A method and system for automatic light-on and remote control synchronization

By detecting sound information from the air conditioner and controlling the display module to light up, the problem of the air conditioner display panel light not being able to adjust automatically and the remote control not being able to synchronize was solved, realizing automatic light lighting and remote control synchronization, thus improving the user experience.

CN116951677BActive Publication Date: 2026-05-12GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GREE ELECTRIC APPLIANCE INC OF ZHUHAI
Filing Date
2023-07-31
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

The existing air conditioner display panel light cannot automatically adjust the light intensity after the lights are turned off at night, and the remote control cannot automatically synchronize the air conditioner status. Users need to manually operate to check the air conditioner status, which affects sleep and the user experience of nearsighted users.

Method used

When the air conditioner detects sound information, it acquires status parameter information and controls the display module to light up. At the same time, it sends the information to the remote control and mobile device to achieve automatic synchronized display.

Benefits of technology

It enables automatic lighting of the air conditioner display module and synchronization with the remote control status, eliminating the need for manual operation by the user and improving the user experience in dark environments, especially for nearsighted users.

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Abstract

The application discloses a kind of automatic light and remote controller synchronization method and system, method includes: when air conditioner end detects sound information, obtain current state parameter information, and control the first display module of the air conditioner end is lighted, and control the first display module display state parameter information;The air conditioner end sends state parameter information to remote controller end;Remote controller end controls the second display module of remote controller end is lighted, and control the second display module display state parameter information.The application is by when air conditioner end detects sound information, control the first display module of the air conditioner end is lighted and shows state parameter information, and actively issues state parameter information to remote controller end, remote controller end synchronously lights second display module and shows state parameter information, realizes the automatic light of display module and remote controller end automatic synchronization state parameter information, without manual operation of user, improve the consumption experience of user.
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Description

Technical Field

[0001] This invention relates to the field of air conditioning technology, and in particular to a method and system for automatically turning on lights and synchronizing with a remote control. Background Technology

[0002] In existing air conditioning technology, especially during sleep at night, the issue of the air conditioner's display panel being too bright after the lights are turned off is often a source of user complaints. To address this problem, some air conditioning units are equipped with light sensors. When the surrounding environment darkens, such as after turning off the lights at night, the air conditioner's light sensor detects the dimming ambient light and automatically turns off the display light, thus ensuring a dark and quiet sleeping environment.

[0003] However, when the air conditioner indicator light is off, users may want to check the air conditioner's status, which can be done via remote control. Using the remote control will turn on the indicator light, making it easy to check the air conditioner's status, but this method has some problems. First, using the remote control to check the air conditioner's status may disrupt the sleep curve in the original sleep mode. Second, nearsighted users may not be able to see the information displayed on the panel, and the remote control cannot automatically synchronize with the air conditioner's status; users need to manually operate the remote control to check the air conditioner's operating status. Therefore, how to conveniently view and adjust the air conditioner's status is one of the problems that needs to be solved in existing technology. Summary of the Invention

[0004] The purpose of this invention is to provide a method and system for automatic light activation and remote control synchronization, aiming to solve problems such as the need for manual operation to turn on the air conditioner after the display panel light is turned off, and the inability of the remote control to automatically synchronize the air conditioner's operating status.

[0005] This invention provides a method for automatically turning on lights and synchronizing with a remote control, comprising:

[0006] When the air conditioner detects sound information, it obtains the current status parameter information, controls the first display module of the air conditioner to light up, and controls the first display module to display the status parameter information;

[0007] The air conditioner sends the status parameter information to the remote control.

[0008] The remote control terminal controls the second display module of the remote control terminal to light up, and controls the second display module to display the status parameter information.

[0009] Furthermore, it also includes:

[0010] The air conditioner sends the status parameter information to the mobile device.

[0011] After receiving the status parameter information, the mobile terminal saves the status parameter information.

[0012] Furthermore, the step of obtaining current status parameter information when the air conditioner detects sound information, controlling the first display module of the air conditioner to light up, and controlling the first display module to display the status parameter information before the following steps are included:

[0013] The air conditioner acquires the current ambient light intensity value and determines whether the light intensity value has reached a predetermined light intensity threshold.

[0014] If the light intensity value reaches a predetermined light intensity threshold, the first display module is turned off.

[0015] If the light intensity value does not reach the predetermined light intensity threshold, the process returns to continue obtaining the current ambient light intensity value and making a judgment.

[0016] Furthermore, when the air conditioner detects sound information, it acquires the current status parameter information, including:

[0017] When the air conditioner detects sound information, it obtains the decibel value of the sound information and determines whether the decibel value reaches a predetermined decibel threshold.

[0018] If the decibel value reaches the predetermined decibel threshold, then obtain the current state parameter information;

[0019] If the decibel value does not reach the predetermined decibel threshold, the system will return to continue detecting sound information.

[0020] Furthermore, when the air conditioner detects sound information, it acquires the current status parameter information, including:

[0021] When the air conditioner detects sound information, it extracts the sound features of the sound information and determines whether the sound features contain predetermined command features.

[0022] If the sound features contain predetermined instruction features, then obtain the current state parameter information;

[0023] If the sound features do not contain the predetermined instruction features, then return to continue detecting sound information.

[0024] Furthermore, it also includes:

[0025] When the mobile terminal receives an information display instruction, it retrieves the most recently saved status parameter information;

[0026] The acquired state parameter information is matched with the pre-stored display parameter list, and the matching target state parameter information is filtered out from the acquired state parameter information.

[0027] Display the target state parameter information.

[0028] Furthermore, when the air conditioner detects sound information, it acquires the current status parameter information, including:

[0029] When the air conditioner detects sound information, it retrieves the number of times the lights were turned on synchronously within the first predetermined time period in the past.

[0030] If the number of times the lights are synchronized exceeds a predetermined threshold within the first predetermined time period, then the lights will not be synchronized again within the second predetermined time period after the control is applied. After the end of the second predetermined time period, the sound information detection and lights synchronization will resume.

[0031] This invention also provides a system for automatic light activation and remote control synchronization, comprising: an air conditioner terminal and a remote control terminal, the air conditioner terminal and the remote control terminal being wirelessly connected; the air conditioner terminal includes an acquisition module, a first lighting module, a first display module and a transmission module, and the remote control terminal includes a second lighting module and a second display module;

[0032] The acquisition module is used to acquire the current status parameter information when the air conditioner detects sound information;

[0033] The first lighting module is used to control the lighting of the first display module on the air conditioner side;

[0034] The first display module is used to display the status parameter information;

[0035] The sending module is used to send the status parameter information to the remote control terminal;

[0036] The second lighting module is used to light up the second display module on the remote control terminal;

[0037] The second display module is used to display the status parameter information.

[0038] Furthermore, the air conditioner also includes a light intensity detection module, used to acquire the light intensity value of the current environment and determine whether the light intensity value reaches a predetermined light intensity threshold; if the light intensity value reaches the predetermined light intensity threshold, the first display module is turned off; if the light intensity value does not reach the predetermined light intensity threshold, the system returns to continue acquiring the light intensity value of the current environment and making a judgment.

[0039] Furthermore, it also includes: a mobile terminal, wherein the air conditioner terminal and the mobile terminal are wirelessly connected, and the mobile terminal includes a storage module;

[0040] The sending module is also used to send the status parameter information to the mobile terminal;

[0041] The storage module is used to save the status parameter information after receiving it.

[0042] This invention discloses a method and system for automatic light activation and remote control synchronization. The method includes: when the air conditioner detects sound information, acquiring current status parameter information and controlling the first display module of the air conditioner to light up, and controlling the first display module to display the status parameter information; the air conditioner sends the status parameter information to the remote control; the remote control controls the second display module of the remote control to light up, and controls the second display module to display the status parameter information. This invention achieves automatic lighting of the display module and automatic synchronization of status parameter information on the remote control by controlling the first display module of the air conditioner to light up and display status parameter information when the air conditioner detects sound information, and actively sending the status parameter information to the remote control, while the remote control simultaneously lights up the second display module and displays the status parameter information. This facilitates users to check the air conditioner status in low-light environments or in sleep mode without operating the remote control, improving the user experience. Simultaneously, the remote control also displays the current air conditioner status, allowing nearsighted users to clearly see the air conditioner status using a nearby remote control. This invention also provides a system for automatic light activation and remote control synchronization, which has the above-mentioned beneficial effects and will not be elaborated further here. Attached Figure Description

[0043] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0044] Figure 1 This is a flowchart of the method for synchronizing automatic light turning on and remote control in this embodiment;

[0045] Figure 2 This is a sub-flowchart of the method for synchronizing automatic light turning and remote control in this embodiment;

[0046] Figure 3 This is another sub-flowchart of the method for automatic light-on and remote control synchronization in this embodiment;

[0047] Figure 4 This is another sub-flowchart of the method for automatic light-on and remote control synchronization in this embodiment;

[0048] Figure 5 This is another sub-flowchart of the method for automatic light-on and remote control synchronization in this embodiment;

[0049] Figure 6 This is another sub-flowchart of the method for automatic light-on and remote control synchronization in this embodiment;

[0050] Figure 7 This is a schematic diagram of the system for automatic light-on and remote control synchronization in this embodiment. Detailed Implementation

[0051] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0052] It should be understood that, when used in this specification and the appended claims, the terms "comprising" and "including" indicate the presence of the described features, integrals, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components and / or collections thereof.

[0053] It should also be understood that the terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the invention. As used in this specification and the appended claims, the singular forms “a,” “an,” and “the” are intended to include the plural forms unless the context clearly indicates otherwise.

[0054] It should also be further understood that the term "and / or" as used in this specification and the appended claims refers to any combination of one or more of the associated listed items and all possible combinations, and includes such combinations.

[0055] Please see Figure 1 This invention provides a method for automatically turning on lights and synchronizing with a remote control, comprising:

[0056] S101: When the air conditioner detects sound information, it obtains the current status parameter information, controls the first display module of the air conditioner to light up, and controls the first display module to display the status parameter information;

[0057] S102: The air conditioner sends the status parameter information to the remote control.

[0058] S103: The remote control terminal controls the second display module of the remote control terminal to light up, and controls the second display module to display the status parameter information.

[0059] This embodiment automatically illuminates the first display module of the air conditioner and displays status parameter information when the air conditioner detects sound information. It also actively sends the status parameter information to the remote control, which simultaneously illuminates the second display module and displays the status parameter information. This achieves automatic illumination of the display modules and automatic synchronization of status parameter information on the remote control. This allows users to check the air conditioner status in low-light environments or in sleep mode without having to operate the remote control, thus improving the user experience. At the same time, the remote control also displays the current air conditioner status, so that nearsighted users can clearly see the air conditioner status through a nearby remote control.

[0060] Please see Figure 2 In this embodiment, when the air conditioner detects sound information, it acquires the current status parameter information and controls the first display module on the air conditioner to light up. Before controlling the first display module to display the status parameter information, the process includes:

[0061] S201: The air conditioner obtains the current ambient light intensity value;

[0062] S202: Determine whether the light intensity value has reached a predetermined light intensity threshold;

[0063] S203: If the light intensity value reaches a predetermined light intensity threshold, then control the first display module to turn off;

[0064] S204: If the light intensity value does not reach the predetermined light intensity threshold, return to continue obtaining the light intensity value of the current environment and make a judgment;

[0065] This embodiment achieves automatic shutdown of the first display module by acquiring the light intensity value of the current environment and determining whether the light intensity value reaches the predetermined light intensity threshold, while avoiding the user's glare caused by the light of the air conditioner display panel at night.

[0066] It should be noted that existing display panel lights cannot automatically adjust their intensity. When the light on the air conditioner display panel is too bright relative to the ambient light, it will cause glare to the user. When the light on the display panel is too dim relative to the ambient light, the user will not be able to see the content on the display panel. To solve the above problems, the air conditioner in this embodiment first obtains the light intensity value of the current environment; then it analyzes the light intensity value of the current environment and adjusts the light on the display panel to the corresponding intensity based on the analysis results.

[0067] This embodiment also includes multiple light intensity adjustment methods, which can be set according to different needs. One common adjustment method is linear adjustment, where the screen brightness changes linearly with the ambient light intensity. Another common adjustment method is segmented adjustment, where the light intensity value is divided into multiple intervals, each corresponding to a different screen brightness. For example, when the light intensity value is in the range of 0% to 50%, the screen brightness is 20%; when the light intensity value is in the range of 50% to 75%, the screen brightness is 50%; and when the light intensity value is in the range of 75% to 100%, the screen brightness is 80%.

[0068] Understandably, users can choose different adjustment methods according to their preferences. The number of intervals depends on the actual situation. The more intervals there are, the closer the light intensity displayed on the display panel is to the user's light intensity needs. Similarly, the fewer intervals there are, the further the light intensity displayed on the display panel deviates from the user's required light intensity.

[0069] Since each user has a different ability to perceive light, the predetermined light intensity setting may not be truly suitable for that user. Therefore, the light intensity range setting in this embodiment can be determined based on the user's needs and the maximum brightness of the screen. By setting a light intensity that meets their own needs, the light will not cause discomfort to the user when they view the air conditioner status through the display panel.

[0070] Typically, multiple users enjoy the comfort of air conditioning in an air-conditioned room. Therefore, the lighting displayed on the display panel might be suitable for one person but not another. To ensure that the display panel can show a light intensity appropriate for each user who needs to view the content, this embodiment also includes a corresponding voice recognition function. Users can pre-store their voice characteristics on the air conditioner and set a corresponding light intensity. When the air conditioner acquires ambient sound information, it preprocesses the sound information, such as noise reduction, pre-emphasis processing, frame blocking processing, windowing processing, and endpoint detection processing. Then, it extracts features from the preprocessed sound information to obtain corresponding voice features. Next, it calculates the similarity between these voice features and the pre-stored voice features on the air conditioner and ranks them according to the similarity. It then determines whether the similarity of the top-ranked feature exceeds a predetermined value. If it does, the first display module is controlled to display the light intensity set by the pre-stored voice feature of the top-ranked feature. If it does not exceed the value, no operation is performed.

[0071] Among them, speech features mainly include tone: the pitch variation in speech; pitch: the degree of highness or lowness of sound; volume: the loudness or strength of sound; timbre: the quality or timbre of sound; speech rate: the speed of speaking; rhythm: the rhythm of speech; formants: the lowest frequency formant is called the first formant, and the corresponding frequency is also called the fundamental frequency, which determines the F0 of speech; MFCC: Mel-scale frequency cepstral coefficients, a non-linear mapping that maps according to the different auditory sensitivities of the human ear to sound waves of different frequencies.

[0072] It is understandable that since the number of people living in a room is relatively small, the number of voice features stored in the air conditioner is also relatively small. Therefore, the preset value for voice feature similarity calculation can be set relatively low in order to quickly identify and respond to user needs, thereby improving the user's operating experience.

[0073] In daily life, various sounds arise and occur constantly, such as the roar of cars outside the room, the sound of moving a table, and the sound of something bumping into a table. To reduce false recognition by the air conditioner, this embodiment also includes the following steps to reduce false recognition; please refer to... Figure 3 Specifically, when the air conditioner detects sound information, it obtains the current status parameter information, including:

[0074] S301: When the air conditioner detects sound information, the decibel value of the sound information is obtained;

[0075] S302: Determine whether the decibel value reaches a predetermined decibel threshold;

[0076] S303: If the decibel value reaches the predetermined decibel threshold, then obtain the current state parameter information;

[0077] S304: If the decibel value does not reach the predetermined decibel threshold, return to continue detecting sound information.

[0078] This embodiment achieves accurate recognition of user voice by judging the decibel value of sound information.

[0079] In a specific application scenario, since the decibel level of human speech is usually between 55 and 70 decibels, the predetermined decibel threshold is set to 55-70 decibels. When a user accidentally bumps into a table while leaving the room at night, the decibel level emitted is usually around 40 decibels. If the decibel level of the sound is determined to be outside the predetermined decibel threshold, the air conditioner does not need to perform any operation.

[0080] In some application scenarios, when a user makes a sound, they may not actually want the air conditioner to turn on the first display module to check its operating status. They may simply be talking in their sleep or chatting. To prevent such situations from causing the first display module to light up and thus wasting resources, this embodiment also includes a predetermined instruction to identify whether the user needs to know the operating status of the air conditioner.

[0081] Please see Figure 4 Specifically, when the air conditioner detects sound information, it obtains the current status parameter information, including:

[0082] S401: When the air conditioner detects sound information, the sound features of the sound information are extracted;

[0083] S402: Determine whether the sound feature contains a predetermined instruction feature;

[0084] S403: If the sound feature contains a predetermined instruction feature, then obtain the current state parameter information;

[0085] S404: If the sound features do not contain the predetermined instruction features, then return to continue detecting sound information.

[0086] In a specific application scenario, the predefined instruction feature is set to "Xiao X". If the air conditioner detects that the user's voice information contains "Xiao X", it immediately obtains the current status parameter information and executes the subsequent process. If the air conditioner does not detect that the user's voice information contains "Xiao X", it does not need to perform any operation.

[0087] Understandably, this reservation instruction feature can be customized according to user needs. For example, users can set reservation instruction features based on their favorite items, food, etc., thereby enhancing the user experience.

[0088] In one embodiment, when the air conditioner detects sound information, it extracts the duration information within the sound information and determines whether the duration information exceeds a predetermined time. If the duration information does not exceed the predetermined time, it obtains the current status parameter information. If the duration information exceeds the predetermined time, it returns to continue detecting sound information.

[0089] In a specific application scenario, when a user wants to check the operating status of the air conditioner, they usually only make a short sound, such as "ah" or "turn on the display panel light." Therefore, the preset time can be set to 5 seconds. When the user is watching videos, listening to music, or chatting, the duration usually exceeds 5 seconds. Therefore, when the air conditioner determines that the duration exceeds the preset time, it means that the user does not want to check the operating status of the air conditioner, so the air conditioner does not need to perform any operation.

[0090] In some scenarios, children may wake up the first display module multiple times in a short period of time due to their curiosity. To avoid the first display module being woken up multiple times in special circumstances, this embodiment also limits the number of times the first display module can be woken up within a predetermined time.

[0091] Please see Figure 5 Specifically, when the air conditioner detects sound information, it obtains the current status parameter information, including:

[0092] S501: When the air conditioner detects sound information, it obtains the number of times the lights are turned on synchronously within the first predetermined time period in the past;

[0093] S502: If the number of times the lights are synchronized in the first predetermined time period exceeds the predetermined number threshold, then the lights will not be synchronized in the second predetermined time period after the control is completed.

[0094] S503: After the end time of the second predetermined time period arrives, resume the sound information detection and light synchronization operation.

[0095] During the second predetermined time period after the control is applied, during which the light synchronization operation is no longer performed, when the user really wants to check the air conditioner's operating status, the user can release the current locked state by issuing a release command. Specifically, when the air conditioner detects sound information, it extracts the sound characteristics of the sound information and determines whether the sound characteristics contain the release command characteristics. If the sound characteristics contain the release command characteristics, the current status parameter information is obtained; if the sound characteristics do not contain the release command characteristics, the air conditioner continues the locking process.

[0096] In one embodiment, a corresponding release button may also be provided on the remote control so that the user can release the current operating mode or operating process of the air conditioner and thus reset the corresponding operating mode or operating process.

[0097] During the second predetermined time period after the control is applied, when the light synchronization operation is no longer performed (i.e., during the second predetermined time period), the user may not be aware that the air conditioner is locked. Therefore, after repeated unsuccessful attempts to call out, the user's voice volume will gradually increase, and their mood will worsen. To address the situation where the user is unaware that the air conditioner is locked, this embodiment also includes a feature that, when the air conditioner acquires ambient sound information, preprocesses the sound information; then, it extracts features from the preprocessed sound information to obtain corresponding voice features; then, it calculates the similarity between these voice features and pre-saved voice features on the air conditioner and ranks them according to the similarity; then, it determines whether the similarity of the top-ranked feature exceeds a predetermined value; if the similarity exceeds the predetermined value, it acquires the decibel value of the sound information; if the similarity exceeds the predetermined value, it performs no operation.

[0098] The process includes, after obtaining the decibel value of the sound information if the similarity exceeds a predetermined value, determining whether the decibel value exceeds a predetermined limit decibel value; if the decibel value exceeds the predetermined limit decibel value, obtaining the current status parameter information and lighting up the first display module; if the decibel value does not exceed the predetermined limit decibel value, the air conditioner continues to execute the locking process.

[0099] In today's digital world, mobile devices have become essential tools for users, whether at home, in the office, outdoors, or traveling. Therefore, users typically place their mobile devices by their bedside while sleeping, whereas remote controls are usually not. To address the situation where nearsighted individuals often place their mobile devices by their bedside instead of their remote controls, this embodiment simultaneously sends status parameter information to the mobile device. Specifically, the air conditioner sends status parameter information to the mobile device; upon receiving the status parameter information, the mobile device saves it. By synchronously storing the status parameter information on the mobile device, the app can display the status parameter information to the user when the user opens the corresponding app on the mobile device.

[0100] To enable customization of the mobile device's display interface, this embodiment also includes a corresponding process for implementing such customization. For details, please refer to [link / reference needed]. Figure 6 ,

[0101] S601: When the mobile terminal receives an information display instruction, it retrieves the most recently saved status parameter information;

[0102] S602: Match the acquired state parameter information with the pre-stored display parameter list, and filter out the matching target state parameter information from the acquired state parameter information;

[0103] S603: Display the target state parameter information.

[0104] This embodiment achieves customized settings for the display interface by matching the acquired status parameter information with a pre-stored list of display parameters and filtering out the matching target status parameter information from the acquired status parameter information.

[0105] It should be noted that users can customize the device's information interface through the mobile app, such as setting it to display only temperature and fan speed; or only temperature, fan speed, and sleep mode; or only temperature and swing mode, etc. Users can also select the parameters they are interested in according to their own settings and set the parameters to be displayed for different seasons in the app. The app automatically switches to display different parameter information based on the season. For example, in summer, the device actively sends synchronization information to the app. After receiving the device's synchronization information, the app identifies the current season as summer by obtaining the phone's date and selects the parameters that the user is interested in during summer to display.

[0106] This embodiment also uses dynamic content loader, localization, and custom layout to enable the mobile device to be customized according to different seasons and regions. Specifically, first, it is determined which status parameter information needs to be displayed in the application according to the season and different regions, including temperature, humidity, wind speed, etc.; then, based on the determined status parameter information to be displayed, the method of using dynamic content loader, localization, or custom layout is selected.

[0107] If you choose to use a dynamic content loader, set up a dynamic content loader in your application and load the appropriate content based on the season and region; use conditional statements to detect the current season and region and load the appropriate content as needed.

[0108] If you choose to use localization, set up a localized string resource file for your application; then, load the appropriate content using the appropriate localized string resource file based on the different seasons and regions; and ensure that the application can automatically update the localized string resource file as needed.

[0109] If you choose to use a custom layout, create a custom UI in your application, with different layouts for different seasons and regions; then use conditional statements to detect the current season and region, and load the corresponding custom layout as needed; at the same time, ensure that the custom layout can be automatically updated as needed.

[0110] After implementing the display interface settings based on seasons and different regions, the display interface is tested and debugged to ensure that the application can correctly load and display the corresponding content and update automatically as needed.

[0111] The mobile app can display the following status parameters: Temperature display, showing the current indoor temperature and the settable temperature range; Mode button, displaying the current air conditioner mode (such as cooling mode, fan mode, heating mode, etc.) and allowing users to switch modes; Fan speed display, showing the current fan speed and selectable fan speed levels; Timer function, allowing users to set timers for turning the air conditioner on / off, as well as a sleep timer function; Air quality indicator, displaying indoor air quality and corresponding daily life suggestions; Power switch, providing an independent power switch so users can turn off the power when not using the remote control; Color customization, allowing users to choose the main color of the mobile app's display interface to match their personal preferences; Font customization, allowing users to choose the font type and size of the display interface to suit their reading and usage habits; Display background customization, providing a variety of display backgrounds for users to choose from, such as nature, technology, children's, etc., so users can personalize it according to their preferences, and users can also select photos or images from the mobile app's memory as the display background; Layout adjustment: allowing users to customize the layout of display elements to meet their usage habits and needs, and also allowing users to personalize it according to their preferences.

[0112] In one embodiment, device status information (such as air conditioner temperature: 25°C, fan speed: level 1, mode: cooling mode) can also be displayed via notification information. Displaying device status information via notification information can provide a more intuitive view of the device status information.

[0113] Please see Figure 7 The present invention also provides a system for automatic lighting and remote control synchronization, comprising: an air conditioner terminal 710 and a remote control terminal 720, which are wirelessly connected; the air conditioner terminal 710 includes an acquisition module 711, a first lighting module 712, a first display module 713 and a transmission module 714, and the remote control terminal 720 includes a second lighting module 721 and a second display module 722;

[0114] The acquisition module 711 is used to acquire the current status parameter information when the air conditioner terminal 710 detects sound information;

[0115] The first lighting module 712 is used to control the lighting of the first display module 713 of the air conditioner terminal 710;

[0116] The first display module 713 is used to display the status parameter information;

[0117] The sending module 714 is used to send the status parameter information to the remote control terminal 720;

[0118] The second lighting module 721 is used to light up the second display module 722 on the remote control terminal;

[0119] The second display module 722 is used to display the status parameter information.

[0120] Furthermore, the air conditioning unit 710 also includes:

[0121] The light intensity detection module is used to acquire the light intensity value of the current environment and determine whether the light intensity value has reached a predetermined light intensity threshold. If the light intensity value reaches the predetermined light intensity threshold, the first display module 713 is turned off. If the light intensity value does not reach the predetermined light intensity threshold, the module returns to continue acquiring the light intensity value of the current environment and making a judgment.

[0122] Furthermore, it also includes: a mobile terminal 730, the air conditioner terminal 710 and the mobile terminal 730 are wirelessly connected, and the mobile terminal 730 includes a storage module;

[0123] The sending module 714 is also used to send the status parameter information to the mobile terminal 730;

[0124] The storage module is used to save the received status parameter information.

[0125] Furthermore, the air conditioning unit 710 also includes:

[0126] The decibel detection module is used to obtain the decibel value of the sound information when the air conditioner terminal 710 detects sound information, and to determine whether the decibel value reaches a predetermined decibel threshold; if the decibel value reaches the predetermined decibel threshold, the current status parameter information is obtained; if the decibel value does not reach the predetermined decibel threshold, the system returns to continue detecting sound information.

[0127] Furthermore, the air conditioning unit 710 also includes:

[0128] The feature detection module is used to extract the sound features of the sound information when the air conditioner terminal 710 detects sound information, and determine whether the sound features contain a predetermined instruction feature; if the sound features contain the predetermined instruction feature, the current status parameter information is obtained; if the sound features do not contain the predetermined instruction feature, the detection of sound information is returned to continue.

[0129] Furthermore, the mobile terminal 730 includes:

[0130] The filtering module is used to obtain the most recently saved status parameter information when the mobile terminal 730 receives an information display instruction; match the obtained status parameter information with a pre-stored display parameter list, filter out the matching target status parameter information from the obtained status parameter information; and display the target status parameter information.

[0131] Furthermore, the air conditioning unit 710 also includes:

[0132] The control module is used to obtain the number of times the light-on synchronization operation has been performed in the past first predetermined time period when the air conditioner terminal 710 detects sound information; if the number of times the light-on synchronization has been performed in the past first predetermined time period exceeds the predetermined number threshold, the light-on synchronization operation will not be performed in the second predetermined time period after the control is applied, and the sound information detection and light-on synchronization operation will be resumed after the end time of the second predetermined time period.

[0133] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on its differences from other embodiments. Similar or identical parts between embodiments can be referred to interchangeably. For the apparatus disclosed in the embodiments, since it corresponds to the method disclosed in the embodiments, the description is relatively simple; relevant parts can be referred to in the method section. It should be noted that those skilled in the art can make various improvements and modifications to this invention without departing from its principles, and these improvements and modifications also fall within the protection scope of the claims of this invention.

[0134] It should also be noted that, in this specification, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusivity.

[0135] The term "comprises" implies that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprises a..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

Claims

1. A method for synchronizing automatic light activation with a remote control, characterized in that, include: When the air conditioner detects sound information, it obtains the current status parameter information, controls the first display module of the air conditioner to light up, and controls the first display module to display the status parameter information; The air conditioner sends the status parameter information to the remote control. The remote control terminal controls the second display module of the remote control terminal to light up, and controls the second display module to display the status parameter information; The user's voice characteristics are pre-stored in the air conditioner, and a corresponding light intensity can be set. When the air conditioner acquires ambient sound information, it preprocesses the sound information; features are extracted from the preprocessed sound information to obtain voice characteristics; and then... The similarity between the voice features and the voice features pre-saved on the air conditioner is calculated, and the similarity is ranked according to the size of the similarity; then it is determined whether the similarity of the top-ranked feature exceeds a predetermined value. If the intensity exceeds the limit, the first display module will be controlled to display the light intensity corresponding to the pre-saved voice feature of the air conditioner with the highest similarity ranking. If the limit is not exceeded, no action will be taken.

2. The method for synchronizing automatic light activation and remote control according to claim 1, characterized in that, Also includes: The air conditioner sends the status parameter information to the mobile terminal; After receiving the status parameter information, the mobile terminal saves the status parameter information.

3. The method for automatic light activation and remote control synchronization according to claim 1, characterized in that, The process of obtaining current status parameter information when the air conditioner detects sound information, controlling the first display module of the air conditioner to light up, and controlling the first display module to display the status parameter information before the following steps are taken: The air conditioner acquires the current ambient light intensity value and determines whether the light intensity value has reached a predetermined light intensity threshold. If the light intensity value reaches a predetermined light intensity threshold, the first display module is turned off. If the light intensity value does not reach the predetermined light intensity threshold, the process returns to continue obtaining the current ambient light intensity value and making a judgment.

4. The method for automatic light activation and remote control synchronization according to claim 1, characterized in that, When the air conditioner detects sound information, it acquires the current status parameter information, including: When the air conditioner detects sound information, it obtains the decibel value of the sound information and determines whether the decibel value reaches a predetermined decibel threshold. If the decibel value reaches the predetermined decibel threshold, then obtain the current state parameter information; If the decibel value does not reach the predetermined decibel threshold, the system will return to continue detecting sound information.

5. The method for synchronizing automatic light activation and remote control according to claim 1, characterized in that, When the air conditioner detects sound information, it acquires the current status parameter information, including: When the air conditioner detects sound information, it extracts the sound features of the sound information and determines whether the sound features contain predetermined command features. If the sound features contain predetermined instruction features, then obtain the current state parameter information; If the sound features do not contain the predetermined instruction features, then return to continue detecting sound information.

6. The method for automatic light activation and remote control synchronization according to claim 2, characterized in that, Also includes: When the mobile terminal receives an information display instruction, it retrieves the most recently saved status parameter information; The acquired state parameter information is matched with the pre-stored display parameter list, and the matching target state parameter information is filtered out from the acquired state parameter information. Display the target state parameter information.

7. The method for automatic light activation and remote control synchronization according to claim 1, characterized in that, When the air conditioner detects sound information, it acquires the current status parameter information, including: When the air conditioner detects sound information, it retrieves the number of times the lights were turned on synchronously within the first predetermined time period in the past. If the number of times the lights are synchronized exceeds a predetermined threshold within the first predetermined time period, then the lights will not be synchronized again within the second predetermined time period after the control is applied. After the end of the second predetermined time period, the sound information detection and lights synchronization will resume.

8. A system for automatic light activation and remote control synchronization, characterized in that, include: An air conditioner terminal and a remote control terminal are wirelessly connected; the air conditioner terminal includes an acquisition module, a first illumination module, a first display module, and a transmission module, and the remote control terminal includes a second illumination module and a second display module. The acquisition module is used to acquire the current status parameter information when the air conditioner detects sound information; The first lighting module is used to control the lighting of the first display module on the air conditioner side; The first display module is used to display the status parameter information; The sending module is used to send the status parameter information to the remote control terminal; The second lighting module is used to light up the second display module on the remote control terminal; The second display module is used to display the status parameter information; The first display module is further configured to pre-store the user's voice features in the air conditioner and set a corresponding light intensity; when the air conditioner acquires ambient sound information, it preprocesses the sound information; extracts features from the preprocessed sound information to obtain voice features; and displays the user's voice features in the display module. The similarity between the voice features and the voice features pre-saved on the air conditioner is calculated, and the similarity is ranked according to the size of the similarity; then it is determined whether the similarity of the top-ranked feature exceeds a predetermined value. If the similarity exceeds the limit, the light intensity corresponding to the pre-saved voice feature of the air conditioner with the highest similarity will be displayed. If the limit is not exceeded, no action will be taken.

9. The system for automatic lighting and remote control synchronization according to claim 8, characterized in that, The air conditioner also includes a light intensity detection module, used to acquire the light intensity value of the current environment and determine whether the light intensity value reaches a predetermined light intensity threshold; if the light intensity value reaches the predetermined light intensity threshold, the first display module is turned off; if the light intensity value does not reach the predetermined light intensity threshold, the system returns to acquire the light intensity value of the current environment and makes a judgment.

10. The system for automatic lighting and remote control synchronization according to claim 8, characterized in that, Also includes: The mobile terminal is wirelessly connected to the air conditioner terminal, and the mobile terminal includes a storage module. The sending module is also used to send the status parameter information to the mobile terminal; The storage module is used to save the status parameter information after receiving it.