Method and apparatus for determining user anthropometric parameters

By collecting and analyzing parameters during the user's rest period, the operating parameters of the air conditioning equipment are dynamically adjusted, solving the problem of users waking up due to heat or cold, realizing intelligent control of the air conditioning equipment, and improving the user's sleep quality and experience.

CN115560440BActive Publication Date: 2026-03-27YUNMI 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
2026-03-27

AI Technical Summary

Technical Problem

Existing air conditioning equipment often causes users to wake up due to being too hot or too cold, affecting sleep quality, and requires manual readjustment.

Method used

By collecting parameters from users during rest, the system uses a human body parameter analysis model to intelligently determine the user's heat distribution and dynamically adjust the operating parameters of the air conditioning equipment, including temperature and fan speed, to achieve intelligent control.

Benefits of technology

It provides a comfortable sleeping environment, enhances the user experience, eliminates the need for manual adjustments, and improves the accuracy of intelligent control and user satisfaction of air conditioning equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of determination method and device of user human parameter, the method includes: the parameter corresponding to personnel of current area being in rest state is collected;Personnel corresponding parameter is input into human parameter analysis model and is analyzed, and the analysis result output by the model is obtained, as the human parameter corresponding when personnel is in rest state;The human parameter corresponding when personnel is in rest state includes the heat that body emits when personnel is in rest state, and the human parameter corresponding when personnel is in rest state is used to determine the parameter of the intelligent air conditioning equipment of current area work parameter.
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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 method and device for determining user body parameters. BACKGROUND

[0002] With the rapid development of science and technology, more and more devices are developing towards intelligence, and intelligent devices are becoming more and more popular and important in life, work, production and other scenarios based on the advantages of convenient and fast operation, time and labor saving, etc., such as air conditioning equipment.

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

[0004] The present application provides a method and device for determining user body parameters, which can intelligently determine the body parameters of the user during rest, such as the heat generated by the body, so as to realize intelligent correction of the working parameters of the intelligent air conditioning equipment, and further realize intelligent control of the intelligent air conditioning equipment, provide a comfortable environment for the user, and be beneficial to improving the user experience.

[0005] In order to solve the above technical problems, the present application discloses a method for determining user body parameters, which comprises:

[0006] When it is detected that a person in a rest state exists in a current area, collecting parameters corresponding to the person;

[0007] inputting the collected parameters corresponding to the person into a determined body parameter analysis model for analysis, and obtaining an analysis result output by the body parameter analysis model as a body parameter corresponding to the person in the rest state;

[0008] The body parameter corresponding to the person in the rest state includes heat emitted by the body of the person in the rest state, and the body parameter corresponding to the person in the rest state is used to determine the parameters for controlling the working of the intelligent air conditioning equipment in the current area.

[0009] As an optional implementation, in the first aspect of the present application, the parameters corresponding to the person include one or more combinations of the environmental parameters of the current area, the attribute parameters of the person, the physiological parameters of the person, and the rest parameters corresponding to the person; the rest parameters corresponding to the person include the parameters corresponding to the articles used by the person during the rest and / or the sleeping posture of the person, the articles used by the person during the rest include a quilt and / or a cushion, and the parameters corresponding to the articles used by the person during the rest include at least one of the contact area between the articles used by the person during the rest and the person, the thickness of the articles, the type of the articles, the material of the articles, and the air tightness of the articles.

[0010] As an optional implementation, in the first aspect of the present application, the method further includes:

[0011] determining whether the feedback information input by the person for the current rest is received;

[0012] when it is determined that the feedback information input by the person is received, analyzing the feedback information to obtain the temperature feeling of the person during the current rest;

[0013] correcting the human body parameters corresponding to the person in the rest state according to the temperature feeling to obtain the corrected human body parameters.

[0014] As an optional implementation, in the first aspect of the present application, after the human body parameters corresponding to the person in the rest state are corrected according to the temperature feeling to obtain the corrected human body parameters, the method further includes:

[0015] correcting the working parameters of the articles used by the person during the rest based on the collected parameters corresponding to the person and the corrected human body parameters to obtain the corrected working parameters;

[0016] wherein the corrected working parameters are used to determine the appropriate working parameters of the intelligent air conditioning device corresponding to the person when the person rests next time, and the appropriate working parameters of the intelligent air conditioning device corresponding to the person include the appropriate working temperature of the intelligent air conditioning device corresponding to the person.

[0017] As an optional implementation, in the first aspect of the present application, before the working parameters of the articles used by the person during the rest are corrected based on the collected parameters corresponding to the person and the corrected human body parameters to obtain the corrected working parameters, the method further includes:

[0018] determining whether the corrected human body parameters meet the determined article working parameter correction requirement;

[0019] When it is judged that the modified human body parameter meets the article working parameter modification requirement, an operation of modifying the working parameter of the article used by the personnel during the rest time based on the collected parameter corresponding to the personnel and the modified human body parameter is triggered to obtain a modified working parameter.

[0020] As an optional implementation, in the first aspect of the present application, the judgment of whether the modified human body parameter meets the determined article working parameter modification requirement comprises:

[0021] judging whether the absolute value of the difference between the modification value of the modified human body parameter and the determined modification value is within the determined modification value range, and when it is judged that the modification value is within the modification value range, it is determined that the modified human body parameter meets the determined article working parameter modification requirement; or,

[0022] determining the modification times of the human body parameter corresponding to the personnel in the rest state, and judging whether the modification times are greater than or equal to the determined modification times threshold, and when it is judged that the modification times are greater than or equal to the modification times threshold, it is determined that the modified human body parameter meets the determined article working parameter modification requirement.

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

[0024] determining the working mode of the intelligent air conditioning device that needs to be modified, and querying the first working parameter matched with the working mode, the first working parameter being used for controlling the working of the intelligent air conditioning device and the first working parameter comprising the working output temperature of the intelligent air conditioning device, the working output temperature of the intelligent air conditioning device comprising the starting output temperature of the intelligent air conditioning device;

[0025] and, after the analysis result output by the human body parameter analysis model is obtained as the human body parameter corresponding to the personnel in the rest state, the method further comprises:

[0026] inputting the collected parameter into the determined parameter modification model for analysis, the target parameter comprising the human body parameter corresponding to the personnel in the rest state, the environmental parameter of the current area, and the first working parameter matched with the working mode;

[0027] obtaining the analysis result output by the parameter modification model as the second working parameter of the intelligent air conditioning device after modification, the second working parameter being used for controlling the working of the intelligent air conditioning device.

[0028] The second aspect of the present application discloses a user human body parameter determination device, which comprises:

[0029] The acquisition module is configured to acquire parameters corresponding to the person when it is detected that the person in the current area is in a resting state;

[0030] The analysis module is configured to analyze the acquired parameters corresponding to the person in the determined human parameter analysis model;

[0031] The acquisition module is configured to acquire the analysis result output by the human parameter analysis model as the human parameter corresponding to the person in the resting state;

[0032] The human parameter corresponding to the person in the resting state includes heat emitted by the body of the person in the resting state, and the human parameter corresponding to the person in the resting state is used to determine a parameter for controlling the operation of the intelligent air conditioning device in the current area.

[0033] As an optional implementation, in the second aspect of the present application, the parameters corresponding to the person include one or more combinations of environmental parameters of the current area, attribute parameters of the person, physiological parameters of the person, and resting parameters of the person; the resting parameters of the person include parameters corresponding to articles used by the person during the resting process and / or a sleeping posture of the person, the articles used by the person during the resting process include a quilt and / or a cushion, and the parameters corresponding to the articles used by the person during the resting process include at least one of a contact area of the articles used by the person during the resting process with the person, a thickness of the articles, a type of the articles, a material of the articles, and air tightness of the articles.

[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 the feedback information input by the person for the current resting is received;

[0036] The analysis module is further configured to analyze the feedback information to obtain a temperature feeling of the person during the current resting process when the judgment module judges that the feedback information input by the person is received.

[0037] The correction module is configured to correct the human parameter corresponding to the person in the resting state according to the temperature feeling to obtain a corrected human parameter.

[0038] As an optional implementation, in the second aspect of the present application, the correction module is further configured to correct the working parameter of the target object based on the collected parameter of the person and the corrected human body parameter, and obtain a corrected working parameter, after the correction module corrects the human body parameter corresponding to the person in the resting state according to the temperature sensation value, to obtain a corrected human body parameter.

[0039] The corrected working parameter is used to determine the appropriate working parameter of the intelligent air conditioning device when the person rests next time, and the appropriate working parameter of the intelligent air conditioning device includes an appropriate working temperature of the intelligent air conditioning device.

[0040] As an optional implementation, in the second aspect of the present application, the judgment module is further configured to judge whether the corrected human body parameter meets the determined requirement for correction of the working parameter of the object, before the correction module corrects the working parameter of the target object based on the collected parameter of the person and the corrected human body parameter, to obtain a corrected working parameter.

[0041] As an optional implementation, in the second aspect of the present application, the judgment module judges whether the corrected human body parameter meets the determined requirement for correction of the working parameter of the object in the following manner:

[0042] whether the absolute value of the difference between the correction value of the corrected human body parameter and the determined correction value is within a determined correction value range, and when it is judged that the correction value range is met, it is determined that the corrected human body parameter meets the determined requirement for correction of the working parameter of the object; or

[0043] determining the number of corrections of the human body parameter corresponding to the person in the resting state, and judging whether the number of corrections is greater than or equal to a determined threshold of the number of corrections, and when it is judged that the number of corrections is greater than or equal to the threshold of the number of corrections, it is determined that the corrected human body parameter meets the determined requirement for correction of the working parameter of the object.

[0044] As an optional implementation, in the second aspect of the present application, the device further comprises:

[0045] a determination module configured to determine the working mode of the intelligent air conditioning device that needs to be corrected;

[0046] The query module is configured to query a first working parameter matching the working mode, the first working parameter being used for controlling the working of the intelligent air conditioning device and the first working parameter comprising a working output temperature of the intelligent air conditioning device, the working output temperature of the intelligent air conditioning device comprising a starting output temperature of the intelligent air conditioning device.

[0047] The analysis module is further configured to, after the acquisition module acquires the analysis result output by the human body parameter analysis model as the human body parameter corresponding to the rest state of the personnel, input the collected parameters into the determined parameter correction model for analysis, the target parameter comprising the human body parameter corresponding to the rest state of the personnel, the environmental parameter of the current area and the first working parameter matching the working mode.

[0048] The acquisition module is further configured to acquire the analysis result output by the parameter correction model as the second working parameter of the intelligent air conditioning device after correction, the second working parameter being used for controlling the working of the intelligent air conditioning device.

[0049] The third aspect of the present application discloses another device for determining a user's human body parameter, and the device comprises:

[0050] A memory storing executable program codes;

[0051] A processor coupled with the memory;

[0052] The processor invokes the executable program codes stored in the memory to execute part or all of the steps of any one of the methods for determining a user's human body parameter disclosed in the first aspect of the present application.

[0053] The fourth aspect of the present application discloses a computer storage medium storing computer instructions, and the computer instructions are configured to execute part or all of the steps of any one of the methods for determining a user's human body parameter disclosed in the first aspect of the present application when invoked.

[0054] Compared with the prior art, the embodiments of the present application have the following beneficial effects:

[0055] In the embodiment of the present application, when it is detected that the current area has a person in a resting state, the corresponding parameters of the person are collected; the collected corresponding parameters of the person are input into the determined human parameter analysis model for analysis, and the analysis result output by the human parameter analysis model is obtained as the corresponding human parameters of the person in the resting state; wherein the corresponding human parameters of the person in the resting state include the heat emitted by the body of the person in the resting state, and the corresponding human parameters of the person in the resting state are used to determine the parameters for controlling the working of the intelligent air conditioning equipment in the current area. It can be seen that the present application can intelligently determine the human parameters of the user in the resting (such as sleep) process, such as the heat generated by the body, by collecting the parameters of the user in the resting process, so as to realize intelligent and dynamic correction of the working parameters of the intelligent air conditioning equipment, and further realize intelligent control of the intelligent air conditioning equipment, provide a comfortable environment for the user, and be beneficial to improving the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0056] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used 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 labor.

[0057] Figure 1 is a flow diagram of a user human parameter determination method disclosed by the embodiment of the present application;

[0058] Figure 2 is a flow diagram of another user human parameter determination method disclosed by the embodiment of the present application;

[0059] Figure 3 is a structure diagram of a user human parameter determination device disclosed by the embodiment of the present application;

[0060] Figure 4 is a structure diagram of another user human parameter determination device disclosed by the embodiment of the present application;

[0061] Figure 5 is a structure diagram of another user human parameter determination device disclosed by the embodiment of the present application;

[0062] Figure 6 is a scene diagram disclosed by the embodiment of the present application. DETAILED DESCRIPTION

[0063] In the following, the technical solutions in the embodiments of the present application will be described clearly and completely with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0064] The terms "first", "second", and the like in the specification and claims of the present application and the above-described drawings are used to distinguish different objects, rather than to describe a particular 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.

[0065] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearance of the phrase in various places in the specification does not necessarily all refer to the same embodiment, nor does it necessarily refer to a separate or alternative embodiment in isolation from other embodiments. It is explicitly and implicitly understood by those skilled in the art that embodiments described herein can be combined with other embodiments.

[0066] The present application discloses a method and device for determining user body parameters, which can intelligently determine user body parameters in the resting process, such as body heat generated, by collecting parameters of the user in the resting process, so as to realize intelligent and dynamic correction of working parameters of intelligent air conditioning equipment, thereby realizing intelligent control of the intelligent air conditioning equipment, providing a comfortable environment for the user, and being beneficial to improving user experience. The following will be described in detail.

[0067] Embodiment one

[0068] Please refer to Figure 1 , Figure 1 is a flowchart of a method for determining user body parameters according to an embodiment of the present application. In this embodiment, Figure 1 The described method can be applied to a determination device, which can include an intelligent air conditioning equipment or a server corresponding to the intelligent air conditioning equipment, wherein the determination 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) and / or a smart phone (an Android phone, an iOS phone, etc.). As shown in Figure 1 The method for determining user body parameters can include the following operations:

[0069] 101、When it is detected that the current area has a person in a resting state, the parameters corresponding to the person are collected.

[0070] 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.

[0071] In the embodiment of the present application, optionally, the parameters corresponding to the person include one or a combination of the following: an environmental parameter of the current area, an attribute parameter of the person, a physiological parameter of the person, and a resting parameter corresponding to the person. The environmental parameter of the current area includes one or a combination of the following: an environmental temperature of the current area, heat emitted by a smart device in the current area, and an environmental humidity of the current area. The resting parameter corresponding to the person includes a parameter corresponding to an article used by the person during the resting process and / or a sleeping posture of the person. The parameter corresponding to the article used by the person during the resting process includes at least one of the following: a contact area between the article and the person, a thickness of the article, a type of the article, a material of the article, and air tightness of the article. The article used by the person during the resting process includes an article capable of emitting heat (such as a smart mattress, a smart electric blanket, etc.) and / or an article incapable of emitting heat (such as a common quilt). The sleeping posture of the person includes one of the following: lying flat, lying on one side facing the smart air conditioning device, and lying on one side away from the smart air conditioning device. Further, the sleeping posture of the person also includes a turning-over situation. The attribute parameter of the person includes one or a combination of the following: gender, age, height, weight, and a medical examination result. The attribute parameter of the person can be input by the person or can be queried from a pre-established database according to an identifier of the person. The physiological parameter of the person includes at least one of the following: a constitution condition, a metabolism condition, a blood pressure condition, a body temperature condition, an expression condition, and a heart rate condition. The physiological parameter of the person can be measured by a corresponding smart wearable device (such as a smart bracelet measuring heart rate) or can be obtained from the database through a pre-established corresponding relationship (such as obtaining a metabolism rate corresponding to the heart rate through the heart rate-metabolism rate). When the gender of the person is female, the physiological parameter of the person further includes one of the following: a physiological period, a postpartum recovery period, and pregnancy. Further, the parameter corresponding to the person further includes a distance value between the person and the smart air conditioning device. The more parameters corresponding to the person, the more conducive to improving the correction accuracy of the working parameter of the smart air conditioning device, and the working accuracy of the smart air conditioning device can be further improved, thereby providing a more accurate comfortable environment for the user.

[0072] In the embodiment of the present application, optionally, the parameters corresponding to the person can be collected in real time or can be collected at intervals of a pre-set time period (such as 2 minutes, etc.), which is not limited in the embodiment of the present application.

[0073] 102. Input the collected parameters corresponding to the personnel into the determined human body parameter analysis model for analysis.

[0074] 103. Obtain the analysis results output by the human body parameter analysis model as the corresponding human body parameters when the person is in a resting state.

[0075] In this embodiment of the invention, optionally, the human body parameters corresponding to a person in a resting state include the heat (heat load) emitted by the person's body when in a resting state, wherein the unit of this heat may include watts (W or W / m^2) and / or joules (J). Furthermore, the human body parameters corresponding to a person in a resting state are used to determine the parameters for controlling the operation of the intelligent air conditioning equipment in the current area. The parameters for determining the operation of the intelligent air conditioning equipment in the current area include the operating output temperature of the intelligent air conditioning equipment. Further, the parameters for determining the operation of the intelligent air conditioning equipment in the current area also include one or more combinations of operating wind speed and air outlet mode. The air outlet mode of the intelligent air conditioning equipment is a mode formed by the movement of the air guide plate and / or the movement of the front panel of the intelligent air conditioning equipment. The air outlet mode of the intelligent air conditioning equipment includes one of a horizontal air outlet mode, an up-and-down air outlet mode, and a full-area airflow (all-around air outlet) mode. The movement of the air guide plate and the movement of the front panel of the intelligent air conditioning equipment both include moving and / or flipping, wherein the movement of the air guide plate and the movement of the front panel of the intelligent air conditioning equipment both include one of upward movement, downward movement, forward movement, and backward movement.

[0076] It is evident that implementation Figure 1 The described method can intelligently determine the user's human body parameters during rest by collecting parameters during the rest process, such as the heat generated by the body. This enables intelligent and dynamic correction of the operating parameters of the intelligent air conditioning equipment, thereby achieving intelligent control of the intelligent air conditioning equipment, providing a comfortable environment for the user, and improving the user experience.

[0077] In an optional embodiment, the method may further include the following steps:

[0078] Collect sample parameters corresponding to training sample personnel with multiple identifiers. The number of training sample personnel for each identifier is greater than or equal to the determined threshold for the number of personnel (e.g., 100), and the number of sample parameters corresponding to each training sample personnel is greater than or equal to the determined threshold for the number of parameters (e.g., 100).

[0079] establishing a correlation between each training sample person and an identity to which the training sample person belongs, and performing a training operation on a basic analysis model (such as a Predicted Mean Vote, PMV model) determined based on the sample parameters corresponding to each training sample person and the correlation between each training sample person and the identity to which the training sample person belongs, to obtain a trained basic analysis model;

[0080] determining the trained parameter analysis model as the human parameter analysis model determined.

[0081] In the optional embodiment, the plurality of identities include, but are not limited to, at least one of an area identity, an environment identity, a person physiological identity, a person attribute identity, and a habit preference identity.

[0082] In the optional embodiment, after obtaining the trained basic analysis model, the method can further include the following steps:

[0083] continuously verifying the trained basic analysis model based on the sample parameters corresponding to the verification sample person of each identity, and continuously determining the accuracy of the verified basic analysis model until the accuracy of the basic analysis model is greater than or equal to the accuracy threshold (such as 95%) determined, and stopping the verification operation on the basic analysis model, and determining the last verified basic analysis model as the human parameter analysis model determined.

[0084] It can be seen that, by training the existing basic analysis model based on the sample parameters corresponding to each training sample person of different identities, the optional embodiment can obtain a model that can be applied to human parameter analysis of a user, thereby facilitating accurate and rapid determination of human parameters of the user based on the model, and further facilitating improvement of the accuracy and efficiency of dynamic correction of working parameters of the intelligent air conditioning device, and rapid and accurate provision of a comfortable environment for the user; and performing a verification operation on the model trained based on the verification data, and stopping the verification operation on the model when the accuracy of the model reaches the set accuracy threshold, which can obtain a more accurate human parameter analysis model, thereby further improving the determination accuracy and efficiency of human parameters of the user.

[0085] In another optional embodiment, the method can further include the following steps:

[0086] determining whether feedback information input by the person for the current rest is received;

[0087] when it is determined that the feedback information input by the person is received, analyzing the feedback information to obtain a temperature feeling of the person during the current rest;

[0088] According to the temperature feeling, the human body parameter of the person in the resting state is corrected to obtain a corrected human body parameter.

[0089] In the optional embodiment, the feedback information can include one or more of the temperature feedback information felt during the current rest, the humidity feedback information felt during the current rest, the wind feedback information felt during the current rest, and the feedback information of the size and / or direction of the air outlet of the intelligent air conditioning device during the current rest. The more the user feedback information includes, the more conducive to improving the correction accuracy of the human body parameter of the user. It should be noted that the time for the user to input the feedback information can include any time after the intelligent air conditioning device enters the corresponding working mode, or any time after the intelligent air conditioning device ends the corresponding working mode, and the present embodiment is not limited. The working mode of the intelligent air conditioning device can include a sleep working mode or a non-sleep working mode, wherein different working modes correspond to different working parameters.

[0090] It can be seen that, by correcting the human body parameter of the user again in combination with the feedback of the user for the current rest during the working of the intelligent air conditioning device in the corresponding working mode or when the intelligent air conditioning device ends the corresponding working mode, the determination accuracy of the human body parameter of the user can be improved, thereby improving the correction accuracy of the working parameter of the intelligent air conditioning device, and further providing a more suitable comfortable environment for the user.

[0091] In yet another optional embodiment, after the human body parameter of the person in the resting state is corrected according to the temperature feeling value to obtain a corrected human body parameter, the method can further include the following steps:

[0092] Based on the collected parameters of the person and the corrected human body parameter, the working parameter of the article used by the person during the rest is corrected to obtain a corrected working parameter.

[0093] The corrected working parameter is used to determine the corresponding suitable working parameter of the intelligent air conditioning device when the person rests next time, and the corresponding suitable working parameter of the intelligent air conditioning device includes a corresponding suitable working temperature of the intelligent air conditioning device.

[0094] In the optional embodiment, the calculation formula of the corrected working parameter is as follows:

[0095]

[0096] t a,c = f (Δ c , RH%, …) ;

[0097]

[0098] PMVc = PMV x ± Φ

[0099] wherein ε i+1 is the above-mentioned modified parameter, PMV x is an initial evaluation index of the human body thermal response of the user; PMV c is a modified evaluation index of the human body thermal response of the user; Φ is a correction coefficient of the evaluation index of the human body thermal response of the user, and Φ = [-0.1, 0.1], for example: if the user feedbacks that it is too cold, then Φ = -0.1; if the user feedbacks that it is too hot, then Φ = ±0.1; Δc is the heat emitted by the user in a resting state after modification; λ is a constant and its size depends on the human body metabolic rate of the user, M is the human body metabolic rate of the user; RH% is the relative humidity of the environment of the current area; t a,c is the modified working temperature; α is the sleeping posture of the user; Δ is the heat emitted by the user in a resting state; A is the first heat loss of the user, and the first heat loss is generated based on the breathing of the user; D is the second heat loss of the user, and the second heat loss is generated based on the evaporation of the water vapor on the skin of the user; C is the third heat loss of the user, and the third heat loss is generated based on the heat conduction of the user to the article used by the user in the resting process; Rt is the initial thermal resistance value of the article used by the user in the resting process, wherein the initial thermal resistance value of the article is estimated according to at least one of the thickness of the article, the type of the article, the material of the article, the air tightness of the article, the contact area (or coverage rate 0-100%, wherein 100% means that the whole body of the user is under the article, and 95% means that only the head of the user is exposed) of the article with the user in the resting process, and the dressing of the user in the resting process, or collected based on the heat-sensitive sensor arranged on or around the article.

[0100] It can be seen that, in the optional embodiment, after the user's human body parameters are obtained, the working parameters, such as the thermal resistance value, of the article contacted by the user in the resting process are further dynamically corrected by the user's human body parameters, so as to provide a more comfortable environment temperature for the user and improve the resting quality of the user.

[0101] In still another optional embodiment, before the working parameters of the target article are corrected based on the modified human body parameters to obtain the modified working parameters, the method can further include the following steps:

[0102] determining whether the modified human body parameters meet the determined article working parameter correction requirement;

[0103] when it is determined that the modified human body parameters meet the article working parameter correction requirement, triggering the operation of correcting the working parameters of the target article based on the modified human body parameters to obtain the modified working parameters.

[0104] In the optional embodiment, when it is judged that the corrected human body parameter does not meet the requirement of the working parameter correction of the article, the above-mentioned correction operation of the human body parameter of the user is continuously performed.

[0105] It can be seen that, in the optional embodiment, after the human body parameter of the user is corrected, the working parameter of the article capable of controllably emitting heat, which is contacted by the user during the rest, is further corrected after it is judged that the corrected human body parameter meets the requirement, so that the correction accuracy of the working parameter of the article capable of controllably emitting heat is improved, thereby the accuracy of providing a more comfortable environment temperature for the user is improved, and the rest quality of the user is improved.

[0106] In still another optional embodiment, judging whether the corrected human body parameter meets the determined requirement of the working parameter correction of the article comprises:

[0107] judging whether the absolute value of the difference between the correction value of the corrected human body parameter and the determined correction value is within the determined correction value range (such as 0-0.3), and when it is judged that the absolute value is within the correction value range, it is determined that the corrected human body parameter meets the determined requirement of the working parameter correction of the article; or

[0108] determining the correction times of the human body parameter corresponding to the rest state of the user, and judging whether the correction times are greater than or equal to the determined correction times threshold (such as 6 times), and when it is judged that the correction times are greater than or equal to the correction times threshold, it is determined that the corrected human body parameter meets the determined requirement of the working parameter correction of the article.

[0109] It can be seen that, in the optional embodiment, the user's human body parameter meeting the correction requirement can be determined in multiple ways when it is judged that the size of the corrected human body parameter tends to the preset size or when it is judged that the correction times of the human body parameter reach the preset times, so that the determination accuracy and efficiency of the user's human body parameter meeting the correction requirement are improved, thereby the correction accuracy of the working parameter of the article capable of controllably emitting heat is further improved.

[0110] Embodiment Two

[0111] Please refer to Figure 2 , Figure 2 is a flow diagram of another method for determining a user's human body parameter disclosed in the embodiments of the present application. In the method, Figure 2 The described method can be applied to a determination device, which can include a smart air conditioning device or a server corresponding to the smart air conditioning device, wherein the determination 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, etc.) and / or a smart phone (an Android phone, an iOS phone, etc.). For example, Figure 2As shown, the user body parameter determination method can include the following operations:

[0112] 201. When it is detected that the current area has a person in a resting state, the corresponding parameters of the person are collected.

[0113] 202. The collected parameters of the person are input into the determined body parameter analysis model for analysis.

[0114] 203. Determine the working mode that needs to be corrected for the intelligent air conditioning device, and query the first working parameter matched with the working mode.

[0115] In the embodiment of the application, optionally, the first working parameter is used to control the working of the intelligent air conditioning device, and the first working parameter includes the working output temperature of the intelligent air conditioning device, which includes the starting output temperature of the intelligent air conditioning device. Further, the working output temperature of the intelligent air conditioning device also includes the output temperature of each working time length segment of the intelligent air conditioning device. Still further, the first working parameter further includes the working air speed and / or air outlet mode of the intelligent air conditioning device and / or the working exhaust parameter of the intelligent 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 length segment, and each working time length segment is sequentially connected to form a time length that is the working time length of the corresponding working mode of the intelligent air conditioning device, which is also the resting time length of the determined person. Wherein each working time length segment is a resting time length segment (such as a sleep time length segment) corresponding to the person, for example: the working mode of the intelligent air conditioning device includes four working time length segments and the starting time is 10:00 pm of the current day to 6:00 am of the next day, the first working time length segment is 10:00 pm of the current day to 11:00 pm of the current day, the second working time length segment is 11:00 pm of the current day to 3:00 am of the next day, the third working time length segment is 3:00 am of the next day to 5:00 am of the next day, and the fourth working time length segment is 5:00 am of the next day to 6:00 am of the next day. At this time, the resting time length segment can also be corrected according to the collected parameters. Still further, the plurality of sub-working parameters and the working time length segment corresponding to 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 output temperature of the intelligent air conditioning device; or in a digital form. Still further, the sub-working parameters corresponding to each time length segment in all time length segments have a corresponding proportional relationship in sequence, for example: the temperature of the first working time length segment is 25℃, the temperature of the second working time length segment is 1.1 times the temperature of the first working time length segment, i.e. the temperature of the second working time length segment is 27.5℃, the temperature of the third working time length segment is 1.02 times the temperature of the first working time length segment, i.e. the temperature of the second working time length segment is 28.05℃.

[0116] It should be noted that the sequence of steps 203 and steps 201, 202 is not limited, that is, step 203 can occur simultaneously with steps 201, 202, or before steps 201, 202.

[0117] 204, obtaining the analysis result output by the human parameter analysis model as the human parameter corresponding to the rest state of the personnel.

[0118] 205, inputting the collected parameters into the determined parameter correction model for analysis, the target parameters including the human parameter corresponding to the rest state of the personnel, the environmental parameter of the current area, and the first working parameter matched with the working mode.

[0119] 206, obtaining the analysis result output by the parameter correction model as the second working parameter of the intelligent air conditioning device after correction, and the second working parameter is used to control the working of the intelligent air conditioning device.

[0120] In the embodiment of the present application, it should be noted that the related description of steps 201, 202 and 204 is described in detail in the embodiment one for steps 101-103, and the embodiment of the present application will not be repeated.

[0121] It can be seen that in the embodiment of the present application, after obtaining the human parameter of the user, the working parameter corresponding to the current working mode of the intelligent air conditioning device is dynamically corrected by further combining the environmental parameter of the user, and the working of the intelligent air conditioning device is automatically controlled based on the corrected working parameter, which can realize the intelligent control of the intelligent air conditioning device, without the need for the user to manually control the intelligent air conditioning device, even in the sleep state of the user, which can also provide a comfortable environment matched with the user, and improve the user experience.

[0122] It can be seen that the described method can intelligently determine the human parameter of the user in the rest process by collecting the parameter of the user in the rest process, such as the heat generated by the body, so as to realize the intelligent and dynamic correction of the working parameter of the intelligent air conditioning device, and then realize the intelligent control of the intelligent air conditioning device, provide a comfortable environment for the user, and improve the user experience. Figure 2

[0123] In an optional embodiment, the method can further include the following steps:

[0124] ​Based on the parameters that match the current region, determine the identification information corresponding to the first working parameter, and filter at least one third working parameter that matches the identification information from the determined working parameter database;

[0125] All third working parameters are updated based on the second working parameters to obtain the fourth working parameters. Each sixth working parameter is used to control the operation of the intelligent air conditioning device corresponding to each fourth working parameter.

[0126] In this optional embodiment, each identification information may be pre-associated with the corresponding parameters used to control the operation of the smart air conditioning device. The identification information may include at least one of the following: region identification, physiological parameter identification, apartment type identification, dietary identification, family composition identification, smart device usage habit identification, and climate identification. The more content included in the identification information, the better the association between the identification and the parameters, thereby further improving the accuracy and reliability of parameter correction for users with the same identification (type) to control their smart air conditioning devices.

[0127] For example, the corrected parameters for controlling the smart air conditioner in Xiaohong's room are parameter set A, which is the parameter set corresponding to Xiaohong's resting state. Xiaohong lives in Qingshan Community and is a first-year junior high school student who has a cold and feels cold. At the same time, there are also two other first-year junior high school students in Qingshan Community, Xiaolan and Xiaomei, who also have colds and feel cold. Based on parameter set A, the parameters for controlling the smart air conditioner in Xiaolan and Xiaomei's resting mode are also set.

[0128] As can be seen, after the optional embodiment corrects the parameters for controlling the operation of the smart air conditioning equipment in the current area for the personnel in the current area, it further updates the operating parameters of the corresponding smart air conditioning equipment in the same mode for the same type of personnel and / or the same area. This can improve the correction efficiency of the smart air conditioning equipment for the same type of personnel and / or the same area, thereby improving the correction performance of the correction device for the same type of personnel and / or the same area and enriching the intelligent functions of the correction device.

[0129] The following example illustrates this using the scenario of user Xiaoming lying in bed asleep:

[0130] 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 environmental parameters such as the humidity 70% and the temperature 30℃ in Xiaoming's room, the physiological parameters such as Xiaoming's body temperature 26.9℃ and the respiratory rate 28 / minute, and the fact that Xiaoming lies on the bed without a quilt and the type of the mattress is cotton and hemp with a thickness of 10cm and good permeability are automatically collected, the collected parameters are automatically input into the human parameter analysis model for analysis, and it is obtained that the heat emitted by Xiaoming in the rest state is 115J. If Xiaoming wakes up and the intelligent air conditioning device ends the sleep working mode A corresponding to Xiaoming, it is said that it is cold at midnight, the heat emitted by Xiaoming in the rest state is corrected to 100J, and the thermal resistance value of the mattress is also corrected. If the initial thermal resistance value of the mattress is 10K / W, the thermal resistance value of the corrected mattress is 8K / W, and the temperature at which the intelligent air conditioning device is started next time can be 25℃. Further, the temperature corresponding to the sleep working mode of Xiaoming and the air outlet mode are corrected, that is, the temperature of the intelligent air conditioning device in the sleep working mode is increased, and the air outlet of the intelligent air conditioning device is adjusted not to face the bed. Further, the corrected sleep working mode of Xiaoming is 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.

[0131] Embodiment Three

[0132] Please refer to Figure 3 , Figure 3 is a structural schematic diagram of a user human parameter determination device disclosed by the embodiment of the present application. Wherein, Figure 3 The device described can include an intelligent air conditioning device or a server corresponding to the intelligent air conditioning device, wherein the determination 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:

[0133] The collection module 301 is configured to collect parameters corresponding to a person when it is detected that the person in a current area is in a rest state.

[0134] The analysis module 302 is configured to input the collected parameters corresponding to the person into a human parameter analysis model determined to analyze.

[0135] The acquisition module 303 is configured to acquire an analysis result output by the human parameter analysis model as a human parameter corresponding to the person in the rest state.

[0136] In the embodiment of the present application, the human parameter corresponding to the person in the rest state includes the heat emitted by the person in the rest state, and the human parameter corresponding to the person in the rest state is used to determine the parameter for controlling the working of the intelligent air conditioning device in the current area.

[0137] In the embodiment of the present application, optionally, the parameters corresponding to the person include one or a combination of the following: environmental parameters of the current area, attribute parameters of the person, physiological parameters of the person, and rest parameters corresponding to the person. The environmental parameters of the current area include one or a combination of the following: environmental temperature of the current area, heat emitted by the intelligent device in the current area, and environmental humidity of the current area. The rest parameters corresponding to the person include the following: parameters corresponding to the article used by the person during the rest and / or the sleeping posture of the person. The parameters corresponding to the article used by the person during the rest include at least one of the following: contact area of the article used by the person during the rest and the person, thickness of the article, type of the article, material of the article, and air tightness of the article. The article used by the person during the rest includes a quilt and / or a cushion. The sleeping posture of the person includes one of the following: 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 the turning-over situation. The attribute parameters of the person include one or a combination of the following: gender, age, height, weight, and physical examination. The attribute parameters of the person can be input by the person or can be queried from a pre-established database according to the identification information of the person. The physiological parameters of the person include at least one of the following: constitution, metabolism, blood pressure, body temperature, expression, and heart rate. The physiological parameters of the person can be measured by a corresponding measuring device, such as a smart bracelet measuring heart rate, or can be obtained from a database through a pre-established corresponding relationship, such as obtaining the metabolic rate corresponding to the heart rate through the heart rate-metabolic rate. When the gender of the person is female, the physiological parameters of the person also include one of the following: menstrual period, postpartum recovery period, and pregnancy. Further, the parameters corresponding to the person also include a distance value of the person from the intelligent air conditioning device. The more parameters corresponding to the person, the more conducive to improving the correction accuracy of the working parameters of the intelligent air conditioning device, and the working accuracy of the intelligent air conditioning device can be further improved, thereby providing a more accurate comfortable environment for the user.

[0138] It can be seen that the implementation Figure 3 The described device can intelligently determine the human body parameters of the user during the rest, such as the heat generated by the body, by collecting the parameters of the user during the rest, so as to realize intelligent and dynamic correction of the working parameters of the intelligent air conditioning device, thereby realizing intelligent control of the intelligent air conditioning device, providing a comfortable environment for the user, and improving the user experience.

[0139] In an optional embodiment, as Figure 4 shown, the device further includes:

[0140] The judgment module 304 is configured to determine whether the feedback information input by the person for the current rest is received.

[0141] The analysis module 302 is further configured to analyze the feedback information to obtain a temperature sensation of the person during the current rest when the judgment module 304 judges that the feedback information input by the person is received.

[0142] The correction module 305 is configured to correct the human body parameter corresponding to the rest state of the person according to the temperature sensation to obtain a corrected human body parameter.

[0143] It can be seen that, by implementing the above-described apparatus, Figure 4 the described apparatus can improve the determination accuracy of the human body parameter of the user by correcting the human body parameter of the user again in combination with the feedback of the user for the current rest when the smart air conditioning device works in the corresponding working mode or when the smart air conditioning device ends the corresponding working mode, thereby facilitating the correction accuracy of the working parameter of the smart air conditioning device, and further providing a more comfortable environment for the user.

[0144] In another optional embodiment, as shown in Figure 4 the correction module 305 is further configured to correct the working parameter of the target object based on the collected parameter of the person and the corrected human body parameter to obtain a corrected working parameter after correcting the human body parameter corresponding to the rest state of the person according to the temperature sensation value, wherein the corrected working parameter is used to determine the corresponding suitable working parameter of the smart air conditioning device when the person rests next time, and the corresponding suitable working parameter of the smart air conditioning device includes the corresponding suitable working temperature of the smart air conditioning device.

[0145] It can be seen that, by implementing the above-described apparatus, Figure 4 the described apparatus can further correct the working parameter, such as the thermal resistance value, of the object contacted by the user during the rest by the human body parameter of the user after obtaining the human body parameter of the user, thereby providing a more comfortable environment temperature for the user and facilitating the rest quality of the user.

[0146] In yet another optional embodiment, as shown in Figure 4 the judgment module 304 is further configured to judge whether the corrected human body parameter meets the determined correction requirement of the working parameter of the object before the correction module 305 corrects the working parameter of the target object based on the collected parameter of the person and the corrected human body parameter to obtain a corrected working parameter, and trigger the correction module 305 to perform the operation of correcting the working parameter of the target object based on the collected parameter of the person and the corrected human body parameter to obtain a corrected working parameter when it is judged that the corrected human body parameter meets the correction requirement of the working parameter of the object.

[0147] It can be seen that, by implementing the above-described apparatus, Figure 4The described device can further correct the working parameter of the controllable heat-emitting article contacted by the user during the rest after the human body parameter of the user is corrected and after it is judged that the corrected human body parameter meets the requirement, can improve the correction accuracy of the working parameter of the controllable heat-emitting article, and thus improve the accuracy of providing a more comfortable environment temperature for the user, and is beneficial to improving the rest quality of the user.

[0148] In yet another optional embodiment, as shown in Figure 4 The judgment module 304 judges whether the corrected human body parameter meets the determined article working parameter correction requirement in the following manner:

[0149] whether the absolute value of the difference between the correction value of the corrected human body parameter and the determined correction value is within the determined correction value range, and when it is judged that the correction value range is within the correction value range, it is determined that the corrected human body parameter meets the determined article working parameter correction requirement; or,

[0150] determining the correction times of the human body parameter when the person is in the rest state, and judging whether the correction times are greater than or equal to the determined correction times threshold, and when it is judged that the correction times are greater than or equal to the correction times threshold, it is determined that the corrected human body parameter meets the determined article working parameter correction requirement.

[0151] It can be seen that the implementation Figure 4 The described device can further determine that the human body parameter of the user meets the correction requirement in multiple ways when it is judged that the size of the corrected human body parameter tends to be a preset size or when it is judged that the correction times of the human body parameter reach a preset number, can improve the determination accuracy and efficiency of the human body parameter of the user meeting the correction requirement, and thus further improve the correction accuracy of the working parameter of the controllable heat-emitting article.

[0152] In yet another optional embodiment, as shown in Figure 4 The device further comprises:

[0153] The determination module 306 is configured to determine the working mode of the smart air conditioning device that needs to be corrected.

[0154] The query module 307 is configured to query a first working parameter matched with the working mode, the first working parameter being used to control the working of the smart air conditioning device and the first working parameter including a working output temperature of the smart air conditioning device, the working output temperature of the smart air conditioning device including a starting output temperature of the smart air conditioning device.

[0155] The analysis module 302 is further configured to input the collected parameters into the determined parameter correction model for analysis after the acquisition module 303 acquires the analysis result output by the human parameter analysis model as the human body parameter corresponding to the rest state of the personnel, and the target parameters include the human body parameter corresponding to the rest state of the personnel, the environmental parameter of the current region, and the first working parameter matched with the working mode.

[0156] The acquisition module 303 is further configured to acquire the analysis result output by the parameter correction model as the second working parameter of the intelligent air conditioning device after correction, and the second working parameter is used to control the working of the intelligent air conditioning device.

[0157] It can be seen that, by implementing the method and the device described above, Figure 5 After the device described above acquires the human body parameter of the user, the working parameter corresponding to the current working mode of the intelligent air conditioning device is further corrected in combination with the environmental parameter of the user, and the working of the intelligent air conditioning device is automatically controlled based on the corrected working parameter, 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.

[0158] Embodiment Four

[0159] Please refer to Figure 5 , Figure 5 is another structure diagram of the device for determining the human body parameter of the user disclosed by the embodiments of the present application. In the device, Figure 5 The device described above can be integrated in a user terminal, and the embodiments of the present application are not limited thereto. As shown in ​ The device can include:

[0160] a memory 401 in which executable program codes are stored;

[0161] a processor 402 coupled with the memory 401;

[0162] Further, the device can further include an input interface 403 and an output interface 404 coupled with the processor 402;

[0163] The processor 402 calls the executable program codes stored in the memory 401 to execute part or all of the steps of the method for determining the human body parameter of the user disclosed by the embodiments one or two of the present application.

[0164] Embodiment Five

[0165] The embodiment of the present application discloses a computer storage medium, which stores computer instructions, and when the computer instructions are invoked, part or all of the steps of the user body parameter determination method disclosed in the embodiment one or the embodiment two of the present application are executed.

[0166] The above-described device embodiments are only illustrative, 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, i.e., can be located in one place or distributed on multiple network modules. Part or all of the modules can be selected to achieve the purpose of the embodiment scheme according to actual needs. Those skilled in the art can understand and implement without creative labor.

[0167] Through the specific description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be realized by means of software and the necessary general hardware platform, and of course, can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of a software product, and the computer software product can be stored in a computer readable storage medium, including 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 computer readable medium that can be used to carry or store data.

[0168] It should be noted that the disclosed user body parameter determination method and device 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 be modified, or some technical features can be replaced by equivalent ones. The 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 determining user human body parameters, characterized in that, The method includes: When a person is detected to be resting in the current area, the parameters corresponding to that person are collected. The collected parameters corresponding to the person are input into the determined human body parameter analysis model for analysis, and the analysis results output by the human body parameter analysis model are obtained as the human body parameters corresponding to the person when in the resting state. The human body parameters corresponding to the person in the resting state include the heat emitted by the person's body when in the resting state, and the human body parameters corresponding to the person in the resting state are used to determine the parameters for controlling the operation of the intelligent air conditioning equipment in the current area. The method further includes: Determine whether feedback information regarding this break has been received from the person in question; When it is determined that the feedback information input by the person has been received, the feedback information is analyzed to obtain the person's temperature sensation during this rest period; Based on the temperature perception, the human body parameters corresponding to the person's resting state are corrected to obtain the corrected human body parameters; Furthermore, after correcting the human body parameters corresponding to the person's resting state based on the temperature perception to obtain the corrected human body parameters, the method further includes: Based on the collected parameters corresponding to the personnel and the corrected human body parameters, the working parameters of the items used by the personnel during rest are corrected to obtain the corrected working parameters. The revised operating parameters are used to determine the appropriate operating parameters of the smart air conditioning device when the person takes their next break. The appropriate operating parameters of the smart air conditioning device include the appropriate operating temperature of the smart air conditioning device. Furthermore, before correcting the working parameters of the items used by the personnel during rest based on the collected parameters corresponding to the personnel and the corrected human body parameters, and obtaining the corrected working parameters, the method further includes: Determine whether the corrected human body parameters meet the determined correction requirements for the item's working parameters; When it is determined that the corrected human body parameters meet the requirements for correcting the working parameters of the item, the operation of correcting the working parameters of the item used by the person during rest based on the collected parameters corresponding to the person and the corrected human body parameters is triggered to obtain the corrected working parameters. The step of determining whether the corrected human body parameters meet the determined correction requirements for the working parameters of the item includes: Calculate whether the absolute value of the difference between the corrected value of the human body parameter and the determined corrected value falls within the determined corrected value range. If it is determined that the corrected human body parameter meets the determined item working parameter correction requirements; or, The number of corrections to the human body parameters corresponding to the person in the resting state is determined, and it is determined whether the number of corrections is greater than or equal to the determined number of corrections threshold. When it is determined that the number of corrections is greater than or equal to the number of corrections threshold, it is determined that the corrected human body parameters meet the determined item working parameter correction requirements.

2. The method for determining user human body parameters according to claim 1, characterized in that, The parameters corresponding to the personnel include one or more combinations of the environmental parameters of the current area, the attribute parameters of the personnel, the physiological parameters of the personnel, and the rest parameters corresponding to the personnel; the rest parameters corresponding to the personnel include the parameters of the items used by the personnel during rest and / or the sleeping posture of the personnel, the items used by the personnel during rest include blankets and / or mats, and the parameters corresponding to the items used by the personnel during rest 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.

3. The method for determining user human body parameters according to claim 1 or 2, characterized in that, The method further includes: The working mode that the intelligent air conditioning device needs to be corrected is determined, and a first working parameter matching the working mode is queried. The first working parameter is used to control the operation of the intelligent air conditioning device and includes the working output temperature of the intelligent air conditioning device. The working output temperature of the intelligent air conditioning device includes the initial output temperature of the intelligent air conditioning device. Furthermore, after obtaining the analysis results output by the human body parameter analysis model as the human body parameters corresponding to the person in the resting state, the method further includes: The collected parameters are input into the determined parameter correction model for analysis. The collected parameters include human body parameters corresponding to the person in the resting state, environmental parameters of the current area, and a first working parameter that matches the working mode. The analysis results output by the parameter correction model are obtained and used as the corrected second operating parameters of the intelligent air conditioning device. The second operating parameters are used to control the operation of the intelligent air conditioning device.

4. A device for determining user human body parameters, characterized in that, The device is used to implement the method for determining user human body parameters as described in any one of claims 1-3, and the device comprises: The data acquisition module is used to collect parameters corresponding to a person when it is detected that a person is resting in the current area. The analysis module is used to input the collected parameters corresponding to the personnel into the determined human body parameter analysis model for analysis; The acquisition module is used to acquire the analysis results output by the human body parameter analysis model, which are used as the human body parameters corresponding to the person in the resting state. The human body parameters corresponding to the person in the resting state include the heat emitted by the person's body when in the resting state, and the human body parameters corresponding to the person in the resting state are used to determine the parameters for controlling the operation of the intelligent air conditioning equipment in the current area.

5. A device for determining user human body parameters, 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 method for determining user human body parameters as described in any one of claims 1-3.

6. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the method for determining user human body parameters as described in any one of claims 1-3.

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