control signal. In the fifth interactive page turning visual effect, both the first page and the second page are divided into upper and lower halves, and there is a fifth display turning angle between the lower half of the first page and the lower half of the second page (taking the content page statically displayed on the screen as a two-dimensional plane and using the midline between the upper and lower halves of the content page as the rotation axis to form a 180° display turning angle range from the lower half of the content page to the upper half of the content page). The fifth display turning angle is 180°. Moreover, the screen executes a smooth transition animation, that is, the lower half of the first page remains hidden, the upper half of the first page gradually transitions from a black shadow effect with 80% transparency to hidden, the upper half of the second page gradually transitions from a black shadow effect with 20% transparency to full display, and the lower half of the second page remains in a fully displayed state.
[0061] This method ensures that the sliding operation of the user's finger can be mapped to the page turning effect in real time and accurately through finger-bonded interactive page turning, significantly improving the response speed and smoothness of the page turning of the screen display content, achieving a natural and precise page turning operation effect, and thus providing a better user experience. This method can be applied to the page turning scenario of e-book readers to simulate the page turning feeling of paper books; it can be applied to the page turning scenario of content browsing platforms, such as social media or news websites, to provide a smoother content browsing experience; it can be applied to the page turning scenario of education and training applications to help users flip learning materials more effectively; and it can be applied to multimedia display scenarios, such as exhibitions and advertisements, to enhance the interactivity and naturalness of content display.
[0062] Embodiment 2:
[0063] This embodiment provides a finger-bonded interactive page turning system, including a sliding detection unit, a signal generation unit, and an interaction execution unit, where:
[0064] A sliding detection unit for real-time monitoring of the sliding operation of the user's finger sensed by the screen and determining the operation state of the sliding operation;
[0065] A signal generation unit for generating a first page-turning control signal when it is determined that the sliding operation of the user's finger reaches a first sliding distance; generating a second page-turning control signal when it is determined that the sliding operation of the user's finger reaches a second sliding distance, the second sliding distance being greater than the first sliding distance; generating a third page-turning control signal when it is determined that the sliding operation of the user's finger reaches a third sliding distance, the third sliding distance being greater than the second sliding distance; generating a fourth page-turning control signal when it is determined that the sliding operation of the user's finger reaches a fourth sliding distance, the fourth sliding distance being greater than the third sliding distance; and generating a fifth page-turning control signal when it is determined that the sliding operation of the user's finger ends;
[0066] An interaction execution unit for feeding back the first page-turning control signal to the screen so that the screen displays a first interactive page-turning visual effect according to the first page-turning control signal. In the first interactive page-turning visual effect, both the first page and the second page are divided into upper and lower halves, and a first display flipping angle is reached between the lower half of the first page and the lower half of the second page; feeding back the second page-turning control signal to the screen so that the screen displays a second interactive page-turning visual effect according to the second page-turning control signal. In the second interactive page-turning visual effect, both the first page and the second page are divided into upper and lower halves, and a second display flipping angle is reached between the lower half of the first page and the lower half of the second page, the second display flipping angle being greater than the first display flipping angle; feeding back the third page-turning control signal to the screen so that the screen displays a third interactive page-turning visual effect according to the third page-turning control signal. In the third interactive page-turning visual effect, both the first page and the second page are divided into upper and lower halves, and a third display flipping angle is reached between the lower half of the first page and the lower half of the second page, the third display flipping angle being greater than the second display flipping angle; feeding back the fourth page-turning control signal to the screen so that the screen displays a fourth interactive page-turning visual effect according to the fourth page-turning control signal. In the fourth interactive page-turning visual effect, both the first page and the second page are divided into upper and lower halves, and a fourth display flipping angle is reached between the lower half of the first page and the lower half of the second page, the fourth display flipping angle being greater than the third display flipping angle; and feeding back the fifth page-turning control signal to the screen so that the screen displays a fifth interactive page-turning visual effect according to the fifth page-turning control signal, and the fifth interactive page-turning visual effect finally fully displays the static second page.
[0067] Embodiment 3:
[0068] This embodiment provides a finger-bonding type interactive page-turning device, as Figure 2 shown. At the hardware level, it includes:
[0069] A screen, configured to sense the sliding operation of a user's finger and perform corresponding interactive page-turning visual effect display after receiving a corresponding page-turning control signal;
[0070] A memory, configured to store instructions;
[0071] A processor, configured to read the instructions stored in the memory and execute the finger adhesion-based interactive page-turning method in Embodiment 1 according to the instructions.
[0072] Optionally, the device further includes an internal bus, through which the processor, the memory, and the screen can be interconnected with each other. The screen may include, but is not limited to, a resistive touch screen, a capacitive touch screen, an infrared touch screen, and a surface acoustic wave touch screen. The memory may include, but is not limited to, a random access memory (RAM), a read-only memory (ROM), a flash memory, a first-in first-out memory (FIFO), and / or a first-in last-out memory (FILO), etc. The processor may be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; it may also be a digital signal processor (DSP), an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, and discrete hardware components.
[0073] Embodiment 4:
[0074] This embodiment provides a computer-readable storage medium, on which instructions are stored. When the instructions run on a computer, the computer is caused to execute the finger adhesion-based interactive page-turning method in Embodiment 1. Wherein, the computer-readable storage medium refers to a carrier for storing data, and may include, but is not limited to, a floppy disk, an optical disc, a hard disk, a flash memory, a USB flash drive, and / or a memory stick, etc. The computer may be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices.
[0075] This embodiment also provides a computer program product. When the computer program product runs on a computer, it executes the finger-bonding interactive page-turning method in Embodiment 1. Among them, the computer may be a microcomputer, a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices.
[0076] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not intended to limit the protection scope of the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A finger-adhesive interactive page turning method, characterized in that: include: In a state where the second page is preloaded and the screen currently displays the first page, real-time monitoring of the sliding operation of the user's finger sensed by the screen, and when it is determined that the sliding operation of the user's finger reaches a first sliding distance, generating a first page turning control signal; Feeding back the first page turning control signal to the screen, so that the screen performs a first interactive page turning visual effect display according to the first page turning control signal, in which the first page and the second page are both divided into an upper half page and a lower half page, and a first display flip angle is reached between the lower half page of the first page and the lower half page of the second page; When it is determined that the sliding operation of the user's finger reaches a second sliding distance, generating a second page turning control signal, wherein the second sliding distance is greater than the first sliding distance; Feeding back the second page turning control signal to the screen, so that the screen performs a second interactive page turning visual effect display according to the second page turning control signal, in which the first page and the second page are both divided into an upper half page and a lower half page, and a second display flip angle is reached between the lower half page of the first page and the lower half page of the second page, and the second display flip angle is greater than the first display flip angle; When it is determined that the sliding operation of the user's finger reaches a third sliding distance, generating a third page turning control signal, wherein the third sliding distance is greater than the second sliding distance; Feeding back the third page turning control signal to the screen, so that the screen performs a third interactive page turning visual effect display according to the third page turning control signal, in which the first page and the second page are both divided into an upper half page and a lower half page, and a third display flip angle is reached between the lower half page of the first page and the lower half page of the second page, and the third display flip angle is greater than the second display flip angle; When it is determined that the sliding operation of the user's finger reaches a fourth sliding distance, generating a fourth page turning control signal, wherein the fourth sliding distance is greater than the third sliding distance; Feeding back the fourth page turning control signal to the screen, so that the screen performs a fourth interactive page turning visual effect display according to the fourth page turning control signal, in which the first page and the second page are both divided into an upper half page and a lower half page, and a fourth display flip angle is reached between the lower half page of the first page and the lower half page of the second page, and the fourth display flip angle is greater than the third display flip angle; When it is determined that the sliding operation of the user's finger ends, generating a fifth page turning control signal; The fifth page turning control signal is fed back to the screen, so that the screen displays the fifth interactive page turning visual effect according to the fifth page turning control signal, and the fifth interactive page turning visual effect finally fully displays the static second page.
2. The finger-adhesion interactive page turning method according to claim 1, characterized in that: The sliding operation is an operation of sliding from the lower half of the screen to the upper half of the screen after touching the lower half of the screen.
3. The finger-adhesion interactive page turning method according to claim 1, characterized in that: The first interactive page turning visual effect also includes: the upper half of the first page is fully displayed, the lower half of the first page is accompanied by a black shadow effect with 80% transparency, the upper half of the second page is hidden on the back of the lower half of the first page, and the lower half of the second page is accompanied by a black shadow effect with 80% transparency.
4. The finger-adhesion interactive page turning method according to claim 1, characterized in that: The second interactive page turning visual effect also includes: the upper half of the first page is fully displayed, the lower half of the first page is accompanied by a black shadow effect with a transparency of 40%, the upper half of the second page is hidden behind the lower half of the first page, and the lower half of the second page is accompanied by a black shadow effect with a transparency of 60%.
5. The finger-adhesion interactive page turning method according to claim 1, characterized in that: The third interactive page turning visual effect also includes: the upper half of the first page is accompanied by a black shadow effect with a transparency of 60%, the lower half of the first page is hidden on the back of the upper half of the second page, the upper half of the second page is accompanied by a black shadow effect with a transparency of 40%, and the lower half of the second page is fully displayed.
6. The finger-adhesion interactive page turning method according to claim 1, characterized in that: The fourth interactive page turning visual effect also includes: the upper half of the first page is accompanied by a black shadow effect with 80% transparency, the lower half of the first page is hidden on the back of the upper half of the second page, the upper half of the second page is accompanied by a black shadow effect with 20% transparency, and the lower half of the second page is fully displayed.
7. The finger-adhesion interactive page turning method according to claim 1, characterized in that: The fifth interactive page turning visual effect includes: the lower half of the first page is hidden, the upper half of the first page transitions to being hidden, the upper half of the second page transitions to being fully displayed, and the lower half of the second page is fully displayed.
8. A finger-adhesive interactive page turning system, characterized in that: It includes a sliding detection unit, a signal generation unit and an interactive execution unit, wherein: A sliding detection unit, used to monitor the sliding operation of the user's finger sensed by the screen in real time and determine the operation state of the sliding operation; A signal generating unit, configured to generate a first page turning control signal when it is determined that the sliding operation of the user's finger reaches a first sliding distance; generate a second page turning control signal when it is determined that the sliding operation of the user's finger reaches a second sliding distance, the second sliding distance being greater than the first sliding distance; generate a third page turning control signal when it is determined that the sliding operation of the user's finger reaches a third sliding distance, the third sliding distance being greater than the second sliding distance; generate a fourth page turning control signal when it is determined that the sliding operation of the user's finger reaches a fourth sliding distance, the fourth sliding distance being greater than the third sliding distance; and generate a fifth page turning control signal when it is determined that the sliding operation of the user's finger ends; An interactive execution unit is used to feed back a first page turning control signal to a screen so that the screen displays a first interactive page turning visual effect according to the first page turning control signal, in which the first page and the second page are both divided into an upper half and a lower half, and a first display flip angle is reached between the lower half of the first page and the lower half of the second page; a second page turning control signal is fed back to the screen so that the screen displays a second interactive page turning visual effect according to the second page turning control signal, in which the first page and the second page are both divided into an upper half and a lower half, and a second display flip angle is reached between the lower half of the first page and the lower half of the second page, and the second display flip angle is greater than the first display flip angle; a third page turning control signal is fed back to the screen so that the screen displays a third interactive page turning visual effect according to the third page turning control signal. Display, in the third interactive page turning visual effect, the first page and the second page are both divided into the upper half and the lower half, and the third display flip angle is reached between the lower half of the first page and the lower half of the second page, and the third display flip angle is greater than the second display flip angle; the fourth page turning control signal is fed back to the screen, so that the screen displays the fourth interactive page turning visual effect according to the fourth page turning control signal, in the fourth interactive page turning visual effect, the first page and the second page are both divided into the upper half and the lower half, and the fourth display flip angle is reached between the lower half of the first page and the lower half of the second page, and the fourth display flip angle is greater than the third display flip angle; and the fifth page turning control signal is fed back to the screen, so that the screen displays the fifth interactive page turning visual effect according to the fifth page turning control signal, and the fifth interactive page turning visual effect finally fully displays the static second page.
9. A finger-adhesive interactive page turning device, characterized in that: include: The screen is used to sense the sliding operation of the user's finger and display the corresponding interactive page turning visual effect after receiving the corresponding page turning control signal; A memory for storing instructions; A processor is used to read the instructions stored in the memory and execute the finger-adhesion interactive page turning method according to any one of claims 1 to 7 according to the instructions.
10. A computer program product, characterized in that When the computer program product is run on a computer, the finger-adhesion interactive page turning method according to any one of claims 1 to 7 is executed.