Page turning broadcast regulation method and device, computer device and storage medium

By acquiring and processing the touch state parameters of the page-turning hinge sleeve, page-turning playback control without mechanical buttons is achieved, solving the problem of inaccurate playback caused by wear of mechanical hinge button switches and improving the accuracy of playback of reading content.

CN117292586BActive Publication Date: 2026-02-10BEIENS (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202311200047.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-15
Publication Date
2026-02-10
Estimated Expiration
2043-09-15

AI Technical Summary

Technical Problem

The mechanical rotary button switch of the existing reading pen is prone to wear, which leads to inaccurate page turning and playback, and it cannot be fully pressed to trigger the reading and playback content.

Method used

By acquiring the page-turning touch state parameters of the page-turning hinge, performing page-turning equivalent normalization processing, obtaining the page-turning touch normalization amount, and sending a page number adjustment signal to the page-reading system based on this amount, the page number corresponding to the selected page content is adjusted, thus achieving accurate reading without the need for mechanical button triggering.

Benefits of technology

It improves the accuracy of reading aloud content, avoids reading errors caused by wear and tear on mechanical buttons, and ensures the accuracy of page turning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a page turning broadcast regulation method and device, computer equipment and a storage medium. The method comprises obtaining a page turning touch state parameter of a book page turning shaft sleeve; performing page turning equivalent normalization processing on the page turning touch state parameter and a preset touch state parameter to obtain a page turning touch normalization quantity; and sending a page number signal to a book page broadcast system according to the page turning touch normalization quantity to adjust the page number corresponding to the selected book page content. The current turning triggering condition of the book page turning shaft sleeve is collected by obtaining the page turning touch state parameter, the page turning touch state parameter and the preset touch state parameter are processed correspondingly to obtain the turning book page state difference degree between the two, and finally, the page number signal is sent according to the turning book page state difference, so as to adjust the page turning number of the book page card and effectively improve the reading content broadcast accuracy.
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Description

Technical Field

[0001] This invention relates to the field of e-reader technology, and in particular to a page-turning broadcast control method, device, computer equipment, and storage medium. Background Technology

[0002] Currently, the main method for detecting page-turning actions and page numbers in electronic audio books is exemplified by the Chinese utility model patent CN202020766326.6, "A Reading Machine." This device includes a lower housing, an upper housing hinged to the lower housing, and multiple pages positioned between the lower and upper housings. Each page is connected to the lower housing via a pivot. The lower housing includes a handheld area at one end, a lower touch area at the other end, and a button area on one side of the lower touch area. The lower touch area has a lower touch diaphragm. The upper housing includes an upper touch area opposite to the lower touch area, with an upper touch diaphragm. The lower housing contains multiple pivot switches corresponding to the pivots, and each pivot has a pressing part that can press against the pivot switch. This utility model has a simple structure. By using upper and lower touch diaphragms, it enables reading different content on the front and back of the pages, and it allows for handheld reading without the need for a reading pen, making it very convenient.

[0003] However, the mechanical rotary button switch used in this type of e-reader is prone to wear and tear during prolonged use due to the pressing action. This can cause the rotary button switch to become unable to be fully pressed, resulting in the inability to trigger the reading function and frequent errors in the content being read. Summary of the Invention

[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide a page-turning broadcast control method, device, computer equipment, and storage medium that effectively improves the accuracy of the broadcast of interactive content.

[0005] The objective of this invention is achieved through the following technical solution:

[0006] A page-turning and voice-guided control method using a reading pen includes: using the reading pen to output voice selection to page cards; the reading pen includes a page-turning component and a page component; the page-turning component includes a page-turning pivot, multiple page-flipping sleeves, and multiple page-turning rotation triggers; each of the multiple page-flipping sleeves is rotatably connected to the page-turning pivot, and each page-flipping sleeve corresponds to a page-flipping rotation trigger, the page-flipping rotation trigger being used to contact the page-flipping sleeve when it rotates to obtain page-turning touch state parameters; the page component includes a first-page touchpad, an last-page touchpad, and multiple page cards; the page-turning pivot is disposed on the last-page touchpad; the first-page touchpad is connected to one of the page-flipping sleeves; and each page card is correspondingly connected to one of the page-flipping sleeves.

[0007] The page-turning broadcast control method includes:

[0008] Obtain the page-turning contact status parameters of the page-turning sleeve;

[0009] The page-turning touch state parameters and the preset touch state parameters are subjected to page-turning equivalent normalization processing to obtain the page-turning touch normalization amount;

[0010] The page number adjustment signal is sent to the page broadcasting system according to the page turning touch normalization value to adjust the page number corresponding to the selected page content.

[0011] In one embodiment, obtaining the page-turning contact state parameters of the page-turning bushing includes: obtaining the page-turning contact pulse voltage of the page-turning bushing.

[0012] In one embodiment, the step of performing page-turning touch state parameter and preset touch state parameter page-turning equivalent normalization processing to obtain page-turning touch normalization amount includes: calculating the equivalent difference between the page-turning touch pulse voltage and the preset pulse voltage to obtain the page-turning equivalent series voltage difference.

[0013] In one embodiment, the step of sending a page number adjustment signal to the book page broadcasting system based on the page-turning touch normalization amount to adjust the page number corresponding to the selected book page content includes: detecting whether the page-turning equivalent series voltage difference matches a preset voltage difference; when the page-turning equivalent series voltage difference matches the preset voltage difference, sending a page number reduction signal to the book page broadcasting system to reduce the page number corresponding to the selected book page content.

[0014] In one embodiment, obtaining the page-turning contact state parameters of the page-turning bushing includes: obtaining the page-turning contact pulse current of the page-turning bushing.

[0015] In one embodiment, the step of performing page-turning touch state parameter and preset touch state parameter page-turning equivalent normalization processing to obtain page-turning touch normalization amount includes: calculating the equivalent difference between the page-turning touch pulse current and the preset pulse current to obtain the page-turning equivalent parallel current difference.

[0016] In one embodiment, the step of sending a page number adjustment signal to the book page broadcasting system based on the page-turning touch normalization amount to adjust the page number corresponding to the selected book page content includes: detecting whether the page-turning equivalent parallel current difference matches a preset current difference; when the page-turning equivalent parallel current difference does not match the preset current difference, sending a page number increment signal to the book page broadcasting system to increase the page number corresponding to the selected book page content.

[0017] A page-turning playback control device includes: a page-turning acquisition module, a touch-holding normalization processing module, and a page-adjustment output module; the page-turning acquisition module is used to acquire page-turning touch-holding state parameters of the page-turning hinge; the touch-holding normalization processing module is used to perform page-turning equivalent normalization processing on the page-turning touch-holding state parameters and preset touch-holding state parameters to obtain a page-turning touch-holding normalization amount; the page-adjustment output module is used to send a page-adjustment signal to the page playback system according to the page-turning touch-holding normalization amount to adjust the page number corresponding to the selected page content.

[0018] A computer device includes a memory and a processor, the memory storing a computer program, and the processor executing the computer program performing the following steps:

[0019] Obtain the page-turning contact status parameters of the page-turning sleeve;

[0020] The page-turning touch state parameters and the preset touch state parameters are subjected to page-turning equivalent normalization processing to obtain the page-turning touch normalization amount;

[0021] The page number adjustment signal is sent to the page broadcasting system according to the page turning touch normalization value to adjust the page number corresponding to the selected page content.

[0022] A computer-readable storage medium having a computer program stored thereon, the computer program performing the following steps when executed by a processor:

[0023] Obtain the page-turning contact status parameters of the page-turning sleeve;

[0024] The page-turning touch state parameters and the preset touch state parameters are subjected to page-turning equivalent normalization processing to obtain the page-turning touch normalization amount;

[0025] The page number adjustment signal is sent to the page broadcasting system according to the page turning touch normalization value to adjust the page number corresponding to the selected page content.

[0026] Compared with the prior art, the present invention has at least the following advantages:

[0027] By acquiring the page-turning touch state parameters, the current page-turning trigger status of the page-turning sleeve is collected. Then, the page-turning touch state parameters are compared with preset touch state parameters to obtain the degree of difference in the page-turning state between the two. Finally, based on the difference in the page-turning state, a corresponding page number adjustment signal is sent to adjust the page number of the page card, thereby facilitating the determination of the page number and the output of the corresponding page card's reading content. This eliminates the need for mechanical button triggering and effectively improves the accuracy of the reading content. Attached Figure Description

[0028] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0029] Figure 1 This is a flowchart of a page-turning broadcast control method in one embodiment;

[0030] Figure 2 This is a schematic diagram of a reading pen in one embodiment;

[0031] Figure 3 This is an internal structural diagram of a computer device in one embodiment. Detailed Implementation

[0032] To facilitate understanding of the present invention, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of the invention are shown in the drawings. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a thorough and complete understanding of the disclosure of the invention.

[0033] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.

[0034] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0035] This invention relates to a page-turning playback control method. In one embodiment, the page-turning playback control method includes acquiring page-turning touch state parameters of the page-turning hinge; performing page-turning touch state parameters and preset touch state parameters through page-turning equivalence normalization processing to obtain a page-turning touch normalization amount; and sending a page number adjustment signal to the page playback system according to the page-turning touch normalization amount to adjust the page number corresponding to the selected page content. By acquiring the page-turning touch state parameters, the current page-turning trigger status of the page-turning hinge is collected. Then, the page-turning touch state parameters and preset touch state parameters are processed to obtain the degree of difference in page-turning status between the two. Finally, according to the difference in page-turning status, a page number adjustment signal is sent accordingly, which facilitates adjusting the page number of the page card, thereby facilitating the determination of the page number and the output of the playback content of the corresponding page card. This eliminates the need for mechanical button triggering and effectively improves the accuracy of the playback of the reading content.

[0036] Please see Figure 1 This is a flowchart of a page-turning broadcast control method according to an embodiment of the present invention. The page-turning broadcast control method includes some or all of the following steps.

[0037] S100: Obtain the page-turning contact status parameters of the page-turning sleeve.

[0038] In this embodiment, the page-turning touch state parameter is the page-turning rotation state parameter of the page-turning sleeve, that is, the page-turning touch state parameter is the rotation state triggered by the page-turning sleeve when turning a page, and also the maintenance state of the page-turning rotation trigger of the page-turning sleeve. By collecting the page-turning touch state parameter, it is convenient to determine the rotation state triggered by the page-turning sleeve when turning a page, thereby facilitating the determination of the current rotation trigger working state of the page-turning sleeve, and further facilitating the determination of the current page-turning rotation working state of the page-turning sleeve.

[0039] S200: Perform page-turning touch state parameters and preset touch state parameters into a page-turning equivalent normalization process to obtain the page-turning touch normalization amount.

[0040] In this embodiment, the page-turning touch state parameter is the page-turning rotation state parameter of the page-turning sleeve, that is, the page-turning touch state parameter is the rotation state triggered by the page-turning sleeve when turning a page, and also the maintenance state of the page-turning rotation trigger of the page-turning sleeve. By collecting the page-turning touch state parameter, it is convenient to determine the rotation state triggered by the page-turning sleeve when turning a page, thereby facilitating the determination of the current rotation trigger working state of the page-turning sleeve, and further facilitating the determination of the current page-turning rotation working state of the page-turning sleeve. The preset touch state parameter is the standard page-turning rotation state parameter of the page-turning sleeve, that is, the preset touch state parameter is the specified rotation state triggered by the page-turning sleeve when turning a page, and also the reference state of the page-turning rotation trigger of the page-turning sleeve. By performing page-turning equivalence normalization processing on the page-turning touch state parameters and the preset touch state parameters, the page-turning touch state parameters and the preset touch state parameters are subjected to different page-turning rotation working states, so as to obtain the difference in the page-turning rotation trigger state of the page-turning sleeve.

[0041] S300: Send a page number adjustment signal to the book page broadcasting system according to the page turning touch normalization amount, so as to adjust the page number corresponding to the selected book page content.

[0042] In this embodiment, the page-turning touch normalization value is obtained based on the page-turning touch state parameters and the preset touch state parameters. The page-turning touch state parameters are the page-turning rotation state parameters of the page-turning hinge, that is, the page-turning touch state parameters are the rotation state triggered by the page-turning hinge when turning a page, and also the maintenance state of the page-turning rotation trigger of the page-turning hinge. By collecting the page-turning touch state parameters, it is convenient to determine the rotation state triggered by the page-turning hinge when turning a page, thereby facilitating the determination of the current rotation trigger working state of the page-turning hinge, and further facilitating the determination of the current page-turning rotation working state of the page-turning hinge. The preset touch state parameters are the standard page-turning rotation state parameters of the page-turning hinge, that is, the preset touch state parameters are the specified rotation state triggered by the page-turning hinge when turning a page, and also the reference state of the page-turning rotation trigger of the page-turning hinge. By performing page-turning touch state parameters and preset touch state parameters through page-turning equivalence normalization, the page-turning touch state parameters and preset touch state parameters are compared in terms of page-turning rotation operation, thus obtaining the difference in the page-turning rotation trigger state of the page-turning sleeve. By collecting the page-turning touch normalization data, it is easy to determine the degree of difference between the page-turning trigger of the page-turning sleeve and the standard trigger, thereby facilitating the determination of the page-turning rotation completion state of the page-turning sleeve. This, in turn, facilitates the determination of the completeness of the page-turning action of the page-turning sleeve, allowing for the corresponding addition or subtraction of page numbers after the page-turning rotation of the page-turning sleeve occurs, thereby achieving precise positioning of the page-turning state.

[0043] In the above embodiment, by acquiring the page-turning touch state parameters, the current page-turning trigger status of the page-turning sleeve is collected. Then, the page-turning touch state parameters are processed to correspond with preset touch state parameters to obtain the degree of difference in the page-turning state between the two. Finally, according to the difference in the page-turning state, a corresponding page number adjustment signal is sent to facilitate the adjustment of the page number of the page card, thereby facilitating the determination of the page number and the output of the corresponding page card's broadcast content. This eliminates the need for mechanical button triggering and effectively improves the accuracy of the reading content broadcast.

[0044] In another embodiment, the playback of the content on each page card can be played automatically after turning the page, or it can be triggered by various triggering methods, such as triggering the playback of the content on the page card by touch sensing of a touch panel.

[0045] In one embodiment, acquiring the page-turning contact state parameters of the page-turning hinge includes acquiring the page-turning contact pulse voltage of the page-turning hinge. In this embodiment, the page-turning contact state parameters are the page-turning rotation state parameters of the page-turning hinge, that is, the page-turning contact state parameters are the rotation state triggered by the page-turning hinge when turning a page, or the page-turning rotation triggering maintenance state of the page-turning hinge. By acquiring the page-turning contact state parameters, it is convenient to determine the rotation state triggered by the page-turning hinge when turning a page, thereby facilitating the determination of the current rotation triggering working state of the page-turning hinge, and further facilitating the determination of the current page-turning rotation working state of the page-turning hinge. The page-turning touch state parameters include the page-turning touch pulse voltage of the page-turning sleeve. The page-turning touch pulse voltage is the flip pulse voltage of the page-turning sleeve when turning a page. Moreover, the page-turning touch pulse voltage is the continuous pulse voltage of the page-turning sleeve when triggering page turning. By collecting the page-turning touch pulse voltage, it is easy to determine the degree of flipping of the page-turning sleeve, thereby making it easy to determine the completion of page card flipping when the page-turning sleeve rotates.

[0046] In another embodiment, the page-turning trigger pulse voltage is the sum of the voltages of the multiple page-turning sleeves. Specifically, the variable resistors in the multiple page-turning sleeves are connected in series, and each variable resistor is also connected in parallel with a rotary switch. When the page-turning sleeve is turned, the internal rotary switch is triggered, causing the corresponding variable resistor to short-circuit or conduct, thereby obtaining the equivalent pulse voltage formed after different numbers of page-turning sleeves are turned, which facilitates the determination of the degree and number of page-turning sleeves. The rotary switch is a page-turning rotation trigger.

[0047] Further, the step of performing page-turning touch state parameter and preset touch state parameter page-turning equivalent normalization processing to obtain page-turning touch normalization quantity includes: calculating the equivalent difference between the page-turning touch pulse voltage and the preset pulse voltage to obtain the page-turning equivalent series voltage difference. In this embodiment, the page-turning touch state parameter is the page-turning flip state parameter of the book page flip sleeve, that is, the page-turning touch state parameter is the flip state triggered by the book page flip sleeve when turning a page, that is, the page-turning touch state parameter is the maintenance state of the page-turning rotation trigger of the book page flip sleeve. By collecting the page-turning touch state parameter, it is convenient to determine the rotation state triggered by the book page flip sleeve when turning a page, thereby facilitating the determination of the current flip trigger working state of the book page flip sleeve, and further facilitating the determination of the current page-turning flip working state of the book page flip sleeve. The preset touch state parameter is the standard page-turning state parameter of the page-turning sleeve, that is, the preset touch state parameter is the specified flip state triggered by the page-turning sleeve when turning a page, and also the reference state for the page-turning rotation triggering of the page-turning sleeve. By performing page-turning equivalence normalization processing on the page-turning touch state parameter and the preset touch state parameter, the page-turning rotation working state of the page-turning touch state parameter and the preset touch state parameter are differentiated to obtain the difference in the page-turning rotation triggering state of the page-turning sleeve. The page-turning touch state parameters include the page-turning touch pulse voltage of the page-turning sleeve. This page-turning touch pulse voltage is the flip pulse voltage of the page-turning sleeve when turning a page. Furthermore, the page-turning touch pulse voltage is the continuous pulse voltage of the page-turning sleeve when triggering page turning. By collecting the page-turning touch pulse voltage, the degree of flipping of the page-turning sleeve can be easily determined, thus facilitating the determination of the completion of page card flipping during rotation. The preset pulse voltage is the standard flip pulse voltage of the page-turning sleeve when turning a page. Calculating the equivalent difference between the page-turning touch pulse voltage and the preset pulse voltage allows for the acquisition of the pulse voltage change of the page-turning sleeve during page turning, facilitating the determination of the degree of difference in the equivalent pulse voltage change of the page-turning sleeve during page turning, and thus facilitating the determination of the deviation between the equivalent page-turning pulse voltage of the page-turning sleeve and the standard voltage.

[0048] Furthermore, the step of sending a page number adjustment signal to the book page broadcasting system based on the page-turning touch normalization amount to adjust the page number corresponding to the selected book page content includes: detecting whether the page-turning equivalent series voltage difference matches a preset voltage difference; when the page-turning equivalent series voltage difference matches the preset voltage difference, sending a page number reduction signal to the book page broadcasting system to reduce the page number corresponding to the selected book page content. In this embodiment, the page-turning touch normalization amount is obtained based on the page-turning touch state parameters and the preset touch state parameters. The page-turning touch state parameters are the page-turning flip state parameters of the book page flipping sleeve, that is, the page-turning touch state parameters are the flipping situation triggered by the book page flipping sleeve when turning pages, and also the page-turning touch state parameters are the maintenance state triggered by the page-turning rotation of the book page flipping sleeve. By collecting the page-turning touch state parameters, it is easy to determine the rotation state triggered by the page-turning hinge when turning pages, thereby facilitating the determination of the current page-turning trigger working state of the page-turning hinge, and further facilitating the determination of the current page-turning working state of the page-turning hinge. The preset touch state parameters are the standard page-turning flip state parameters of the page-turning hinge, that is, the preset touch state parameters are the specified flip situation triggered by the page-turning hinge when turning pages, and also the reference state for the page-turning rotation triggering of the page-turning hinge. By performing page-turning equivalence normalization processing on the page-turning touch state parameters and the preset touch state parameters, the page-turning rotation working state of the page-turning touch state parameters and the preset touch state parameters are differentiated to obtain the difference in the page-turning rotation triggering state of the page-turning hinge. By collecting the page-turning touch normalization data, it is easy to determine the degree of difference between the page-turning trigger of the page-turning sleeve and the standard trigger, thereby facilitating the determination of the page-turning rotation completion state of the page-turning sleeve. This, in turn, facilitates the determination of the completeness of the page-turning action, allowing for the corresponding addition or subtraction of page numbers after the page-turning rotation of the page-turning sleeve occurs, thus achieving precise positioning of the page-turning state. The page-turning touch state parameters include the page-turning touch pulse voltage of the page-turning sleeve. This page-turning touch pulse voltage is the flip pulse voltage of the page-turning sleeve during page turning, and it is also the continuous pulse voltage of the page-turning sleeve when triggering page turning. By collecting the page-turning touch pulse voltage, it is easy to determine the degree of flipping of the page-turning sleeve, thereby facilitating the determination of the completion of the page card flipping during the rotation of the page-turning sleeve.The preset pulse voltage is the standard flip pulse voltage of the page-flipping sleeve when turning pages. Calculating the equivalent difference between the page-flipping contact pulse voltage and the preset pulse voltage allows us to understand the pulse voltage change of the page-flipping sleeve during page turning, facilitating the determination of the degree of difference in the equivalent pulse voltage change and thus the deviation between the page-flipping sleeve's equivalent voltage and the standard voltage. The matching of the page-flipping equivalent series voltage difference with the preset voltage difference indicates that the page-flipping sleeve's equivalent voltage is equal to the standard voltage. This means the total equivalent pulse voltage collected after page turning meets the standard, indicating that the corresponding page card is flipped in reverse. At this point, a decrement signal is sent to the page broadcasting system to reduce the page number corresponding to the selected page content, ensuring the current page card's page number corresponds to the broadcast page content.

[0049] In another embodiment, when the equivalent series voltage difference of the page turning does not match the preset voltage difference, a page number increment signal is sent to the page broadcasting system to increase the page number corresponding to the selected page content. At this time, the page card is flipped in the forward direction, which increases the page number.

[0050] In one embodiment, acquiring the page-turning contact state parameters of the page-turning hinge includes: acquiring the page-turning contact pulse current of the page-turning hinge. In this embodiment, the page-turning contact state parameters are the page-turning rotation state parameters of the page-turning hinge, that is, the page-turning contact state parameters are the rotation state triggered by the page-turning hinge when turning a page, or the page-turning rotation triggering maintenance state of the page-turning hinge. By acquiring the page-turning contact state parameters, it is convenient to determine the rotation state triggered by the page-turning hinge when turning a page, thereby facilitating the determination of the current rotation triggering working state of the page-turning hinge, and further facilitating the determination of the current page-turning rotation working state of the page-turning hinge. The page-turning touch state parameters include the page-turning touch pulse current of the page-turning sleeve. The page-turning touch pulse current is the flip pulse current of the page-turning sleeve when turning a page. Moreover, the page-turning touch pulse current is the continuous pulse current of the page-turning sleeve when triggering page turning. By collecting the page-turning touch pulse current, it is easy to determine the degree of flipping of the page-turning sleeve, thereby making it easy to determine the completion of page card flipping when the page-turning sleeve rotates.

[0051] In another embodiment, the page-turning touch pulse current is the sum of the currents of the multiple page-turning bushings. Specifically, the electrolytic capacitors in the multiple page-turning bushings are connected in parallel. When the page-turning bushings are turned, the corresponding electrolytic capacitors are triggered to open or close, thereby obtaining the corresponding equivalent pulse currents formed after different numbers of page-turning bushings are turned, which makes it easier to determine the degree of turning and the number of turning of the page-turning bushings.

[0052] Further, the step of performing page-turning touch state parameter and preset touch state parameter page-turning equivalent normalization processing to obtain page-turning touch normalization quantity includes: calculating the equivalent difference between the page-turning touch pulse current and the preset pulse current to obtain the page-turning equivalent parallel current difference. In this embodiment, the page-turning touch state parameter is the page-turning flip state parameter of the book page flip sleeve, that is, the page-turning touch state parameter is the flip state triggered by the book page flip sleeve when turning a page, that is, the page-turning touch state parameter is the maintenance state of the page-turning rotation trigger of the book page flip sleeve. By collecting the page-turning touch state parameter, it is convenient to determine the rotation state triggered by the book page flip sleeve when turning a page, thereby facilitating the determination of the current flip trigger working state of the book page flip sleeve, and further facilitating the determination of the current page-turning flip working state of the book page flip sleeve. The preset touch state parameter is the standard page-turning state parameter of the page-turning sleeve, that is, the preset touch state parameter is the specified flip state triggered by the page-turning sleeve when turning a page, and also the reference state for the page-turning rotation triggering of the page-turning sleeve. By performing page-turning equivalence normalization processing on the page-turning touch state parameter and the preset touch state parameter, the page-turning rotation working state of the page-turning touch state parameter and the preset touch state parameter are differentiated to obtain the difference in the page-turning rotation triggering state of the page-turning sleeve. The page-turning touch state parameters include the page-turning touch pulse current of the page-turning sleeve. This page-turning touch pulse current is the flipping pulse current of the page-turning sleeve when turning a page. Furthermore, the page-turning touch pulse current is the continuous pulse current of the page-turning sleeve when triggering page turning. By collecting the page-turning touch pulse current, the degree of flipping of the page-turning sleeve can be easily determined, thus facilitating the determination of the completion of page card flipping during rotation. The preset pulse current is the standard flipping pulse current of the page-turning sleeve when turning a page. Calculating the equivalent difference between the page-turning touch pulse current and the preset pulse current allows for the acquisition of the pulse current change of the page-turning sleeve during page turning, facilitating the determination of the degree of difference in the equivalent pulse current change of the page-turning sleeve during page turning, and thus facilitating the determination of the deviation between the equivalent page-turning pulse current of the page-turning sleeve and the standard current.

[0053] Furthermore, the step of sending a page number adjustment signal to the page broadcasting system based on the page-turning touch normalization amount to adjust the page number corresponding to the selected page content includes: detecting whether the page-turning equivalent parallel current difference matches a preset current difference; when the page-turning equivalent parallel current difference does not match the preset current difference, sending a page-increase signal to the page broadcasting system to increase the page number corresponding to the selected page content. In this embodiment, the page-turning touch normalization amount is obtained based on the page-turning touch state parameters and the preset touch state parameters. The page-turning touch state parameters are the page-turning flip state parameters of the page-turning hinge, that is, the page-turning touch state parameters are the flip state triggered by the page-turning hinge when turning a page, and also the page-turning touch state parameters are the maintenance state triggered by the page-turning rotation of the page-turning hinge. By collecting the page-turning touch state parameters, it is easy to determine the rotation state triggered by the page-turning hinge when turning pages, thereby facilitating the determination of the current page-turning trigger working state of the page-turning hinge, and further facilitating the determination of the current page-turning working state of the page-turning hinge. The preset touch state parameters are the standard page-turning flip state parameters of the page-turning hinge, that is, the preset touch state parameters are the specified flip situation triggered by the page-turning hinge when turning pages, and also the reference state for the page-turning rotation triggering of the page-turning hinge. By performing page-turning equivalence normalization processing on the page-turning touch state parameters and the preset touch state parameters, the page-turning rotation working state of the page-turning touch state parameters and the preset touch state parameters are differentiated to obtain the difference in the page-turning rotation triggering state of the page-turning hinge. By collecting the page-turning touch normalization data, it is easy to determine the degree of difference between the page-turning trigger of the page-turning sleeve and the standard trigger, thereby facilitating the determination of the page-turning rotation completion state of the page-turning sleeve. This, in turn, facilitates the determination of the completeness of the page-turning action, allowing for the corresponding addition or subtraction of page numbers after the page-turning rotation of the page-turning sleeve occurs, thus achieving precise positioning of the page-turning state. The page-turning touch state parameters include the page-turning touch pulse current of the page-turning sleeve. This page-turning touch pulse current is the flip pulse current of the page-turning sleeve during page-turning, and it is also the continuous pulse current of the page-turning sleeve when triggering page-turning. By collecting the page-turning touch pulse current, it is easy to determine the degree of flipping of the page-turning sleeve, thereby facilitating the determination of the completion of the page card flipping during the rotation of the page-turning sleeve.The preset pulse current is the standard flip pulse current of the page-flipping sleeve when turning pages. Calculating the equivalent difference between the page-flipping contact pulse current and the preset pulse current allows us to understand the pulse current variation of the page-flipping sleeve during page turning. This helps determine the degree of difference in the equivalent pulse current variation of the page-flipping sleeve during page turning, and thus the deviation between the page-flipping sleeve's equivalent pulse current and the standard current. A mismatch between the page-flipping equivalent parallel current difference and the preset current difference indicates that the page-flipping sleeve's equivalent pulse current is unequal to the standard current. This means the total equivalent pulse current collected after page turning does not match the standard total current, indicating that the corresponding page card is flipping in the forward direction. At this point, a page number increment signal is sent to the page broadcasting system to increase the page number corresponding to the selected page content, ensuring the current page card's page number corresponds to the broadcast page content.

[0054] In another embodiment, when the equivalent parallel current difference of the page turning matches the preset current difference, the page flipping sleeve corresponding to the page card flips in the reverse direction and sends a decrement signal to the page broadcasting system to reduce the page number corresponding to the selected page content, thereby improving the accuracy of broadcasting the content on each page card.

[0055] When collecting data on the actual rotation state of the page-flipping bushing, the user flips the page card, thereby causing the page-flipping bushing to flip. Then, based on the pulse electrical signals from the rheostat and electrolytic capacitor inside the page-flipping bushing, the actual flipping status of the page-flipping bushing is determined.

[0056] However, during the page turning process, the page cards may not be fully turned over. For example, there may be an obstruction between a page card and the first or last page touchpad, specifically, the user's finger, preventing the page card from contacting the first or last page touchpad. This would prevent the playback from being triggered by touch, resulting in errors in the content being played.

[0057] To reduce the chance of misplaying the content of the book page cards, the step of obtaining the page-turning contact state parameters of the book page flipping sleeve includes the following steps:

[0058] Obtain the page-turning angle of the page-flipping bushing;

[0059] Detect whether the page-turning angle is less than a preset angle;

[0060] When the page-turning angle is less than the preset angle, a page-turning obstruction alarm signal is sent to the book page broadcasting system.

[0061] In this embodiment, the page-turning angle is the flipping angle of the page-flipping hinge, that is, the page-turning angle is the swing angle of the page card corresponding to the page-flipping hinge, and the page-turning angle corresponds to the flipping direction and the flipping curvature of the page card. The preset angle is the standard flipping angle of the page-flipping hinge, specifically, the preset angle is the flipping angle of the first page touchpad or the last page touchpad. The fact that the page-turning angle is less than the preset angle indicates that the page-turning angle of the page-flipping sleeve is less than the standard page-turning angle. This means the page-flipping sleeve's angle is less than the angle of the first or last page touchpad, indicating a gap or obstruction between the page card and the first or last page touchpad. In this case, the page card does not have effective contact with the first or last page touchpad, and there is a situation where the contact gap between part or all of the page card and the first or last page touchpad is too large. By sending a page-turning obstruction alarm signal to the page broadcasting system, it is easy to determine that the page card corresponding to the page-flipping sleeve has not been fully flipped to be parallel and aligned with the first or last page touchpad, so that the user can promptly remove the obstruction between the page card and the first or last page touchpad.

[0062] In another embodiment, when the page-turning angle is greater than or equal to the preset turning angle, step S100 is executed.

[0063] Furthermore, the step of detecting whether the page-turning angle is less than a preset angle further includes:

[0064] When the page-turning angle is greater than or equal to the preset angle, the absolute value of the forward and reverse page-turning difference of the page-turning sleeve is obtained;

[0065] Detect whether the absolute value of the forward and reverse page turning difference is greater than or equal to a preset absolute value;

[0066] When the absolute value of the forward and reverse page turning is greater than or equal to the preset absolute value, a touch sensitivity increase signal is sent to the book page broadcasting system.

[0067] In this embodiment, a page-turning angle greater than or equal to a preset angle indicates that the page card connected to the page-turning sleeve flips onto the touchpad without obstruction. The absolute difference between forward and reverse page-turning is the absolute value of the number of pages flipped in each direction by the multiple page-turning sleeves. Specifically, the direction of flipping towards the homepage touchpad is forward, and the direction of flipping towards the endpage touchpad is reverse. The absolute difference between the number of forward-turning and reverse-turning page-turning sleeves is the absolute value between forward and reverse page-turning. An absolute difference greater than or equal to the preset absolute value indicates that the number of page cards connected to the page-turning sleeve on one touchpad is excessive, meaning that either the homepage touchpad or the endpage touchpad has a large number of page cards. Specifically, either the homepage touchpad or the endpage touchpad has all the page cards. In this way, a touch capacitance increase signal is sent to the page broadcasting system, which increases the capacitance of the touch-sensitive capacitors in the homepage touchpad and the endpage touchpad, thereby improving the touch sensitivity of the homepage touchpad and the endpage touchpad. This allows the broadcasting function to be accurately triggered even when the page card is too thick on the homepage touchpad or the endpage touchpad.

[0068] In another embodiment, when the absolute value of the forward and reverse page turning is less than the preset absolute value, a touch capacitance reduction signal is sent to the book page broadcasting system so that the capacitance of the touch-sensitive capacitors in the first page touchpad and the last page touchpad decreases and returns to the normal capacitance value.

[0069] Furthermore, the step of sending a page-turning obstruction alarm signal to the book page broadcasting system when the page-turning angle is less than the preset angle specifically includes the following steps:

[0070] When the page-turning angle is less than the preset angle, the page-turning angle difference of the page-turning sleeve is obtained;

[0071] Detect whether the page-turning angle difference is less than or equal to a preset angle difference;

[0072] When the page-turning angle difference is less than or equal to the preset angle difference, an incremental capacitance signal is sent to the page broadcasting system so that the capacitance value of the touch-sensitive capacitor in the first page touch panel and the last page touch panel gradually increases in the direction away from the page-turning shaft sleeve.

[0073] In this embodiment, the page-turning angle difference is the absolute difference between the page-turning angle and the preset angle. Specifically, the page-turning angle difference is the angle of inclination between the page card connected to the page-turning sleeve and the adjacent first-page or last-page touchpad. If the page-turning angle difference is less than or equal to the preset angle difference, it indicates that the angle of inclination between the page card connected to the page-turning sleeve and the adjacent first-page or last-page touchpad is small, meaning the degree of inclination between the page card connected to the page-turning sleeve and the adjacent first-page or last-page touchpad is low. Without affecting usability, an incremental capacitance signal is sent to the page-playing system so that the capacitance of the touch-sensitive capacitors in the first-page and last-page touchpads gradually increases in the direction away from the page-turning sleeve. This increases the touch sensitivity between the page card and the first-page or last-page touchpad, thereby ensuring that the touch sensitivity of each position on the page card is consistent with that of the first-page or last-page touchpad, effectively improving the accuracy of the content playback on the page card.

[0074] In another embodiment, when the page-turning angle difference is greater than the preset angle difference, a page-turning obstruction alarm signal is sent to the book page broadcasting system.

[0075] In another embodiment, at least one of the homepage touchpad or the endpage touchpad has a page card embedded within it.

[0076] All the aforementioned preset variables are set in the database for easy retrieval, and different preset variables are placed in different storage units, i.e., in different storage stacks. Moreover, the page turning angle, the absolute value of the difference between forward and reverse page turning, and the page turning angle difference can be collected by the corresponding detectors, for example, by the page turning counter and page turning angle measuring device in the page turning acquisition module.

[0077] In one embodiment, this application also provides a page-turning playback control device, including a page-turning acquisition module, a touch-holding normalization processing module, and a page-adjustment output module; the page-turning acquisition module is used to acquire page-turning touch-holding state parameters of the page-turning hinge; the touch-holding normalization processing module is used to perform page-turning equivalent normalization processing on the page-turning touch-holding state parameters and preset touch-holding state parameters to obtain a page-turning touch-holding normalization amount; the page-adjustment output module is used to send a page-adjustment signal to the page playback system according to the page-turning touch-holding normalization amount to adjust the page number corresponding to the selected page content.

[0078] In this embodiment, the page-turning acquisition module acquires the page-turning touch state parameters to collect the current page-turning trigger status. Then, the touch normalization processing module processes the page-turning touch state parameters with preset touch state parameters to obtain the degree of difference in the page-turning state between the two. Finally, the page-adjustment output module sends a page-adjustment signal according to the difference in the page-turning state, which facilitates the adjustment of the page number of the page card, thereby making it easier to determine the page number and output the reading content of the corresponding page card. This eliminates the need for mechanical button triggering and effectively improves the accuracy of the reading content.

[0079] In one embodiment, this application also provides a reading pen; please refer to [link to relevant documentation]. Figure 2 The e-reader 10 includes a page-turning assembly 100 and a page assembly 200. The page-turning assembly 100 includes a page-turning pivot 110, multiple page-flipping sleeves 120, and multiple page-turning rotation triggers 130. Each page-flipping sleeve 120 is rotatably connected to the page-turning pivot 110. Each page-flipping sleeve 120 corresponds to a page-flipping rotation trigger 130, which is used to contact the page-flipping sleeve 120 when it rotates to obtain page-turning touch state parameters. The page assembly 200 includes a first-page touchpad 210, a last-page touchpad 220, and multiple page cards 230. The page-turning pivot 110 is disposed on the last-page touchpad 220. The first-page touchpad 210 is connected to a page-flipping sleeve 120, and each page card 230 is correspondingly connected to a page-flipping sleeve 120.

[0080] In another embodiment, the e-reader further includes a plurality of series-connected rheostats, each of the page-flipping bushings 120 having one rheostat, and each rheostat being connected in parallel with a page-flipping trigger 130.

[0081] In another embodiment, the e-reader further includes a plurality of electrolytic capacitors connected in parallel, with one electrolytic capacitor disposed in each of the page-flipping bushings 120, and each of the electrolytic capacitors connected in series with a page-flipping trigger 130.

[0082] In another embodiment, the page-turning acquisition module is integrated within the page-turning sleeve, and the touch-unification processing module and the page-turning output module are integrated on the central control circuit board of at least one of the first page touch panel and the last page touch panel.

[0083] In one embodiment, a computer device is provided, which may be a server, and its internal structure diagram may be as follows: Figure 3As shown, the computer device includes a processor, memory, and a network interface connected via a system bus. The processor provides computing and control capabilities. The memory includes a non-volatile storage medium and internal memory. The non-volatile storage medium stores the operating system, computer programs, and a database. The internal memory provides an environment for the operation of the operating system and computer programs stored in the non-volatile storage medium. The database stores data such as page-turning touch state parameters, preset touch state parameters, and page number signals. The network interface communicates with external terminals via a network connection. When executed by the processor, the computer program implements a page-turning playback control method.

[0084] Those skilled in the art will understand that Figure 3 The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.

[0085] In one embodiment, this application also provides a computer device including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the steps in the above-described method embodiments.

[0086] In one embodiment, this application also provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps in the above-described method embodiments.

[0087] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the methods described above. Any references to memory, storage, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, or optical storage, etc. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc.

[0088] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the invention patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of this invention patent should be determined by the appended claims.

Claims

1. A method for controlling page turning and playback using a point-and-read machine, characterized in that, include: A reading pen is used to select pages from book cards via voice output. The reading pen includes: A page-turning assembly includes a page-turning pivot seat, multiple page-flipping bushings, and multiple page-turning rotation triggers. The multiple page-flipping bushings are rotatably connected to the page-turning pivot seat. Each page-flipping bushing corresponds to a page-turning rotation trigger. The page-turning rotation trigger is used to contact the page-flipping bushing when it rotates to obtain page-turning contact state parameters. A book page assembly, comprising a first page touchpad, an last page touchpad, and multiple book page cards, wherein the page turning pivot is disposed on the last page touchpad, the first page touchpad is connected to a book page turning pivot sleeve, and each book page card is correspondingly connected to a book page turning pivot sleeve; The page-turning broadcast control method includes: Obtain the page-turning contact status parameters of the page-turning bushing, including the page-turning contact pulse voltage or the page-turning contact pulse current; The page-turning touch state parameters and the preset touch state parameters are subjected to page-turning equivalent normalization processing to obtain the page-turning touch normalization amount; The page number adjustment signal is sent to the page broadcasting system according to the page turning touch normalization value to adjust the page number corresponding to the selected page content.

2. The page-turning broadcast control method according to claim 1, characterized in that, The step of performing page-turning touch state parameter and preset touch state parameter page-turning equivalent normalization processing to obtain page-turning touch normalization amount includes: The equivalent difference between the page-turning touch pulse voltage and the preset pulse voltage is calculated to obtain the equivalent series voltage difference for page turning.

3. The page-turning broadcast control method according to claim 2, characterized in that, The step of sending a page number adjustment signal to the book page broadcasting system based on the page-turning touch normalization value to adjust the page number corresponding to the selected book page content includes: Detect whether the equivalent series voltage difference of the page transition matches the preset voltage difference; When the equivalent series voltage difference of the page transition matches the preset voltage difference, a decrement signal is sent to the page broadcasting system to reduce the page number corresponding to the selected page content.

4. The page-turning broadcast control method according to claim 1, characterized in that, The step of performing page-turning touch state parameter and preset touch state parameter page-turning equivalent normalization processing to obtain page-turning touch normalization amount includes: The equivalent difference between the page-turning touch pulse current and the preset pulse current is calculated to obtain the equivalent parallel current difference for page turning.

5. The page-turning broadcast control method according to claim 4, characterized in that, The step of sending a page number adjustment signal to the book page broadcasting system based on the page-turning touch normalization value to adjust the page number corresponding to the selected book page content includes: Detect whether the equivalent parallel current difference of the page transition matches the preset current difference; When the equivalent parallel current difference of the page turning does not match the preset current difference, a page number increment signal is sent to the book page broadcasting system to increase the page number corresponding to the selected book page content.

6. A page-turning broadcast control device, characterized in that, include: A page-turning acquisition module is used to acquire page-turning contact state parameters of the page-turning bushing, including page-turning contact pulse voltage or page-turning contact pulse current. A touch normalization processing module is used to perform page-turning touch state parameters and preset touch state parameters to perform page-turning equivalent normalization processing to obtain page-turning touch normalization amount; A page adjustment output module is used to send a page adjustment signal to the book page broadcasting system according to the page turning touch normalization amount, so as to adjust the page number corresponding to the selected book page content; The page-turning broadcast control device further includes a page-turning component and a page component. The page-turning component includes a page-turning pivot seat, multiple page-flipping sleeves, and multiple page-turning rotation triggers. Each page-flipping sleeve is rotatably connected to the page-turning pivot seat, and each page-flipping sleeve corresponds to a page-flipping rotation trigger. The page-flipping rotation trigger is used to make contact when the page-flipping sleeve rotates to obtain page-turning touch state parameters. The page component includes a first-page touchpad, a last-page touchpad, and multiple page cards. The page-turning pivot seat is disposed on the last-page touchpad, the first-page touchpad is connected to a page-flipping sleeve, and each page card is correspondingly connected to a page-flipping sleeve.

7. A computer device comprising a memory and a processor, wherein the memory stores a computer program, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 5.

8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 5.

Citation Information

Patent Citations

  • Touch and talk machine

    CN212256604U

  • Method and device for detecting page upturning movement on electronic reading machine

    CN104793852A

  • Automatic page selection point reading book

    CN216817612U