An air conditioning comfort control method and system

By introducing an ID-bound adjustment table and scoring link into the air conditioner and adjusting the power based on the carbon dioxide concentration, the problem of the air conditioner's inability to adjust intelligently was solved, and the user's comfortable temperature was quickly reached, improving the user experience.

CN119309304BActive Publication Date: 2025-10-21GUANGDONG SANHUA VANADIUM SOUND TECH CO LTD +1
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Patent Information

Application Number
CN202411647586.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-10-21
Estimated Expiration
2044-11-18

AI Technical Summary

Technical Problem

Existing air-conditioning equipment is unable to intelligently adjust the operation mode of the fresh air fan according to factors such as indoor and outdoor temperature, air quality, and indoor personnel, resulting in low user comfort.

Method used

By obtaining the ID information in the air conditioner startup command, it is determined whether to start the smart mode, and the air conditioner operating temperature is adjusted using the adjustment table and score link bound to the ID. The power operating mode is adjusted in combination with the carbon dioxide concentration to achieve precise comfort control.

Benefits of technology

The air conditioner can quickly reach the user's desired comfortable temperature, improve user comfort and convenience of air conditioning use, and reduce the user's need for manual adjustment.

✦ Generated by Eureka AI based on patent content.

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Abstract

A kind of air conditioner comfort control method, comprising the following steps: obtaining current outdoor environment temperature as first temperature;Step S2: judge whether corresponding second temperature exists in the adjustment table of ID information binding in first temperature, if there is second temperature, with second temperature as the running temperature of this air conditioner, if it does not exist, with preset temperature as the running temperature of this air conditioner;The score that the present application can judge out according to the score link is whether second temperature as running temperature can meet the comfort requirement of user, if high score is made, then continue to keep the second temperature, if low score is made, then update second temperature according to score.It makes second temperature meet the personal preference and habit of user, ensures that air conditioner can quickly reach the comfortable temperature expected by user when starting, without manual adjustment.
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Description

Technical Field

[0001] The present invention relates to the technical field of air conditioning regulation, and in particular to an air conditioning comfort control method and system. Background Art

[0002] Air conditioning, also known as air conditioner, refers to a device that uses artificial means to adjust and control the temperature, humidity, flow rate and other parameters of the ambient air in a building or structure.

[0003] The control logic of existing air-conditioning equipment is relatively simple. It can only control the operating mode of the air conditioner and the fresh air fan based on the user's subjective choice. It cannot intelligently adjust the fresh air fan operating mode of the air conditioner according to factors such as indoor and outdoor temperature, air quality and indoor personnel. Therefore, it is impossible to achieve more precise, flexible and intelligent control, and thus it is impossible to improve the user's comfort in the air-conditioned environment. Summary of the Invention

[0004] In view of the above-mentioned defects, the purpose of the present invention is to propose an air conditioning comfort control method and system to solve the problem that existing air conditioners cannot adjust the indoor temperature according to the indoor and outdoor temperatures, resulting in low user comfort.

[0005] To achieve this purpose, the present invention adopts the following technical solution: an air conditioning comfort control method, comprising the following steps:

[0006] Obtaining a power-on instruction for the air conditioner, parsing the power-on instruction, and determining whether the power-on instruction contains the user's ID information. If the instruction contains the ID information, the air conditioner is started in the smart mode; if the instruction does not contain the ID information, the air conditioner is started in the normal mode.

[0007] After the air conditioner is started in smart mode, perform the following steps:

[0008] Step S1: obtaining the current outdoor ambient temperature as the first temperature;

[0009] Step S2: Determine whether the first temperature has a corresponding second temperature in the adjustment table bound to the ID information. If the second temperature exists, the second temperature is used as the current air conditioning operating temperature. If not, the preset temperature is used as the current air conditioning operating temperature.

[0010] Step S3: When the air conditioner is turned off, a scoring link is sent to the communication device bound to the ID information, a second temperature corresponding to the first temperature is updated with the score obtained from the scoring link, and the second temperature is stored in the adjustment table.

[0011] Preferably, before sending the rating link, the following steps need to be performed:

[0012] Obtain the manual adjustment record of the air conditioner during operation, determine whether there is any temperature adjustment content in the manual adjustment record, and if not, send a scoring link to the communication device bound to the ID information;

[0013] If there is temperature adjustment content, the temperature information in the last manual adjustment record is obtained as the third temperature, and whether the third temperature is the same as the preset temperature or the third temperature is the same as the second temperature is determined. If they are the same, a scoring link is sent to the communication device bound to the ID information;

[0014] If they are different, the third temperature is obtained as the second temperature corresponding to the first temperature, and the scoring link is not sent to the communication device bound to the ID information.

[0015] Preferably, the step of updating the second temperature in step S3 is as follows:

[0016] Determining whether the score is greater than a score threshold, and if so, maintaining the second temperature, or using a preset temperature as the second temperature corresponding to the first temperature;

[0017] If it is not greater than the score threshold, obtaining the difference between the first temperature and the second temperature, or obtaining the difference between the first temperature and the preset temperature, as the first difference;

[0018] Obtaining a score in the score link, and dividing the first difference by the score to obtain a second difference;

[0019] The first temperature is updated by the second difference to obtain an adjusted temperature, and the adjusted temperature is used to replace the second temperature corresponding to the first temperature, or the adjusted temperature is used as the second temperature corresponding to the first temperature.

[0020] Preferably, after the air conditioner is started in the smart mode, the following steps are further performed:

[0021] After the air conditioner starts at the threshold time, the indoor temperature is periodically obtained;

[0022] Determine whether the indoor temperature is equal to the second temperature or the preset temperature. If so, maintain the current power operation mode of the air conditioner. If not, obtain the indoor carbon dioxide concentration and adjust the power operation mode based on the carbon dioxide concentration.

[0023] Preferably, the adjustment of the power operation mode based on the carbon dioxide concentration is specifically as follows:

[0024] When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, the power of the air conditioner outdoor unit is reduced by two levels;

[0025] When the indoor temperature is lower than the second temperature or the preset temperature, the carbon dioxide concentration is greater than the first concentration threshold and the carbon dioxide concentration is less than the second concentration threshold, reducing the power of the air conditioner outdoor unit by one level;

[0026] When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is reduced to the third gear;

[0027] When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, maintaining the current power operation mode;

[0028] When the indoor temperature is higher than the second temperature or the preset temperature, and the carbon dioxide concentration is greater than the first concentration threshold and less than the second concentration threshold, the power of the air conditioner outdoor unit is increased by one level;

[0029] When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is increased by two levels.

[0030] An air conditioning comfort control system, using the air conditioning comfort control method, comprises a mode selection module, a normal start module and an intelligent start module;

[0031] The intelligent starting module includes a temperature acquisition module, a judgment module and an adjustment module;

[0032] The mode selection module is used to obtain a power-on instruction of the air conditioner, parse the power-on instruction, and determine whether the power-on instruction contains the user's ID information. If the ID information is contained, the air conditioner is started in the smart mode; if the ID information is not contained, the air conditioner is started in the normal mode.

[0033] The smart start module is called when the air conditioner is started in smart mode;

[0034] The temperature acquisition module is used to obtain the current outdoor ambient temperature as the first temperature;

[0035] The judgment module is used to judge whether the first temperature has a corresponding second temperature in the adjustment table bound to the ID information, and if the second temperature exists, the second temperature is used as the current air conditioning operating temperature; if not, the preset temperature is used as the current air conditioning operating temperature;

[0036] The adjustment module is configured to send a scoring link to the communication device bound to the ID information when the air conditioner is turned off, update the second temperature corresponding to the first temperature with the score obtained from the scoring link, and store the second temperature in the adjustment table;

[0037] The normal startup module is called when the air conditioner is started in normal mode;

[0038] The normal startup module is used to start the air conditioner at the frequency when it was last shut down and according to the previously set air conditioner temperature.

[0039] Preferably, before calling the adjustment module, the scoring module also needs to be called;

[0040] The scoring module is used to obtain the manual adjustment record of the air conditioner during the operation phase, determine whether there is any content in the manual adjustment record, and if no content is present, send a scoring link to the communication device bound to the ID information; if content is present, obtain the temperature information in the last manual adjustment record as the third temperature, determine whether the third temperature is the same as the preset temperature, and if so, send a scoring link to the communication device bound to the ID information; if not, obtain the third temperature as the second temperature corresponding to the first temperature, and do not send a scoring link to the communication device bound to the ID information.

[0041] Preferably, the adjustment module includes a first submodule, a second submodule and a third submodule;

[0042] The first submodule is used to determine whether the score is greater than the score threshold, and if so, maintain the second temperature, or use the preset temperature as the second temperature corresponding to the first temperature; if not greater than the score threshold, obtain the difference between the first temperature and the second temperature, or obtain the difference between the first temperature and the preset temperature as the first difference;

[0043] The second submodule is configured to obtain a score in the score link, and divide the first difference by the score to obtain a second difference;

[0044] The third submodule is configured to update the first temperature using the second difference to obtain an adjusted temperature, and to replace the second temperature corresponding to the first temperature with the adjusted temperature, or to use the adjusted temperature as the second temperature corresponding to the first temperature.

[0045] Preferably, it also includes a readjustment module;

[0046] The readjustment module is used to obtain the indoor temperature after the air conditioner is started for a threshold time;

[0047] Determine whether the indoor temperature is equal to the second temperature or the preset temperature. If so, maintain the current power operation mode of the air conditioner. If not, obtain the indoor carbon dioxide concentration and adjust the power operation mode based on the carbon dioxide concentration.

[0048] Preferably, the readjustment module includes a power control submodule;

[0049] The power control submodule is used to reduce the power of the air conditioner outdoor unit by two gears when the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold;

[0050] When the indoor temperature is lower than the second temperature or the preset temperature, the carbon dioxide concentration is greater than the first concentration threshold and the carbon dioxide concentration is less than the second concentration threshold, reducing the power of the air conditioner outdoor unit by one level;

[0051] When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is reduced to the third gear;

[0052] When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, maintaining the current power operation mode;

[0053] When the indoor temperature is higher than the second temperature or the preset temperature, and the carbon dioxide concentration is greater than the first concentration threshold and less than the second concentration threshold, the power of the air conditioner outdoor unit is increased by one level;

[0054] When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is increased by two levels.

[0055] One of the above technical solutions has the following advantages or beneficial effects: The present invention can determine whether the second operating temperature meets the user's comfort requirements based on the ratings provided by the rating link. If the rating is high, the second temperature is maintained; if the rating is low, the second temperature is updated based on the ratings. This allows the second temperature to meet the user's personal preferences and habits, ensuring that the air conditioner quickly reaches the user's desired comfort temperature when it is turned on, without the need for manual adjustment by the user. BRIEF DESCRIPTION OF THE DRAWINGS

[0056] Figure 1 4 is a flow chart of an intelligent mode in an embodiment of the method of the present invention.

[0057] Figure 2 It is a structural diagram of an embodiment of the system of the present invention. DETAILED DESCRIPTION

[0058] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and are not to be construed as limiting the present invention.

[0059] In the description of the embodiments of the present invention, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Therefore, a feature specified as "first" or "second" may explicitly or implicitly include one or more of the described features. In the description of the embodiments of the present invention, "plurality" means two or more, unless otherwise specifically specified.

[0060] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, "plurality" means two or more. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.

[0061] like Figures 1 and 2 As shown, an air conditioning comfort control method includes the following steps:

[0062] Obtaining a power-on instruction for the air conditioner, parsing the power-on instruction, and determining whether the power-on instruction contains the user's ID information. If the instruction contains the ID information, the air conditioner is started in the smart mode; if the instruction does not contain the ID information, the air conditioner is started in the normal mode.

[0063] After the air conditioner is started in smart mode, perform the following steps:

[0064] Step S1: obtaining the current outdoor ambient temperature as the first temperature;

[0065] Step S2: Determine whether the first temperature has a corresponding second temperature in the adjustment table bound to the ID information. If the second temperature exists, the second temperature is used as the current air conditioning operating temperature. If not, the preset temperature is used as the current air conditioning operating temperature.

[0066] Step S3: When the air conditioner is turned off, a scoring link is sent to the communication device bound to the ID information, a second temperature corresponding to the first temperature is updated with the score obtained from the scoring link, and the second temperature is stored in the adjustment table.

[0067] Thanks to the continuous advancement of modern technology, users can now use smart devices (phones, tablets, etc.) other than remote controls to power on the air conditioner. When a smart device issues a power-on command to the air conditioner, it includes its corresponding ID information. Each ID is associated with a temperature control table, where each first temperature in the table corresponds to a second temperature. If the power-on command includes the ID information, the air conditioner will start in smart mode. If the ID information is not included (when the power-on command is issued via the remote control), the air conditioner will start in standard mode. In standard mode, the air conditioner will start at the frequency it was last powered off at and the previously set temperature. In smart mode, the first temperature is obtained and then compared with the corresponding second temperature in the temperature control table. The air conditioner will then start at the frequency it was last powered off at and the set temperature. For example, if the first temperature is 30°C and the corresponding second temperature is 27°C, the air conditioner will start at the frequency it was last powered off at, with 27°C as the operating temperature. Each time the air conditioner is turned off, a rating link is sent to the communication device bound to the ID information. The rating provided in the rating link determines whether the second operating temperature meets the user's comfort needs. If the score is high, the second temperature will be maintained; if the score is low, the second temperature will be updated accordingly. This allows the second temperature to meet the user's personal preferences and habits, ensuring that the air conditioner can quickly reach the user's desired comfort temperature when it is turned on, without the need for manual adjustment by the user.

[0068] Of course, it is possible that the first temperature does not have a corresponding second temperature in the adjustment table. In this case, the preset temperature will be used as the operating temperature for this time. Similarly, after the air conditioner is finally shut down, a rating link will be sent to the user. Through the rating link, it will be determined whether to retain the preset temperature as the second temperature corresponding to the first temperature, or to adjust the preset temperature and then use it as the second temperature corresponding to the first temperature.

[0069] The present invention provides users with a more comfortable, convenient and efficient air-conditioning experience through the advantages of intelligent temperature regulation, learning and optimization mechanism, convenience and efficiency, and improved user experience.

[0070] Preferably, before sending the rating link, the following steps need to be performed:

[0071] Obtain the manual adjustment record of the air conditioner during operation, determine whether there is any temperature adjustment content in the manual adjustment record, and if not, send a scoring link to the communication device bound to the ID information;

[0072] If there is temperature adjustment content, the temperature information in the last manual adjustment record is obtained as the third temperature, and whether the third temperature is the same as the preset temperature or the third temperature is the same as the second temperature is determined. If they are the same, a scoring link is sent to the communication device bound to the ID information;

[0073] If they are different, the third temperature is obtained as the second temperature corresponding to the first temperature, and the scoring link is not sent to the communication device bound to the ID information.

[0074] In some cases, even after turning on the air conditioner, the second or preset temperature still doesn't meet the user's desired ambient temperature. In this case, the user may manually adjust the temperature. To this end, the present invention captures the air conditioner's manual adjustment records for the current operating phase. This manual adjustment record allows the user to determine the temperature adjustment. Since this adjustment is made manually by the user, the temperature that best meets the user's comfort needs is the one that best meets the user's desired comfort level. Therefore, the temperature adjusted in the adjustment record can be used to update the second temperature. However, considering that the user may have previously adjusted the indoor temperature significantly, causing a rapid drop in temperature, and then adjust it back to their preferred temperature, the present invention, if any manual adjustment record exists, only captures the temperature information from the last manual adjustment record and marks it as the third temperature. A determination is then made as to whether the second or preset temperature is equal to the third temperature. If so, the user may have approved the second or preset temperature, or simply adjusted it back. Since it's impossible to predict the user's mental state, a rating link is still sent to the communication device associated with the ID information. When the third temperature is different from the second temperature or the preset temperature, the third temperature is more likely to be the temperature desired by the user. In this case, the third temperature is directly used as the second temperature corresponding to the first temperature. Since the comfortable temperature required by the user is obtained, there is no need to send a scoring link to the communication device bound to the ID information.

[0075] Preferably, the step of updating the second temperature in step S3 is as follows:

[0076] Determining whether the score is greater than a score threshold, and if so, maintaining the second temperature, or using a preset temperature as the second temperature corresponding to the first temperature;

[0077] If it is not greater than the score threshold, obtaining the difference between the first temperature and the second temperature, or obtaining the difference between the first temperature and the preset temperature, as the first difference;

[0078] Obtaining a score in the score link, and dividing the first difference by the score to obtain a second difference;

[0079] The first temperature is updated by the second difference to obtain an adjusted temperature, and the adjusted temperature is used to replace the second temperature corresponding to the first temperature, or the adjusted temperature is used as the second temperature corresponding to the first temperature.

[0080] If the score is greater than the score threshold, it means that the user is relatively satisfied with the second temperature or the preset temperature. At this time, the preset temperature can be used as the second temperature corresponding to the first temperature, or the value of the second temperature can be kept unchanged.

[0081] If the score is not greater than the threshold, it means that the user is not satisfied with the temperature. In this case, the difference between the first temperature and the second temperature, or the difference between the first temperature and the preset temperature, is obtained as the first difference. The first difference reflects the temperature difference between the external environment and the internal environment. This temperature difference is the key to whether the user is satisfied with the temperature adjustment. Therefore, the temperature that better meets the user's comfort can be calculated by combining the first difference and the score. The following is an example for explanation:

[0082] Assume the score threshold is 85 points, the user gives this adjustment a score of 70 points, and the first temperature is 30°C and the second temperature is 27°C. The first difference between the first and second temperatures is calculated to be 3°C. Then, converting 70 points to a percentage is 70%. 3°C / 70% = 4.2°C, so 4°C is used as the second difference. The first temperature is 30°C - 4°C = 26°C, so 26°C is used as the second temperature corresponding to the first temperature.

[0083] Preferably, after the air conditioner is started in the smart mode, the following steps are further performed:

[0084] After the air conditioner starts at the threshold time, the indoor temperature is periodically obtained;

[0085] Determine whether the indoor temperature is equal to the second temperature or the preset temperature. If so, maintain the current power operation mode of the air conditioner. If not, obtain the indoor carbon dioxide concentration and adjust the power operation mode based on the carbon dioxide concentration.

[0086] Since only the operating temperature is set in the early stage of the smart mode, the operating frequency of the air conditioner outdoor unit is based on the frequency of the last air conditioner operation. The number of people in the room will affect the speed of temperature adjustment and whether the indoor temperature can be maintained at the second temperature. In order to solve the impact of the operating frequency and the number of people on the indoor temperature, after the air conditioner is started, the present invention will wait for a threshold time to obtain the indoor temperature, and then determine whether the indoor temperature is equal to the second temperature, or whether the indoor temperature is equal to the preset temperature. If it is equal, it means that the current working power of the outdoor unit can meet the requirements of maintaining the second temperature indoors. When the indoor temperature is not equal to the second temperature or the preset temperature, it is necessary to obtain the carbon dioxide concentration, and judge the number of people in the room by the concentration of carbon dioxide, and decide how to adjust the power operation mode by the number of people in the room. The score given by the user to the scoring link is for the second temperature or the preset temperature, ensuring the effectiveness of subsequent adjustments.

[0087] Of course, after the power operation mode is adjusted, this step will continue to be performed to ensure that the indoor temperature can be maintained within the second temperature or the preset temperature.

[0088] Preferably, the adjustment of the power operation mode based on the carbon dioxide concentration is specifically as follows:

[0089] When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, the power of the air conditioner outdoor unit is reduced by two levels;

[0090] When the indoor temperature is lower than the second temperature or the preset temperature, the carbon dioxide concentration is greater than the first concentration threshold and the carbon dioxide concentration is less than the second concentration threshold, reducing the power of the air conditioner outdoor unit by one level;

[0091] When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is reduced to the third gear;

[0092] When the indoor temperature is below the second temperature or the preset temperature, the power of the air conditioner's outdoor unit is too high. When the carbon dioxide concentration is below the first concentration threshold, it can be determined that no one is indoors, as no one is affecting the temperature. In this case, the air conditioner's outdoor unit power can be reduced by two levels to quickly return the temperature to the second temperature, while also saving energy. When the carbon dioxide concentration is above the first concentration threshold but below the second concentration threshold, it can be determined that the number of people indoors is between one and three. Since the number of people indoors is within the appropriate range, reducing the outdoor unit's power too much could cause the indoor temperature to rise, exceeding the second temperature. Therefore, the air conditioner's power is reduced by one level. When the carbon dioxide concentration is above the second concentration threshold, it can be determined that the number of people indoors is greater than three. Even with this many people affecting the indoor temperature, the indoor temperature remains below the second temperature. This indicates that the air conditioner's outdoor unit is operating at very high power. For environmental protection and energy conservation, the power of the air conditioner needs to be significantly reduced, so the power of the air conditioner is reduced by three levels.

[0093] When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, maintaining the current power operation mode;

[0094] When the indoor temperature is higher than the second temperature or the preset temperature, and the carbon dioxide concentration is greater than the first concentration threshold and less than the second concentration threshold, the power of the air conditioner outdoor unit is increased by one level;

[0095] When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is increased by two levels.

[0096] When the indoor temperature is higher than the second temperature or the preset temperature, the air conditioner's outdoor unit power is currently too low. When the CO2 concentration is lower than the first concentration threshold, it can be determined that no one is indoors. Since no one is indoors, increasing the air conditioner's outdoor unit power is insignificant and the current power mode will be maintained. When the CO2 concentration is higher than the first concentration threshold but lower than the second concentration threshold, it can be determined that the number of people indoors is between 1 and 3. Since the number of people indoors is within the appropriate range, increasing the outdoor unit power too much could cause the indoor temperature to drop below the second temperature. Therefore, the air conditioner's outdoor unit power is increased by one level. When the CO2 concentration is higher than the second concentration threshold, it can be determined that the number of people indoors is greater than 3. In this case, the air conditioner's outdoor unit power is increased by two levels to maintain the indoor temperature at the second temperature or the preset temperature.

[0097] An air conditioning comfort control system, using the air conditioning comfort control method, comprises a mode selection module, a normal start module and an intelligent start module;

[0098] The intelligent starting module includes a temperature acquisition module, a judgment module and an adjustment module;

[0099] The mode selection module is used to obtain a power-on instruction of the air conditioner, parse the power-on instruction, and determine whether the power-on instruction contains the user's ID information. If the ID information is contained, the air conditioner is started in the smart mode; if the ID information is not contained, the air conditioner is started in the normal mode.

[0100] The smart start module is called when the air conditioner is started in smart mode;

[0101] The temperature acquisition module is used to obtain the current outdoor ambient temperature as the first temperature;

[0102] The judgment module is used to judge whether the first temperature has a corresponding second temperature in the adjustment table bound to the ID information, and if the second temperature exists, the second temperature is used as the current air conditioning operating temperature; if not, the preset temperature is used as the current air conditioning operating temperature;

[0103] The adjustment module is configured to send a scoring link to the communication device bound to the ID information when the air conditioner is turned off, update the second temperature corresponding to the first temperature with the score obtained from the scoring link, and store the second temperature in the adjustment table;

[0104] The normal startup module is called when the air conditioner is started in normal mode;

[0105] The normal startup module is used to start the air conditioner at the frequency when it was last shut down and according to the previously set air conditioner temperature.

[0106] Preferably, before calling the adjustment module, the scoring module also needs to be called;

[0107] The scoring module is used to obtain the manual adjustment record of the air conditioner during the operation phase, determine whether there is any content in the manual adjustment record, and if no content is present, send a scoring link to the communication device bound to the ID information; if content is present, obtain the temperature information in the last manual adjustment record as the third temperature, determine whether the third temperature is the same as the preset temperature, and if so, send a scoring link to the communication device bound to the ID information; if not, obtain the third temperature as the second temperature corresponding to the first temperature, and do not send a scoring link to the communication device bound to the ID information.

[0108] Preferably, the adjustment module includes a first submodule, a second submodule and a third submodule;

[0109] The first submodule is used to determine whether the score is greater than the score threshold, and if so, maintain the second temperature, or use the preset temperature as the second temperature corresponding to the first temperature; if not greater than the score threshold, obtain the difference between the first temperature and the second temperature, or obtain the difference between the first temperature and the preset temperature as the first difference;

[0110] The second submodule is configured to obtain a score in the score link, and divide the first difference by the score to obtain a second difference;

[0111] The third submodule is configured to update the first temperature using the second difference to obtain an adjusted temperature, and to replace the second temperature corresponding to the first temperature with the adjusted temperature, or to use the adjusted temperature as the second temperature corresponding to the first temperature.

[0112] Preferably, it also includes a readjustment module;

[0113] The readjustment module is used to obtain the indoor temperature after the air conditioner is started for a threshold time;

[0114] Determine whether the indoor temperature is equal to the second temperature or the preset temperature. If so, maintain the current power operation mode of the air conditioner. If not, obtain the indoor carbon dioxide concentration and adjust the power operation mode based on the carbon dioxide concentration.

[0115] Preferably, the readjustment module includes a power control submodule;

[0116] The power control submodule is used to reduce the power of the air conditioner outdoor unit by two gears when the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold;

[0117] When the indoor temperature is lower than the second temperature or the preset temperature, the carbon dioxide concentration is greater than the first concentration threshold and the carbon dioxide concentration is less than the second concentration threshold, reducing the power of the air conditioner outdoor unit by one level;

[0118] When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is reduced to the third gear;

[0119] When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, maintaining the current power operation mode;

[0120] When the indoor temperature is higher than the second temperature or the preset temperature, and the carbon dioxide concentration is greater than the first concentration threshold and less than the second concentration threshold, the power of the air conditioner outdoor unit is increased by one level;

[0121] When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is increased by two levels.

[0122] Throughout this specification, reference to terms such as "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples" means that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0123] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to the embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the claims and their equivalents.

Claims

1. An air conditioning comfort control method, characterized in that: The steps include: Obtaining a power-on instruction for the air conditioner, parsing the power-on instruction, and determining whether the power-on instruction contains the user's ID information. If the instruction contains the ID information, the air conditioner is started in the smart mode; if the instruction does not contain the ID information, the air conditioner is started in the normal mode. After the air conditioner is started in smart mode, perform the following steps: Step S1: obtaining the current outdoor ambient temperature as the first temperature; Step S2: Determine whether the first temperature has a corresponding second temperature in the adjustment table bound to the ID information. If the second temperature exists, the second temperature is used as the current air conditioning operating temperature. If not, the preset temperature is used as the current air conditioning operating temperature. Step S3: When the air conditioner is turned off, a scoring link is sent to the communication device bound to the ID information, a second temperature corresponding to the first temperature is updated using the score obtained from the scoring link, and the second temperature is stored in the adjustment table; Before sending the rating link, you need to perform the following steps: Obtain the manual adjustment record of the air conditioner during operation, determine whether there is any temperature adjustment content in the manual adjustment record, and if not, send a scoring link to the communication device bound to the ID information; If there is temperature adjustment content, the temperature information in the last manual adjustment record is obtained as the third temperature, and whether the third temperature is the same as the preset temperature or the third temperature is the same as the second temperature is determined. If they are the same, a scoring link is sent to the communication device bound to the ID information; If they are different, the third temperature is obtained as the second temperature corresponding to the first temperature, and the scoring link is not sent to the communication device bound to the ID information.

2. The air conditioning comfort control method according to claim 1, characterized in that: The steps of updating the second temperature in step S3 are as follows: Determining whether the score is greater than a score threshold, and if so, maintaining the second temperature, or using a preset temperature as the second temperature corresponding to the first temperature; If it is not greater than the score threshold, obtaining the difference between the first temperature and the second temperature, or obtaining the difference between the first temperature and the preset temperature, as the first difference; Obtaining a score in the score link, and dividing the first difference by the score to obtain a second difference; The first temperature is updated by the second difference to obtain an adjusted temperature, and the adjusted temperature is used to replace the second temperature corresponding to the first temperature, or the adjusted temperature is used as the second temperature corresponding to the first temperature.

3. The air conditioning comfort control method according to claim 1, characterized in that: After the air conditioner is started in smart mode, it also performs the following steps: After the air conditioner starts at the threshold time, the indoor temperature is periodically obtained; Determine whether the indoor temperature is equal to the second temperature or the preset temperature. If so, maintain the current power operation mode of the air conditioner. If not, obtain the indoor carbon dioxide concentration and adjust the power operation mode based on the carbon dioxide concentration.

4. The air conditioning comfort control method according to claim 3, characterized in that: The specific adjustment of the power operation mode based on the carbon dioxide concentration is as follows: When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, the power of the air conditioner outdoor unit is reduced by two levels; When the indoor temperature is lower than the second temperature or the preset temperature, the carbon dioxide concentration is greater than the first concentration threshold and the carbon dioxide concentration is less than the second concentration threshold, reducing the power of the air conditioner outdoor unit by one level; When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is reduced to the third gear; When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, maintaining the current power operation mode; When the indoor temperature is higher than the second temperature or the preset temperature, and the carbon dioxide concentration is greater than the first concentration threshold and less than the second concentration threshold, the power of the air conditioner outdoor unit is increased by one level; When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is increased by two levels.

5. An air conditioning comfort control system, characterized in that: An air conditioning comfort control method according to any one of claims 1 to 4 is used, comprising a mode selection module, a normal start module and an intelligent start module; The intelligent starting module includes a temperature acquisition module, a judgment module and an adjustment module; The mode selection module is used to obtain a power-on instruction of the air conditioner, parse the power-on instruction, and determine whether the power-on instruction contains the user's ID information. If the ID information is contained, the air conditioner is started in the smart mode; if the ID information is not contained, the air conditioner is started in the normal mode. The smart start module is called when the air conditioner is started in smart mode; The temperature acquisition module is used to obtain the current outdoor ambient temperature as the first temperature; The judgment module is used to judge whether the first temperature has a corresponding second temperature in the adjustment table bound to the ID information, and if the second temperature exists, the second temperature is used as the current air conditioning operating temperature; if not, the preset temperature is used as the current air conditioning operating temperature; The adjustment module is configured to send a scoring link to the communication device bound to the ID information when the air conditioner is turned off, update the second temperature corresponding to the first temperature with the score obtained from the scoring link, and store the second temperature in the adjustment table; The normal startup module is called when the air conditioner is started in normal mode; The normal start module is used to start the air conditioner at the frequency when it was last shut down and according to the previously set air conditioner temperature; The scoring module also needs to be called; The scoring module is used to obtain the manual adjustment record of the air conditioner during the operation phase, determine whether there is any content in the manual adjustment record, and if no content is present, send a scoring link to the communication device bound to the ID information; if content is present, obtain the temperature information in the last manual adjustment record as the third temperature, determine whether the third temperature is the same as the preset temperature, and if so, send a scoring link to the communication device bound to the ID information; if not, obtain the third temperature as the second temperature corresponding to the first temperature, and do not send a scoring link to the communication device bound to the ID information.

6. The air conditioning comfort control system according to claim 5, characterized in that: The adjustment module includes a first submodule, a second submodule and a third submodule; The first submodule is used to determine whether the score is greater than the score threshold, and if so, maintain the second temperature, or use a preset temperature as the second temperature corresponding to the first temperature; If it is not greater than the score threshold, obtaining the difference between the first temperature and the second temperature, or obtaining the difference between the first temperature and the preset temperature, as the first difference; The second submodule is configured to obtain a score in the score link, and divide the first difference by the score to obtain a second difference; The third submodule is configured to update the first temperature using the second difference to obtain an adjusted temperature, and to replace the second temperature corresponding to the first temperature with the adjusted temperature, or to use the adjusted temperature as the second temperature corresponding to the first temperature.

7. The air conditioning comfort control system according to claim 6, characterized in that: Also includes a retuning module; The readjustment module is used to obtain the indoor temperature after the air conditioner is started for a threshold time; Determine whether the indoor temperature is equal to the second temperature or the preset temperature. If so, maintain the current power operation mode of the air conditioner. If not, obtain the indoor carbon dioxide concentration and adjust the power operation mode based on the carbon dioxide concentration.

8. The air conditioning comfort control system according to claim 7, characterized in that: The readjustment module includes a power control submodule; The power control submodule is used to reduce the power of the air conditioner outdoor unit by two gears when the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold; When the indoor temperature is lower than the second temperature or the preset temperature, the carbon dioxide concentration is greater than the first concentration threshold and the carbon dioxide concentration is less than the second concentration threshold, reducing the power of the air conditioner outdoor unit by one level; When the indoor temperature is lower than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is reduced to the third gear; When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is lower than the first concentration threshold, maintaining the current power operation mode; When the indoor temperature is higher than the second temperature or the preset temperature, and the carbon dioxide concentration is greater than the first concentration threshold and less than the second concentration threshold, the power of the air conditioner outdoor unit is increased by one level; When the indoor temperature is higher than the second temperature or the preset temperature and the carbon dioxide concentration is greater than the second concentration threshold, the power of the air conditioner outdoor unit is increased by two levels.

Citation Information

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