Air conditioner comfort control method, device and system based on user group

By using a user-shared and rating mechanism, the server filters and pushes high-rated air conditioner parameters, solving the problem that air conditioner parameters cannot meet user needs and realizing the intelligentization and comfort improvement of air conditioners.

CN116928809BActive Publication Date: 2026-04-21NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NINGBO AUX ELECTRIC CO LTD
Filing Date
2023-06-12
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing air conditioning parameters cannot be adjusted according to the user's actual situation, resulting in user discomfort or energy waste. Furthermore, intelligent control technology is costly and its effects are unstable.

Method used

Users upload air conditioning parameters to the server, which then filters and pushes high-scoring parameters to other users. The server also performs a weighted score based on user ratings and environmental parameters to achieve self-optimization of air conditioning parameters.

Benefits of technology

It improves the comfort and energy efficiency of air conditioning, adapts to different user needs, reduces the cost of intelligent control, and increases user participation and loyalty.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a user group-based air conditioner comfort control method, device and system, which comprises the following steps: pushing air conditioner operation parameters and comfort scores to a first terminal; receiving the comfort scores of the air conditioner operation parameters uploaded by the first terminal; sorting the comfort scores of the air conditioner operation parameters to obtain an air conditioner operation parameter sequence based on the comfort scores; and pushing the N target air conditioner operation parameters with the highest scores in the air conditioner operation parameter sequence to other terminals to enable corresponding air conditioners to execute. In the embodiment of the application, a user is allowed to upload air conditioner parameters set by the user, the air conditioner parameters are distributed to other users after being screened by a server, the air conditioner parameters can be scored by the other users and uploaded to the server for statistics, and then the air conditioner parameters with high scores are pushed to more users, so that the use comfort and energy of the air conditioner are improved.
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Description

Technical Field

[0001] This invention relates to the field of air conditioning comfort control technology, and more specifically, to an air conditioning comfort control method, device, and system based on a user group. Background Technology

[0002] Current air conditioners typically use default system parameters without considering actual user conditions. This leads to discomfort and energy waste for many users. With technological advancements, some new air conditioners possess automatic learning and intelligent control functions, adjusting based on user habits and environmental changes. However, these automatic adjustment algorithms require complex technologies such as machine learning and artificial intelligence. These technologies are currently still under development, resulting in inconsistent performance and high costs. Summary of the Invention

[0003] To address the aforementioned problems, this invention provides a user-group-based air conditioning comfort control method applied to a server. The method includes: pushing air conditioning operating parameters and corresponding comfort scores to a first terminal, so that the first terminal synchronizes the air conditioning operating parameters to the corresponding air conditioner for execution; the air conditioning operating parameters are pre-uploaded to the server by a second terminal; receiving the comfort scores of the air conditioning operating parameters uploaded by the first terminal; sorting the air conditioning operating parameters according to the comfort scores to obtain an air conditioning operating parameter sequence sorted by comfort scores; and pushing the N target air conditioning operating parameters with the highest scores in the air conditioning operating parameter sequence to other terminals, so that the other terminals synchronize any one of the target air conditioning operating parameters to the corresponding air conditioner for execution.

[0004] In this embodiment of the invention, users are allowed to upload their set air conditioning parameters. After being filtered by the server, these parameters are sent to other users. Other users can rate these air conditioning parameters and upload them to the server for statistics. Then, high-scoring air conditioning parameters are pushed to more users, thereby improving the comfort and energy efficiency of the air conditioner. As the user base grows, the system is expanded and upgraded to make it more intelligent and adaptable to different user needs, thus achieving self-optimization of air conditioning parameters.

[0005] Optionally, the method further includes: receiving air conditioning operating parameters, air conditioning environmental parameters, and user-specific parameters uploaded by the second terminal; and performing a weighted score based on the air conditioning environmental parameters and the user-specific parameters to obtain an initial comfort score for the air conditioning operating parameters.

[0006] In this embodiment of the invention, the server filters the air conditioning parameters uploaded by users to ensure that the parameters sent to other users meet certain standards and to avoid problems caused by unreasonable parameters.

[0007] Optionally, the method further includes: pushing parameter adjustment suggestion information corresponding to the N target air conditioner operating parameters to the other terminals, so that the other terminals can synchronously adjust any of the target air conditioner operating parameters to the corresponding air conditioner for execution; the parameter adjustment suggestion information includes: temperature parameter adjustment information and humidity parameter adjustment information.

[0008] In this embodiment of the invention, appropriate adjustment suggestions are pushed, allowing users to modify the air conditioning operating parameters pushed by the server themselves. This can improve the comfort level of the adjustments.

[0009] Optionally, the step of pushing the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence to other terminals includes: obtaining the regional information corresponding to the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence; and pushing the target operating parameters to other terminals in the same region based on the regional information.

[0010] In this embodiment of the invention, parameters can be pushed based on region, thereby improving user acceptance and satisfaction.

[0011] Optionally, the step of obtaining an initial comfort score for the air conditioning operating parameters by weighted scoring based on the air conditioning environmental parameters and the user's personal parameters includes: determining a temperature score based on a first difference between the current temperature and the user's temperature threshold in the air conditioning environmental parameters; the temperature score is negatively correlated with the first difference; determining a humidity score based on a second difference between the current humidity and the user's humidity threshold in the air conditioning environmental parameters; the humidity score is negatively correlated with the second difference; determining a PM2.5 score based on the PM2.5 concentration value in the air conditioning environmental parameters; the PM2.5 score is negatively correlated with the PM2.5 concentration value; determining a personal health score based on the user's personal parameters; and taking a weighted average of the temperature score, humidity score, PM2.5 score, and personal health score to obtain the initial comfort score for the air conditioning operating parameters.

[0012] This invention provides a feasible method for determining comfort scores, which can filter air conditioning parameters uploaded by users and avoid problems caused by unreasonable parameters.

[0013] Optionally, the method further includes the step of providing user rewards; the user rewards include at least one of the following: upload user rewards, participation rating user rewards, ranking rewards, sharing rewards, and periodic rewards.

[0014] In this embodiment of the invention, by setting the aforementioned user rewards, users can be encouraged to continuously pay attention to and participate in sharing and rating activities, thereby increasing user engagement and loyalty.

[0015] This invention provides a user-group-based air conditioning comfort control method applied to a terminal connected to an air conditioner. The method includes: receiving air conditioner operating parameters and corresponding comfort scores pushed by a server; sending the air conditioner operating parameters to the corresponding air conditioner for execution upon receiving a user synchronization command; and sending the comfort scores of the air conditioner operating parameters to the server, so that the server sorts the air conditioner operating parameters according to the comfort scores to obtain a sequence of air conditioner operating parameters sorted by comfort scores.

[0016] Optionally, the method further includes: sending initial air conditioning operating parameters, air conditioning environment parameters, and user-specific parameters to the server, so that the server performs a weighted scoring based on the air conditioning environment parameters and the user-specific parameters to obtain an initial comfort score for the air conditioning operating parameters.

[0017] In this embodiment of the invention, the server filters the air conditioning parameters uploaded by users to ensure that the parameters sent to other users meet certain standards and avoid problems caused by unreasonable parameters.

[0018] This invention provides a user-group-based air conditioning comfort control device applied to a server. The device includes: a first push module for pushing air conditioning operating parameters and corresponding comfort scores to a first terminal, so that the first terminal synchronizes the air conditioning operating parameters to the corresponding air conditioner for execution; the air conditioning operating parameters are pre-uploaded to the server by a second terminal; a score receiving module for receiving the comfort scores of the air conditioning operating parameters uploaded by the first terminal; a sorting module for sorting the air conditioning operating parameters according to the comfort scores to obtain a sequence of air conditioning operating parameters sorted by comfort scores; and a second push module for pushing the N target air conditioning operating parameters with the highest scores in the sequence to other terminals, so that the other terminals synchronize any one of the target air conditioning operating parameters to the corresponding air conditioner for execution.

[0019] This invention provides an air conditioning comfort control device based on a user group, applied to a terminal connected to an air conditioner. The device includes: a receiving module for receiving air conditioning operating parameters and corresponding comfort scores pushed by a server; an execution module for sending the air conditioning operating parameters to the corresponding air conditioner for execution upon receiving a user synchronization command; and a score uploading module for sending the comfort scores of the air conditioning operating parameters to the server, so that the server sorts the air conditioning operating parameters according to the comfort scores to obtain a sequence of air conditioning operating parameters sorted by comfort scores.

[0020] This invention provides an air conditioning comfort control system, including the aforementioned air conditioning comfort control device based on user groups.

[0021] The user-group-based air conditioning comfort control device and system of the present invention can achieve the same technical effect as the aforementioned user-group-based air conditioning comfort control method. Attached Figure Description

[0022] Figure 1 A system architecture diagram provided by an embodiment of the present invention is shown;

[0023] Figure 2 A schematic flowchart of an air conditioning comfort control method based on user groups is shown in an embodiment of the present invention;

[0024] Figure 3 A schematic flowchart of another user group-based air conditioning comfort control method is shown in an embodiment of the present invention;

[0025] Figure 4 A schematic diagram of the structure of an air conditioning comfort control device based on a user group is shown in an embodiment of the present invention;

[0026] Figure 5 A schematic diagram of another user-group-based air conditioning comfort control device is shown in an embodiment of the present invention. Detailed Implementation

[0027] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0028] In this embodiment of the invention, users are allowed to upload their configured air conditioning parameters, which are then filtered by the server and distributed to other users. Other users can rate these parameters and upload their ratings to the system for statistical analysis. Based on these ratings, the system distributes higher-scoring air conditioning parameters to more users, thereby improving overall user comfort and energy efficiency. In this way, the system can be expanded and upgraded as the user base grows, becoming more intelligent and adaptable to different user needs, achieving self-optimization within the user group.

[0029] For example, the above system can adopt a client-server model, where the client is responsible for uploading and synchronizing air conditioning setting parameters, and the server is responsible for storing and pushing these parameters. It is implemented using web development technologies, with the front-end using the Vue.js framework and the back-end using Node.js and a MongoDB database. User registration and login functions are implemented. Users must register before using the system and verify their identity via email or mobile phone. After logging in, users can view their upload history and rating information.

[0030] Implement a parameter upload function. When uploading parameters, users can fill in their air conditioner brand, model, temperature, fan speed, and other parameter information, along with their IP address, and report it to the server. After the upload is complete, the system will generate a unique parameter ID and return it to the user.

[0031] This feature enables parameter synchronization. Other users can browse uploaded parameters and choose to synchronize them to their own air conditioners. The system will push these parameters to all users in the same region using a regional algorithm, and users can synchronize parameters with a single click by clicking the synchronize button.

[0032] Implement a rating function. After synchronizing and experiencing the parameters, users can rate the received parameters. For example, the rating can be divided into five levels: very satisfied, satisfied, neutral, dissatisfied, and very dissatisfied. The system will save the rating results to the database.

[0033] The system enables data visualization. Uploaded parameters and rating data can be displayed in chart form, allowing users to easily view and compare the performance and user satisfaction of different air conditioners.

[0034] To ensure data security, the system employs the Hypertext Transfer Security Protocol (HTTPS) for data encryption, uses JWT for authentication and authorization management, and leverages MongoDB database access control and backup / recovery mechanisms to guarantee data security.

[0035] Figure 1 The system architecture diagram provided in this embodiment of the invention is shown. Multiple user groups can upload parameters to the server, where the server performs data preprocessing, statistical scoring data, and weighted push of high-scoring data. Then, the high-scoring parameters are pushed to the user groups, allowing users to selectively synchronize parameters.

[0036] Figure 2 The diagram illustrates a schematic flowchart of an air conditioning comfort control method based on a user group, as described in an embodiment of the present invention. Applied to a server, the method includes the following steps:

[0037] S202, push the air conditioner operating parameters and corresponding comfort scores to the first terminal so that the first terminal can synchronize the air conditioner operating parameters to the corresponding air conditioner for execution.

[0038] The first terminal can be a user's smart terminal or other device, which is bound to the air conditioner. After the user selects a certain air conditioner operating parameter, it can be synchronized to the air conditioner so that the air conditioner operates according to that operating parameter.

[0039] The aforementioned air conditioning operating parameters are pre-uploaded to the server by the second terminal. Optionally, the server implements the function of receiving parameters uploaded by the second terminal in the following manner: First, it receives the air conditioning operating parameters, air conditioning environmental parameters, and user-specific parameters uploaded by the second terminal; second, it performs a weighted score based on the air conditioning environmental parameters and user-specific parameters to obtain an initial comfort score for the air conditioning operating parameters. The air conditioning environmental parameters may include information such as ambient temperature, humidity, and PM2.5, and the user-specific parameters may include information such as height, weight, and age.

[0040] To ensure the rationality of air conditioner parameter settings and prevent malicious uploading of air conditioner parameters, the server can first perform a weighted scoring of the parameters uploaded by users, and only push parameters with scores higher than a preset threshold to other users. For example, a weighted comparison value can be set by quarterly, assuming thresholds such as "ideal user temperature" and "ideal user humidity". Optionally, the comfort scoring method is as follows:

[0041] (1) Determine the temperature score based on the first difference between the current temperature and the user's temperature threshold in the air conditioning environment parameters. The temperature score is negatively correlated with the first difference; the smaller the first difference, the higher the score.

[0042] (2) Determine the humidity score based on the second difference between the current humidity and the user's humidity threshold in the air conditioning environment parameters. The humidity score is negatively correlated with the second difference; the smaller the second difference, the higher the score.

[0043] (3) Determine the PM2.5 score based on the PM2.5 concentration value in the air conditioning environmental parameters. This PM2.5 score is negatively correlated with the PM2.5 concentration value; the lower the PM2.5 concentration value, the higher the score.

[0044] (4) Determine the individual health score based on the user's personality parameters. The user's health status is determined based on information such as height, weight, and age from their personality parameters; a better health status corresponds to a higher individual health score. In this embodiment, any reasonable method for determining physical health status can be used, and no limitation is imposed.

[0045] (5) The initial comfort score of the air conditioning operating parameters is obtained by weighted averaging of the temperature score, humidity score, PM2.5 score, and personal health score. The weights of the above four parameters can be determined based on different evaluation orientations, such as emphasizing temperature or emphasizing the number of particulate matter in the air, and reasonable weight coefficients are set for each parameter. The server filters the air conditioning parameters uploaded by users to ensure that the parameters sent to other users meet certain standards and avoid problems caused by unreasonable parameters.

[0046] S204, receive the comfort score of the air conditioning operation parameters uploaded by the first terminal.

[0047] After users actually use the air conditioner with the above operating parameters, they can rate its comfort level, which may include the following aspects: temperature, humidity, fan speed, noise, and air quality. A comprehensive comfort score is obtained from the scores of all these aspects.

[0048] S206, Sort the air conditioning operating parameters according to the comfort score to obtain the air conditioning operating parameter sequence sorted by comfort score.

[0049] After a user submits a review, the server can automatically aggregate and sum the scores of each parameter, generate a total score ranking, and then push the top-ranked parameters with weighted scores. For example, if a certain air conditioning operation parameter already has a comfort score or multiple comfort scores for that parameter have been received, the latest comfort score can be obtained by averaging all the scores.

[0050] S208 pushes the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence to other terminals so that other terminals can synchronize any target air conditioner operating parameter to the corresponding air conditioner for execution.

[0051] The server pushes the most popular parameters to more users. With each push, the server compiles real-time scoring data, calculates the average score for each parameter, and sorts them. Then, the server increases the recommendation weight of the parameters with the highest average scores, ensuring they are seen by more users.

[0052] The user-group-based air conditioning comfort control method provided in this invention allows users to upload their set air conditioning parameters, which are then filtered by the server and sent to other users. Other users can rate these air conditioning parameters and upload the results to the server for statistical analysis. High-scoring air conditioning parameters are then pushed to more users, thereby improving the comfort and energy efficiency of the air conditioning. The method can be expanded and upgraded as the user base grows, making it more intelligent and adaptable to different user needs, and achieving self-optimization of air conditioning parameters.

[0053] Considering that users may have personalized adjustment needs beyond the air conditioner operating parameters pushed by the server, users can modify these parameters themselves. To improve the comfort of these adjustments, appropriate adjustment suggestions can also be pushed along with the target air conditioner operating parameters. Therefore, the above method may further include:

[0054] The parameter adjustment suggestions for the aforementioned N target air conditioner operating parameters are pushed to other terminals, so that the adjusted operating parameters of any of the target air conditioners on these other terminals are executed by the corresponding air conditioner. These parameter adjustment suggestions include temperature parameter adjustment information, humidity parameter adjustment information, etc. After the user adjusts the aforementioned target air conditioner operating parameters, the adjustments are synchronized and executed by the corresponding air conditioner.

[0055] Due to varying climates in different regions, users' needs for air conditioning operation also differ. This embodiment can push parameters based on region, thereby improving user acceptance and satisfaction. Therefore, the above parameter pushing steps can be executed as follows:

[0056] First, obtain the regional information corresponding to the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence; the regional information can be administrative regions such as provinces, cities, and counties, or geographical location information such as latitude, longitude, and altitude.

[0057] Secondly, based on the aforementioned regional information, the target operating parameters are pushed to other terminals in the same region. Here, "same region" can refer to the same administrative region mentioned above, or regions that meet certain conditions such as distance.

[0058] Furthermore, this embodiment also provides a user reward step. The user reward may include at least one of the following: upload user reward, participation user reward, ranking reward, sharing reward, and periodic reward. The reward may be a points reward, a cash reward, etc. By setting up the above user rewards, users can be encouraged to continuously pay attention and participate in sharing and rating activities, thereby increasing user engagement and loyalty.

[0059] Figure 3 The diagram illustrates a schematic flowchart of an air conditioning comfort control method based on a user group according to an embodiment of the present invention. The method is applied to a terminal connected to an air conditioner and includes the following steps:

[0060] S302 receives the air conditioning operating parameters and corresponding comfort scores pushed by the server.

[0061] S304, upon receiving a user synchronization command, sends the air conditioner operating parameters to the corresponding air conditioner for execution.

[0062] S306, the comfort scores of the above air conditioning operating parameters are sent to the server so that the server can sort the air conditioning operating parameters according to the comfort scores to obtain a sequence of air conditioning operating parameters sorted by comfort scores.

[0063] The user-group-based air conditioning comfort control method provided in this invention allows users to upload their set air conditioning parameters, score these parameters and upload them to the server for statistical analysis, and then push high-scoring air conditioning parameters to more users, thereby improving the comfort and energy efficiency of air conditioning use.

[0064] Furthermore, the above method also includes: sending initial air conditioning operating parameters, air conditioning environmental parameters, and user-specific parameters to the server, so that the server can perform a weighted scoring based on the air conditioning environmental parameters and user-specific parameters to obtain an initial comfort score for the air conditioning operating parameters. The server filters the air conditioning parameters uploaded by users to ensure that the parameters sent to other users meet certain standards and avoid problems caused by unreasonable parameters.

[0065] The following details an exemplary implementation of the above method.

[0066] 1. Pre-collection of data

[0067] The system needs to collect data on the ambient temperature, humidity, and PM2.5 levels of the environment in which the air conditioner is located. This data can be obtained through the air conditioner's sensors. Additionally, it needs to collect information such as the user's height, weight, and age to provide a personalized rating.

[0068] 2. System Algorithm

[0069] To ensure the rationality of air conditioning parameter settings and prevent malicious uploads, the server will first weight and score the parameters reported by users, using a pre-set "ideal user temperature" as a weighted comparison value on a quarterly basis. The comfort score includes the following aspects:

[0070] (1) Temperature score: Calculate the difference between the current temperature and the "user's ideal temperature". The smaller the difference, the higher the score.

[0071] (2) Humidity score: Calculate the difference between the current humidity and the "user's ideal temperature". The smaller the difference, the higher the score.

[0072] (3) PM2.5 score: The score is calculated based on the current PM2.5 concentration value. The lower the concentration, the higher the score.

[0073] (4) Personal characteristics score: The score is calculated based on the user's height, weight, age and other information to ensure that the scoring results are more accurate.

[0074] Finally, the scores from the four aspects are weighted and averaged to obtain the comfort score.

[0075] 3. Scoring Mechanism Design:

[0076] After using the air conditioner, users can rate the following parameters on the application: temperature, humidity, fan speed, noise, and air quality. A rating of 1-5 stars is given based on the positive feedback ratings mentioned above. After users submit their ratings, the server automatically aggregates and adds up the scores for each parameter, providing a ranking of the total scores, and then weighting and pushing the top-scoring parameters to other users. Other users rate the air conditioner parameters, ensuring the fairness and accuracy of the ratings.

[0077] 4. Weighted push mechanism:

[0078] The server will push the most popular parameters to more users in a weighted manner. The specific mechanism is as follows: with each push, the server collects scoring data in real time, calculates the average score for each parameter, and sorts them. Then, the server increases the recommendation weight of the parameters with the highest average scores, making them more visible to more users.

[0079] 5. Display rating results and enable one-click synchronization for users.

[0080] The server pushes comfort scores for the same region to the application interface on the terminal, and also provides targeted suggestions, such as adjusting parameters like temperature and humidity, to achieve better comfort. Users can select parameters based on the score results and sync them with one click to meet their needs.

[0081] 6. User reward mechanism

[0082] Upload User Rewards: Users who upload data will receive points or cash rewards as a thank you for sharing valid parameters.

[0083] Rewards for users who participate in the scoring: Users who participate in the scoring can also receive a certain amount of points or cash rewards to encourage their participation in the activity and increase user enthusiasm.

[0084] Ranking Rewards: The server ranks all uploaded air conditioner parameters based on user ratings. Top-ranked users will receive higher percentages of points or cash rewards.

[0085] Sharing Rewards: If a user shares another user's valid air conditioner parameters, and those parameters are adopted by other users and receive a high rating, then that user will also receive a certain number of points or cash rewards.

[0086] Periodic rewards: To keep users engaged and participating in the activity, a periodic reward mechanism can be set up, such as rewarding the user who uploads and scores the most each week or month.

[0087] This embodiment can improve user engagement and loyalty: by involving users in setting and rating air conditioner parameters, their engagement and loyalty to the product can be increased; improve product design: based on user-uploaded air conditioner parameters and other users' ratings, more information about customer needs and preferences can be obtained, thereby improving product design and better meeting market demands; increase sales: excellent air conditioner parameters, after multiple rounds of screening and scoring, can be distributed to more users, which will boost sales and increase company revenue; reduce marketing costs: by involving users in product design through social media, the product can be effectively promoted while reducing marketing costs; and enhance brand influence: adopting innovative marketing methods can increase brand awareness and influence in the market, thereby attracting more potential customers.

[0088] In this embodiment of the invention, user privacy protection is also provided: the server needs to protect users' personal information and settings to ensure that they are not leaked or misused; data security protection: in order to prevent data from being stolen or tampered with during transmission, corresponding encryption and verification measures need to be taken; fairness protection of scoring data: in order to prevent malicious users from giving low scores to certain parameters, certain rules and mechanisms need to be set to ensure the fairness of the scoring.

[0089] Figure 4 This diagram illustrates a user-group-based air conditioning comfort control device according to an embodiment of the present invention, applied to a server. The device includes:

[0090] The first push module 401 is used to push the air conditioner operating parameters and the corresponding comfort score to the first terminal, so that the first terminal can synchronize the air conditioner operating parameters to the corresponding air conditioner for execution; the air conditioner operating parameters are pre-uploaded to the server by the second terminal.

[0091] The rating receiving module 402 is used to receive the comfort rating of the air conditioner operating parameters uploaded by the first terminal;

[0092] The sorting module 403 is used to sort the air conditioning operating parameters according to the comfort score to obtain a sequence of air conditioning operating parameters sorted based on the comfort score.

[0093] The second push module 404 is used to push the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence to other terminals, so that the other terminals can synchronize any of the target air conditioner operating parameters to the corresponding air conditioner for execution.

[0094] The air conditioning comfort control device based on user groups provided in this invention allows users to upload their set air conditioning parameters. After being filtered by the server, these parameters are sent to other users. Other users can rate these air conditioning parameters and upload them to the server for statistics. Then, high-scoring air conditioning parameters are pushed to more users, thereby improving the comfort and energy efficiency of air conditioning. As the user base grows, the device can be expanded and upgraded to become more intelligent and adaptable to different user needs, achieving self-optimization of air conditioning parameters.

[0095] As a feasible approach, the device further includes an initial scoring module, used to: receive air conditioning operating parameters, air conditioning environmental parameters, and user personal parameters uploaded by the second terminal; and perform a weighted scoring based on the air conditioning environmental parameters and the user personal parameters to obtain an initial comfort score for the air conditioning operating parameters.

[0096] As a feasible approach, the device further includes a suggestion information push module, used to: push parameter adjustment suggestion information corresponding to the N target air conditioner operating parameters to the other terminals, so that the other terminals can synchronously adjust any of the target air conditioner operating parameters to the corresponding air conditioner for execution; the parameter adjustment suggestion information includes: temperature parameter adjustment information and humidity parameter adjustment information.

[0097] As a feasible approach, the second push module is specifically used to: obtain the regional information corresponding to the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence; and push the target operating parameters to other terminals in the same region based on the regional information.

[0098] As a feasible approach, the initial scoring module is specifically used for: determining a temperature score based on a first difference between the current temperature and the user's temperature threshold in the air conditioning environment parameters; the temperature score is negatively correlated with the first difference; determining a humidity score based on a second difference between the current humidity and the user's humidity threshold in the air conditioning environment parameters; the humidity score is negatively correlated with the second difference; determining a PM2.5 score based on the PM2.5 concentration value in the air conditioning environment parameters; the PM2.5 score is negatively correlated with the PM2.5 concentration value; determining a personal health score based on the user's individual parameters; and taking a weighted average of the temperature score, humidity score, PM2.5 score, and personal health score to obtain an initial comfort score for the air conditioning operating parameters.

[0099] As an alternative, the device further includes a reward module for providing user rewards; the user rewards include at least one of the following: upload user rewards, participation user rewards, ranking rewards, sharing rewards, and periodic rewards.

[0100] Figure 5This diagram illustrates a user-group-based air conditioning comfort control device according to an embodiment of the present invention. The device is applied to a terminal connected to an air conditioner and includes:

[0101] The receiving module 501 is used to receive the air conditioning operating parameters and corresponding comfort scores pushed by the server.

[0102] The execution module 502 is used to send the air conditioner operating parameters to the corresponding air conditioner for execution upon receiving a user synchronization command;

[0103] The rating upload module 503 is used to send the comfort rating of the air conditioner operating parameters to the server, so that the server can sort the air conditioner operating parameters according to the comfort rating to obtain a sequence of air conditioner operating parameters sorted by comfort rating.

[0104] The user-group-based air conditioning comfort control device provided in this invention allows users to upload their set air conditioning parameters, score these parameters and upload them to the server for statistical analysis, and then push high-scoring air conditioning parameters to more users, thereby improving the comfort and energy efficiency of air conditioning use.

[0105] As a feasible approach, the device further includes an initial parameter uploading module, used to: send initial air conditioning operating parameters, air conditioning environment parameters, and user-specific parameters to the server, so that the server can perform a weighted scoring based on the air conditioning environment parameters and the user-specific parameters to obtain an initial comfort score for the air conditioning operating parameters.

[0106] This invention provides an air conditioning comfort control system, including the aforementioned air conditioning comfort control device based on user groups.

[0107] This invention also provides a computer-readable storage medium storing a computer program. When the computer program is read and executed by a processor, it implements the method provided in the above embodiments and achieves the same technical effect. To avoid repetition, further details are omitted here. The computer-readable storage medium may be a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.

[0108] Of course, those skilled in the art will understand that all or part of the processes in the above embodiments can be implemented by computer-controlled devices. The program can be stored in a computer-readable storage medium. When the program is executed, it can include the processes of the above method embodiments. The storage medium can be a memory, a disk, an optical disk, etc.

[0109] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

[0110] Finally, it should be noted that in this document, 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-exclusive inclusion, such 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. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0111] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. Similar or identical parts between embodiments can be referred to interchangeably. Regarding the user-group-based air conditioning comfort control device and system disclosed in the embodiments, since it corresponds to the user-group-based air conditioning comfort control method disclosed in the above embodiments, the description is relatively simple, and relevant parts can be referred to the method section.

[0112] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

Claims

1. A user-group-based air conditioning comfort control method, characterized in that, Applied to a server, the method includes: The air conditioning operating parameters and corresponding comfort scores are pushed to the first terminal so that the first terminal can synchronize the air conditioning operating parameters to the corresponding air conditioner for execution; the air conditioning operating parameters are pre-uploaded to the server by the second terminal. Receive the comfort score of the air conditioner operating parameters uploaded by the first terminal; The air conditioning operating parameters are sorted according to their comfort scores to obtain a sequence of air conditioning operating parameters sorted by comfort scores. The N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence are pushed to other terminals so that the other terminals can synchronize any of the target air conditioner operating parameters to the corresponding air conditioner for execution. Receive air conditioner operating parameters, air conditioner environmental parameters, and user-specific parameters uploaded by the second terminal; Based on the air conditioning environment parameters and the user's personal parameters, a weighted score is applied to obtain the initial comfort score of the air conditioning operating parameters; The step of obtaining an initial comfort score for the air conditioning operating parameters by weighting the scores based on the air conditioning environmental parameters and the user's personal parameters includes: A temperature score is determined based on the first difference between the current temperature and the user's temperature threshold in the air conditioning environment parameters; the temperature score is negatively correlated with the first difference. A humidity score is determined based on a second difference between the current humidity and the user's humidity threshold in the air conditioning environment parameters; the humidity score is negatively correlated with the second difference. A PM2.5 score is determined based on the PM2.5 concentration value in the air conditioning environmental parameters; the PM2.5 score is negatively correlated with the PM2.5 concentration value. A personal health score is determined based on the user's individual parameters. The initial comfort score of the air conditioning operating parameters is obtained by weighting and averaging the temperature score, humidity score, PM2.5 score and personal health score.

2. The method as described in claim 1, characterized in that, The method further includes: The parameter adjustment suggestion information corresponding to the N target air conditioner operating parameters is pushed to the other terminals so that the other terminals can synchronously adjust any of the target air conditioner operating parameters and execute them on the corresponding air conditioner; the parameter adjustment suggestion information includes: temperature parameter adjustment information and humidity parameter adjustment information.

3. The method as described in claim 1, characterized in that, The step of pushing the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence to other terminals includes: Obtain the regional information corresponding to the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence; Based on the regional information, the target air conditioner operating parameters are pushed to other terminals in the same region.

4. The method as described in claim 1, characterized in that, The method also includes the step of providing user rewards; The user rewards include at least one of the following: rewards for uploading, rewards for participating in scoring, ranking rewards, sharing rewards, and periodic rewards.

5. A user-group-based air conditioning comfort control method, characterized in that, Applied to a terminal connected to an air conditioner, the method includes: Receive air conditioner operating parameters and corresponding comfort scores pushed by the server; Upon receiving a user synchronization command, the air conditioner operating parameters are sent to the corresponding air conditioner for execution; The comfort score of the air conditioning operating parameters is sent to the server, so that the server sorts the air conditioning operating parameters according to the comfort score to obtain a sequence of air conditioning operating parameters sorted by comfort score; The initial air conditioning operating parameters, air conditioning environment parameters, and user-specific parameters are sent to the server, so that the server can perform a weighted scoring based on the air conditioning environment parameters and the user-specific parameters to obtain the initial comfort score of the air conditioning operating parameters. The initial comfort score for the air conditioning operating parameters is obtained by weighting the scores based on the air conditioning environmental parameters and the user's personal parameters, including: A temperature score is determined based on the first difference between the current temperature and the user's temperature threshold in the air conditioning environment parameters; the temperature score is negatively correlated with the first difference. A humidity score is determined based on a second difference between the current humidity and the user's humidity threshold in the air conditioning environment parameters; the humidity score is negatively correlated with the second difference. A PM2.5 score is determined based on the PM2.5 concentration value in the air conditioning environmental parameters; the PM2.5 score is negatively correlated with the PM2.5 concentration value. A personal health score is determined based on the user's individual parameters. The initial comfort score of the air conditioning operating parameters is obtained by weighting and averaging the temperature score, humidity score, PM2.5 score and personal health score.

6. An air conditioning comfort control device based on a user group, characterized in that, Applied to a server, the device includes: The first push module is used to push the air conditioner operating parameters and corresponding comfort scores to the first terminal, so that the first terminal can synchronize the air conditioner operating parameters to the corresponding air conditioner for execution; the air conditioner operating parameters are pre-uploaded to the server by the second terminal. The scoring receiving module is used to receive comfort scores of the air conditioning operating parameters uploaded by the first terminal; receive air conditioning operating parameters, air conditioning environmental parameters, and user personal parameters uploaded by the second terminal; and perform a weighted scoring based on the air conditioning environmental parameters and the user personal parameters to obtain an initial comfort score for the air conditioning operating parameters, including: determining a temperature score based on a first difference between the current temperature and the user's temperature threshold in the air conditioning environmental parameters; the temperature score is negatively correlated with the first difference; determining a humidity score based on a second difference between the current humidity and the user's humidity threshold in the air conditioning environmental parameters; the humidity score is negatively correlated with the second difference; determining a PM2.5 score based on the PM2.5 concentration value in the air conditioning environmental parameters; the PM2.5 score is negatively correlated with the PM2.5 concentration value; determining a personal health score based on the user personal parameters; and performing a weighted average of the temperature score, humidity score, PM2.5 score, and personal health score to obtain the initial comfort score for the air conditioning operating parameters. The sorting module is used to sort the air conditioning operating parameters according to the comfort score, and obtain a sequence of air conditioning operating parameters sorted based on the comfort score. The second push module is used to push the N target air conditioner operating parameters with the highest scores in the air conditioner operating parameter sequence to other terminals, so that the other terminals can synchronize any of the target air conditioner operating parameters to the corresponding air conditioner for execution.

7. An air conditioning comfort control device based on a user group, characterized in that, Applied to a terminal, the terminal being connected to an air conditioner, the device includes: A receiving module is used to receive air conditioning operating parameters and corresponding comfort scores pushed by a server; send initial air conditioning operating parameters, air conditioning environment parameters, and user-specific parameters to the server, so that the server performs a weighted scoring based on the air conditioning environment parameters and the user-specific parameters to obtain an initial comfort score for the air conditioning operating parameters; the step of obtaining the initial comfort score for the air conditioning operating parameters based on the weighted scoring based on the air conditioning environment parameters and the user-specific parameters includes: determining a temperature score based on a first difference between the current temperature and the user's temperature threshold in the air conditioning environment parameters; the temperature score is negatively correlated with the first difference; determining a humidity score based on a second difference between the current humidity and the user's humidity threshold in the air conditioning environment parameters; the humidity score is negatively correlated with the second difference; determining a PM2.5 score based on the PM2.5 concentration value in the air conditioning environment parameters; the PM2.5 score is negatively correlated with the PM2.5 concentration value; determining a personal health score based on the user-specific parameters; and performing a weighted average of the temperature score, humidity score, PM2.5 score, and personal health score to obtain the initial comfort score for the air conditioning operating parameters; The execution module is used to send the air conditioner operating parameters to the corresponding air conditioner for execution upon receiving a user synchronization command; The rating upload module is used to send the comfort rating of the air conditioner operating parameters to the server, so that the server can sort the air conditioner operating parameters according to the comfort rating to obtain a sequence of air conditioner operating parameters sorted by comfort rating.

8. An air conditioning comfort control system, characterized in that, Includes the user-group-based air conditioning comfort control device as described in claim 6 or 7.

Citation Information

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