Method and apparatus for controlling air conditioning device, electronic device, storage medium

By acquiring user and environmental information, the operating parameters of air conditioning equipment are dynamically adjusted, solving the problem that air conditioning equipment cannot meet the comfort needs of users in different environments, and achieving a higher level of environmental comfort.

CN119222759BActive Publication Date: 2025-12-19QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +3
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Patent Information

Application Number
CN202310805752.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-30
Publication Date
2025-12-19
Estimated Expiration
2043-06-30

AI Technical Summary

Technical Problem

Existing air conditioning equipment cannot automatically adjust its operating parameters according to the user's current environmental conditions, resulting in indoor air quality that fails to meet the user's comfort needs in different environments.

Method used

By acquiring user information, air environment information of the user's location, and seasonal information, the operating parameters of the air conditioning equipment are determined, and the equipment is triggered to operate according to these parameters.

Benefits of technology

It improves user comfort within their environment and meets their comfort needs under the current environmental conditions.

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Abstract

The application relates to the air conditioning technical field, and discloses a method for controlling an air conditioning device, comprising the following steps: obtaining user information, air environment information in a region where the user is located, and seasonal information; determining first operation parameters of the air conditioning device according to the user information, the air environment information and the seasonal information; and triggering the air conditioning device to operate according to the first operation parameters. The air environment information and the seasonal information can reflect the environmental state. Different environmental states make the user's demand for comfort different. When the air environment in the region where the user is located is adjusted, the air environment information in the region where the user is located and the seasonal information are considered, so that the indoor air environment after adjustment can meet the user's demand for comfort under the current environmental state, and the comfort of the user in the environment is improved. The application further discloses a device for controlling the air conditioning device, an electronic device and a storage medium.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of air conditioning technology, for example to a method and device for controlling an air conditioning device, an electronic device, and a storage medium. BACKGROUND

[0002] With the increasing use of air conditioning devices, humidifiers, fresh air machines and the like, people have higher and higher demands for the intelligentization of air conditioning devices. It is hoped that the air conditioning device can automatically adjust the indoor air environment. At present, users usually set the operating parameters of the air conditioning device in advance according to their own preferences or needs and the like, and store them. In this way, in the process of using the air conditioning device, the operating parameters corresponding to the user information, such as the user's ID, face image and the like, are automatically obtained according to the user information, and the air conditioning device is controlled to operate according to the operating parameters, so as to automatically adjust the indoor air environment.

[0003] In the process of implementing the embodiments of the present disclosure, it is found that at least the following problems exist in the related art:

[0004] In the related art, the air conditioning device only automatically operates according to the operating parameters corresponding to the user information. However, when the user is in different environmental states, the air conditioning device still only operates according to the operating parameters corresponding to the user information, which may not be able to meet the user's comfort demand in the current environmental state, and reduces the user's comfort in the environment.

[0005] It should be noted that the information disclosed in the above background section is only used to strengthen the understanding of the background of the present application, and therefore can include information that does not constitute prior art known to those of ordinary skill in the art. SUMMARY

[0006] To have a basic understanding of some aspects of the disclosed embodiments, a brief overview is given below. The overview is not a comprehensive overview of the embodiments described in the specification, nor is it intended to determine key / important elements or delineate the scope of the embodiments. It is only as a prelude to the detailed description below.

[0007] The embodiments of the present disclosure provide a method and device for controlling an air conditioning device, an electronic device, and a storage medium, so as to improve the user's comfort in the environment.

[0008] In some embodiments, the method comprises: obtaining user information, air environment information in an area where the user is located, and seasonal information; determining first operating parameters of the air conditioning device according to the user information, the air environment information and the seasonal information; and triggering the air conditioning device to operate according to the first operating parameters.

[0009] In some embodiments, the apparatus comprises a processor and a memory storing program instructions, the processor being configured to execute the method for controlling an air conditioning device when running the program instructions.

[0010] In some embodiments, the electronic device comprises an electronic device body; the apparatus for controlling an air conditioning device is installed on the electronic device body.

[0011] In some embodiments, the storage medium comprises program instructions stored therein, the program instructions being executed to perform the method for controlling an air conditioning device.

[0012] The method and apparatus for controlling an air conditioning device, the electronic device, and the storage medium provided by the embodiments of the present disclosure can achieve the following technical effects:

[0013] The operation parameters of the air conditioning device are determined by the user information, the air environment information in the region where the user is located, and the seasonal information, and the air conditioning device is triggered to operate according to the operation parameters. The air environment information in the region where the user is located and the seasonal information can reflect the environmental state of the region where the user is located. Different environmental states make the user's demand for comfort different. Therefore, when the air environment in the region where the user is located is adjusted, the air environment information in the region where the user is located and the seasonal information are also considered, so that the adjusted indoor air environment can meet the user's demand for comfort in the current environmental state, and the user's comfort in the environment is improved.

[0014] The general description above and the following description below are exemplary and explanatory only and are not intended to be limiting of the present disclosure. BRIEF DESCRIPTION OF DRAWINGS

[0015] One or more embodiments are illustrated by way of example with reference to the accompanying drawings, which are schematic and are not intended to be limiting of the embodiments, in which like reference numerals denote like elements in the figures, and in which:

[0016] Figure 1 is a schematic diagram of one method for controlling an air conditioning device provided by the embodiments of the present disclosure;

[0017] Figure 2 is a schematic diagram of another method for controlling an air conditioning device provided by the embodiments of the present disclosure;

[0018] Figure 3 is a schematic diagram of another method for controlling an air conditioning device provided by the embodiments of the present disclosure;

[0019] Figure 4is a schematic diagram of another method for controlling an air conditioning device provided by an embodiment of the present disclosure;

[0020] Figure 5 is a schematic diagram of a device for controlling an air conditioning device provided by an embodiment of the present disclosure;

[0021] Figure 6 is a structural schematic diagram of an air conditioner provided by an embodiment of the present disclosure. DETAILED DESCRIPTION

[0022] In order to enable a person skilled in the art to more fully understand the features and technical contents of the embodiments of the present disclosure, the implementation of the embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings, which are used only for reference and illustration, and do not limit the embodiments of the present disclosure. In the following technical description, in order to facilitate explanation, a plurality of details are provided to provide a full understanding of the disclosed embodiments. However, one or more embodiments can still be implemented without these details. In other cases, well-known structures and devices can be simplified to facilitate the drawings.

[0023] The terms "first", "second", and the like in the specification and claims of the embodiments of the present disclosure and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily describe a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present disclosure described herein can be implemented. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion.

[0024] Unless otherwise specified, the term "a plurality of" means two or more.

[0025] In the embodiments of the present disclosure, the character " / " represents an "or" relationship between the objects before and after it. For example, A / B represents: A or B.

[0026] The term "and / or" is a description of the association between objects, which means that there can be three relationships. For example, A and / or B means: A or B, or, A and B, the three relationships.

[0027] The term "corresponding" can refer to an association or binding relationship, A corresponding to B means that there is an association or binding relationship between A and B.

[0028] The method for controlling an air conditioning device provided by the embodiments of the present disclosure is applied to an electronic device. In some embodiments, the electronic device is a computer or a server, etc. The electronic device can be connected to the air conditioning device through connection of the Internet, Bluetooth, wifi, etc. The air conditioning device includes an air conditioner, a humidifier, a fresh air machine, etc.

[0029] In combination Figure 1As shown, the embodiment of the present disclosure provides a method for controlling an air conditioning device, comprising:

[0030] In step S101, the electronic device acquires user information, air environment information in a region where the user is located, and seasonal information.

[0031] In step S102, the electronic device determines first operation parameters of the air conditioning device according to the user information, the air environment information, and the seasonal information.

[0032] In step S103, the electronic device triggers the air conditioning device to operate according to the first operation parameters.

[0033] The method for controlling an air conditioning device provided by the embodiment of the present disclosure determines operation parameters of the air conditioning device through user information, air environment information in a region where the user is located, and seasonal information, and triggers the air conditioning device to operate according to the operation parameters. The air environment information in the region where the user is located and the seasonal information can reflect the environmental state of the region where the user is located. Different environmental states make the user's demand for comfort different. Therefore, when adjusting the air environment in the region where the user is located, the air environment information in the region where the user is located and the seasonal information are also considered, which can make the adjusted indoor air environment meet the user's demand for comfort in the current environmental state, and improve the user's comfort in the environment.

[0034] Optionally, the user information includes a face image. A camera device is arranged in the region where the user is located. The user information is acquired by using the camera device to acquire the face image of the user.

[0035] Optionally, the user information includes a user ID (Identification, identity number). The user information is acquired by matching first candidate user information corresponding to the face image of the user in a preset first database, and determining the matched first candidate user information as the user information. The first database stores a correspondence between the face image and the first candidate user information. The first candidate user information is a candidate ID.

[0036] Optionally, a recording device is arranged in the region where the user is located. The user information is acquired by using the recording device to acquire sound information in the region where the user is located, matching second candidate user information corresponding to the sound information in the region where the user is located from a preset second database, and determining the matched second candidate user information as the user information. The second database stores a correspondence between the sound information and the second candidate user information. The second candidate user information is a candidate ID.

[0037] Further, the air environment information includes indoor temperature, indoor humidity, air quality index and carbon dioxide concentration. The air environment information in the region where the user is located is acquired, including: acquiring the indoor temperature, the indoor humidity, the air quality index and the carbon dioxide concentration in the region where the user is located.

[0038] Further, the indoor temperature in the region where the user is located is acquired by using a temperature sensor.

[0039] Further, the indoor humidity in the region where the user is located is acquired by using a humidity sensor.

[0040] Further, the air quality index in the region where the user is located is acquired by using an air quality environment detector.

[0041] Further, the carbon dioxide concentration in the region where the user is located is acquired by using a carbon dioxide concentration detector.

[0042] Further, the season information is acquired, including: acquiring the current date and the geographical location where the user is located. The season information is determined according to the current date and the geographical location. The seasonal climate in different geographical locations is quite different on the same date. Therefore, the season in the region where the user is located can be more accurately determined by using the current date and the geographical location. When the operation of the air conditioning device is adjusted to provide a comfortable environment for the user, the different seasonal climates have a great influence on the adjustment of the air conditioning device. Therefore, when the air environment in the region where the user is located is adjusted, the season information of the region where the user is located is considered, so that the adjusted indoor air environment can meet the user's demand for comfort in the current environment, and the comfort of the user in the environment is improved.

[0043] Further, the current date and the geographical location where the user is located are acquired by using a network. In some embodiments, the date is a month.

[0044] Further, the season information is determined according to the current date and the geographical location where the user is located, including: matching the season information corresponding to the current date and the geographical location where the user is located in a preset second data table. The second data table stores the correspondence between the date and the geographical location and the season information.

[0045] In some embodiments, Table 1 is an example table of the second data table. As shown in Table 1, when the geographic location is Heilongjiang, Jilin, Liaoning and Qinghai, and the date is from January to April and from October to December, the corresponding seasonal information is winter; when the date is May and June, the corresponding seasonal information is spring; when the date is July and August, the corresponding seasonal information is summer; and when the date is September, the corresponding seasonal information is autumn. When the geographic location is Inner Mongolia, Gansu and Ningxia, and the date is from January to March and from October to December, the corresponding seasonal information is winter; when the date is from April to June, the corresponding seasonal information is spring; when the date is July and August, the corresponding seasonal information is summer; and when the date is September, the corresponding seasonal information is autumn. When the geographic location is Shaanxi, Shanxi, Beijing, Tianjin, Hebei and Shandong, and the date is from January to March and November and December, the corresponding seasonal information is winter; when the date is April and May, the corresponding seasonal information is spring; when the date is from June to September, the corresponding seasonal information is summer; and when the date is October, the corresponding seasonal information is autumn. When the geographic location is Guizhou, and the date is January, February, November and December, the corresponding seasonal information is winter; when the date is from March to May, the corresponding seasonal information is spring; when the date is from June to September, the corresponding seasonal information is summer; and when the date is October, the corresponding seasonal information is autumn. When the geographic location is Sichuan, Henan, Anhui, Hubei, Jiangsu, Zhejiang, Shanghai, Chongqing or Yunnan, and the date is January, February and December, the corresponding seasonal information is winter; when the date is from March to May, the corresponding seasonal information is spring; when the date is from June to September, the corresponding seasonal information is summer; and when the date is October and November, the corresponding seasonal information is autumn. When the geographic location is Jiangxi or Hunan, and the date is January and February, the corresponding seasonal information is winter; when the date is from March to May, the corresponding seasonal information is spring; when the date is from June to September, the corresponding seasonal information is summer; and when the date is from October to December, the corresponding seasonal information is autumn. When the geographic location is Fujian or Guangxi, and the date is January and February, the corresponding seasonal information is winter; when the date is March and April, the corresponding seasonal information is spring; when the date is from May to September, the corresponding seasonal information is summer; and when the date is from October to December, the corresponding seasonal information is autumn. When the geographic location is Guangdong, and the date is January, the corresponding seasonal information is winter; when the date is from February to April, the corresponding seasonal information is spring; when the date is from May to October, the corresponding seasonal information is summer; and when the date is November and December, the corresponding seasonal information is autumn. When the geographic location is Hainan, and the date is January and February, the corresponding seasonal information is spring; when the date is from March to October, the corresponding seasonal information is summer; and when the date is November and December, the corresponding seasonal information is autumn.

[0046] Table 1

[0047]

[0048]

[0049] Further, the first operation parameter of the air conditioning device is determined according to the user information, the air environment information and the season information, including: performing a table lookup operation in a preset first data table by using the user information, the air environment information and the season information, and finding out the candidate user information, the candidate air environment information and the candidate season information which are all the same as the user information, the air environment information and the season information. The candidate operation parameter corresponding to the candidate user information, the candidate air environment information and the candidate season information is determined as the first operation parameter of the air conditioning device. The first data table stores the correspondence between the candidate user information, the candidate air environment information and the candidate season information and the candidate operation parameter.

[0050] In some embodiments, when the user information is the user identity ID "111111", the air environment information is "indoor temperature 18℃, indoor humidity 60%, air quality index 70μg / m 3 , carbon dioxide concentration 600PPM", and the season information is "spring", the candidate operation parameter found from the first data table is "air conditioner running in heating mode, setting temperature 27℃, wind speed level one, air deflector swinging left and right, running level one dehumidification mode, fresh air machine running level two ventilation mode". When the user information is the user identity ID "111111", the air environment information is "indoor temperature 38℃, indoor humidity 65%, air quality index 40μg / m 3 , carbon dioxide concentration 500PPM", and the season information is "summer", the candidate operation parameter found from the first data table is "air conditioner running in cooling mode, setting temperature 26℃, wind speed level two, air deflector swinging left and right, running level two dehumidification mode, fresh air machine running level one ventilation mode". When the user information is the user identity ID "111111", the air environment information is "indoor temperature 30℃, indoor humidity 50%, air quality index 70μg / m 3 , carbon dioxide concentration 600PPM", and the season information is "autumn", the candidate operation parameter found from the first data table is "air conditioner running in cooling mode, setting temperature 27℃, wind speed level one, air deflector swinging left and right, humidifier running level one water vapor evaporation mode, fresh air machine running level two ventilation mode". When the user information is the user identity ID "111111", the air environment information is "indoor temperature 6℃, indoor humidity 40%, air quality index 40μg / m 3 , carbon dioxide concentration 500PPM", and the season information is "winter", the candidate operation parameter found from the first data table is "air conditioner running in heating mode, setting temperature 28℃, wind speed level two, air deflector swinging left and right, humidifier running level two water vapor evaporation mode, fresh air machine running level one ventilation mode".

[0051] Further, the first operation parameter of the air conditioning device is determined according to the user information, the air environment information and the season information, including determining a day-night state. The first operation parameter of the air conditioning device is determined according to the day-night state, the user information, the air environment information and the season information. The day-night state includes day or night. Since the outdoor climate in the region where the user is located may be different in the day or night. The indoor air environment in the region where the user is located is easily affected by the outdoor climate, thereby affecting the comfort of the user in the environment. In this way, when the air environment in the region where the user is located is adjusted, the day-night state is considered, so that the adjusted indoor air environment can meet the user's demand for comfort under the current outdoor climate. Further improve the comfort of the user in the environment.

[0052] Optionally, the day-night state is determined, including: obtaining a current time, in a case that the current time is within a first set time period, determining the day-night state as day. In a case that the current time is within a second set time period, determining the day-night state as night. For example, the first set time period is 06:00 to 19:59. The second set time period is 20:00 to 05:59 of the next day.

[0053] Optionally, the day-night state is determined, including: obtaining a current solar radiation intensity, in a case that the current solar radiation intensity is greater than or equal to a set value, determining the day-night state as day. In a case that the current solar radiation intensity is less than the set value, determining the day-night state as night.

[0054] Further, the first operation parameter of the air conditioning device is determined according to the day-night state, the user information, the air environment information and the season information, including: performing a table lookup operation in a preset first data table by using the day-night state, the user information, the air environment information and the season information, finding out the same alternative day-night state, alternative user information, alternative air environment information and alternative season information as the day-night state, the user information, the air environment information and the season information. The alternative operation parameter corresponding to the alternative day-night state, the alternative user information, the alternative air environment information and the alternative season information found out together is determined as the first operation parameter of the air conditioning device. Wherein, the first data table stores the corresponding relationship between the alternative day-night state, the alternative user information, the alternative air environment information and the alternative season information and the alternative operation parameter.

[0055] Further, the first data table is obtained by: obtaining personal attribute information and user information input by the user. The user information is determined as candidate user information. The personal attribute information is used to perform a table lookup operation in a preset third data table, to find a preset running parameter corresponding to the personal attribute information, and the found preset running parameter is determined as a first preset running parameter and stored in a first set. The third data table stores a correspondence between the personal attribute information and the preset running parameter. The candidate user information, candidate diurnal state, candidate air environment information, and candidate seasonal information are used to perform a table lookup operation in the preset third data table, to find a preset running parameter corresponding to the four, and the found preset running parameter is determined as a second preset running parameter and stored in a second set. The third data table stores a correspondence between the candidate user information, the candidate diurnal state, the candidate air environment information, and the candidate seasonal information and the preset running parameter. The second preset running parameter in the second set that is the same as the first preset running parameter in the first set is determined as the candidate running parameter. The candidate running parameter, the candidate user information, the candidate diurnal state, the candidate air environment information, the candidate seasonal information, and the correspondence therebetween are stored in the first data table.

[0056] In some embodiments, the personal attribute information includes an age range, a health condition, a temperature sensitivity, a humidity sensitivity, and the like.

[0057] According to the user-defined personal attribute information, a corresponding running parameter is determined. The running parameter is used to filter the running parameter corresponding to the candidate user information, the candidate diurnal state, the candidate air environment information, and the candidate seasonal information, and store the filtered running parameter in the first data table. In this way, when determining the running parameter of the air conditioning device, the personal attribute information is considered, so that the running parameter of the air conditioning device is more personalized. When adjusting the indoor air environment by using the personalized running parameter, the adjusted indoor air environment can meet the user's demand for personalized comfort. The comfort of the user in the environment can be further improved.

[0058] In combination with Figure 2 As shown in FIG. 1, the embodiment of the present disclosure provides another method for controlling an air conditioning device, which includes the following steps.

[0059] In step S201, the electronic device obtains user information, air environment information in an area where the user is located, and seasonal information.

[0060] In step S202, the electronic device performs a table lookup operation in a preset first data table by using the user information, the air environment information, and the seasonal information, to find candidate user information, candidate air environment information, and candidate seasonal information that are the same as the user information, the air environment information, and the seasonal information.

[0061] In step S203, the electronic device determines the candidate operation parameter corresponding to the candidate user information, the candidate air environment information and the candidate season information as the first operation parameter of the air conditioning device; wherein the first data table stores the correspondence between the candidate user information, the candidate air environment information, the candidate season information and the candidate operation parameter.

[0062] In step S204, the electronic device triggers the air conditioning device to operate according to the first operation parameter.

[0063] In step S205, the electronic device obtains an adjustment instruction input by the user.

[0064] In step S206, the electronic device obtains the second operation parameter according to the adjustment instruction.

[0065] In step S207, the electronic device triggers the air conditioning device to operate according to the second operation parameter.

[0066] The method for controlling the air conditioning device provided by the embodiments of the present disclosure considers the air environment information and the season information in the area where the user is located when adjusting the air environment of the area where the user is located, so that the adjusted indoor air environment meets the user's demand for comfort in the current environment state, and the user's comfort in the environment is improved. The second operation parameter is obtained according to the adjustment instruction input by the user, and the air conditioning device is triggered to operate according to the second operation parameter. In this way, the operation parameter of the air conditioning device is customized according to the adjustment instruction of the user, and the air conditioning device operates according to the adjusted operation parameter to adjust the indoor air environment. The adjusted indoor air environment meets the user's current demand for comfort, thereby further improving the user's comfort in the environment.

[0067] Further, the adjustment instruction includes a fourth operation parameter. According to the adjustment instruction, the second operation parameter is obtained, including: determining the fourth operation parameter as the second operation parameter. In this way, the air conditioning device operates according to the operation parameter customized by the user to adjust the indoor air environment. The adjusted indoor air environment meets the user's current demand for comfort, thereby further improving the user's comfort in the environment.

[0068] Optionally, after triggering the air conditioning device to operate according to the second operating parameter, the method further comprises: determining a third operating parameter according to the second operating parameter in the preset time period, and the user information, the air environment information, and the season information corresponding to the second operating parameter. The alternative user information, the alternative air environment information, and the alternative season information in the first data table that are the same as the user information, the air environment information, and the season information corresponding to the third operating parameter are determined as target alternative user information, target alternative air environment information, and target alternative season information. The alternative operating parameter corresponding to the target alternative user information, the target alternative air environment information, and the target alternative season information together is determined as a target alternative operating parameter, and the target alternative operating parameter is deleted. The third operating parameter is taken as the target alternative operating parameter and stored in the first data table.

[0069] In this way, the target alternative operating parameter in the first data table is replaced according to the user-defined operating parameter of the air conditioning device, and the target alternative operating parameter in the first data table is updated. In this way, when the air conditioning device adjusts the indoor air environment according to the updated alternative operating parameter, the adjusted indoor air environment can meet the user's demand for the customized comfort level. Thus, the user's comfort level in the environment can be further improved.

[0070] Further, the third operating parameter is determined according to the second operating parameter in the preset time period, and the user information, the air environment information, and the season information corresponding to the second operating parameter, comprising: determining the second operating parameter in the preset time period, the user information, the air environment information, and the season information corresponding to the second operating parameter are all the same, and the number of the same is the most, as the third operating parameter.

[0071] In some embodiments, the preset time period is the last week, the last month, the last quarter, etc. For example, the preset time period is the last week. The second operating parameter obtained on Monday of the last week is "air conditioner runs in heating mode, sets temperature to 26℃, wind speed to level one, air deflector swings left and right, runs level one dehumidification mode, and fresh air machine runs level two ventilation mode", the corresponding user information is user ID "111111", the air environment information is "indoor temperature 18℃, indoor humidity 60%, air quality index 70μg / m 3 , carbon dioxide concentration 600PPM", and the season information is "spring". The second operating parameter obtained on Tuesday of the last week is "air conditioner runs in heating mode, sets temperature to 26℃, wind speed to level one, air deflector swings left and right, runs level one dehumidification mode, and fresh air machine runs level two ventilation mode", the corresponding user information is user ID "111111", the air environment information is "indoor temperature 18℃, indoor humidity 60%, air quality index 70μg / m 3, air quality index 70 μg / m 3 , air quality index 70 μg / m 3 , air quality index 70 μg / m 3 , air quality index 70 μg / m 3 , air quality index 70 μg / m 3The data shows a carbon dioxide concentration of 600 PPM and the seasonal information as "Spring". The second operating parameter, user information, air quality information, and seasonal information are identical for last Monday, Tuesday, Friday, and Sunday. The second operating parameter, user information, air quality information, and seasonal information are also identical for last Wednesday and Saturday. In other words, within the previous week, the second operating parameter and its corresponding user information, air quality information, and seasonal information were all the same, with the second operating parameter having the most identical values ​​for last Monday, Tuesday, Friday, and Sunday. Therefore, the third operating parameter is "Air conditioner operating in heating mode, temperature set at 26℃, fan speed at level 1, air deflector oscillating left and right, operating in level 1 dehumidification mode, and fresh air unit operating in level 2 ventilation mode." The user information corresponding to the third operating parameter is user ID "111111", and the air quality information is "Indoor temperature 18℃, indoor humidity 60%, air quality index 70 μg / m³". 3 Given a carbon dioxide concentration of 600 PPM and the season information as "Spring", the candidate user information in the first data table will be: candidate user ID "111111", and candidate air environment information will be: indoor temperature 18℃, indoor humidity 60%, air quality index 70 μg / m³. 3 The following parameters were identified as target candidate user information, target candidate air environment information, and target candidate season information: "carbon dioxide concentration 600 PPM" and "spring". The candidate operating parameters corresponding to these parameters—"air conditioner operating in heating mode, temperature set at 27℃, fan speed at level 1, air guide vane oscillating left and right, operating in level 1 dehumidification mode, and fresh air unit operating in level 2 ventilation mode"—were then deleted. The third operating parameter—"air conditioner operating in heating mode, temperature set at 26℃, fan speed at level 1, air guide vane oscillating left and right, operating in level 1 mode, and fresh air unit operating in level 2 ventilation mode"—was added as a target candidate operating parameter and stored in the first data table. Therefore, the candidate user information in the first data table is the candidate user ID "111111", and the candidate air environment information is "indoor temperature 18℃, indoor humidity 60%, air quality index 70 μg / m³". 3 The carbon dioxide concentration is 600 PPM and the alternative season information is "spring". The corresponding alternative operating parameters are "air conditioner in heating mode, temperature set at 26℃, fan speed at level 1, air guide vane swinging left and right, operating in level 1 mode, and fresh air unit in level 2 ventilation mode".

[0072] Optionally, after triggering the air conditioning device to operate according to the second operating parameter, the method further comprises: determining a third operating parameter according to the second operating parameter within a preset time period, and user information, air environment information, and seasonal information corresponding to the second operating parameter. The alternative user information, alternative air environment information, and alternative seasonal information in the first data table that are the same as the user information, air environment information, and seasonal information corresponding to the third operating parameter are determined as target alternative user information, target alternative air environment information, and target alternative seasonal information. The alternative operating parameter corresponding to the target alternative user information, target alternative air environment information, and target alternative seasonal information is determined as a target alternative operating parameter. The alternative update operating parameter corresponding to each to-be-updated alternative operating parameter is determined according to the target alternative operating parameter, the third operating parameter, and each to-be-updated alternative operating parameter. The to-be-updated alternative operating parameter is an alternative operating parameter in the first data table other than the target alternative operating parameter. Moreover, the alternative user information corresponding to each to-be-updated alternative operating parameter is the same. The to-be-updated alternative operating parameter in the first data table is deleted. Each alternative update operating parameter is determined as a corresponding to-be-updated alternative operating parameter and stored in the first data table.

[0073] In this way, the to-be-updated alternative operating parameters in the first data table other than the target alternative operating parameter are replaced according to the user-defined operating parameter of the air conditioning device and the target alternative operating parameter in the first data table. The to-be-updated alternative operating parameters in the first data table other than the target alternative operating parameter are updated. In this way, when the air conditioning device adjusts the indoor air environment according to the updated alternative operating parameters, the adjusted indoor air environment can meet the user's demand for the customized comfort level. Thus, the user's comfort level in the environment can be further improved.

[0074] Further, the alternative update operating parameter corresponding to each to-be-updated alternative operating parameter is determined according to the target alternative operating parameter, the third operating parameter, and each to-be-updated alternative operating parameter, which comprises: comparing the target alternative operating parameter and the third operating parameter to obtain a difference between the target alternative operating parameter and the third operating parameter. The alternative update operating parameter corresponding to each to-be-updated alternative operating parameter is determined according to the difference and each to-be-updated alternative operating parameter.

[0075] In some embodiments, the third operating parameter is "air conditioner operating in heating mode, setting temperature 26℃, wind speed level 1, air deflector swinging left and right, operating level 1 dehumidification mode, fresh air machine operating level 2 ventilation mode", the corresponding user information is user ID "111111", the air environment information is "indoor temperature 18℃, indoor humidity 60%, air quality index 70μg / m 3" and the seasonal information is "spring". The target candidate user information in the first database is the candidate user identity ID "111111", the target candidate air environment information is "indoor temperature 18°C, indoor humidity 60%, air quality index 70 μg / m 3 " and the target candidate seasonal information is "spring", and the target candidate operation parameters corresponding to the three are "air conditioner running heating mode, setting temperature 27°C, wind speed level one, air deflector swinging left and right, running level one dehumidification mode, fresh air machine running level two ventilation mode". Therefore, the difference between the target candidate operation parameters and the third operation parameters is "air conditioner heating mode unchanged, setting temperature down 1°C, wind speed unchanged, air deflector swinging mode unchanged, dehumidification level unchanged, fresh air machine ventilation level unchanged". The to-be-updated candidate operation parameters are adjusted according to the difference. The to-be-updated candidate operation parameters are the other candidate operation parameters corresponding to the candidate user information of the candidate user identity ID "111111" except the target candidate operation parameters. For example, the to-be-updated candidate operation parameters are: the candidate user information is the candidate user identity ID "111111", the candidate air environment information is "indoor temperature 38°C, indoor humidity 65%, air quality index 40 μg / m 3 " and the candidate seasonal information is "summer", and the candidate operation parameters corresponding to the two are "air conditioner running cooling mode, setting temperature 26°C, wind speed level two, air deflector swinging left and right, running level two dehumidification mode, fresh air machine starting level one ventilation mode". The corresponding candidate updated operation parameters obtained are "air conditioner running cooling mode, setting temperature 25°C, wind speed level two, air deflector swinging left and right, running level two dehumidification mode, fresh air machine starting level one ventilation mode". For another example, the to-be-updated candidate operation parameters are: the candidate user information is the candidate user identity ID "111111", the candidate air environment information is "indoor temperature 30°C, indoor humidity 50%, air quality index 70 μg / m 3 " and the candidate seasonal information is "autumn", and the candidate operation parameters corresponding to the two are "air conditioner running cooling mode, setting temperature 27°C, wind speed level one, air deflector swinging left and right, humidifier running level one water vapor evaporation mode, fresh air machine running level two ventilation mode". The corresponding candidate updated operation parameters obtained are "air conditioner running cooling mode, setting temperature 26°C, wind speed level one, air deflector swinging left and right, humidifier running level one water vapor evaporation mode, fresh air machine running level two ventilation mode". For another example, the to-be-updated candidate operation parameters are: the candidate user information is the candidate user identity ID "111111", the candidate air environment information is "indoor temperature 6°C, indoor humidity 40%, air quality index 40 μg / m 3carbon dioxide concentration 500 PPM” and the alternative seasonal information is “indoor temperature 6 ℃, indoor humidity 40%, air quality index 40 μg / m 3 The alternative operation parameters corresponding to the “carbon dioxide concentration 500 PPM” and the alternative seasonal information are “air conditioner runs in heating mode, set temperature 28 ℃, air speed is level 2, air deflector swings left and right, humidifier runs in level 2 water vapor evaporation mode, fresh air machine runs in level 1 ventilation mode”. The corresponding alternative updated operation parameters are “air conditioner runs in heating mode, set temperature 27 ℃, air speed is level 2, air deflector swings left and right, humidifier runs in level 2 water vapor evaporation mode, fresh air machine runs in level 1 ventilation mode”. The to-be-updated alternative operation parameters in the first data table are deleted, and each alternative updated operation parameter is determined as the corresponding to-be-updated alternative operation parameter and stored in the first data table.

[0076] Optionally, after triggering the air conditioning device to run according to the second operation parameters, the method further includes: determining third operation parameters according to the second operation parameters in the preset time period, and the user information, the air environment information and the seasonal information corresponding to the second operation parameters. The alternative user information, the alternative air environment information and the alternative seasonal information in the first data table that are the same as the user information, the air environment information and the seasonal information corresponding to the third operation parameters are determined as target alternative user information, target alternative air environment information and target alternative seasonal information. The alternative operation parameters corresponding to the target alternative user information, the target alternative air environment information and the target alternative seasonal information are determined as target alternative operation parameters. The alternative updated operation parameters corresponding to each to-be-updated alternative operation parameter are determined according to the target alternative operation parameters, the third operation parameters and each to-be-updated alternative operation parameter. The target alternative operation parameters and the to-be-updated alternative operation parameters in the first data table are deleted. The third operation parameters are taken as the target alternative operation parameters and stored in the first data table. Each alternative updated operation parameter is determined as the corresponding to-be-updated alternative operation parameter and stored in the first data table.

[0077] In this way, all the alternative operation parameters in the first data table are replaced according to the user-defined operation parameters of the air conditioning device and the target alternative operation parameters in the first data table. The update of all the alternative operation parameters in the first data table is realized. In this way, when the air conditioning device adjusts the indoor air environment according to the updated alternative operation parameters, the adjusted indoor air environment can meet the user's demand for the customized comfort level. Therefore, the comfort level of the user in the environment can be further improved.

[0078] In combination with Figure 3 The embodiment of the present disclosure provides another method for controlling an air conditioning device, which includes:

[0079] In step S301, the electronic device obtains the geographic location of the user.

[0080] In a case where the geographic location of the user is within the preset geographic location, the electronic device determines to set privacy protection for the user information.

[0081] In a case where the electronic device receives an instruction of closing the privacy protection input by the user, the electronic device acquires the user information, air environment information in a region where the user is located, and seasonal information.

[0082] In a case where the electronic device receives an instruction of closing the privacy protection input by the user, the electronic device acquires the user information, air environment information in a region where the user is located, and seasonal information.

[0083] In a case where the electronic device receives an instruction of closing the privacy protection input by the user, the electronic device acquires the user information, air environment information in a region where the user is located, and seasonal information.

[0084] The method for controlling the air conditioning device provided by the embodiments of the present disclosure can set privacy protection for the user information in the preset geographic location, so that the user information corresponding to the user cannot be directly acquired when the user enters a region corresponding to the preset geographic location, thereby protecting the security of the user information of the user. When the air environment of the region where the user is located is adjusted, the air environment information and the seasonal information in the region where the user is located are also considered, so that the adjusted indoor air environment can meet the demand of the user for comfort in the current environmental state, and the comfort of the user in the environment is improved.

[0085] In some embodiments, the preset geographic location is a geographic location where privacy protection is set for the user information. The preset geographic location includes Beijing, Shanghai, Guangzhou, Shenzhen, and the like. For example, the geographic location of the user is acquired as Beijing, and it is determined that the user is in a region where privacy protection is set for the user information. At this time, it is necessary to determine whether an instruction of closing the privacy protection input by the user is received. In a case where the instruction of closing the privacy protection input by the user is received, the user information, the air environment information in the region where the user is located, and the seasonal information are acquired. In a case where the instruction of closing the privacy protection input by the user is not received, the privacy protection for the user information is continued.

[0086] Further, after the geographic location of the user is acquired, the method further includes: in a case where the geographic location of the user is not within the preset geographic location, acquiring the user information, the air environment information in the region where the user is located, and the seasonal information. In this way, in a case where the geographic location of the user is not within the preset geographic location, it is indicated that the region where the user is located is not set with privacy protection, and belongs to an open region. The indoor air environment can be directly adjusted in the open region, the adjustment speed of the indoor air environment is improved, and thus the user can be in the comfortable indoor air environment more quickly.

[0087] In combination with Figure 4As shown, the embodiment of the present disclosure provides another method for controlling an air conditioning device, comprising:

[0088] In step S401, the electronic device acquires user information, air environment information in a region where the user is located, and seasonal information.

[0089] In step S402, the electronic device determines first operation parameters of the air conditioning device according to the user information, the air environment information, and the seasonal information.

[0090] In step S403, the electronic device triggers the air conditioning device to operate according to the first operation parameters.

[0091] In step S404, the electronic device matches the user information in a preset user information library to obtain a matching result. The preset user information library stores a plurality of alternative user information.

[0092] In step S405, the electronic device triggers the air conditioning device to alarm in a case where the matching result is that the user information does not match each of the alternative user information.

[0093] The method for controlling the air conditioning device provided by the embodiment of the present disclosure considers the air environment information and the seasonal information in the region where the user is located when adjusting the air environment in the region where the user is located, so that the adjusted indoor air environment meets the demand of the user for comfort in the current environmental state, and the comfort of the user in the environment is improved. According to the matching of the user information and the user information library, the air conditioning device is triggered to alarm. The alternative user information in the user information library is user information corresponding to a user with security permission. In a case where the user information does not match each of the alternative user information, it is reflected that the user has no security permission. In this way, when the user without security permission enters the region, the air conditioning device alarms, which can alert the user without security permission, thereby improving the security in the region.

[0094] Further, triggering the air conditioning device to alarm comprises triggering the air conditioning device to emit an alarm sound, and / or sending alarm information to a user terminal. In some embodiments, the user terminal is a mobile phone, a smart watch, a computer, etc. The alarm information is “warning, warning, illegal person intrusion”.

[0095] In combination with Figure 5As shown, the embodiment of the present disclosure provides a device 1 for controlling an air conditioning device, comprising a processor 11 and a memory 12. Optionally, the device can further comprise a communication interface 13 and a bus 14. Wherein the processor 11, the communication interface 13, and the memory 12 can complete the communication among each other through the bus 14. The communication interface 13 can be used for information transmission. The processor 11 can invoke the logical instructions in the memory 12 to execute the method for controlling the air conditioning device of the above-mentioned embodiment.

[0096] In addition, the logical instructions in the memory 12 described above can be realized in the form of a software function unit and sold or used as an independent product, which can be stored in a computer readable storage medium.

[0097] The memory 12 as a computer readable storage medium can be used to store software programs, computer executable programs, such as program instructions / modules corresponding to the method in the embodiment of the present disclosure. The processor 11 executes the program instructions / modules stored in the memory 12, thereby performing function applications and data processing, i.e. implementing the method for controlling the air conditioning device in the above-mentioned embodiment.

[0098] The memory 12 can include a program storage area and a data storage area, wherein the program storage area can store an operating system and application programs required by at least one function; the data storage area can store data created according to the use of the terminal device, etc. In addition, the memory 12 can include a high-speed random access memory, and can also include a non-volatile memory.

[0099] The embodiment of the present disclosure provides an electronic device, comprising: an electronic device body, and the device 1 for controlling an air conditioning device described above. The device 1 for controlling an air conditioning device is installed on the electronic device body. The installation relationship described herein is not limited to being placed in the electronic device, but also includes installation connection with other components of the electronic device, including but not limited to physical connection, electrical connection or signal transmission connection, etc. Those skilled in the art can understand that the device 1 for controlling an air conditioning device can be adapted to a feasible electronic device body, and thus other feasible embodiments can be realized.

[0100] In some embodiments, in combination with Figure 6 As shown, the electronic device is an air conditioner 2, and the air conditioner 2 comprises an air conditioner body and the device 1 for controlling an air conditioning device. The device 1 for controlling an air conditioning device is installed on the air conditioner body.

[0101] The embodiment of the present disclosure provides a storage medium, which stores program instructions. When the program instructions are executed, the method for controlling an air conditioning device is executed.

[0102] The storage medium described above can be a transitory computer readable storage medium or a non-transitory computer readable storage medium.

[0103] The technical solutions of the embodiments of the present disclosure can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes one or more instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method disclosed in the embodiments of the present disclosure. The aforementioned storage medium can be a non-transitory storage medium, including a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media that can store program codes, or a transitory storage medium.

[0104] The above description and drawings sufficiently illustrate the embodiments of the present disclosure to enable one skilled in the art to practice them. Other embodiments can include structural, logical, electrical, process, and other changes. The embodiments represent only a few of the possible variations. Individual components and functions are optional unless explicitly required, and the order of operations can be changed. Parts and features of some embodiments can be included in or replace parts and features of other embodiments. Also, the words used in this application are used only to describe the embodiments and not to limit the claims. As used in the description of the embodiments and the claims, unless the context clearly requires otherwise, the singular forms "a," "an," and "the" are intended to include the plural forms as well. Similarly, the term "and / or" as used in this application refers to any and all possible combinations of one or more associated listed items. In addition, when used in this application, the term "comprise" and its variations "comprises" and / or comprises" and the like mean the presence of the stated features, integers, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof. Without more limitations, the element defined by the phrase "comprising a" does not exclude the presence of additional identical elements in the process, method, or device including the stated element. In this document, each embodiment focuses on the differences from other embodiments, and the same or similar parts between various embodiments can be referred to each other. For the method, product, etc. disclosed in the embodiments, if it corresponds to the method part disclosed in the embodiments, the relevant part can be referred to the description of the method part.

[0105] Those skilled in the art can understand that the units and algorithm steps of each example described in combination with the embodiments disclosed herein can be realized by electronic hardware or a combination of computer software and electronic hardware. Whether the functions are realized in hardware or software depends on the specific application and design constraints of the technical solution. The skilled person can use different methods for each specific application to realize the described functions, but such implementation should not be considered beyond the scope of the embodiments of the present disclosure. The skilled person can clearly understand that, for the convenience and brevity of description, the specific working processes of the above-described system, device and unit can refer to the corresponding processes in the foregoing method embodiments, which will not be repeated here.

[0106] In the embodiments disclosed herein, the disclosed methods, products (including but not limited to devices, equipment, etc.) can be implemented in other ways. For example, the above-described device embodiments are only schematic, for example, the division of the units can only be a logical function division, and actual implementation can have another division manner, for example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the units shown or discussed can be indirect coupling or communication connection through some interface, device or unit, and can be electrical, mechanical or other forms. The units described as separate components can or can not be physically separate, and the components shown as units can or can not be physical units, that is, they can be located in one place, or can be distributed on a plurality of network units. Part or all of the units can be selected according to actual needs to implement the embodiments. In addition, each functional unit in the embodiments of the present disclosure can be integrated in one processing unit, or each unit can be a physically independent unit, or two or more units can be integrated in one unit.

[0107] The computer program instructions can also be loaded onto a computer, other programmable data processing apparatus, or other processing device to cause a series of operational steps to be performed on the computer, other programmable apparatus or other processing device to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide processes for implementing the functions / acts specified in the flowchart and / or block diagram block or blocks.

Claims

1. A method for controlling an air conditioning device, characterized by, The method comprises the following steps: obtaining user information, air environment information in the area where the user is located, and seasonal information; determining first operation parameters of the air conditioning device according to the user information, the air environment information, and the seasonal information; triggering the air conditioning device to operate according to the first operation parameters; determining the first operation parameters of the air conditioning device according to the user information, the air environment information, and the seasonal information comprises: performing a lookup operation in a preset first data table by using the user information, the air environment information, and the seasonal information to find out candidate user information, candidate air environment information, and candidate seasonal information that are all the same as the user information, the air environment information, and the seasonal information; and determining candidate operation parameters corresponding to the candidate user information, the candidate air environment information, and the candidate seasonal information as the first operation parameters of the air conditioning device; wherein the first data table stores a correspondence relationship between the candidate user information, the candidate air environment information, and the candidate seasonal information and the candidate operation parameters; after triggering the air conditioning device to operate according to the first operation parameters, the method further comprises: obtaining an adjustment instruction input by the user; obtaining second operation parameters according to the adjustment instruction; triggering the air conditioning device to operate according to the second operation parameters; determining third operation parameters according to the second operation parameters in a preset time period and the user information, the air environment information, and the seasonal information corresponding to the second operation parameters; determining candidate user information, candidate air environment information, and candidate seasonal information that are the same as the user information, the air environment information, and the seasonal information corresponding to the third operation parameters in the first data table as target candidate user information, target candidate air environment information, and target candidate seasonal information; determining candidate operation parameters corresponding to the target candidate user information, the target candidate air environment information, and the target candidate seasonal information as target candidate operation parameters; determining candidate update operation parameters corresponding to each to-be-updated candidate operation parameter according to the target candidate operation parameters, the third operation parameters, and each to-be-updated candidate operation parameter, wherein the to-be-updated candidate operation parameter is each candidate operation parameter in the first data table except the target candidate operation parameter, and the candidate user information corresponding to each to-be-updated candidate operation parameter is the same; deleting the to-be-updated candidate operation parameters in the first data table; determining each candidate update operation parameter as a corresponding to-be-updated candidate operation parameter and storing the to-be-updated candidate operation parameter in the first data table.

2. The method of claim 1, wherein, after triggering the air conditioning device to operate according to the second operation parameters, the method further comprises: determining third operation parameters according to the second operation parameters in a preset time period and the user information, the air environment information, and the seasonal information corresponding to the second operation parameters; determining candidate user information, candidate air environment information, and candidate seasonal information that are the same as the user information, the air environment information, and the seasonal information corresponding to the third operation parameters in the first data table as target candidate user information, target candidate air environment information, and target candidate seasonal information; determining candidate operation parameters corresponding to the target candidate user information, the target candidate air environment information, and the target candidate seasonal information as target candidate operation parameters and deleting the target candidate operation parameters; The third operation parameter is taken as a target candidate operation parameter and stored in the first data table.

3. The method according to any one of claims 1 to 2, characterized in that, The user information, air environment information in the region where the user is located, and seasonal information are obtained, including: Obtaining the geographic location of the user; In the case that the geographic location of the user is within a preset geographic location, it is determined that the user information is set with privacy protection; In the case that the instruction of closing the privacy protection input by the user is received, the user information, air environment information in the region where the user is located, and seasonal information are obtained.

4. The method according to any one of claims 1 to 2, characterized in that, After triggering the air conditioning device to operate according to the first operation parameter, further comprising: Matching the user information in a preset user information library to obtain a matching result; the preset user information library stores a plurality of candidate user information; In the case that the matching result is that the user information does not match each candidate user information, triggering the air conditioning device to perform an alarm.

5. An apparatus for controlling an air conditioning device, comprising a processor and a memory having stored program instructions, characterized in that, The processor is configured to execute the method for controlling the air conditioning device according to any one of claims 1 to 4 when the program instructions are executed.

6. An electronic device, comprising: Comprising: An electronic device body; The device for controlling the air conditioning device according to claim 5 is installed in the electronic device body.

7. A storage medium storing program instructions, characterized in that, The program instructions execute the method for controlling the air conditioning device according to any one of claims 1 to 4 when executed.

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