Method and apparatus for modifying parameters for controlling operation of a smart air conditioning device

By detecting the operating mode of the air conditioning equipment and collecting environmental and personnel parameters, the operating parameters of the air conditioning equipment are automatically corrected, solving the problem of users waking up due to heat or cold, realizing intelligent control, and improving the user's sleep comfort.

CN115560439BActive Publication Date: 2026-03-20YUNMI HULIAN TECH (GUANGDONG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-07-02
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing air conditioning equipment temperature and fan speed settings can easily cause users to wake up due to heat or cold, requiring manual readjustment and affecting sleep quality.

Method used

By detecting the operating mode of the air conditioning equipment, collecting environmental and personnel parameters, and automatically correcting the operating parameters of the air conditioning equipment, including ambient temperature, humidity, and personnel physiological parameters, the operation of the air conditioning equipment is dynamically controlled.

Benefits of technology

It enables automatic adjustment of air conditioning parameters when the user is asleep, providing a comfortable sleeping environment and improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a correction method and device for controlling parameters of intelligent air conditioning equipment work, the method comprises the following steps: after detecting that the working mode of the intelligent air conditioning equipment enters a target working mode, determining the working parameters matched with the target working mode; collecting parameters matched with the current area, such as the environmental parameters of the current area; performing correction operation on the working parameters according to the collected parameters matched with the current area, to obtain the corrected working parameters. It can be seen that the application automatically corrects the parameters for controlling the working of the intelligent air conditioning equipment through the collected parameters, such as the environmental parameters and the physiological parameters of the personnel, and automatically controls the working of the intelligent air conditioning equipment based on the corrected working parameters, so that the intelligent control of the intelligent air conditioning equipment can be realized, the user does not need to manually control the intelligent air conditioning equipment, and even when the user is in a sleep state, the comfortable environment matched with the user can still be provided for the user, and the use experience of the user is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent air conditioning equipment, and particularly relates to a correction method and device for controlling parameters of intelligent air conditioning equipment. BACKGROUND

[0002] With the rapid development of science and technology, more and more equipment is developing towards intelligence, and based on the advantages of convenient and fast operation, time and labor saving, intelligent equipment is more and more popular and important in life, work, production and other scenes, for example: air conditioning equipment.

[0003] In actual application, in order to obtain a comfortable sleep environment, people often manually set the temperature, air speed and the like of the air conditioning equipment through the remote control device or the user terminal of the air conditioning equipment before sleeping. However, it is found in practice that the temperature and air speed setting mode of the existing air conditioning equipment often easily leads to that the user is often woken up by heat or cold, and needs to manually adjust the temperature again, which greatly affects the sleep quality of the user. SUMMARY

[0004] The present application provides a correction method and device for controlling parameters of intelligent air conditioning equipment, which can realize intelligent control of the intelligent air conditioning equipment, provide a comfortable environment for the user, and is beneficial to improving the experience of the user.

[0005] In order to solve the above technical problem, the present application discloses a correction method for controlling parameters of intelligent air conditioning equipment in the first aspect, which comprises:

[0006] After detecting that the working mode of the intelligent air conditioning equipment in the current area enters a target working mode, a first working parameter matched with the target working mode is determined, and the first working parameter is used for controlling the working of the intelligent air conditioning equipment;

[0007] Parameters matched with the current area are collected, and the parameters matched with the current area include environmental parameters of the current area;

[0008] According to the collected parameters matched with the current area, a correction operation is performed on the first working parameter to obtain a second working parameter, and the second working parameter is used for controlling the working of the intelligent air conditioning equipment.

[0009] As an optional implementation manner, in the first aspect of the present application, the method further comprises:

[0010] Parameters corresponding to personnel in a resting state in the current area are collected, and the personnel corresponding parameters include one or more combinations of attribute parameters of the personnel, physiological parameters of the personnel and resting parameters corresponding to the personnel;

[0011] wherein the performing the correction operation on the first working parameter according to the collected parameter matching the current region to obtain a second working parameter comprises:

[0012] performing the correction operation on the first working parameter according to the collected parameter matching the current region and the parameter corresponding to the person to obtain a second working parameter.

[0013] As an optional implementation, in the first aspect of the present application, the rest parameter corresponding to the person includes at least one of a parameter corresponding to an article used by the person during the rest of the person and / or a sleeping posture of the person, and the article used by the person during the rest of the person includes a quilt and / or a cushion, and the parameter corresponding to the article used by the person during the rest of the person includes at least one of a contact area of the article used by the person during the rest of the person with the person, a thickness of the article, a type of the article, a material of the article, and an air tightness of the article.

[0014] As an optional implementation, in the first aspect of the present application, the method further comprises:

[0015] judging whether the feedback information input by the person for the intelligent air conditioning device is received;

[0016] when it is judged that the feedback information for the intelligent air conditioning device is received, correcting the second working parameter of the target working mode of the intelligent air conditioning device according to the feedback information to obtain a third working parameter, and the third working parameter includes a starting working temperature of the target working mode of the intelligent air conditioning device, and the starting working temperature is a starting output temperature of the intelligent air conditioning device when the intelligent air conditioning device is subsequently in the target working mode.

[0017] As an optional implementation, in the first aspect of the present application, the method further comprises:

[0018] when it is judged that the feedback information for the intelligent air conditioning device is not received, judging whether the person has finished resting;

[0019] when it is judged that the person has finished resting, judging whether it is necessary to end the target working mode of the intelligent air conditioning device;

[0020] when it is judged that it is necessary to end the target working mode of the intelligent air conditioning device, analyzing all the parameters collected when the intelligent air conditioning device is in the target working mode to obtain analysis results of all the parameters;

[0021] According to the analysis result, a correction operation is performed on the second working parameter, and a fourth working parameter is obtained, which is the parameter for controlling the intelligent air conditioning device to work when the intelligent air conditioning device is in the target working mode subsequently.

[0022] As an optional implementation, in the first aspect of the application, the fourth working parameter comprises at least one time length section and a working parameter of each time length section, and the working parameter of each time length section comprises one or more combinations of a working temperature of each time length section, a working wind speed of each time length section, and an air outlet mode of each time length section; when the intelligent air conditioning device is in the target working mode, all the time length sections are sequentially connected in time from early to late to form a working time length of the target working mode.

[0023] As an optional implementation, in the first aspect of the application, the method further comprises:

[0024] According to the parameter matched with the current region, identification information corresponding to the first working parameter is determined, and at least one fifth working parameter matched with the identification information is screened from the determined working parameter database.

[0025] Based on the second working parameter, all the fifth working parameters are updated to obtain sixth working parameters, and each sixth working parameter is used to control the corresponding intelligent air conditioning device to work.

[0026] The second aspect of the application discloses a correction device for a parameter for controlling an intelligent air conditioning device to work, and the device comprises:

[0027] A determination module is configured to determine a first working parameter matched with a target working mode of an intelligent air conditioning device in a current region after detecting that the working mode of the intelligent air conditioning device in the current region enters the target working mode, and the first working parameter is used to control the intelligent air conditioning device to work.

[0028] A collection module is configured to collect parameters matched with the current region, and the parameters matched with the current region comprise environmental parameters of the current region.

[0029] A correction module is configured to perform a correction operation on the first working parameter according to the collected parameters matched with the current region, and a second working parameter is obtained, which is used to control the intelligent air conditioning device to work.

[0030] As an optional implementation, in the second aspect of the present application, the collection module is further configured to collect parameters corresponding to the person in the current area in a resting state, the parameters corresponding to the person including one or a combination of the following: attribute parameters of the person, physiological parameters of the person, and resting parameters corresponding to the person.

[0031] The correction module corrects the first working parameter according to the collected parameters matching the current area in the following manner:

[0032] The correction module corrects the first working parameter according to the collected parameters matching the current area and the parameters corresponding to the person, to obtain a second working parameter.

[0033] As an optional implementation, in the second aspect of the present application, the resting parameters corresponding to the person include parameters corresponding to an article used by the person during the resting process and / or a sleeping posture of the person, the article used by the person during the resting process including a quilt and / or a cushion, and the parameters corresponding to the article used by the person during the resting process including at least one of the following: a contact area of the article with the person during the resting process, a thickness of the article, a type of the article, a material of the article, and air tightness of the article.

[0034] As an optional implementation, in the second aspect of the present application, the device further includes:

[0035] The judgment module is configured to judge whether feedback information input by the person and directed to the intelligent air conditioning device is received.

[0036] The correction module is further configured to, when the judgment module judges that the feedback information directed to the intelligent air conditioning device is received, correct the second working parameter of the target working mode of the intelligent air conditioning device according to the feedback information, to obtain a third working parameter, the third working parameter including a starting working temperature of the target working mode of the intelligent air conditioning device, and the starting working temperature being a starting output temperature of the intelligent air conditioning device when the intelligent air conditioning device is subsequently in the target working mode.

[0037] As an optional implementation, in the second aspect of the present application, the judgment module is further configured to, when it is judged that the feedback information directed to the intelligent air conditioning device is not received, judge whether the person has finished resting.

[0038] The judgment module is further configured to, when it is judged that the person has finished resting, judge whether the target working mode of the intelligent air conditioning device needs to be ended.

[0039] The device further includes:

[0040] an analysis module, configured to analyze all parameters collected when the intelligent air conditioning device is working in the target working mode this time to obtain analysis results of all the parameters when the judgment module judges that the target working mode of the intelligent air conditioning device needs to be ended;

[0041] The correction module is further configured to perform a correction operation on the second working parameter according to the analysis results to obtain a fourth working parameter, which is the parameter for controlling the intelligent air conditioning device to work when the intelligent air conditioning device is subsequently in the target working mode.

[0042] As an optional implementation form, in the second aspect of the present application, the fourth working parameter includes at least one time length section and a working parameter of each time length section, and the working parameter of each time length section includes one or more combinations of a working temperature of each time length section, a working wind speed of each time length section and an air outlet mode of each time length section; when the intelligent air conditioning device is in the target working mode, all the time length sections are sequentially connected in time from early to late to form a working time length of the target working mode.

[0043] As an optional implementation form, in the second aspect of the present application, the device further includes:

[0044] a screening module, configured to determine identification information corresponding to the first working parameter according to the parameter matched with the current area, and screen at least one fifth working parameter matched with the identification information from the determined working parameter database;

[0045] an updating module, configured to update all the fifth working parameters based on the second working parameter to obtain sixth working parameters, and each sixth working parameter is used to control the corresponding intelligent air conditioning device to work.

[0046] The third aspect of the present application discloses another correction device for a parameter for controlling an intelligent air conditioning device to work, and the device includes:

[0047] a memory storing executable program codes;

[0048] a processor coupled with the memory;

[0049] The processor calls the executable program codes stored in the memory to execute part or all steps of any one of the correction methods for a parameter for controlling an intelligent air conditioning device to work disclosed in the first aspect of the present application.

[0050] The fourth aspect of the present application discloses a computer storage medium, which stores computer instructions, and when the computer instructions are invoked, part or all steps of any one of the parameter correction methods for controlling the working of the intelligent air conditioning device disclosed by the first aspect of the present application are executed.

[0051] Compared with the prior art, the embodiments of the present application have the following beneficial effects:

[0052] In the embodiments of the present application, after detecting that the working mode of the intelligent air conditioning device in the current area enters the target working mode, the first working parameter matched with the target working mode is determined, and the first working parameter is used to control the working of the intelligent air conditioning device; the parameters matched with the current area are collected, and the parameters matched with the current area include the environmental parameters of the current area; and the first working parameter is subjected to a correction operation according to the collected parameters matched with the current area, so as to obtain the second working parameter, and the second working parameter is used to control the working of the intelligent air conditioning device. It can be seen that the parameters collected by the present application, such as the environmental parameters and the physiological parameters of the personnel, are used to automatically correct the parameters used to control the working of the intelligent air conditioning device, and the working of the intelligent air conditioning device is automatically controlled based on the corrected working parameters, so that the intelligent control of the intelligent air conditioning device can be realized, the user does not need to manually control the intelligent air conditioning device, and even when the user is in a sleep state, the user can still be provided with a comfortable environment matched with the user, and the use experience of the user is improved. BRIEF DESCRIPTION OF DRAWINGS

[0053] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort.

[0054] Figure 1 is a flowchart of a parameter correction method for controlling the working of an intelligent air conditioning device disclosed by the embodiments of the present application;

[0055] Figure 2 is a flowchart of another parameter correction method for controlling the working of an intelligent air conditioning device disclosed by the embodiments of the present application;

[0056] Figure 3 is a structural diagram of a parameter correction device for controlling the working of an intelligent air conditioning device disclosed by the embodiments of the present application;

[0057] Figure 4 is a structural diagram of another parameter correction device for controlling the working of an intelligent air conditioning device disclosed by the embodiments of the present application;

[0058] Figure 5 is another structure diagram of the correction device for controlling the parameter of the intelligent air conditioning equipment disclosed by the embodiment of the present application;

[0059] Figure 6 is a scene diagram disclosed by the embodiment of the present application. DETAILED DESCRIPTION

[0060] In order for those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0061] The terms "first", "second", and the like in the specification of the present application and the above-mentioned drawings are used to distinguish different objects, and are not used to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product, or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product, or end.

[0062] In this document, the term "embodiment" means that the specific features, structures, or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it mutually exclusive or alternative to other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0063] The present application discloses a correction method and device for controlling the parameter of the intelligent air conditioning equipment, which can automatically correct the parameter for controlling the working of the intelligent air conditioning equipment through the collected parameters such as environmental parameters and physiological parameters of personnel, and automatically control the working of the intelligent air conditioning equipment based on the corrected working parameter, so as to realize the intelligent control of the intelligent air conditioning equipment, without the need for the user to manually control the intelligent air conditioning equipment, even when the user is in a sleep state, which can still provide the user with a comfortable environment matching the user, and improve the user's experience. The following will be described in detail.

[0064] Embodiment one

[0065] Please refer to Figure 1 , Figure 1is a flowchart of a correction method for controlling parameters of intelligent air conditioning equipment disclosed by the embodiment of the present application. Wherein, Figure 1 The described method can be applied to a correction device, which can include an intelligent air conditioning equipment or a server corresponding to the intelligent air conditioning equipment, wherein the correction device can be in communication connection with a user terminal, wherein the user terminal includes but is not limited to a smart wearable device (such as a smart sports bracelet and the like) and / or a smart phone (an Android phone, an iOS phone, etc.), which is not limited by the embodiment of the present application. As shown in the figure, Figure 1 The correction method for controlling parameters of intelligent air conditioning equipment can include the following operations:

[0066] 101、After detecting that the working mode of the intelligent air conditioning equipment in the current area enters a certain target working mode, determine a first working parameter matched with the target working mode, and the first working parameter is used to control the working of the intelligent air conditioning equipment.

[0067] In the embodiment of the present application, the current area can be any area with a smart air conditioning device, such as a room, a study, an area where a whole family lives, etc. The working mode of the smart air conditioning device can include a sleep working mode or a non-sleep working mode, wherein different working modes correspond to different working parameters. The first working parameter includes one or a combination of working temperature, working wind speed and air outlet mode of the smart air conditioning device. The air outlet mode of the smart air conditioning device is a mode formed by the movement of the air deflector of the smart air conditioning device and / or the movement of the front panel of the smart air conditioning device. The air outlet mode of the smart air conditioning device includes one of horizontal air outlet mode, up-down air outlet mode and full-range air outlet (air around) mode. The movement of the air deflector of the smart air conditioning device and the movement of the front panel of the smart air conditioning device both include moving and / or turning, wherein the moving of the air deflector of the smart air conditioning device and the moving of the front panel of the smart air conditioning device both include one of up moving, down moving, front moving and back moving. Further, the first working parameter further includes working exhaust parameter of the smart air conditioning device. Still further, the first working parameter is composed of a plurality of sub-working parameters, wherein each sub-working parameter has a corresponding working time period, and the time length formed by sequentially connecting each working time period is the working time length of the smart air conditioning device in the corresponding working mode, which is also the determined rest time length of the personnel. Each working time period is a corresponding rest time period (such as a sleep time period) of the personnel, for example, the working mode of the smart air conditioning device includes four working time periods and the starting time is 10:00 pm of the current day to 6:00 am of the next day, the first working time period is 10:00 pm of the current day to 11:00 pm of the current day, the second working time period is 11:00 pm of the current day to 3:00 am of the next day, the third working time period is 3:00 am of the next day to 5:00 am of the next day, and the fourth working time period is 5:00 am of the next day to 6:00 am of the next day. At this time, the rest time period can also be corrected according to the collected parameters. Still further, the plurality of sub-working parameters and the corresponding working time period of each sub-working parameter can be presented in an analog form, i.e. in a curve form, for example, the horizontal coordinate is time and the vertical coordinate is the working temperature of the smart air conditioning device; or in a digital form. Still further, the sub-working parameters corresponding to each time period in all time periods have a corresponding proportional relationship, for example, the temperature of the first working time period is 25℃, the temperature of the second working time period is 1.1 times the temperature of the first working time period, i.e. the temperature of the second working time period is 27.5℃, the temperature of the third working time period is 1.02 times the temperature of the first working time period, i.e. the temperature of the second working time period is 28.05℃.

[0068] 102、collecting parameters matched with the current area, the parameters matched with the current area including environmental parameters of the current area.

[0069] In this embodiment of the invention, the environmental parameters of the current area include one or more combinations of the current area's ambient temperature, ambient humidity, concentration of key gases in the current area, and odor in the current environment. The key gases in the current area include carbon dioxide and / or oxygen. Furthermore, the environmental parameters of the current area also include the heat emitted by each other smart device in the current area. The more environmental parameters the current area has, the more beneficial it is to improve the accuracy of the parameters used to control the operation of the smart air conditioning equipment. The ambient temperature / humidity of the current area includes the ambient temperature / humidity at any point in the current area or the ambient temperature / humidity at the resting location of personnel in the current area. This is achieved by collecting the ambient temperature / humidity of the current area through temperature and humidity sensors installed at the resting locations of personnel, and / or through mobile data acquisition devices equipped with temperature and humidity sensors (such as smart sweeping devices).

[0070] In this embodiment of the invention, optionally, the parameters matching the current area and the parameters corresponding to the personnel described below can be collected in real time or at preset time intervals (such as 2 minutes). This embodiment of the invention does not impose any limitations.

[0071] 103. Based on the collected parameters that match the current area, perform a correction operation on the first working parameter to obtain the second working parameter, which is used to control the operation of the intelligent air conditioning equipment.

[0072] It is evident that implementation Figure 1 The described correction method can automatically correct the parameters used to control the operation of smart air conditioning equipment by collecting parameters such as environmental parameters and physiological parameters of personnel, and automatically and dynamically control the operation of smart air conditioning equipment based on the corrected operating parameters. It can realize intelligent control of smart air conditioning equipment without the need for manual control by the user. Even when the user is asleep, it can still provide the user with a comfortable environment, such as a comfortable temperature, thus improving the user experience.

[0073] In an optional embodiment, the method may further include the following steps:

[0074] The identification information of personnel in the current area is determined. Based on the determined correspondence between patterns and identifications, the working patterns that match the identification information of personnel in the current area are queried from the determined pattern database and used as a target working pattern.

[0075] In the optional embodiment, the identification information of the person includes a biometric feature identification and / or a non-biometric feature identification. The biometric feature identification includes, but is not limited to, one or more of voiceprint feature identification, face feature identification, iris feature identification, and fingerprint feature identification, which can identify the uniqueness of the person. The non-biometric feature identification includes, but is not limited to, one or more of ID number, phone number, email address, and name, which can identify the uniqueness of the person. The more the content of the identification information of the person, the more conducive to further improve the accuracy and efficiency of determining the working mode of the intelligent air conditioning device, especially in the case that the intelligent air conditioning device corresponds to multiple persons and / or each person corresponds to multiple working modes. Further, no matter the sleep working mode or the non-sleep working mode, the person corresponding to the current area has a corresponding working mode, and there is a corresponding association between the person corresponding to the current area and the corresponding working mode. The person corresponding to the current area is any person living in the current area, such as dad, mom, and daughter. Dad has a corresponding rest mode A1 for lunch break and a corresponding rest mode A2 for evening rest. Daughter has a corresponding rest mode B1 for lunch break and a corresponding rest mode B2 for evening rest. A1, A2, B1, and B2 are all different.

[0076] It can be seen that the optional embodiment determines the working mode of the intelligent air conditioning device in the current area through the identification information of the person in the current area, which can improve the accuracy of determining the working mode of the intelligent air conditioning device, thereby improving the accuracy of correcting the parameters for controlling the working of the intelligent air conditioning device, and further providing a more comfortable environment for the user.

[0077] In another optional embodiment, the method can further include the following operations:

[0078] When it is determined according to the identification information of the person in the current area that the person is a visitor of the current area, the intimacy between the person in the current area and each non-visitor in the current area is determined according to the identification information of the person in the current area.

[0079] The working mode matched with the non-visitor corresponding to the maximum intimacy is taken as the above-mentioned certain target working mode.

[0080] It can be seen that the optional embodiment determines that the user in the current area is a visitor of the current area, such as a classmate of Xiaoming. By taking the working mode matched with the user most intimate to the user in the current area as the working mode of the intelligent air conditioning device, the visitor can also be provided with a matched comfortable environment, further enriching the intelligent function of the correction device.

[0081] In yet another optional embodiment, the method can further include the following operations:

[0082] If the number of persons in the current area is greater than 1, the sensitivity of each person to information is determined, and a working mode matched to a person corresponding to the maximum sensitivity among all persons according to the sensitivity of all persons to the information is selected as the certain target working mode, wherein the information includes temperature and / or dust.

[0083] It can be seen that in the optional embodiment, when there are multiple users in the same area, the working mode matched to the user with the highest sensitivity to temperature and / or dust is determined as the working mode of the intelligent air conditioning device, which can match all persons to a suitable working mode, improve the accuracy of the working mode of the intelligent air conditioning device, provide a matched comfortable environment for all persons, and further enrich the intelligent function of the correction device.

[0084] In yet another optional embodiment, the method can further include the following operations:

[0085] The parameters corresponding to the persons in the current area in the resting state are collected, and the parameters corresponding to the persons include one or a combination of the attribute parameters of the persons, the physiological parameters of the persons, and the resting parameters corresponding to the persons;

[0086] In the optional embodiment, the collected parameters matched to the current area are used to perform a correction operation on the first working parameter to obtain the second working parameter, including:

[0087] The collected parameters matched to the current area and the parameters corresponding to the persons are used to perform a correction operation on the first working parameter to obtain the second working parameter.

[0088] In the optional embodiment, the resting state includes a sleep state or a non-sleep state, and the like, which are used to represent the state of the person resting, such as Xiaohong lying on the bed but not sleeping.

[0089] In the optional embodiment, the parameters corresponding to the person include at least one of a parameter corresponding to an article used by the person during the rest and / or a sleeping posture of the person, the article used by the person during the rest includes a quilt and / or a cushion, the parameter corresponding to the article used by the person during the rest includes at least one of a contact area between the article used by the person during the rest and the person, a thickness of the article, a type of the article, a material of the article, and an air tightness of the article. The sleeping posture of the person includes at least one of lying flat, lying on the side facing the intelligent air conditioning device, and lying on the side away from the intelligent air conditioning device. Further, the sleeping posture of the person also includes a turning-over situation. The attribute parameters of the person include at least one or a combination of multiple of gender, age, height, weight, and volume. The physiological parameters of the person include at least one of a constitution situation, a metabolism situation, a blood pressure situation, a body temperature situation, an expression situation, and a heart rate situation. When the gender of the person is female, the physiological parameters of the person further include at least one of a physiological period, a postpartum recovery period, and pregnancy. Further, the parameters corresponding to the person further include a distance value between the person and the intelligent air conditioning device and / or behavior data of the person within a preset time period, such as that Xiao Ming drank a lot of alcohol before resting, exercise situation, and medication situation, wherein a cutoff time of the preset time period is a starting time when the person is detected to be in the rest state. The more the parameters corresponding to the person, the more beneficial to improve the correction accuracy of the parameters for controlling the intelligent air conditioning device to work, and the working accuracy of the intelligent air conditioning device can be further improved, thereby further providing a more accurate comfortable environment for the user.

[0090] It can be seen that, by combining the parameters of the user in the current area, such as the physiological parameters of the user, with the environmental parameters of the current area to correct the parameters for controlling the intelligent air conditioning device to work, the dynamic correction accuracy and reliability of the parameters for controlling the intelligent air conditioning device to work can be improved, thereby improving the dynamic working accuracy of the intelligent air conditioning device, and further providing a comfortable matching environment for the user.

[0091] In yet another optional embodiment, the method can further include the following operations:

[0092] determining, according to the parameters matched with the current area, identification information corresponding to the first working parameters, and screening at least one fifth working parameter matched with the identification information from the determined working parameter database;

[0093] updating all the fifth working parameters based on the second working parameters to obtain sixth working parameters, each of the sixth working parameters being used to control the corresponding intelligent air conditioning device to work.

[0094] In the optional embodiment, the identification information and the parameter for controlling the smart air conditioning device are pre-associated, and the identification information includes at least one of the following: region identification, physiological parameter identification, house type identification, diet identification, family composition identification, smart device usage habit identification, and climate identification. The more the identification information includes, the more the association between the identification and the parameter can be improved, thereby further improving the accuracy and reliability of the parameter for controlling the smart air conditioning device corresponding to the user of the same type.

[0095] For example, the corrected parameter for controlling the smart air conditioning device in Xiaohong's room is the A parameter set, and the A parameter set is the parameter set corresponding to Xiaohong in the resting state. Xiaohong is a girl in grade one in Qingshan community who is in a cold state and has a cold. At this time, Xiaolan and Xiaomei, who are also girls in grade one in a cold state and have a cold in Qingshan community, are also based on the A parameter set to correct the parameters for controlling the smart air conditioning devices of Xiaolan and Xiaomei in the resting mode.

[0096] It can be seen that, after the parameter for controlling the smart air conditioning device in the current region is corrected for the personnel in the current region, the working parameters of the smart air conditioning device of the same type and / or in the same region are further updated in the same mode, which can improve the correction efficiency of the smart air conditioning device of the same type and / or in the same region, thereby improving the correction performance of the correction device for the same type of personnel and / or in the same region, and enriching the intelligent function of the correction device.

[0097] Embodiment Two

[0098] Please refer to Figure 2 , Figure 2 is another flowchart of the method for correcting the parameter for controlling the smart air conditioning device disclosed in the embodiment of the application. Wherein, Figure 2 The method described can be applied to the correction device, which can include a smart air conditioning device or a server corresponding to the smart air conditioning device, wherein the correction device can be in communication connection with a user terminal, which includes but is not limited to a smart wearable device (such as a smart sports bracelet) and / or a smart phone (Android phone, iOS phone, etc.). As Figure 2 The method for correcting the parameter for controlling the smart air conditioning device can include the following operations:

[0099] 201. After detecting that the working mode of the smart air conditioning device in the current area has entered a certain target working mode, determine the first working parameter that matches the target working mode. The first working parameter is used to control the operation of the smart air conditioning device.

[0100] 202. Collect parameters that match the current area. Parameters that match the current area include environmental parameters of the current area.

[0101] 203. Based on the collected parameters that match the current area, perform a correction operation on the first working parameter to obtain the second working parameter, which is used to control the operation of the intelligent air conditioning equipment.

[0102] 204. Determine whether feedback information for the smart air conditioning device has been received from the user; if feedback information for the smart air conditioning device has been received, step 205 can be triggered; if no feedback information for the smart air conditioning device has been received, the process ends.

[0103] In this embodiment of the invention, the feedback information may include one or more of the following: temperature feedback, wind speed feedback, and the size and / or direction of the air outlet of the smart air conditioner perceived during the break. The more content included in the user feedback information, the more effective it is in improving the accuracy of the parameters used to control the operation of the smart air conditioner. It should be noted that the time when the user inputs feedback information can be any time after the smart air conditioner enters the target operating mode, or any time after the smart air conditioner exits the target operating mode; this embodiment of the invention does not impose any limitation.

[0104] 205. Based on the feedback information, correct the second working parameter of the target working mode of the intelligent air conditioning equipment to obtain the third working parameter.

[0105] In this embodiment of the invention, the third operating parameter includes the initial operating temperature of the intelligent air conditioning device in the target operating mode, and this initial operating temperature is the initial output temperature of the intelligent air conditioning device when it is subsequently in the target operating mode. Furthermore, the third operating parameter also includes the real-time operating temperature of the intelligent air conditioning device in the target operating mode, and for other related descriptions of the third operating parameter, please refer to the description of the first operating parameter in Embodiment 1.

[0106] In this embodiment of the invention, it should be noted that for the relevant descriptions of steps 201-203, please refer to the detailed description of steps 101-103 in Embodiment 1, and this embodiment of the invention will not repeat them.

[0107] It can be seen that the embodiment of the present application can also correct the parameters for controlling the smart air conditioning device to work again in combination with the feedback of the user for this rest during the working process of the smart air conditioning device in the corresponding working mode or when the smart air conditioning device ends the corresponding working mode, and can obtain more accurate parameters for controlling the smart air conditioning device to work, thereby further providing a more suitable comfortable environment for the user.

[0108] It can be seen that the embodiment of the present application can also correct the parameters for controlling the smart air conditioning device to work again in combination with the feedback of the user for this rest during the working process of the smart air conditioning device in the corresponding working mode or when the smart air conditioning device ends the corresponding working mode, and can obtain more accurate parameters for controlling the smart air conditioning device to work, thereby further providing a more suitable comfortable environment for the user. Figure 2 The described correction method can automatically correct the parameters for controlling the smart air conditioning device to work by the collected parameters such as environmental parameters and physiological parameters of the personnel, and can automatically control the smart air conditioning device to work based on the corrected working parameters, thereby realizing the intelligent control of the smart air conditioning device, and improving the use experience of the user without manually controlling the smart air conditioning device. Even when the user is in a sleep state, a comfortable environment matching the user can also be provided for the user, thereby further providing a more suitable comfortable environment for the user.

[0109] In an optional embodiment, the method can further include the following operations:

[0110] When it is judged that the feedback information for the smart air conditioning device is not received, it is judged whether the personnel has finished resting;

[0111] When it is judged that the personnel has finished resting, it is judged whether the target working mode of the smart air conditioning device needs to be ended;

[0112] When it is judged that the target working mode of the smart air conditioning device needs to be ended, all the parameters collected when the smart air conditioning device is in the target working mode are analyzed to obtain the analysis results of all the parameters;

[0113] According to the analysis results, the second working parameters are corrected to obtain fourth working parameters, and the fourth working parameters are the parameters for controlling the smart air conditioning device to work when the smart air conditioning device is in the target working mode subsequently.

[0114] In this optional embodiment, the fourth operating parameter includes at least one duration segment and operating parameters for each duration segment. The operating parameters for each duration segment include one or more combinations of operating temperature, operating wind speed, and air outlet mode. When the intelligent air conditioning device is in the target operating mode, all duration segments are sequentially connected from morning to night to form the operating duration of the target operating mode. The air outlet mode for each duration segment is the pattern formed by the movement of the air guide vane and / or the front panel of the intelligent air conditioning device within that duration segment. The air outlet mode of the intelligent air conditioning device includes one of a horizontal air outlet mode, an up-and-down air outlet mode, and a full-area airflow (all-around airflow) mode. The movement of the air guide vane and the front panel of the intelligent air conditioning device both include moving and / or rotating, and the movement of the air guide vane and the front panel of the intelligent air conditioning device both include one of upward movement, downward movement, forward movement, and backward movement.

[0115] In this optional embodiment, if it is determined that the personnel have not finished resting, the above-mentioned operation of determining whether the personnel have finished resting is continued.

[0116] As can be seen, this optional embodiment can, after determining that no user feedback information has been received, further determine that the user has finished resting, and then, in conjunction with the analysis results corresponding to the parameters collected during this rest, further correct the parameters used to control the operation of the smart air conditioning device that have already been corrected during the user's rest, so that the smart air conditioning device can then directly operate with the corrected parameters, providing the corresponding user with a more suitable and comfortable environment.

[0117] The following example illustrates this using the scenario of user Xiaoming lying in bed asleep:

[0118] like Figure 6 As shown, Figure 6 This is a schematic diagram of a scenario according to an embodiment of the present invention, such as... Figure 6As shown, when it is detected that Xiaoming is in a sleep state, the working mode of the intelligent air conditioning device in Xiaoming's room automatically enters the sleep working mode A matched with Xiaoming to work, and real-time collection is performed on the humidity, temperature and other environmental parameters in Xiaoming's room, the body temperature, respiratory rate and other physiological parameters of Xiaoming, and the fact that Xiaoming lies flat on the bed without a quilt. If the sleep working mode of the intelligent air conditioning device is in the deep sleep stage (4:00-6:00) of Xiaoming at this time, and the working temperature of the intelligent air conditioning device corresponding to the deep sleep stage is 28.5℃, but it is detected that the body temperature of Xiaoming is 37.5℃ and a lot of sweat is excreted, the working temperature of the intelligent air conditioning device in the deep sleep stage of Xiaoming is automatically adjusted to 28℃, and the corresponding parameters in Xiaoming's room are continuously monitored. If Xiaoming wakes up and the intelligent air conditioning device ends the sleep working mode A corresponding to Xiaoming, and says that he does not like the wind port to be always directed to himself in the middle of the night, the temperature corresponding to the deep sleep stage and the wind port mode included in the sleep working mode corresponding to Xiaoming are further adjusted, that is, the temperature of the intelligent air conditioning device in the sleep working mode is lowered and the wind port of the intelligent air conditioning device is adjusted not to be directed to the bed. And the sleep working mode matched with Xiaoming after the adjustment is further synchronized to Xiaohui who is of the same age as Xiaoming, likes not to cover a quilt, has good physical fitness and is of the same age.

[0119] Embodiment three

[0120] Please refer to Figure 3 , Figure 3 is a structural schematic diagram of a parameter correction device for controlling the working of an intelligent air conditioning device. As shown, Figure 3 The device described can include an intelligent air conditioning device or a server corresponding to the intelligent air conditioning device, wherein the correction device can be in communication connection with a user terminal, wherein the user terminal includes but is not limited to an intelligent wearable device (such as an intelligent sports bracelet, etc.) and / or a smart phone (an Android phone, an iOS phone, etc.). As Figure 3 The device can include:

[0121] The determination module 301 is configured to determine a first working parameter matched with a target working mode of the intelligent air conditioning device in the current area after detecting that the target working mode is entered.

[0122] The collection module 302 is configured to collect parameters matched with the current area, and the parameters matched with the current area include environmental parameters in the current area.

[0123] The correction module 303 is configured to perform a correction operation on the first working parameter according to the collected parameters matched with the current area to obtain a second working parameter, and the second working parameter is used to control the working of the intelligent air conditioning device.

[0124] As can be seen, the embodiments Figure 3The described correction device can automatically correct the parameters for controlling the working of the intelligent air conditioning equipment according to the collected parameters such as environmental parameters, physiological parameters of the personnel, and the like, and automatically control the working of the intelligent air conditioning equipment based on the corrected working parameters, so as to realize the intelligent control of the intelligent air conditioning equipment, without the manual control of the intelligent air conditioning equipment by the user, and even when the user is in a sleep state, the user can also be provided with a comfortable environment matching the user, and the use experience of the user is improved.

[0125] In an optional embodiment, the collection module 302 is further configured to collect parameters corresponding to the personnel in the rest state in the current area, and the parameters corresponding to the personnel include one or a combination of the attribute parameters of the personnel, the physiological parameters of the personnel, and the rest parameters corresponding to the personnel.

[0126] The correction module 303 corrects the first working parameter according to the collected parameters matching the current area to obtain the second working parameter.

[0127] The correction module 303 corrects the first working parameter according to the collected parameters matching the current area to obtain the second working parameter.

[0128] In the optional embodiment, the rest parameters corresponding to the personnel include parameters corresponding to the articles used by the personnel in the rest process and / or the sleeping posture of the personnel, the articles used by the personnel in the rest process include a quilt and / or a cushion, and the parameters corresponding to the articles used by the personnel in the rest process include at least one of the contact area between the articles used by the personnel in the rest process and the personnel, the thickness of the articles, the type of the articles, the material of the articles, and the air tightness of the articles. The sleeping posture of the personnel includes at least one of lying flat, lying on the side facing the intelligent air conditioning equipment, and lying on the side away from the intelligent air conditioning equipment. Further, the sleeping posture of the personnel also includes the turning-over situation. The attribute parameters of the personnel include gender and / or age. The physiological parameters of the personnel include at least one of the constitution situation, the metabolism situation, the blood pressure situation, the body temperature situation, the expression situation, and the heart rate situation. When the gender of the personnel is female, the physiological parameters of the personnel further include at least one of the physiological period, the postpartum recovery period, and the pregnancy. Further, the parameters corresponding to the personnel further include the distance value between the personnel and the intelligent air conditioning equipment. The more parameters corresponding to the personnel, the more beneficial to improve the correction accuracy of the parameters for controlling the working of the intelligent air conditioning equipment, and the working accuracy of the intelligent air conditioning equipment can be further improved, so as to further provide a more accurate comfortable environment for the user.

[0129] It can be seen that the implementation Figure 3The described correction device can also correct the parameter for controlling the working of the intelligent air conditioning device by combining the parameter of the user in the current area, such as the physiological parameter of the user, with the environmental parameter of the current area, can improve the correction accuracy and reliability of the parameter for controlling the working of the intelligent air conditioning device, thereby improving the working accuracy of the intelligent air conditioning device, and further providing a comfortable environment matched for the user.

[0130] In another optional embodiment, as shown in Figure 4 The device can further include:

[0131] The judgment module 304 is configured to judge whether the feedback information input by the person for the intelligent air conditioning device is received.

[0132] The correction module 303 is further configured to correct the second working parameter of the target working mode of the intelligent air conditioning device according to the feedback information to obtain a third working parameter when the judgment module 304 judges that the feedback information for the intelligent air conditioning device is received.

[0133] In the embodiment of the application, the third working parameter includes the starting working temperature of the intelligent air conditioning device in the target working mode, and the starting working temperature is the starting output temperature of the intelligent air conditioning device when the intelligent air conditioning device is subsequently in the target working mode

[0134] It can be seen that the implementation Figure 4 The described correction device can correct the parameter for controlling the working of the intelligent air conditioning device again by combining the feedback of the user for this rest when the intelligent air conditioning device works in the corresponding working mode or when the intelligent air conditioning device ends the corresponding working mode, can obtain more accurate parameters for controlling the working of the intelligent air conditioning device, and further provide a more comfortable environment for the user.

[0135] In yet another optional embodiment, as shown in Figure 4 The judgment module 304 is further configured to judge whether the feedback information input by the person for the intelligent air conditioning device is received.

[0136] The judgment module 304 is further configured to judge whether the feedback information input by the person for the intelligent air conditioning device is received.

[0137] As shown in Figure 4 The device can further include:

[0138] The analysis module 305 is configured to analyze all parameters collected when the intelligent air conditioning device is in the target working mode when the judgment module 304 judges that the target working mode of the intelligent air conditioning device needs to be ended, and obtain an analysis result of all parameters.

[0139] The correction module 303 is further configured to perform a correction operation on the second working parameter according to the analysis result, to obtain a fourth working parameter, which is a parameter used for controlling the smart air conditioning device to work when the smart air conditioning device is in the target working mode subsequently.

[0140] In the optional embodiment, the fourth working parameter includes at least one time length section and a working parameter of each time length section, and the working parameter of each time length section includes one or more combinations of a working temperature of each time length section, a working wind speed of each time length section, and an air outlet mode of each time length section; when the smart air conditioning device is in the target working mode, all the time length sections are sequentially connected in time from early to late to form a working time length of the target working mode.

[0141] It can be seen that, in the embodiment, Figure 4 The described correction device can further correct the parameter used for controlling the smart air conditioning device to work after the user ends the rest, in combination with the analysis result of the parameter collected during the rest, so that the smart air conditioning device works directly with the parameter corrected again subsequently, to provide a more comfortable environment for the corresponding user.

[0142] In yet another optional embodiment, as Figure 4 The device can further include:

[0143] The screening module 306 is configured to determine identification information corresponding to the first working parameter according to the parameter matched with the current area, and screen at least one fifth working parameter matched with the identification information from the determined working parameter database.

[0144] The updating module 307 is configured to update all the fifth working parameters based on the second working parameter, to obtain a sixth working parameter, and each sixth working parameter is used for controlling the corresponding smart air conditioning device to work.

[0145] It can be seen that, in the embodiment, Figure 4 The described correction device can further correct the parameter used for controlling the smart air conditioning device to work after the user ends the rest, in combination with the analysis result of the parameter collected during the rest, so that the smart air conditioning device works directly with the parameter corrected again subsequently, to provide a more comfortable environment for the corresponding user.

[0146] Embodiment four

[0147] Please refer to Figure 5 , Figure 5is a structural schematic view of another kind of correction device for controlling parameters of working of intelligent air conditioning equipment disclosed by the embodiment of the present application. Wherein, Figure 5 The described device can include the intelligent air conditioning equipment or the server corresponding to the intelligent air conditioning equipment, wherein the correction device can be in communication connection with a user terminal, wherein the user terminal includes but is not limited to a smart wearable device (such as a smart sports bracelet and the like) and / or a smart phone (an Android phone, an iOS phone and the like), and the embodiment of the present application is not limited. As shown in the figure, Figure 5 The device can include:

[0148] The memory 401 stores executable program codes;

[0149] The processor 402 is coupled with the memory 401;

[0150] Further, the input interface 403 and the output interface 404 coupled with the processor 402 can be further included;

[0151] The processor 402 calls the executable program codes stored in the memory 401 to execute part or all of the steps of the correction method for controlling parameters of working of intelligent air conditioning equipment disclosed by the embodiment one or the embodiment two.

[0152] Embodiment five

[0153] The computer storage medium disclosed by the embodiment of the present application stores computer instructions, and when the computer instructions are called, the steps of the correction method for controlling parameters of working of intelligent air conditioning equipment disclosed by the embodiment one or the embodiment two are executed.

[0154] The device embodiment described above is only schematic, wherein the modules described as separate components can or can not be physically separated, and the components displayed as modules can or can not be physical modules, that is, they can be located in one place, or they can be distributed on multiple network modules. According to actual needs, part or all of the modules can be selected to achieve the purpose of the embodiment scheme. Those skilled in the art can understand and implement without creative labor.

[0155] Those skilled in the art can clearly understand the implementation of the various embodiments by means of software and necessary general hardware platforms through the above specific description of the embodiments, and of course, the embodiments can also be implemented by hardware. Based on such understanding, the above technical solutions, essentially or in the sense of contribution to the prior art, can be embodied in the form of a software product. The computer software product can be stored in a computer readable storage medium, which includes a Read-Only Memory (ROM), a Random Access Memory (RAM), a Programmable Read-only Memory (PROM), an Erasable Programmable Read Only Memory (EPROM), a One-time Programmable Read-Only Memory (OTPROM), an Electrically-Erasable Programmable Read-Only Memory (EEPROM), a Compact Disc Read-Only Memory (CD-ROM), or other optical disk storage, a magnetic disk storage, a magnetic tape storage, or any other medium that can be used to carry or store data in a computer readable manner.

[0156] Finally, it should be noted that: the disclosed method and device for controlling the correction of the parameters of the intelligent air conditioning equipment disclosed by the embodiments of the present application are only the preferred embodiments of the present application, and are used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A method for correcting parameters used to control the operation of intelligent air conditioning equipment, characterized in that, The method includes: After detecting that the working mode of the smart air conditioning device in the current area has entered a certain target working mode, a first working parameter matching the target working mode is determined. The first working parameter is used to control the operation of the smart air conditioning device. Collect parameters that match the current region, including environmental parameters of the current region; The first working parameter is corrected based on the collected parameters that match the current area to obtain the second working parameter, which is used to control the operation of the intelligent air conditioning device. The method further includes: The identification information corresponding to the first working parameter is determined based on the parameters matching the current region, and at least one fifth working parameter matching the identification information is filtered from the determined working parameter database; wherein, each identification information is pre-associated with the corresponding parameter for controlling the operation of the smart air conditioning device, wherein the identification information includes at least one of the following: region identification, physiological parameter identification, apartment type identification, diet identification, family composition identification, smart device usage habit identification, and climate identification; Based on the second working parameter, all the fifth working parameters are updated to obtain the sixth working parameter. Each sixth working parameter is used to control the operation of the intelligent air conditioning device corresponding to each sixth working parameter.

2. The method for correcting parameters for controlling the operation of intelligent air conditioning equipment according to claim 1, characterized in that, The method further includes: Collect parameters corresponding to the personnel in the current area who are in a resting state. The parameters corresponding to the personnel include one or more combinations of the personnel's attribute parameters, the personnel's physiological parameters, and the personnel's rest parameters. The step of performing a correction operation on the first working parameters based on the collected parameters matching the current region to obtain the second working parameters includes: The first working parameters are corrected based on the parameters that match the current area and the parameters corresponding to the personnel, to obtain the second working parameters.

3. The method for correcting parameters for controlling the operation of intelligent air conditioning equipment according to claim 2, characterized in that, The rest parameters corresponding to the personnel include the parameters of the items used by the personnel during the rest process and / or the sleeping posture of the personnel. The items used by the personnel during the rest process include blankets and / or mats. The parameters corresponding to the items used by the personnel during the rest process include at least one of the following: the contact area between the items used by the personnel and the personnel, the thickness of the items, the type of items, the material of the items, and the airtightness of the items.

4. The method for correcting parameters for controlling the operation of intelligent air conditioning equipment according to any one of claims 1-3, characterized in that, The method further includes: Determine whether feedback information regarding the intelligent air conditioning device has been received from personnel input; When it is determined that feedback information for the smart air conditioner has been received, the second operating parameter of the target operating mode of the smart air conditioner is corrected according to the feedback information to obtain a third operating parameter. The third operating parameter includes the starting operating temperature of the target operating mode of the smart air conditioner, and the starting operating temperature is the starting output temperature of the smart air conditioner when the smart air conditioner is subsequently in the target operating mode.

5. The method for correcting parameters for controlling the operation of intelligent air conditioning equipment according to claim 4, characterized in that, The method further includes: When it is determined that no feedback information has been received for the smart air conditioning device, it is determined whether the person has finished resting; When it is determined that the person has finished resting, determine whether it is necessary to end the target working mode of the intelligent air conditioning device; When it is determined that the target working mode of the smart air conditioner needs to be terminated, all parameters collected when the smart air conditioner is working in the target working mode are analyzed to obtain the analysis results of all parameters. Based on the analysis results, the second working parameter is modified to obtain the fourth working parameter, which is the parameter used to control the operation of the intelligent air conditioning device when the intelligent air conditioning device is subsequently in the target working mode.

6. The method for correcting parameters for controlling the operation of intelligent air conditioning equipment according to claim 5, characterized in that, The fourth operating parameter includes at least one duration segment and operating parameters for each duration segment. The operating parameters for each duration segment include one or more combinations of operating temperature, operating wind speed, and air outlet mode. When the intelligent air conditioning device is in the target operating mode, all the duration segments are connected sequentially from morning to night to form the operating duration of the target operating mode.

7. A parameter correction device for controlling the operation of intelligent air conditioning equipment, characterized in that, The apparatus is used to implement the parameter correction method for controlling the operation of an intelligent air conditioning device as described in any one of claims 1-6, the apparatus comprising: The determining module is used to determine a first working parameter that matches the target working mode after detecting that the working mode of the smart air conditioning device in the current area has entered the target working mode. The first working parameter is used to control the operation of the smart air conditioning device. The acquisition module is used to acquire parameters that match the current region, including environmental parameters of the current region. The correction module is used to perform a correction operation on the first working parameter based on the collected parameters that match the current area to obtain a second working parameter, which is used to control the operation of the intelligent air conditioning device.

8. A parameter correction device for controlling the operation of intelligent air conditioning equipment, characterized in that, The device includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the parameter correction method for controlling the operation of the intelligent air conditioning device as described in any one of claims 1-6.

9. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the parameter correction method for controlling the operation of an intelligent air conditioning device as described in any one of claims 1-6.

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