Intelligent display system and computer readable storage medium

By automatically adjusting monitor parameters through an intelligent display system, the problem of users having to frequently make manual adjustments in different usage scenarios is solved, enabling real-time optimization of monitor parameters and improving the user experience.

CN121879701APending Publication Date: 2026-04-17YIBIN BENXIN ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
YIBIN BENXIN ELECTRONIC TECH CO LTD
Filing Date
2026-03-18
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing monitors have many complex functions, requiring users to frequently adjust parameters manually in different usage scenarios, resulting in cumbersome operation and a poor user experience.

Method used

An intelligent display system is provided, which listens to the input actions of the human-computer interaction module through the host, obtains the title of the current display window and classifies it, automatically adjusts the display parameters to adapt to different usage scenarios, including games, editing, design, and movies, uses AI tools to help determine the window type, and realizes real-time adjustment through the main control MCU.

Benefits of technology

It enables automated, real-time adjustment of display parameters, optimizes the user's visual and auditory experience in different usage scenarios, reduces the user's operational burden, and improves usage efficiency and experience.

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Abstract

The invention discloses an intelligent display system and a computer readable storage medium. The title of the display window of the current user is classified after the title is obtained, the display parameters of the classification are called according to the title classification, the display parameters of the classification can have a plurality of levels, the user can select one level or customize the display parameters in the levels, and the host can also select the preset level, so that the user experience is improved, and the user experience is improved. And then an instruction is sent to a master control MCU and an audio and video processing module of the display to execute adjustment of corresponding parameters, and each grade correspondingly sets different parameters of the display. The image video and audio of the current user can be optimized by automatically adjusting the display parameters, so that the user has the best experience in different use scenes.
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Description

Technical Field

[0001] This invention relates to the field of display technology, and more particularly to an intelligent display system and a computer-readable storage medium. Background Technology

[0002] Monitor adjustments are generally made using the On-Screen Display (OSD). OSD is a menu-driven adjustment method. It typically appears as a rectangular menu that pops up after pressing the Menu button, displaying information on various monitor settings. This menu allows access to dozens of parameters, including brightness, contrast, volume, gamma, sharpness, color saturation, hue, color temperature, HDR (High Dynamic Range), response time, scene modes, refresh rate, adaptive sync (G-Sync / FreeSync), MPRT, game crosshair, and more. Different usage scenarios require different monitor settings. To achieve optimal performance, frequent adjustments are necessary. With advancements in monitor technology, modern monitors offer increasingly diverse functions, including a wide range of OSD adjustments. The OSD menu has multiple layers, requiring the use of various monitor buttons in conjunction with the OSD to adjust functions. Without carefully consulting the user manual, it can be difficult to understand how to use it. Different usage scenarios necessitate frequent parameter changes, such as the monitor's G-Sync / FreeSync (VRR variable refresh rate) function. It's not recommended to enable HDR in all scenarios. Simply put, most games should have it enabled to improve smoothness, but it should be disabled when the frame rate is too high or too low. Variable Refresh Rate (VRR) should be enabled when playing most single-player games, AAA titles, and competitive online games (such as LOL and CS2), provided the frame rate is within the monitor's VRR range. HDR should be disabled when running non-3D applications (office work, watching videos, browsing the web, etc.). Similarly, HDR stands for High Dynamic Range. It's only worth enabling HDR when watching or playing high-quality content specifically designed for HDR, and when the monitor hardware is good enough. HDR should be disabled for all other everyday use scenarios. The problems with keeping HDR constantly enabled include: desktop colors (especially white backgrounds) may appear grayish, overly bright, or glaring in HDR mode, severely increasing eye strain. Many professional software programs (such as Photoshop) have imperfect color management in HDR, which may cause colors you adjust to display incorrectly on other SDR devices. Forcing SDR content to play in HDR mode will result in distorted, washed-out, or oversaturated colors. In short, monitors have many functions. Without frequent, routine operation, they won't provide the desired visual and auditory experience. However, even routine operations can be cumbersome. Non-professionals simply cannot achieve the desired results. Computer monitors can be used for work, study, entertainment, and many other purposes. To illustrate with a simple scenario, when a user is writing a document, they don't want the monitor to be too bright. Writing a document primarily involves a static image. A bright screen is glaring; a clear, soft brightness and a quiet environment are needed.However, if a user switches from working to watching online videos (such as movies on a video website), they will need to adjust brightness, contrast, color saturation, volume, or enable HDR (if the movie supports HDR). This requires the user to open the OSD (On-Screen Display) to adjust the monitor or computer settings. When constantly switching between different work, study, and entertainment environments, this necessitates frequent and extensive adjustments to the computer and monitor. This workload is too large; without frequent adjustments, a poor user experience is unavoidable.

[0003] Therefore, existing technologies have shortcomings and need to be improved. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide an intelligent display system and a computer-readable storage medium, so that when a user is working, studying or entertaining on a computer, the display can turn various functions on and off in real time and adjust them in real time to achieve a better visual and auditory experience for the user.

[0005] The technical solution of the present invention is as follows: an intelligent display system is provided, comprising: a host, a display and a human-computer interaction module respectively connected to the host; the display includes a main control MCU, the main control MCU being used to adjust the parameters of the display; the host realizes intelligent display through the following display method.

[0006] S1: The host listens for input actions from the human-computer interaction module, and the human-computer interaction module determines the currently displayed window on the monitor; S2: The host obtains the title of the currently displayed window; S3: The host classifies the acquired titles to obtain the type of window currently displayed on the monitor; S4: The host calculates the display parameters of the currently displayed window type based on the type of the currently displayed window and sends them to the main control MCU. In this solution, the host stores a database of display parameters corresponding to various types of windows. The method for calculating the display parameters of the currently displayed window type is to select the corresponding display parameters from the database of display parameters based on the type of the currently displayed window.

[0007] S5: The main control MCU adjusts the display parameters of the monitor based on the current display parameters sent by the host.

[0008] Furthermore, after obtaining the title, the host extracts keywords from the title to determine the type of window on the current monitor; or, after obtaining the title, the host uses AI tools to determine the type of window on the current monitor.

[0009] Furthermore, the human-computer interaction module is at least one of the following: keyboard module, mouse module, touch screen module, and voice input module.

[0010] Furthermore, the window types include: game windows, document editing windows, design software applications, video / movie windows, reading / chat windows, and other types.

[0011] Furthermore, in step S2, the host periodically obtains the title of the currently displayed window, with each period ranging from 1 millisecond to 5 seconds.

[0012] Furthermore, the intelligent display system also includes a cloud server connected to the host.

[0013] Furthermore, the intelligent display system also includes: an audio power amplifier that is communicatively connected to the main control MCU, and a speaker that is communicatively connected to the audio power amplifier.

[0014] Furthermore, the intelligent display system also includes a display memory for storing various display parameters.

[0015] Furthermore, the present invention also provides a computer-readable storage medium storing a computer program, which, when executed by a host, implements the aforementioned display method.

[0016] Using the above solution, this invention provides an intelligent display system and a computer-readable storage medium. After obtaining the title of the current user's display window, the system categorizes the titles and calls the display parameters for that category. These display parameters can have multiple levels; the user can select a level, customize the display parameters within a level, or allow the host to select a preset level. Then, instructions are sent to the display's main control MCU and audio / video processing module to adjust the corresponding parameters. Each level corresponds to different settings for the display. Automatic adjustment of display parameters optimizes the current user's image, video, and audio, providing the best user experience in different usage scenarios. Attached Figure Description

[0017] Figure 1 This is a functional block diagram of the present invention; Figure 2 This is a flowchart of the method of the present invention. Detailed Implementation

[0018] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0019] Please see Figure 1 and Figure 2This invention provides an intelligent display system, comprising: a host computer, a display and a human-computer interaction module respectively communicatively connected to the host computer; the display includes a main control MCU, which is used to adjust the parameters of the display; the host computer realizes intelligent display through the following display method. In this embodiment, the host computer can be a computer host or a computer module installed in the display, forming an all-in-one computer; the main control MCU can be a separate MCU, or the host computer can perform the functions of the main control MCU. The human-computer interaction module is used to click on the currently displayed window on the display, thereby determining the currently displayed window on the display.

[0020] S1: The host listens for input actions from the human-computer interaction module, and the human-computer interaction module determines the currently displayed window on the monitor; S2: The host obtains the title of the currently displayed window; S3: The host classifies the acquired titles to obtain the type of window currently displayed on the monitor; S4: The host calculates the display parameters required for the type of the currently displayed window based on the type of the window currently displayed on the monitor, that is, the display parameters that the current monitor needs to adjust, and sends them to the main control MCU. S5: The main control MCU adjusts the display parameters of the monitor according to the current display parameters sent by the host; that is, the main control MCU adjusts the display parameters of the monitor according to the corresponding display parameters of the current monitor window.

[0021] After obtaining the title of the currently displayed window for the user, the title is categorized. Based on the category, the display parameters for that category are called. Each category can have multiple levels of display parameters. The user can choose a level, customize the parameters within a level, or have the host select a preset level. Then, commands are sent to the monitor's main control MCU and audio / video processing module to adjust the corresponding parameters. Each level corresponds to different settings for the monitor's parameters. Automatic adjustment of display parameters optimizes the current user's image, video, and audio, providing the best experience in various usage scenarios.

[0022] After obtaining the title, the host extracts keywords from the title to determine the type of window on the current monitor; or, after obtaining the title, the host uses AI tools (such as Doubao, Kimi, etc.) to determine the type of window on the current monitor.

[0023] The human-computer interaction module includes at least one of the following: mouse, keyboard, voice input microphone, and touch screen.

[0024] Window types include: games, document editing, design software applications, video / audio, reading / chat, and others. In specific applications, each type can be further divided into different levels to cater to different applications within that type. For example, within the game category, there are shooting games, combat games, card games, and so on. Therefore, different display parameters are set for different game types, and the host computer can further obtain the game type to select the corresponding display parameter level. Similarly, within the design software application category, design software includes Photoshop, SolidWorks, etc., each with different main interface colors. Different display parameters are set for different design software to meet the user's actual needs.

[0025] In step S2, the host periodically retrieves the title of the currently displayed window, with each period ranging from 1 millisecond to 5 seconds. By periodically retrieving the title of the currently displayed window, the host can promptly obtain the title, adjust display parameters more dynamically, fully meet user needs, and improve the user experience.

[0026] The intelligent display system further includes a cloud server connected to the host. The cloud server enables remote control and further expansion, such as uploading window titles to a cloud service for categorization, resulting in more accurate classification.

[0027] The intelligent display system further includes: an audio power amplifier communicatively connected to the main control MCU, and a speaker communicatively connected to the audio power amplifier. It not only allows for adjustment of display parameters but also sound parameters, thus enhancing the user experience.

[0028] The intelligent display system further includes a display memory for storing various display parameters. Each type of display parameter includes multiple preset display parameters at different levels, as well as custom display parameters.

[0029] The present invention also provides a computer-readable storage medium storing a computer program that, when executed by a host, implements the aforementioned display method.

[0030] For details, please refer to Figure 1 , Figure 1This is a functional block diagram of an intelligent display system. The system consists of a host (such as a computer host), a display, a cloud server, and a human-computer interaction module (keyboard module, mouse module, touchscreen module, and voice input module (voice input microphone)). The host runs intelligent display software, which executes the display methods. The display's main control MCU contains a program that receives control and debugging commands from the host. The main control MCU and the audio / video processing module transmit audio / video data and computer-controlled display data via audio / video data cables or wirelessly. The cloud server and host module also transmit data via wired or wireless connections. The computer module receives information input by the user through the human-computer interaction module.

[0031] To illustrate its working principle, consider this example: The Smart Monitor software is an application installed on the computer host. It runs automatically after the computer boots up. Once running, the Smart Monitor software allows the user to choose whether to enable or disable Smart Monitor. The default option is to enable Smart Monitor. After enabling, the Smart Monitor software retrieves the title of the currently displayed window at regular intervals (e.g., 1 millisecond to 5 seconds).

[0032] For example, if a user is currently chatting with a friend on WeChat on their computer, the monitor's intelligent software will detect that the title of the currently displayed window is "WeChat". If the user is currently chatting with a friend using WeChat Work, the monitor's intelligent software will periodically detect that the title of the currently displayed window is "WeChat Work". If the user is currently using WPS Office to edit a document (e.g., xx x.doc), the monitor's intelligent software will periodically detect that the title of the currently displayed window is "xx x.doc - WPS Office". In other words, the monitor's intelligent software will detect the title of the currently displayed window. After detecting the title of the currently displayed window, the intelligent software will categorize the title data. After categorizing, it can match the monitor's functional parameters for each type of window. For example, applications used for office work such as editing documents and compiling data spreadsheets are considered one category. The common characteristics of this type of window are that the displayed image is relatively static, the monitor's brightness and contrast parameters should be soft, the speaker volume should be low, and the color temperature should be cool. If the user's current window is titled as a video playback application or movie website, the required display parameters are: high brightness and contrast, a warm color temperature, and a relatively high volume. The display response time should be fast, and the colors should be vibrant. These categorized display and audio parameters are sent to the monitor's main control MCU and audio / video processing module. This adjusts the displayed image to match the video and audio parameters corresponding to the user's current screen. (Parameters include: brightness, contrast, color temperature, sharpness, color saturation, hue, response time, HDR on / off, VRR on / off, gamma, color gamut mode, volume, tone, game-related parameters, etc.). Additionally, the monitor's intelligent software allows users to select the level of intelligent adjustment. For example, when watching movies, it's necessary to increase contrast and brightness, and increase volume. These parameters represent a range, and not every user wants maximum brightness, contrast, and volume. Therefore, users can specify an enhancement level; a higher level increases brightness, contrast, and volume more, while a lower level increases these parameters less.

[0033] Figure 2 The flowchart of the method of the present invention is as follows: after obtaining the title of the current user's display window, the title is classified, and then the corresponding optimal parameters of the display are set according to the level input by the user. Then, instructions are sent to the display's MCU and audio / video processing module to perform the corresponding parameter adjustment.

[0034] In summary, this invention provides an intelligent display system and a computer-readable storage medium. After obtaining the title of the current user's display window, the system categorizes the titles and calls the display parameters for that category. These display parameters can have multiple levels; the user can select a level, customize the display parameters within a level, or allow the host to select a preset level. Then, instructions are sent to the display's main control MCU and audio / video processing module to adjust the corresponding parameters. Each level corresponds to different settings for the display. Automatic adjustment of display parameters optimizes the current user's image, video, and audio, providing the best user experience in various usage scenarios.

[0035] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. An intelligent display system, characterized in that, include: The host computer includes a display and a human-computer interaction module, all of which are communicatively connected to the host computer. The display includes a main control MCU, which is used to adjust the parameters of the display. The host computer achieves intelligent display through the following display methods: S1: The host listens for input actions from the human-computer interaction module, and the human-computer interaction module determines the currently displayed window on the monitor; S2: The host obtains the title of the currently displayed window; S3: The host classifies the acquired titles to obtain the type of window currently displayed on the monitor; S4: The host calculates the display parameters of the current window type based on the type of the currently displayed window and sends them to the main control MCU of the display. S4: The main control MCU receives the current display parameters sent by the host and adjusts the display parameters of the monitor.

2. The intelligent display system according to claim 1, characterized in that, After obtaining the title, the host extracts keywords from the title to determine the type of window on the current monitor; or, after obtaining the title, the host uses AI tools to determine the type of window on the current monitor.

3. The intelligent display system according to claim 1, characterized in that, The human-computer interaction module is at least one of the following: keyboard module, mouse module, touch screen module, and voice input module.

4. The intelligent display system according to claim 1, characterized in that, Window types include: game type, document editing type, design software application type, video type, reading and chat type, and other types.

5. The intelligent display system according to claim 1, characterized in that, In step S2, the host periodically obtains the title of the currently displayed window, with each period ranging from 1 millisecond to 5 seconds.

6. The intelligent display system according to claim 1, characterized in that, Also includes: A cloud server connected to the host.

7. The intelligent display system according to claim 1, characterized in that, Also includes: An audio power amplifier that is communicatively connected to the main control MCU, and a speaker that is communicatively connected to the audio power amplifier.

8. The intelligent display system according to claim 1, characterized in that, Also includes: A display memory for storing various adjusted display parameters. The intelligent display system according to claim 8 is characterized in that each type of display parameter includes multiple preset display parameters of different levels and custom display parameters.

9. A computer-readable storage medium storing a computer program, characterized in that, When the computer program is executed by the host, it implements the display method as described in any one of claims 1-8.