Intelligent air conditioner regulation and control method and device based on user awakening parameters
By judging the user's body sensation parameters when awake, the system achieves intelligent control of the air conditioner, solving the problems of low accuracy and reliability of existing air conditioner control, and improving the efficiency of body temperature recovery and comfort after the user wakes up.
Patent Information
- Application Number
- CN202410629631.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-20
- Publication Date
- 2025-11-21
AI Technical Summary
Existing intelligent air conditioning control methods have low accuracy and reliability, making it difficult to meet users' comfort needs.
By determining the target user's current awakening sensation parameters and expected recovery sensation parameters, it is judged whether the sensation of warming is met. Based on the judgment result, corresponding air conditioning control operations are performed to make the user feel warm or comfortable.
It improves the accuracy and reliability of air conditioning control, enhances the accuracy and efficiency of body temperature recovery after users wake up, and improves the efficiency of physical vitality recovery after users wake up.
Smart Images

Figure CN120991444A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioner intelligent control, and particularly relates to an air conditioner intelligent control method and device based on user awakening parameters. BACKGROUND
[0002] With the development of artificial intelligence technology and the improvement of people's living standards, the use of traditional air conditioners has become very common, and the functions of air conditioners are becoming more and more intelligent and humanized. However, in actual application, the existing intelligent air conditioner control mode is still mostly realized through a remote controller, for example, a user adjusts the operation mode of an air conditioner through a remote controller, and selects the control function of the air conditioner through the remote controller. The existing intelligent air conditioner control mode can cause the problems of low control accuracy and low control reliability. Therefore, it is particularly important to provide an intelligent air conditioner control mode for improving control accuracy and control reliability. SUMMARY
[0003] The present application provides an air conditioner intelligent control method and device based on user awakening parameters, which can improve the control accuracy and control reliability of an air conditioner.
[0004] To solve the above technical problems, the present application discloses an air conditioner intelligent control method based on user awakening parameters in the first aspect, which comprises the following steps:
[0005] When the intelligent air conditioner is in an operation state and the target user is in an awakening state, the current awakening somatosensory parameter of the target user is determined, and the expected recovery somatosensory parameter of the target user is determined.
[0006] According to the current awakening somatosensory parameter and the expected recovery somatosensory parameter, it is judged whether the target user meets a preset somatosensory warming demand condition.
[0007] When it is judged that the target user meets the somatosensory warming demand condition, the first control parameter of the intelligent air conditioner is determined according to the current awakening somatosensory parameter and the expected recovery somatosensory parameter, and corresponding control operation is performed on the intelligent air conditioner according to the first control parameter, so as to make the target user feel warm.
[0008] When it is judged that the target user does not meet the somatosensory warming demand condition, the comfortable somatosensory parameter of the target user is determined, and the second control parameter of the intelligent air conditioner is determined according to the comfortable somatosensory parameter and the current awakening somatosensory parameter, and corresponding control operation is performed on the intelligent air conditioner according to the second control parameter, so as to make the target user feel comfortable.
[0009] As an optional implementation manner, in the first aspect of the present application, the determination of the expected recovery somatosensory parameter of the target user comprises the following steps:
[0010] determining a sleep-onset somatosensory parameter of the target user before entering the sleep state, and determining the sleep-onset somatosensory parameter as the expected recovery somatosensory parameter of the target user; and / or,
[0011] determining sleep quality information of a target sleep state of the target user in a recent period, and determining the expected recovery somatosensory parameter of the target user according to the sleep quality information; and / or,
[0012] determining activity demand information of the target user after waking up, and determining at least one activity type according to the activity demand information; determining the expected recovery somatosensory parameter of the target user according to physical fitness requirements, environmental temperature requirements, and air volume and direction requirements of each of the activity types; and / or,
[0013] determining behavior state information of the target user after waking up, and determining the expected recovery somatosensory parameter of the target user according to the behavior state information.
[0014] As an optional implementation form, in the first aspect of the present application, the determining the expected recovery somatosensory parameter of the target user according to the behavior state information comprises:
[0015] determining at least one covering object covering the target user according to the behavior state information;
[0016] determining somatosensory insulation conditions of all the covering objects for the target user according to material information and covering areas of each of the covering objects, and superimposed covering relationships corresponding to all the covering objects;
[0017] determining a current posture action of the target user according to the behavior state information, and determining a wake-up property of the target user according to the current posture action, the wake-up property comprising an un-getting-up property or a getting-up property;
[0018] determining the expected recovery somatosensory parameter of the target user according to the somatosensory insulation conditions and the wake-up property.
[0019] As an optional implementation form, in the first aspect of the present application, the determining the expected recovery somatosensory parameter of the target user according to the sleep quality information comprises:
[0020] determining a sleep time of the target user in a deep sleep state according to the sleep quality information, and determining a deep sleep time length and a deep sleep duration of the target user according to the sleep time;
[0021] determining a physical fatigue condition and a mental condition of the target user after waking up according to the deep sleep time length, the deep sleep duration, and a pre-sleep fatigue parameter of the target user.
[0022] determine an activity self-adaptation situation of the target user for the current scene according to the deep sleep duration and the deep duration situation, and determine an environmental adaptation capability of the target user according to the physical fatigue situation and the mental situation;
[0023] determine an expected recovery body feeling parameter of the target user according to the activity self-adaptation situation and the environmental adaptation capability.
[0024] As an optional implementation, in the first aspect of the present application, the judging whether the target user meets the preset body feeling warming requirement condition according to the current wake-up body feeling parameter and the expected recovery body feeling parameter comprises:
[0025] judging whether the current wake-up body feeling parameter is greater than or equal to the expected recovery body feeling parameter;
[0026] when it is judged that the current wake-up body feeling parameter is greater than or equal to the expected recovery body feeling parameter, determining that the target user does not meet the preset body feeling warming requirement condition;
[0027] when it is judged that the current wake-up body feeling parameter is less than the expected recovery body feeling parameter, performing a difference value and absolute value operation on the current wake-up body feeling parameter and the expected recovery body feeling parameter to obtain a current body feeling difference value;
[0028] judging whether the current body feeling difference value is greater than or equal to a preset body feeling difference value threshold;
[0029] when it is judged that the current body feeling difference value is greater than or equal to the body feeling difference value threshold, determining that the target user meets the preset body feeling warming requirement condition;
[0030] when it is judged that the current body feeling difference value is less than the body feeling difference value threshold, determining that the target user does not meet the preset body feeling warming requirement condition.
[0031] As an optional implementation, in the first aspect of the present application, after the determining the comfortable body feeling parameter of the target user, the method further comprises:
[0032] determining a comfortable difference degree according to the comfortable body feeling parameter and the current wake-up body feeling parameter;
[0033] judging whether the comfortable difference degree is greater than or equal to a preset comfortable difference degree threshold;
[0034] When it is judged that the comfort difference degree is greater than or equal to the comfort difference degree threshold, the step of determining the second regulation parameter of the intelligent air conditioner according to the comfort feeling parameter and the current awakening feeling parameter is executed.
[0035] As an optional implementation, in the first aspect of the present application, the method further comprises:
[0036] When it is judged that the comfort difference degree is less than the comfort difference degree threshold, a cause of the comfort difference phenomenon is determined according to the comfort feeling parameter and the current awakening feeling parameter.
[0037] A consequential result of the comfort difference phenomenon is determined according to the comfort feeling parameter, the current awakening feeling parameter and the cause.
[0038] It is judged whether the comfort difference phenomenon meets a preset processing necessary condition according to the cause and the consequential result.
[0039] When it is judged that the comfort difference phenomenon meets the processing necessary condition, the step of determining the second regulation parameter of the intelligent air conditioner according to the comfort feeling parameter and the current awakening feeling parameter is executed.
[0040] The second aspect of the present application discloses an intelligent air conditioner regulation and control device based on user awakening parameters, which comprises:
[0041] A parameter determination module is configured to determine a current awakening feeling parameter of a target user and determine an expected recovery feeling parameter of the target user when the intelligent air conditioner is in a running state and the target user is in an awakening state.
[0042] A judgment module is configured to judge whether the target user meets a preset feeling rewarming demand condition according to the current awakening feeling parameter and the expected recovery feeling parameter.
[0043] A regulation module is configured to determine a first regulation parameter of the intelligent air conditioner according to the current awakening feeling parameter and the expected recovery feeling parameter when the judgment module judges that the target user meets the feeling rewarming demand condition, and perform a corresponding regulation operation on the intelligent air conditioner according to the first regulation parameter to rewarm the feeling of the target user.
[0044] The adjusting module is further configured to: when the judging module judges that the target user does not meet the somatosensory warming demand condition, determine a comfortable somatosensory parameter of the target user; determine a second adjusting parameter of the intelligent air conditioner according to the comfortable somatosensory parameter and the current awakening somatosensory parameter; and perform a corresponding adjusting operation on the intelligent air conditioner according to the second adjusting parameter, so as to make the target user feel comfortable.
[0045] As an optional implementation form, in the second aspect, the parameter determining module determines the expected recovery somatosensory parameter of the target user in the following manner:
[0046] determining a sleep-in somatosensory parameter of the target user before entering the sleep state, and determining the sleep-in somatosensory parameter as the expected recovery somatosensory parameter of the target user; and / or,
[0047] determining sleep quality information of a target sleep state of the target user in recent time, and determining the expected recovery somatosensory parameter of the target user according to the sleep quality information; and / or,
[0048] determining activity demand information of the target user after waking up, and determining at least one activity type according to the activity demand information; determining the expected recovery somatosensory parameter of the target user according to body fitness requirements, environmental temperature requirements and air volume and direction requirements of each activity type; and / or,
[0049] determining behavior state information of the target user after waking up, and determining the expected recovery somatosensory parameter of the target user according to the behavior state information.
[0050] As an optional implementation form, in the second aspect, the parameter determining module determines the expected recovery somatosensory parameter of the target user according to the behavior state information in the following manner:
[0051] determining at least one covering object covering the target user according to the behavior state information;
[0052] determining somatosensory insulation conditions of all the covering objects on the target user according to material information and covering areas of each covering object and superimposed covering relationships corresponding to all the covering objects;
[0053] determining a current posture action of the target user according to the behavior state information, and determining a wake-up property of the target user according to the current posture action, wherein the wake-up property includes an un-getting-up property or a getting-up property;
[0054] determining the expected recovery somatosensory parameter of the target user according to the somatosensory insulation conditions and the wake-up property.
[0055] As an optional implementation, in the second aspect of the present application, the parameter determining module determines the expected recovery physical parameter of the target user according to the sleep quality information in the following manner:
[0056] determining a sleep time when the target user is in deep sleep according to the sleep quality information, and determining a deep sleep duration and a deep sleep continuity of the target user according to the sleep time;
[0057] determining a physical fatigue condition and a mental condition of the target user after waking up according to the deep sleep duration, the deep sleep continuity and a pre-sleep fatigue parameter of the target user;
[0058] determining an activity self-condition of the target user for a current scene according to the deep sleep duration and the deep sleep continuity, and determining an environment adaptation ability of the target user according to the physical fatigue condition and the mental condition;
[0059] determining the expected recovery physical parameter of the target user according to the activity self-condition and the environment adaptation ability.
[0060] As an optional implementation, in the second aspect of the present application, the judging module judges whether the target user meets the preset physical warming requirement condition according to the current wake-up physical parameter and the expected recovery physical parameter in the following manner:
[0061] judging whether the current wake-up physical parameter is greater than or equal to the expected recovery physical parameter;
[0062] when it is judged that the current wake-up physical parameter is greater than or equal to the expected recovery physical parameter, determining that the target user does not meet the preset physical warming requirement condition;
[0063] when it is judged that the current wake-up physical parameter is less than the expected recovery physical parameter, performing a difference value and absolute value operation on the current wake-up physical parameter and the expected recovery physical parameter to obtain a current physical difference value;
[0064] judging whether the current physical difference value is greater than or equal to a preset physical difference value threshold;
[0065] when it is judged that the current physical difference value is greater than or equal to the physical difference value threshold, determining that the target user meets the preset physical warming requirement condition;
[0066] when it is judged that the current physical difference value is less than the physical difference value threshold, determining that the target user does not meet the preset physical warming requirement condition.
[0067] As an optional implementation, in the second aspect of the present application, the device further comprises:
[0068] a determining module, configured to determine a comfort difference degree according to the comfort body feeling parameter and the current wake-up body feeling parameter after the regulating module determines the comfort body feeling parameter of the target user;
[0069] The judging module is further configured to judge whether the comfort difference degree is greater than or equal to a preset comfort difference degree threshold value; when it is judged that the comfort difference degree is greater than or equal to the comfort difference degree threshold value, the regulating module performs the step of determining a second regulating parameter of the intelligent air conditioner according to the comfort body feeling parameter and the current wake-up body feeling parameter; and performing a corresponding regulating operation on the intelligent air conditioner according to the second regulating parameter.
[0070] As an optional implementation, in the second aspect of the present application, the determining module is further configured to determine a cause of the comfort difference phenomenon according to the comfort body feeling parameter and the current wake-up body feeling parameter when it is judged by the judging module that the comfort difference degree is less than the comfort difference degree threshold value; and determine a consequential result of the comfort difference phenomenon according to the comfort body feeling parameter, the current wake-up body feeling parameter and the cause.
[0071] The judging module is further configured to judge whether the comfort difference phenomenon satisfies a preset processing necessity condition according to the cause and the consequential result; when it is judged that the comfort difference phenomenon satisfies the processing necessity condition, the regulating module performs the step of determining a second regulating parameter of the intelligent air conditioner according to the comfort body feeling parameter and the current wake-up body feeling parameter; and performing a corresponding regulating operation on the intelligent air conditioner according to the second regulating parameter.
[0072] The third aspect of the present application discloses another air conditioner intelligent regulating device based on a user wake-up parameter, which comprises:
[0073] a memory storing executable program codes;
[0074] a processor coupled with the memory;
[0075] The processor invokes the executable program codes stored in the memory to execute the air conditioner intelligent regulating method based on a user wake-up parameter disclosed in the first aspect of the present application.
[0076] The fourth aspect of the present application discloses a computer storage medium storing computer instructions, which are invoked to execute the air conditioner intelligent regulating method based on a user wake-up parameter disclosed in the first aspect of the present application.
[0077] Compared with the prior art, the embodiments of the present application have the following beneficial effects:
[0078] In the embodiments of the present application, when the intelligent air conditioner is in a running state and the target user is in a wake-up state, a current wake-up thermal parameter of the target user is determined, and an expected recovery thermal parameter of the target user is determined; whether the target user meets a preset thermal warming demand condition is judged according to the current wake-up thermal parameter and the expected recovery thermal parameter; when it is judged that the target user meets the thermal warming demand condition, a first regulation parameter of the intelligent air conditioner is determined according to the current wake-up thermal parameter and the expected recovery thermal parameter; corresponding regulation operation is performed on the intelligent air conditioner according to the first regulation parameter, so that the target user feels warm; when it is judged that the target user does not meet the thermal warming demand condition, a comfortable thermal parameter of the target user is determined; a second regulation parameter of the intelligent air conditioner is determined according to the comfortable thermal parameter and the current wake-up thermal parameter; corresponding regulation operation is performed on the intelligent air conditioner according to the second regulation parameter, so that the target user feels comfortable. It can be seen that the present application can match corresponding intelligent air conditioner regulation operation according to the satisfaction of the thermal warming demand condition of the user when the user is in a wake-up state, regulate the air conditioner to make the user feel warm when the thermal warming demand is met, and regulate the air conditioner to make the user feel comfortable when the thermal warming demand is not met, which is beneficial to improve the regulation accuracy and regulation reliability of the intelligent air conditioner, and is also beneficial to improve the regulation efficiency and regulation convenience of the intelligent air conditioner, thereby being beneficial to improve the operation effect of the intelligent air conditioner and the fitting and pertinence to the user demand, so as to be beneficial to improve the body temperature recovery accuracy and recovery efficiency of the user after waking up, and further be beneficial to improve the body vitality recovery efficiency and body vitality degree of the user after waking up. BRIEF DESCRIPTION OF DRAWINGS
[0079] 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 creating any creative labor.
[0080] Figure 1 is a scene schematic diagram of a scene to which an air conditioner intelligent regulation method based on user wake-up parameters disclosed by embodiments of the present application is applied;
[0081] Figure 2 is a flow schematic diagram of an air conditioner intelligent regulation method based on user wake-up parameters disclosed by embodiments of the present application;
[0082] Figure 3is a flow diagram of another air conditioner intelligent regulation method based on user wake-up parameters disclosed by the embodiment of the present application;
[0083] Figure 4 is a structural diagram of an air conditioner intelligent regulation device based on user wake-up parameters disclosed by the embodiment of the present application;
[0084] Figure 5 is a structural diagram of another air conditioner intelligent regulation device based on user wake-up parameters disclosed by the embodiment of the present application;
[0085] Figure 6 is a structural diagram of still another air conditioner intelligent regulation device based on user wake-up parameters disclosed by the embodiment of the present application. DETAILED DESCRIPTION
[0086] In order to enable persons 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 persons skilled in the art without creative labor fall within the scope of protection of the present application.
[0087] The terms "first", "second", and the like in the specification and claims 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 the like that includes 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 the like.
[0088] 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 present application. The appearance of the phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive of 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.
[0089] This invention discloses an intelligent air conditioning control method and device based on user awakening parameters. When a user is awake, the device matches corresponding intelligent air conditioning control operations according to the user's perceived warming needs. When the perceived warming needs are met, the air conditioning is adjusted to make the user feel warmer; when the needs are not met, the air conditioning is adjusted to make the user feel comfortable. This improves the accuracy and reliability of intelligent air conditioning control, as well as its efficiency and convenience. Furthermore, it enhances the alignment and relevance of the intelligent air conditioning's operation with user needs, thereby improving the accuracy and efficiency of body temperature recovery after awakening, and ultimately, improving the efficiency and level of physical vitality recovery. Detailed explanations follow.
[0090] To better understand the intelligent air conditioning control method and device based on user wake-up parameters described in this invention, the scenario architecture applicable to the intelligent air conditioning control method based on user wake-up parameters is first described. Specifically, this scenario architecture can be as follows: Figure 1 As shown, the intelligent air conditioning control method based on user awakening parameters can be applied to scenarios including users and smart air conditioners. Specifically, based on the target user's current awakening sensation parameters and expected recovery sensation parameters, it is determined whether the target user meets the conditions for feeling warmer. If so, the smart air conditioner is adjusted accordingly to make the target user feel warmer. If not, the smart air conditioner is adjusted accordingly to make the target user feel comfortable. For example, when the smart air conditioner is running and the target user is awake, assuming the determined expected recovery temperature parameter is 26℃, if the target user's current awakening temperature parameter is 24℃, then the target user needs to feel warmer. Based on the current awakening temperature parameter and the expected recovery temperature parameter, the smart air conditioner's output temperature is controlled to rise to make the target user feel warmer. If the target user's current awakening temperature parameter is 28℃, then the target user needs to feel comfortable. Based on the current awakening temperature parameter and the expected recovery temperature parameter, the smart air conditioner's output temperature is controlled to fall to make the target user feel comfortable, thus realizing the intelligent air conditioning control function based on the user's awakening parameters. In addition, this solution can also be applied to autonomous driving scenarios.
[0091] It should be noted that, Figure 1 The schematic diagram shown is only intended to illustrate a scenario applicable to an intelligent air conditioning control method based on user wake-up parameters. The various intelligent devices involved are only illustrative; their specific structures, sizes, shapes, locations, installation methods, and communication methods between the intelligent devices can be adapted to the actual scenario. Figure 1The illustrated scenario does not limit this.
[0092] Embodiment one
[0093] Please refer to Figure 2 , Figure 2 is a flowchart of a user wake-up parameter-based air conditioner intelligent control method disclosed by an embodiment of the application. Wherein, Figure 2 The described method can be applied to a user wake-up parameter-based air conditioner intelligent control device, wherein the device can include a server, wherein the server includes a local server or a cloud server, and the embodiment of the application does not limit it. As Figure 2 The user wake-up parameter-based air conditioner intelligent control method includes the following operations:
[0094] 101、When the intelligent air conditioner is in a running state and the target user is in a wake-up state, determine the current wake-up thermal sensation parameter of the target user, and determine the expected recovery thermal sensation parameter of the target user.
[0095] Optionally, the current wake-up thermal sensation parameter of the target user can be understood as the thermal sensation value and situation of the target user in the current wake-up state, and the embodiment of the application does not limit it.
[0096] Optionally, the expected recovery thermal sensation parameter of the target user can be understood as the thermal sensation value and situation that the target user is expected to reach and recover, and the embodiment of the application does not limit it.
[0097] 102、According to the current wake-up thermal sensation parameter and the expected recovery thermal sensation parameter, determine whether the target user meets the preset thermal sensation warming demand condition, when the determination result is yes, execute step 103; when the determination result is no, execute step 104.
[0098] Optionally, determining whether the target user meets the preset thermal sensation warming demand condition can be understood as determining whether the user needs to perform an air conditioner control operation for thermal sensation warming; or it can also be understood as whether the current thermal sensation of the target user is low and needs to be warmed, and the embodiment of the application does not limit it.
[0099] Further, for example, after waking up, the user's thermal sensation temperature will be relatively low, and first the environmental temperature corresponding to the intelligent air conditioner needs to be controlled to rise to restore the user's thermal sensation temperature, and then the environmental temperature corresponding to the intelligent air conditioner is further controlled to make the user's thermal sensation comfortable, and the embodiment of the application does not limit it.
[0100] 103、According to the current wake-up thermal sensation parameter and the expected recovery thermal sensation parameter, determine the first control parameter of the intelligent air conditioner; according to the first control parameter, perform corresponding control operation on the intelligent air conditioner to warm the target user.
[0101] Further optionally, the determining the first regulation parameter of the smart air conditioner according to the current wake-up somatosensory parameter and the expected recovery somatosensory parameter can comprise:
[0102] determining first somatosensory difference information according to the current wake-up somatosensory parameter and the expected recovery somatosensory parameter, and determining first environment difference information according to the first somatosensory difference information;
[0103] determining the first regulation parameter of the smart air conditioner according to the first environment difference information.
[0104] 104, determining a comfortable somatosensory parameter of the target user, determining a second regulation parameter of the smart air conditioner according to the comfortable somatosensory parameter and the current wake-up somatosensory parameter, and performing a corresponding regulation operation on the smart air conditioner according to the second regulation parameter to make the target user feel comfortable.
[0105] Further optionally, the determining the second regulation parameter of the smart air conditioner according to the comfortable somatosensory parameter and the current wake-up somatosensory parameter can comprise:
[0106] determining second somatosensory difference information according to the comfortable somatosensory parameter and the current wake-up somatosensory parameter, and determining second environment difference information according to the second somatosensory difference information;
[0107] determining the second regulation parameter of the smart air conditioner according to the second environment difference information.
[0108] It can be seen that the air conditioner intelligent regulation method based on user wake-up parameters described in the embodiments of the present application can match corresponding smart air conditioner regulation operations according to the satisfaction of the user's somatosensory warming demand condition when the user is in a wake-up state, regulate the air conditioner to make the user feel warm when the somatosensory warming demand is met, and regulate the air conditioner to make the user feel comfortable when the somatosensory warming demand is not met, which is beneficial to improve the regulation accuracy and reliability of the smart air conditioner, and is also beneficial to improve the regulation efficiency and convenience of the smart air conditioner, thereby being beneficial to improve the operation effect of the smart air conditioner and the fitting and pertinence of the user's demand, so as to be beneficial to improve the body temperature recovery accuracy and efficiency of the user after waking up, and further beneficial to improve the body vitality recovery efficiency and degree of the user after waking up.
[0109] In an optional embodiment, the determining the expected recovery somatosensory parameter of the target user can comprise:
[0110] determining a sleep-in somatosensory parameter of the target user before entering a sleep state, and determining the sleep-in somatosensory parameter as the expected recovery somatosensory parameter of the target user; and / or,
[0111] determining sleep quality information of a target sleep state of the target user in recent period, and determining the expected recovery somatosensory parameter of the target user according to the sleep quality information; and / or,
[0112] determining activity demand information of the target user after waking up, and determining the expected recovery thermal parameter of the target user according to the activity demand information; and / or
[0113] determining behavior state information of the target user after waking up, and determining the expected recovery thermal parameter of the target user according to the behavior state information.
[0114] Optionally, the sleep-in thermal parameter of the target user before entering the sleep state can be understood as a thermal value and a thermal condition of the target user before entering the sleep state, and embodiments of the present application are not limited in this regard.
[0115] Optionally, the target sleep state of the target user in the recent period can be the sleep state of the target user in the last time, or can be the sleep state of the target user in the recent period determined according to actual needs, and embodiments of the present application are not limited in this regard.
[0116] Optionally, the activity demand information of the target user after waking up can be exemplified as follows: if the target user needs to perform a physical activity after waking up, the target user needs to quickly recover the thermal sensation, and if the target user needs to go to a relatively hot outdoor place to perform an activity after waking up, the target user does not need to or needs to slowly recover the thermal sensation, and embodiments of the present application are not limited in this regard.
[0117] Optionally, the behavior state information of the target user after waking up can be exemplified as follows: the expected recovery thermal parameter corresponding to the target user lying on the bed or sitting up is different, the expected recovery thermal parameter corresponding to the target user with a quilt on the body or without a quilt is different, and embodiments of the present application are not limited in this regard.
[0118] It can be seen that the optional embodiment can determine the expected recovery thermal parameter through the sleep-in thermal parameter of the target user, the sleep quality information, the activity demand information, and the behavior state information after waking up, which is beneficial to improving the diversity, flexibility, and comprehensiveness of the determined parameter of the expected recovery thermal parameter, and is also beneficial to improving the comprehensiveness, flexibility, and pertinence of the determination manner of the expected recovery thermal parameter, and further beneficial to improving the accuracy and reliability of the determined expected recovery thermal parameter, thereby being beneficial to improving the intelligent air conditioning control accuracy and reliability based on the expected recovery thermal parameter.
[0119] In another optional embodiment, the above determining the expected recovery thermal parameter of the target user according to the behavior state information can include:
[0120] determining at least one covering covering the target user according to the behavior state information;
[0121] According to the material information and the covering area of each covering, and the superimposed covering relationship corresponding to all coverings, a somatosensory isolation condition of all coverings for the target user is determined.
[0122] According to the behavior state information, a current posture action of the target user is determined, and according to the current posture action, a wake-up property of the target user is determined, the wake-up property including an un-getting-up property or a getting-up property.
[0123] According to the somatosensory isolation condition and the wake-up property, an expected recovery somatosensory parameter of the target user is determined.
[0124] Optionally, the at least one covering on the target user can be understood as an object on the target user and capable of achieving air volume and temperature isolation, for example, clothes, air conditioners, quilts, book shielding objects, etc., and embodiments of the present application are not limited.
[0125] Optionally, the superimposed covering relationship corresponding to all coverings can be understood as, for example, a flat covering formed by the coverings, a layer-by-layer superimposed covering formed by the coverings, a covering area of the layer-by-layer superimposed covering, a covering area of the flat covering, a covering type of the superimposed covering, a covering type of the flat covering, etc., and embodiments of the present application are not limited.
[0126] Optionally, the somatosensory isolation condition for the target user can be understood as a somatosensory isolation position, a somatosensory isolation degree, a somatosensory isolation capability, etc., that can be achieved by all coverings for the target user, and embodiments of the present application are not limited.
[0127] Optionally, the current posture action of the target user can be understood as, for example, lying on a bed, sitting up on a bed, lying on the stomach, curling up, frequently turning over, standing, etc., and embodiments of the present application are not limited.
[0128] Optionally, the un-getting-up property can be understood as being currently awake but still wanting to continue sleeping and lying down, and the getting-up property can be understood as being awake and wanting to get up, and embodiments of the present application are not limited.
[0129] Optionally, for the wake-up property and the expected recovery somatosensory parameter, it can be understood that the need to recover the body temperature is different for continuing to sleep and getting up, and further, according to the needs, the expected recovery somatosensory parameter of the un-getting-up property can be set to be higher than the expected recovery somatosensory parameter of the getting-up property, or the expected recovery somatosensory parameter of the un-getting-up property can be set to be lower than the expected recovery somatosensory parameter of the getting-up property, and embodiments of the present application are not limited.
[0130] It can be seen that the optional embodiment can provide a more specific and detailed expected recovery somatosensory parameter determination manner for behavior state information, determine the expected recovery somatosensory parameter of the target user according to the determined somatosensory isolation condition and awakening property, and is beneficial to improving the rationality and comprehensiveness of the expected recovery somatosensory parameter determination manner, and further beneficial to improving the accuracy and reliability of the determined expected recovery somatosensory parameter.
[0131] In yet another optional embodiment, the above determining the expected recovery somatosensory parameter of the target user according to the sleep quality information can include:
[0132] determining a sleep time of the target user in deep sleep according to the sleep quality information, and determining a deep sleep duration and a deep sleep persistence condition of the target user according to the sleep time;
[0133] determining a physical fatigue condition and a mental condition of the target user after awakening according to the deep sleep duration, the deep sleep persistence condition and a pre-sleep fatigue parameter of the target user;
[0134] determining an activity freedom condition of the target user for a current scene according to the deep sleep duration and the deep sleep persistence condition, and determining an environmental adaptation ability of the target user according to the physical fatigue condition and the mental condition;
[0135] determining the expected recovery somatosensory parameter of the target user according to the activity freedom condition and the environmental adaptation ability.
[0136] Optionally, the deep sleep duration can be a total duration of deep sleep, a duration of each sleep segment of deep sleep, etc., and the embodiments of the present application are not limited thereto.
[0137] Optionally, the deep sleep persistence condition can include, but is not limited to, one or more of a duration of each sleep segment of deep sleep, an interval duration of each sleep segment of deep sleep, a frequency and a number of all sleep segments of deep sleep, a deep degree of each sleep segment of deep sleep, a sleep effect of each sleep segment of deep sleep, etc., and the embodiments of the present application are not limited thereto.
[0138] Optionally, the pre-sleep fatigue parameter of the target user can include, but is not limited to, one or more of a comprehensive fatigue degree, a specific fatigue condition, a specific fatigue type, a fatigue condition for each fatigue type, a concomitant phenomenon for each fatigue type, a coping manner for each fatigue type, etc., and the embodiments of the present application are not limited thereto.
[0139] Optionally, the length of deep sleep, the duration of deep sleep, the sleep fatigue parameter, the physical fatigue condition and the mental condition of the target user after waking up are taken as examples. For example, when the length of deep sleep is longer and the duration of deep sleep indicates that the target user has better deep sleep persistence, it is determined that the physical fatigue condition of the target user after waking up indicates that the target user has lower physical fatigue and better mental condition. For another example, when the length of deep sleep is shorter and the duration of deep sleep indicates that the target user has poor deep sleep persistence, it is determined that the physical fatigue condition of the target user after waking up indicates that the target user has higher physical fatigue and specific fatigue content, and has poor mental condition. Other conditions can be flexibly determined according to similar logic, and the embodiments of the present application are not limited.
[0140] Optionally, the activity self condition of the target user in the current scene can be understood as the life adaptation degree, the life comfort degree, and whether the target user is comfortable in the current scene, and the embodiments of the present application are not limited.
[0141] Optionally, the length of deep sleep, the duration of deep sleep, and the activity self condition are taken as examples. For example, when the length of deep sleep of the target user is longer and the duration of deep sleep indicates that the target user has better deep sleep persistence, it is determined that the activity self condition of the target user indicates that the target user is more comfortable and adapted in the current scene. For another example, when the length of deep sleep of the target user is shorter and the duration of deep sleep indicates that the target user has poor deep sleep persistence, it is determined that the activity self condition of the target user indicates that the target user is not comfortable and adapted in the current scene. Other conditions can be flexibly determined according to similar logic, and the embodiments of the present application are not limited.
[0142] Optionally, the physical fatigue condition, the mental condition, and the environmental adaptation ability are taken as examples. For example, when the physical fatigue condition of the target user indicates that the target user has less physical fatigue and the mental condition indicates that the target user has better mental condition, it is determined that the target user has better environmental adaptation ability. For another example, when the physical fatigue condition of the target user indicates that the target user has higher physical fatigue and the mental condition indicates that the target user has worse mental condition, it is determined that the target user has worse environmental adaptation ability. Other conditions can be flexibly determined according to similar logic, and the embodiments of the present application are not limited.
[0143] Optionally, the activity self-case, the environmental adaptability and the expected recovery somatosensory parameter are exemplified. For example, when the activity self-case of the target user is used to represent that the target user is more self-adaptable and comfortable in the current scene, it is determined that the expected recovery somatosensory parameter is smaller than the current wake-up somatosensory parameter, that is, the somatosensory parameter of the target user does not need to be adjusted greatly. For another example, when the activity self-case of the target user is used to represent that the target user is not very self-adaptable and comfortable in the current scene, it is determined that the expected recovery somatosensory parameter is larger than the current wake-up somatosensory parameter, that is, the somatosensory parameter of the target user needs to be adjusted greatly. Other cases can be flexibly determined according to similar logic, and embodiments of the present application are not limited.
[0144] It can be seen that the optional embodiment can provide a more specific and detailed expected recovery somatosensory parameter determination manner for sleep quality information, determine the expected recovery somatosensory parameter of the target user according to the determined activity self-case and environmental adaptability, and is beneficial to improve the rationality and comprehensiveness of the expected recovery somatosensory parameter determination manner, and further beneficial to improve the accuracy and reliability of the determined expected recovery somatosensory parameter.
[0145] In still another optional embodiment, the above determining whether the target user meets the preset somatosensory warming requirement condition according to the current wake-up somatosensory parameter and the expected recovery somatosensory parameter can include:
[0146] determining whether the current wake-up somatosensory parameter is greater than or equal to the expected recovery somatosensory parameter;
[0147] when it is determined that the current wake-up somatosensory parameter is greater than or equal to the expected recovery somatosensory parameter, it is determined that the target user does not meet the preset somatosensory warming requirement condition;
[0148] when it is determined that the current wake-up somatosensory parameter is less than the expected recovery somatosensory parameter, difference and absolute value operations are performed on the current wake-up somatosensory parameter and the expected recovery somatosensory parameter to obtain a current somatosensory difference value;
[0149] determining whether the current somatosensory difference value is greater than or equal to a preset somatosensory difference threshold value;
[0150] when it is determined that the current somatosensory difference value is greater than or equal to the somatosensory difference threshold value, it is determined that the target user meets the preset somatosensory warming requirement condition;
[0151] when it is determined that the current somatosensory difference value is less than the somatosensory difference threshold value, it is determined that the target user does not meet the preset somatosensory warming requirement condition.
[0152] It can be seen that the optional embodiment can determine the satisfaction result of the body sensation warming demand condition of the user according to the size comparison of the current awakening body sensation parameter and the expected recovery body sensation parameter and the size comparison of the current body sensation difference value of the target user and the corresponding threshold value, which is beneficial to improve the rationality and comprehensiveness of the determination method of the satisfaction result of the body sensation warming demand condition, and further beneficial to improve the accuracy and reliability of the determined satisfaction result of the body sensation warming demand condition.
[0153] Embodiment two
[0154] Please refer to Figure 3 , Figure 3 is another flowchart of the air conditioner intelligent control method based on user awakening parameters disclosed by the embodiment of the application. Wherein, Figure 3 The method described can be applied to an air conditioner intelligent control device based on user awakening parameters, wherein the device can include a server, wherein the server includes a local server or a cloud server, and the embodiment of the application does not limit it. As Figure 3 The air conditioner intelligent control method based on user awakening parameters includes the following operations:
[0155] 201. When the intelligent air conditioner is in a running state and the target user is in an awakening state, determine the current awakening body sensation parameter of the target user, and determine the expected recovery body sensation parameter of the target user.
[0156] 202. According to the current awakening body sensation parameter and the expected recovery body sensation parameter, judge whether the target user meets the preset body sensation warming demand condition, when the judgment result is yes, execute step 203; when the judgment result is no, execute step 204.
[0157] 203. According to the current awakening body sensation parameter and the expected recovery body sensation parameter, determine the first control parameter of the intelligent air conditioner; according to the first control parameter, execute the corresponding control operation on the intelligent air conditioner to make the target user feel warm.
[0158] 204. Determine the comfortable body sensation parameter of the target user, and according to the comfortable body sensation parameter and the current awakening body sensation parameter, determine the comfortable difference degree.
[0159] Optionally, the comfortable body sensation parameter of the target user can be understood as the body sensation value and body sensation condition that the target user can feel comfortable for the current scene or future scene, and the embodiment of the application does not limit it.
[0160] Optionally, the above-mentioned determination of the comfortable difference degree according to the comfortable body sensation parameter and the current awakening body sensation parameter can include:
[0161] According to the comfortable body sensation parameter and the current awakening body sensation parameter, determine the comfortable body sensation difference value, and according to the comfortable body sensation difference value, determine the comfortable difference degree.
[0162] 205. determining whether the comfort difference degree is greater than or equal to a preset comfort difference degree threshold.
[0163] 206. when it is determined that the comfort difference degree is greater than or equal to the comfort difference degree threshold, determining a second control parameter of the intelligent air conditioner according to the comfort feeling parameter and the current awakening feeling parameter; and performing a corresponding control operation on the intelligent air conditioner according to the second control parameter, so as to make the target user feel comfortable.
[0164] In the embodiment of the present application, for other descriptions of steps 201-206, please refer to the other detailed descriptions of steps 101-104 in Embodiment I, and the embodiment of the present application will not be repeated here.
[0165] It can be seen that the embodiment of the present application can match corresponding intelligent air conditioner control operations according to the user's body feeling warming demand condition satisfaction situation when the user is in the awakening state, and control the air conditioner to make the user feel warm when the body feeling warming demand is met, and control the air conditioner to make the user feel comfortable when the body feeling warming demand is not met, which is beneficial to improve the control accuracy and reliability of the intelligent air conditioner, and also beneficial to improve the control efficiency and convenience of the intelligent air conditioner, and further beneficial to improve the operation effect of the intelligent air conditioner and the fitting and pertinence of the user's demand, thereby beneficial to improve the body temperature recovery accuracy and recovery efficiency of the user after awakening, and further beneficial to improve the body energy recovery efficiency and body energy level of the user after awakening; and also can control the air conditioner to make the user feel comfortable according to the comfort feeling parameter and the current awakening feeling parameter when the comfort difference degree is greater than or equal to the comfort difference degree threshold, which is beneficial to improve the rationality and comprehensiveness of the second control parameter determination method of the intelligent air conditioner, and further beneficial to improve the accuracy and reliability of the determined second control parameter, thereby beneficial to improve the conversion efficiency and conversion accuracy of the user's comfortable feeling.
[0166] In an optional embodiment, the method can further include the following operations:
[0167] when it is determined that the comfort difference degree is less than the comfort difference degree threshold, determining the cause of the comfort difference phenomenon according to the comfort feeling parameter and the current awakening feeling parameter;
[0168] determining the consequential results of the comfort difference phenomenon according to the comfort feeling parameter, the current awakening feeling parameter and the cause;
[0169] determining whether the comfort difference phenomenon meets a preset processing necessity condition according to the cause and the consequential results;
[0170] When it is judged that the comfort difference phenomenon meets the processing necessary condition, the step of determining the second regulation parameter of the intelligent air conditioner according to the comfort feeling parameter and the current awakening feeling parameter is executed.
[0171] Optionally, the cause of the comfort difference phenomenon can be understood as the cause of the inconsistency between the current awakening feeling parameter and the comfort feeling parameter, and the embodiments of the present application are not limited thereto.
[0172] Further optionally, the determination of the consequential effect of the comfort difference phenomenon according to the comfort feeling parameter, the current awakening feeling parameter and the cause can include:
[0173] determining comfort feeling difference information according to the comfort feeling parameter and the current awakening feeling parameter, determining a first consequential effect according to the comfort feeling difference information, and determining a second consequential effect according to the cause;
[0174] determining the consequential effect of the comfort difference phenomenon according to the first consequential effect and the second consequential effect.
[0175] Further optionally, the judgment of whether the comfort difference phenomenon meets the preset processing necessary condition according to the cause and the consequential effect can include:
[0176] determining the processing urgency of the comfort difference phenomenon according to the cause and the consequential effect;
[0177] judging whether the processing urgency is greater than or equal to a preset processing urgency threshold;
[0178] when it is judged that the processing urgency is greater than or equal to the processing urgency threshold, determining that the comfort difference phenomenon meets the preset processing necessary condition;
[0179] when it is judged that the processing urgency is less than the processing urgency threshold, determining that the comfort difference phenomenon does not meet the preset processing necessary condition.
[0180] Further optionally, the method can further include the following operations:
[0181] when it is judged that the comfort difference phenomenon does not meet the processing necessary condition, the step of determining the current awakening feeling parameter of the target user and determining the expected recovery feeling parameter of the target user is executed again.
[0182] It can be seen that the embodiment of the present application can determine the processing necessity condition of the comfort difference phenomenon according to the determined cause and the concomitant consequence of the comfort difference phenomenon when the comfort difference is less than the corresponding threshold value, and perform the regulation operation for the user's thermal comfort on the intelligent air conditioner when the comfort difference phenomenon meets the processing necessity condition, which is beneficial to improve the comprehensiveness and integrity of the intelligent regulation mode of the air conditioner, and further beneficial to improve the execution timeliness and execution rationality of the regulation operation for the user's thermal comfort on the intelligent air conditioner, thereby being beneficial to improve the user's thermal comfort experience.
[0183] Embodiment three
[0184] Please refer to Figure 4 , Figure 4 is a structure schematic diagram of an air conditioner intelligent regulation device based on a user awakening parameter disclosed by the embodiment of the present application. Wherein, Figure 4 The device described can include a server, wherein the server includes a local server or a cloud server, and the embodiment of the present application does not limit. As Figure 4 The air conditioner intelligent regulation device based on the user awakening parameter can include:
[0185] The parameter determination module 301 is configured to determine the current awakening thermal parameter of the target user and determine the expected recovery thermal parameter of the target user when the intelligent air conditioner is in the running state and the target user is in the awakening state.
[0186] The judgment module 302 is configured to judge whether the target user meets the preset thermal warming demand condition according to the current awakening thermal parameter and the expected recovery thermal parameter.
[0187] The regulation module 303 is configured to determine the first regulation parameter of the intelligent air conditioner according to the current awakening thermal parameter and the expected recovery thermal parameter when the judgment module 302 judges that the target user meets the thermal warming demand condition, and perform the corresponding regulation operation on the intelligent air conditioner according to the first regulation parameter, so as to make the target user's thermal warming.
[0188] The regulation module 303 is further configured to determine the comfortable thermal parameter of the target user when the judgment module 302 judges that the target user does not meet the thermal warming demand condition, determine the second regulation parameter of the intelligent air conditioner according to the comfortable thermal parameter and the current awakening thermal parameter, and perform the corresponding regulation operation on the intelligent air conditioner according to the second regulation parameter, so as to make the target user's thermal comfort.
[0189] It can be seen that the embodiment Figure 4The described air conditioner intelligentization regulation and control device based on the user wake-up parameter can match corresponding intelligent air conditioner regulation and control operations according to the user's body temperature recovery demand condition satisfaction when the user is in a wake-up state, regulate and control the air conditioner to make the user feel warm when the body temperature recovery demand is met, and regulate and control the air conditioner to make the user feel comfortable when the body temperature recovery demand is not met, which is beneficial to improve the regulation and control accuracy and reliability of the intelligent air conditioner, and also beneficial to improve the regulation and control efficiency and convenience of the intelligent air conditioner, thereby beneficial to improve the operation effect of the intelligent air conditioner and the fitting and pertinence to the user's demand, thereby beneficial to improve the body temperature recovery accuracy and recovery efficiency of the user after waking up, and further beneficial to improve the body activity recovery efficiency and body activity degree of the user after waking up.
[0190] In an optional embodiment, the parameter determination module 301 determines the expected recovery thermal sensation parameter of the target user in the following manner:
[0191] determining the sleep-in thermal sensation parameter of the target user before entering the sleep state, and determining the sleep-in thermal sensation parameter as the expected recovery thermal sensation parameter of the target user; and / or,
[0192] determining the sleep quality information of the target user in the target sleep state in the recent period, and determining the expected recovery thermal sensation parameter of the target user according to the sleep quality information; and / or,
[0193] determining the activity demand information of the target user after waking up, and determining at least one activity type according to the activity demand information; determining the expected recovery thermal sensation parameter of the target user according to the physical fitness requirement, the environmental temperature requirement, and the air volume and air direction requirement of each activity type; and / or,
[0194] determining the behavior state information of the target user after waking up, and determining the expected recovery thermal sensation parameter of the target user according to the behavior state information.
[0195] It can be seen that the implementation Figure 5 The described device can determine the expected recovery thermal sensation parameter through the sleep-in thermal sensation parameter, the sleep quality information, the activity demand information, and the behavior state information after waking up of the target user, which is beneficial to improve the diversity, flexibility, and comprehensiveness of the determination parameters of the expected recovery thermal sensation parameter, and also beneficial to improve the comprehensiveness, flexibility, and pertinence of the determination manner of the expected recovery thermal sensation parameter, thereby beneficial to improve the accuracy and reliability of the determined expected recovery thermal sensation parameter, and thereby beneficial to improve the intelligent air conditioner regulation and control accuracy and reliability based on the expected recovery thermal sensation parameter.
[0196] In another optional embodiment, the parameter determination module 301 determines the expected recovery thermal sensation parameter of the target user in the following manner according to the behavior state information:
[0197] According to the behavior state information, at least one covering on the target user is determined;
[0198] According to the material information and the covering area of each covering, and the superimposed covering relationship corresponding to all coverings, the somatosensory insulation of all coverings to the target user is determined.
[0199] According to the behavior state information, the current posture action of the target user is determined, and according to the current posture action, the wake-up property of the target user is determined, the wake-up property including the non-awakening property or the awakening property.
[0200] According to the somatosensory insulation and the wake-up property, the expected recovery somatosensory parameter of the target user is determined.
[0201] It can be seen that the described device can provide a more specific and detailed expected recovery somatosensory parameter determination method for behavior state information, and determine the expected recovery somatosensory parameter of the target user according to the determined somatosensory insulation and wake-up property, which is beneficial to improve the rationality and comprehensiveness of the expected recovery somatosensory parameter determination method, and further beneficial to improve the accuracy and reliability of the determined expected recovery somatosensory parameter. Figure 5 In another optional embodiment, the parameter determination module 301 determines the expected recovery somatosensory parameter of the target user according to the sleep quality information in the following manner:
[0202] According to the sleep quality information, the sleep time of the target user in deep sleep is determined, and according to the sleep time, the deep sleep duration and deep duration of the target user are determined.
[0203] According to the deep sleep duration, the deep duration and the pre-sleep fatigue parameter of the target user, the physical fatigue condition and the mental condition of the target user after waking up are determined.
[0204] According to the deep sleep duration and the deep duration, the activity freedom of the target user to the current scene is determined, and according to the physical fatigue condition and the mental condition, the environmental adaptation ability of the target user is determined.
[0205] According to the activity freedom and the environmental adaptation ability, the expected recovery somatosensory parameter of the target user is determined.
[0206] It can be seen that the described device can provide a more specific and detailed expected recovery somatosensory parameter determination method for sleep quality information, and determine the expected recovery somatosensory parameter of the target user according to the determined activity freedom and environmental adaptation ability, which is beneficial to improve the rationality and comprehensiveness of the expected recovery somatosensory parameter determination method, and further beneficial to improve the accuracy and reliability of the determined expected recovery somatosensory parameter.
[0207] Figure 5
[0208] In another optional embodiment, the determination module 302 determines whether the target user meets the preset conditions for physical recovery based on the current awakening physical sensation parameters and the expected recovery physical sensation parameters. Specifically, this includes:
[0209] Determine whether the current awakening sensory parameters are greater than or equal to the expected recovery sensory parameters;
[0210] When it is determined that the current awakening body sensation parameter is greater than or equal to the expected recovery body sensation parameter, it is determined that the target user does not meet the preset body sensation recovery requirement condition;
[0211] When it is determined that the current awakening body sensation parameter is less than the expected recovery body sensation parameter, the difference and absolute value operations are performed on the current awakening body sensation parameter and the expected recovery body sensation parameter to obtain the current body sensation difference;
[0212] Determine whether the current somatosensory difference is greater than or equal to the preset somatosensory difference threshold;
[0213] When it is determined that the current body sensation difference is greater than or equal to the body sensation difference threshold, it is determined that the target user meets the preset body sensation recovery requirement conditions.
[0214] When it is determined that the current perceived difference is less than the perceived difference threshold, it is determined that the target user does not meet the preset conditions for perceived warming.
[0215] It is evident that implementation Figure 5 The described device can also determine the result of the user's perceived warming demand condition being met based on a comparison between the current awakening somatic parameters and the expected recovery somatic parameters, as well as a comparison between the target user's current somatic difference and the corresponding threshold. This helps to improve the rationality and comprehensiveness of the method for determining the result of the perceived warming demand condition being met, and thus helps to improve the accuracy and reliability of the determined result of the perceived warming demand condition being met.
[0216] In yet another alternative embodiment, such as Figure 5 As shown, the device may further include:
[0217] The determination module 304 is used to determine the degree of comfort difference based on the comfort parameters and the current awakening parameters after the control module 303 determines the comfort parameters of the target user.
[0218] The judgment module 302 is also used to determine whether the comfort difference degree is greater than or equal to a preset comfort difference degree threshold; when it is determined that the comfort difference degree is greater than or equal to the comfort difference degree threshold, the control module 303 executes the above-mentioned steps of determining the second control parameter of the smart air conditioner based on the comfort sensation parameter and the current wakefulness sensation parameter; and performs corresponding control operations on the smart air conditioner based on the second control parameter.
[0219] It is evident that implementationFigure 5 The described device can also regulate the air conditioner according to the comfort feeling parameter and the current awakening feeling parameter to make the user feel comfortable when the comfort difference degree is greater than or equal to the comfort difference degree threshold, which is beneficial to improve the rationality and comprehensiveness of the second regulation parameter determination method of the intelligent air conditioner, and further beneficial to improve the accuracy and reliability of the determined second regulation parameter, thereby beneficial to improve the conversion efficiency and conversion accuracy of the user's comfortable feeling.
[0220] In yet another optional embodiment, the determination module 304 is further configured to, when the judgment module 302 determines that the comfort difference degree is less than the comfort difference degree threshold, determine a cause of the comfort difference phenomenon according to the comfort feeling parameter and the current awakening feeling parameter; and determine a consequential result of the comfort difference phenomenon according to the comfort feeling parameter, the current awakening feeling parameter and the cause.
[0221] The judgment module 302 is further configured to determine whether the comfort difference phenomenon meets a preset processing necessity condition according to the cause and the consequential result; and when it is determined that the comfort difference phenomenon meets the processing necessity condition, the regulation module 303 performs the steps of determining the second regulation parameter of the intelligent air conditioner according to the comfort feeling parameter and the current awakening feeling parameter, and performing the corresponding regulation operation on the intelligent air conditioner according to the second regulation parameter.
[0222] It can be seen that the embodiment Figure 5 The described device can also determine whether the processing necessity condition of the comfort difference phenomenon is met according to the determined cause and consequential result of the comfort difference phenomenon when the comfort difference degree is less than the corresponding threshold, and perform the regulation operation for the user's comfortable feeling on the intelligent air conditioner when the comfort difference phenomenon meets the processing necessity condition, which is beneficial to improve the comprehensiveness and integrity of the intelligent regulation method of the air conditioner, and further beneficial to improve the timeliness and rationality of the execution of the regulation operation for the user's comfortable feeling on the intelligent air conditioner, thereby beneficial to improve the user's comfortable experience.
[0223] Embodiment four
[0224] Please refer to Figure 6 , Figure 6 is another structure schematic diagram of an air conditioner intelligent regulation device based on a user's awakening parameter disclosed by the embodiment of the present application. Among them, Figure 6 The described device can include a server, wherein the server includes a local server or a cloud server, and the embodiment of the present application does not limit it. As Figure 6 indicated, the device can include:
[0225] The memory 401 stores executable program codes;
[0226] The processor 402 is coupled with the memory 401;
[0227] Further, an input interface 403 and an output interface 404 coupled to the processor 402 can also be included.
[0228] The processor 402 invokes the executable program code stored in the memory 401 to perform the steps of the air conditioner intelligent control method based on the user wake-up parameter described in embodiment one or embodiment two.
[0229] Embodiment five
[0230] The embodiment of the present application discloses a computer storage medium which stores a computer program for electronic data exchange, wherein the computer program causes a computer to perform the steps of the air conditioner intelligent control method based on the user wake-up parameter described in embodiment one or embodiment two.
[0231] Embodiment six
[0232] The embodiment of the present application discloses a computer program product which comprises a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to cause a computer to perform the steps of the air conditioner intelligent control method based on the user wake-up parameter described in embodiment one or embodiment two.
[0233] The device embodiments described above are only schematic, wherein the modules illustrated as separate components can or can not be physically separate, and the components illustrated as modules can or can not be physical modules, i.e., can be located in one place, or can be distributed to multiple network modules. Part or all of the modules can be selected according to actual needs to achieve the purpose of the present embodiment scheme. Those skilled in the art can understand and implement without creative labor.
[0234] 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.
[0235] Finally, it should be noted that: the air conditioning intelligent control method and device based on user wake-up parameters 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 intelligent air conditioning control based on user wake-up parameters, characterized in that, The method includes: When the smart air conditioner is running and the target user is awake, determine the target user's current awakening sensation parameters and the target user's expected recovery sensation parameters. Based on the current awakening sensation parameters and the expected recovery sensation parameters, determine whether the target user meets the preset sensation recovery requirement conditions; When it is determined that the target user meets the conditions for feeling warmer, the first control parameter of the smart air conditioner is determined based on the current awakening body temperature parameters and the expected recovery body temperature parameters; and the smart air conditioner is operated accordingly based on the first control parameter to make the target user feel warmer. When it is determined that the target user does not meet the conditions for feeling warm, the comfort parameters of the target user are determined; based on the comfort parameters and the current awakening parameters, the second control parameters of the smart air conditioner are determined; based on the second control parameters, the smart air conditioner is subjected to corresponding control operations to make the target user feel comfortable.
2. The intelligent air conditioning control method based on user wake-up parameters according to claim 1, characterized in that, Determining the expected recovery sensation parameters of the target user includes: Determine the sleep-feeling parameters of the target user before entering a sleep state, and define the sleep-feeling parameters as the expected recovery-feeling parameters of the target user; and / or, Determine the sleep quality information of the target user's recent target sleep state, and based on the sleep quality information, determine the target user's expected recovery somatic parameters; and / or, Determine the activity needs of the target user after awakening, and based on the activity needs information, determine at least one activity type; based on the physical fitness requirements, ambient temperature requirements, and airflow and direction requirements for each activity type, determine the expected recovery physical sensation parameters of the target user; and / or, The behavioral state information of the target user after awakening is determined, and the expected recovery somatic parameters of the target user are determined based on the behavioral state information.
3. The intelligent air conditioning control method based on user wake-up parameters according to claim 2, characterized in that, Determining the expected recovery sensation parameters of the target user based on the behavioral state information includes: Based on the behavioral state information, determine at least one covering material that is applied to the target user; Based on the material information and coverage area of each of the aforementioned coverings, and the overlapping coverage relationship of all the aforementioned coverings, determine the degree of tactile isolation of all the aforementioned coverings for the target user; Based on the behavioral state information, the current posture and action of the target user are determined, and based on the current posture and action, the awakening nature of the target user is determined, wherein the awakening nature includes being in bed or being awake. Based on the described somatic isolation and the described awakening characteristics, the expected recovery somatic parameters for the target user are determined.
4. The intelligent air conditioning control method based on user wake-up parameters according to claim 2, characterized in that, The step of determining the expected recovery sensation parameters of the target user based on the sleep quality information includes: Based on the sleep quality information, determine the sleep time during which the target user is in deep sleep, and based on the sleep time, determine the duration and depth of the target user's deep sleep. Based on the duration of deep sleep, the duration of deep sleep, and the target user's pre-sleep fatigue parameters, determine the target user's physical fatigue and mental state after waking up; Based on the duration and duration of deep sleep, the target user's comfort level in the current scene is determined, and based on the physical fatigue and mental state, the target user's environmental adaptability is determined. Based on the activity level and environmental adaptability, the expected recovery sensation parameters of the target user are determined.
5. The intelligent air conditioning control method based on user wake-up parameters according to any one of claims 1-4, characterized in that, The step of determining whether the target user meets the preset conditions for physical recovery based on the current awakening physical sensation parameters and the expected recovery physical sensation parameters includes: Determine whether the current awakening sensory parameter is greater than or equal to the expected recovery sensory parameter; When it is determined that the current awakening sensation parameter is greater than or equal to the expected recovery sensation parameter, it is determined that the target user does not meet the preset sensation recovery requirement condition. When it is determined that the current awakening sensation parameter is less than the expected recovery sensation parameter, the difference and absolute value operations are performed on the current awakening sensation parameter and the expected recovery sensation parameter to obtain the current sensation difference. Determine whether the current somatosensory difference is greater than or equal to a preset somatosensory difference threshold; When it is determined that the current body sensation difference is greater than or equal to the body sensation difference threshold, it is determined that the target user meets the preset body sensation recovery requirement condition; When it is determined that the current body sensation difference is less than the body sensation difference threshold, it is determined that the target user does not meet the preset body sensation recovery requirement conditions.
6. The intelligent air conditioning control method based on user wake-up parameters according to claim 5, characterized in that, After determining the comfort parameters of the target user, the method further includes: The degree of comfort difference is determined based on the aforementioned comfort sensation parameters and the current awakening sensation parameters; Determine whether the comfort difference is greater than or equal to a preset comfort difference threshold; When it is determined that the comfort difference is greater than or equal to the comfort difference threshold, the following steps are performed: determining the second control parameter of the smart air conditioner based on the comfort sensation parameter and the current wakefulness sensation parameter; and performing corresponding control operations on the smart air conditioner based on the second control parameter.
7. The intelligent air conditioning control method based on user wake-up parameters according to claim 6, characterized in that, The method further includes: When it is determined that the comfort difference is less than the comfort difference threshold, the cause of the comfort difference phenomenon is determined based on the comfort sensation parameters and the current awakening sensation parameters. Based on the comfort sensation parameters, the current awakening sensation parameters, and the cause, determine the associated consequences of the comfort difference phenomenon; Based on the causes and consequences, determine whether the comfort difference phenomenon meets the preset necessary conditions for processing. When it is determined that the comfort difference phenomenon meets the necessary conditions for processing, the following steps are executed: determining the second control parameter of the smart air conditioner based on the comfort sensation parameter and the current wakefulness sensation parameter; and performing corresponding control operations on the smart air conditioner based on the second control parameter.
8. An intelligent air conditioning control device based on user wake-up parameters, characterized in that, The device includes: The parameter determination module is used to determine the current awakening somatic sensation parameters of the target user and the expected recovery somatic sensation parameters of the target user when the smart air conditioner is running and the target user is awake. The judgment module is used to determine whether the target user meets the preset conditions for physical recovery based on the current awakening physical sensation parameters and the expected recovery physical sensation parameters. The control module is used to determine the first control parameter of the smart air conditioner based on the current awakening sensation parameter and the expected recovery sensation parameter when the judgment module determines that the target user meets the physical warming requirement; and to perform corresponding control operations on the smart air conditioner according to the first control parameter so as to make the target user feel warmer. The control module is further configured to: determine the target user's comfort parameters when the judgment module determines that the target user does not meet the conditions for feeling warmer; determine the second control parameters of the smart air conditioner based on the comfort parameters and the current awakening parameters; and perform corresponding control operations on the smart air conditioner based on the second control parameters to make the target user feel comfortable.
9. An intelligent air conditioning control device based on user wake-up 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 intelligent air conditioning control method based on user wake-up parameters as described in any one of claims 1-7.
10. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the intelligent air conditioning control method based on user wake-up parameters as described in any one of claims 1-7.