Air conditioner regulation and control method and device based on user sleep parameters
By detecting users' sleep vital signs parameters, analyzing sleep cycles, and adjusting the air conditioner's airflow, the problem of users perceiving changes in the environment during sleep is solved, achieving flexibility and accuracy in air conditioner adjustment and improving sleep comfort.
Patent Information
- Application Number
- CN202410630627.9
- 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
During sleep, changes in human physiological characteristics lead to changes in environmental perception, causing discomfort when adjusting the air conditioner and affecting sleep comfort.
By detecting the user's vital signs during sleep, analyzing the sleep cycle and comfortable sleep needs, and adjusting the air conditioner's airflow in real time to match the user's sleep requirements.
It improves the flexibility and accuracy of air conditioning control, provides a sleep environment that matches the user's sleep patterns, and enhances the user's sleep comfort and quality.
Smart Images

Figure CN120991445A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent control, and in particular to an air conditioner control method and device based on user sleep parameters. BACKGROUND
[0002] In the case that the user feels uncomfortable at the ambient temperature, many people will choose to use the air conditioner to adjust the indoor temperature to improve the comfort. In actual life, when the user sleeps, the air conditioner is usually set by the user before going to bed to set a temperature value that the indoor environment needs to reach or set a fixed air outlet mode of the air conditioner to control the operation of the air conditioner. However, the temperature set by the user is usually set according to the user's perception of the environment before sleeping, and the user's perception of the environment will change due to the change of human physiological signs during the user's sleep, which may cause the user to feel cold during the sleep, thereby reducing the user's sleep comfort.
[0003] Therefore, it is particularly important to provide a technical solution capable of improving the flexibility of air conditioner control to improve the user's sleep comfort. SUMMARY
[0004] The present application provides an air conditioner control method and device based on user sleep parameters, which can improve the flexibility of air conditioner control and improve the user's sleep comfort.
[0005] In order to solve the above technical problems, the present application discloses an air conditioner control method based on user sleep parameters, which comprises:
[0006] When it is detected that the air conditioner is in an operating state and the user is in a sleep state, the sleep sign parameter of the user is acquired;
[0007] According to the sleep sign parameter, the sleep cycle parameter of the user currently in is analyzed; the sleep cycle parameter comprises a current sleep cycle and a current sleep stage corresponding to the current sleep cycle;
[0008] According to the sleep cycle parameter, the comfortable sleep demand parameter corresponding to the user is determined;
[0009] According to the comfortable sleep demand parameter, the control parameter corresponding to the air conditioner is determined;
[0010] According to the control parameter, the air conditioner is controlled to execute the air outlet operation corresponding to the control parameter.
[0011] As an optional implementation, in the first aspect of the present application, the determination of the comfortable sleep demand parameter corresponding to the user according to the sleep cycle parameter comprises:
[0012] determining whether the sleep cycle parameter matches a preset sleep cycle parameter;
[0013] when it is determined that the sleep cycle parameter matches the preset sleep cycle parameter, determining a wake-up demand parameter corresponding to the user, and determining a first sleep demand parameter corresponding to the user according to the wake-up demand parameter;
[0014] when it is determined that the sleep cycle parameter does not match the preset sleep cycle parameter, determining a sleep correlation parameter corresponding to the user, and determining a second sleep demand parameter corresponding to the user according to the sleep correlation parameter;
[0015] wherein the comfortable sleep demand parameter comprises the first sleep demand parameter or the second sleep demand parameter.
[0016] As an optional implementation form, in the first aspect of the present application, the wake-up demand parameter comprises an estimated wake-up duration; the estimated wake-up duration is used to represent a duration from a current time to a time at which the user is estimated to wake up;
[0017] wherein the determination of the wake-up demand parameter corresponding to the user comprises:
[0018] obtaining at least one sleep influence parameter corresponding to the user;
[0019] for each sleep influence parameter, determining whether the sleep influence parameter is in a preset parameter range corresponding to the sleep influence parameter;
[0020] for each sleep influence parameter, when it is determined that the sleep influence parameter is not in the preset parameter range corresponding to the sleep influence parameter, determining the sleep influence parameter as a target influence parameter;
[0021] when there is at least one target influence parameter, determining the estimated wake-up duration corresponding to the user according to all the target influence parameters and the sleep sign parameter;
[0022] when there is no target influence parameter, determining the estimated wake-up duration corresponding to the user according to the sleep sign parameter.
[0023] As an optional implementation form, in the first aspect of the present application, the wake-up demand parameter further comprises a combination of one or more of a wake-up comfortable temperature, a wake-up comfortable humidity, a wake-up comfortable wind speed and a wake-up comfortable wind direction;
[0024] wherein the method further comprises:
[0025] obtaining a current environment temperature of a sleep environment in which the user is located and a historical sleep record corresponding to the user;
[0026] screening a target sleep record corresponding to the current sleep cycle from the historical sleep records;
[0027] determining a sleep sensitivity coefficient of the user corresponding to the current sleep cycle according to the target sleep record;
[0028] and the determining the first sleep demand parameter of the user according to the wake-up demand parameter comprises:
[0029] analyzing a sleep demand change parameter corresponding to the current sleep cycle according to the current environment temperature and the wake-up demand parameter;
[0030] determining the first sleep demand parameter of the user according to the sleep demand change parameter and the sleep sensitivity coefficient of the user corresponding to the current sleep cycle.
[0031] As an optional implementation, in the first aspect of the present application, the sleep-related parameter comprises a combination of one or more of a sleep position of the user, a sleep posture parameter of the user and a region parameter corresponding to a region where the user is located;
[0032] wherein the determining the second sleep demand parameter of the user according to the sleep-related parameter comprises:
[0033] analyzing the sleep posture parameter of the user to obtain a sleep posture change parameter of the user;
[0034] evaluating a sleep stability degree of the user according to the sleep posture change parameter and the sleep sign parameter;
[0035] analyzing an environment perception situation of the user according to the sleep posture parameter and the sleep posture change parameter; the environment perception situation of the user is used to represent a current perception situation of the user for an environment parameter of a sleep environment where the user is located; the environment perception situation comprises a temperature perception situation and / or a humidity perception situation;
[0036] determining a sleep environment adjustment demand of the user according to the environment perception situation and the sleep stability degree;
[0037] determining the second sleep demand parameter of the user according to the sleep position of the user, the sleep environment adjustment demand and the sleep sensitivity coefficient of the user corresponding to the current sleep cycle.
[0038] As an optional implementation, in the first aspect of the present application, the sleep sign parameter comprises a combination of one or more of an eye movement parameter, a breathing parameter, a heart rate parameter and a body movement parameter;
[0039] The sleep period parameter of the user is analyzed according to the sleep sign parameter, and the sleep period parameter of the user is analyzed according to the sleep sign parameter, including:
[0040] The current time information and the current sleep duration of the user are obtained.
[0041] The sleep type corresponding to the user is determined according to the current time information and the current sleep duration.
[0042] A plurality of sleep periods corresponding to the sleep type and a sleep parameter range corresponding to each sleep period are obtained; each sleep period includes a plurality of sleep stages; the sleep parameter range corresponding to each sleep period includes a sleep stage order corresponding to each sleep stage of the sleep period, a sleep duration range corresponding to each sleep stage of the sleep period, and a sleep sign parameter range corresponding to each sleep stage of the sleep period.
[0043] The current sleep period and the current sleep stage corresponding to the current sleep period are determined according to the current sleep duration, the sleep sign parameter and all the sleep parameter ranges.
[0044] As an optional implementation, in the first aspect of the present application, the comfortable sleep demand parameter includes one or more combinations of demand temperature, demand humidity, demand wind speed and demand wind direction.
[0045] The method further includes:
[0046] The current running parameter corresponding to the air conditioner and the air outlet control parameter range corresponding to the sleep period parameter are obtained.
[0047] The control parameter corresponding to the air conditioner is determined according to the comfortable sleep demand parameter, and the control parameter corresponding to the air conditioner is determined according to the comfortable sleep demand parameter, including:
[0048] The environmental influence coefficient of the air outlet airflow of the air conditioner on the sleep environment of the user is analyzed according to the determined sleep position corresponding to the user and the current running parameter corresponding to the air conditioner.
[0049] The sleep heat preservation information of the user is obtained; the sleep heat preservation information includes bedding information used by the user and / or sleep clothing information of the user.
[0050] The heat loss coefficient corresponding to the user is analyzed according to the sleep heat preservation information and the sleep sign parameter.
[0051] Based on the comfortable sleep requirement parameters, the environmental impact coefficient, and the heat loss coefficient, the corresponding control parameters of the air conditioner are determined; the corresponding control parameters of the air conditioner include the air outlet control parameters of the air conditioner and / or the oscillation control parameters of the air guide component of the air conditioner.
[0052] A second aspect of the present invention discloses an air conditioning control device based on user sleep parameters, the device comprising:
[0053] The acquisition module is used to acquire the user's sleep vital signs parameters when the air conditioner is detected to be running and the user is in a sleep state.
[0054] The analysis module is used to analyze the user's current sleep cycle parameters based on the sleep vital signs parameters; the sleep cycle parameters include the current sleep cycle and the current sleep stage corresponding to the current sleep cycle;
[0055] The determination module is used to determine the user's corresponding comfortable sleep requirement parameters based on the sleep cycle parameters;
[0056] The determining module is further configured to determine the control parameters corresponding to the air conditioner based on the comfortable sleep requirement parameters;
[0057] The control module is used to control the air conditioner to perform the air outlet operation corresponding to the control parameters according to the control parameters.
[0058] As an optional implementation, in a second aspect of the present invention, the specific method by which the determining module determines the user's corresponding comfortable sleep requirement parameters based on the sleep cycle parameters includes:
[0059] Determine whether the sleep cycle parameters match the preset sleep cycle parameters;
[0060] When it is determined that the sleep cycle parameter matches the preset sleep cycle parameter, the wake-up requirement parameter corresponding to the user is determined, and the first sleep requirement parameter corresponding to the user is determined based on the wake-up requirement parameter.
[0061] When it is determined that the sleep cycle parameter does not match the preset sleep cycle parameter, the sleep association parameter corresponding to the user is determined, and the second sleep requirement parameter corresponding to the user is determined based on the sleep association parameter.
[0062] The comfortable sleep requirement parameters include either the first sleep requirement parameter or the second sleep requirement parameter.
[0063] As an optional implementation, in the second aspect of the present application, the wake-up demand parameter comprises an estimated wake-up duration, which represents a duration from a current time to a time when the user is estimated to wake up.
[0064] The specific manner in which the determination module determines the wake-up demand parameter corresponding to the user comprises:
[0065] The at least one sleep influence parameter corresponding to the user is acquired.
[0066] For each sleep influence parameter, it is determined whether the sleep influence parameter is in a preset parameter range corresponding to the sleep influence parameter.
[0067] For each sleep influence parameter, when it is determined that the sleep influence parameter is not in the preset parameter range corresponding to the sleep influence parameter, the sleep influence parameter is determined as a target influence parameter.
[0068] When there is at least one target influence parameter, an estimated wake-up duration corresponding to the user is determined according to all the target influence parameters and the sleep sign parameter.
[0069] When there is no target influence parameter, an estimated wake-up duration corresponding to the user is determined according to the sleep sign parameter.
[0070] As an optional implementation, in the second aspect of the present application, the wake-up demand parameter further comprises a combination of one or more of a wake-up comfortable temperature, a wake-up comfortable humidity, a wake-up comfortable wind speed, and a wake-up comfortable wind direction.
[0071] The acquisition module is further configured to acquire a current environment temperature of a sleep environment in which the user is located and a historical sleep record corresponding to the user.
[0072] The device further comprises:
[0073] A screening module is configured to screen a target sleep record corresponding to the current sleep cycle from the historical sleep record.
[0074] The determination module is further configured to determine a sleep sensitivity coefficient corresponding to the user in the current sleep cycle according to the target sleep record.
[0075] The specific manner in which the determination module determines the first sleep demand parameter corresponding to the user according to the wake-up demand parameter comprises:
[0076] A sleep demand change parameter corresponding to the current sleep cycle is analyzed according to the current environment temperature and the wake-up demand parameter.
[0077] According to the sleep demand change parameter and the sleep sensitivity coefficient of the user corresponding to the current sleep cycle, a first sleep demand parameter of the user is determined.
[0078] As an optional implementation, in the second aspect of the present application, the sleep-related parameter comprises a combination of one or more of a sleep position of the user, a sleep posture parameter of the user, and a region parameter of a region where the user is located.
[0079] The specific manner in which the determination module determines the second sleep demand parameter of the user according to the sleep-related parameter comprises:
[0080] The sleep posture parameter of the user is analyzed to obtain a sleep posture change parameter of the user.
[0081] According to the sleep posture change parameter and the sleep sign parameter, the sleep stability of the user is evaluated.
[0082] According to the sleep posture parameter and the sleep posture change parameter, the environmental perception situation of the user is analyzed; the environmental perception situation of the user is used to represent the current perception situation of the user for the environmental parameter of the sleep environment; the environmental perception situation comprises a temperature perception situation and / or a humidity perception situation.
[0083] According to the environmental perception situation and the sleep stability, a sleep environment adjustment demand of the user is determined.
[0084] According to the sleep position of the user, the sleep environment adjustment demand, and the sleep sensitivity coefficient of the user corresponding to the current sleep cycle, a second sleep demand parameter of the user is determined.
[0085] As an optional implementation, in the second aspect of the present application, the sleep sign parameter comprises a combination of one or more of an eye movement parameter, a breathing parameter, a heart rate parameter, and a body movement parameter.
[0086] The specific manner in which the analysis module analyzes the sleep cycle parameter of the user according to the sleep sign parameter comprises:
[0087] Current time information and a current sleep duration of the user are obtained.
[0088] According to the current time information and the current sleep duration, a sleep type of the user is determined.
[0089] acquire a plurality of sleep cycles corresponding to the sleep type and a sleep parameter range corresponding to each of the sleep cycles; each of the sleep cycles comprises a plurality of sleep stages; and the sleep parameter range corresponding to each of the sleep cycles comprises a sleep stage sequence corresponding to each of the sleep stages of the sleep cycle, a sleep duration range corresponding to each of the sleep stages of the sleep cycle, and a sleep sign parameter range corresponding to each of the sleep stages of the sleep cycle;
[0090] determine a current sleep cycle in which the user is currently located and a current sleep stage corresponding to the current sleep cycle according to the current sleep duration, the sleep sign parameter, and all the sleep parameter ranges.
[0091] As an optional implementation, in the second aspect of the present application, the comfortable sleep demand parameter comprises a combination of one or more of a demand temperature, a demand humidity, a demand wind speed, and a demand wind direction.
[0092] The acquisition module is further configured to acquire a current operation parameter corresponding to the air conditioner and an air outlet control parameter range corresponding to the sleep cycle parameter.
[0093] The specific mode of the determination module for determining the regulation parameter corresponding to the air conditioner according to the comfortable sleep demand parameter comprises:
[0094] analyze an environmental influence coefficient of the air outlet airflow of the air conditioner on the sleep environment of the user according to the determined sleep position of the user and the current operation parameter corresponding to the air conditioner.
[0095] acquire sleep thermal insulation information of the user; the sleep thermal insulation information comprises bedding information used by the user and / or sleep clothing information of the user.
[0096] analyze a heat loss coefficient corresponding to the user according to the sleep thermal insulation information and the sleep sign parameter.
[0097] determine a regulation parameter corresponding to the air conditioner according to the comfortable sleep demand parameter, the environmental influence coefficient, and the heat loss coefficient; the regulation parameter corresponding to the air conditioner comprises an air outlet regulation parameter of the air conditioner and / or a swing regulation parameter corresponding to a wind guide assembly of the air conditioner.
[0098] The third aspect of the present application discloses another air conditioner regulation device based on user sleep parameters, which comprises:
[0099] a memory in which an executable program code is stored;
[0100] a processor coupled to the memory;
[0101] The processor invokes the executable program code stored in the memory to execute the air conditioner regulation method based on the user sleep parameter disclosed in the first aspect of the application.
[0102] The fourth aspect of the application discloses a computer storage medium storing computer instructions, which are invoked to execute the air conditioner regulation method based on the user sleep parameter disclosed in the first aspect of the application.
[0103] Compared with the prior art, the embodiments of the application have the following beneficial effects:
[0104] In the embodiments of the application, when it is detected that the air conditioner is in a running state and the user is in a sleep state, the sleep sign parameter of the user is acquired; according to the sleep sign parameter, the sleep cycle parameter in which the user is currently located is analyzed; the sleep cycle parameter includes the current sleep cycle and the current sleep stage corresponding to the current sleep cycle; according to the sleep cycle parameter, the comfortable sleep demand parameter corresponding to the user is determined; according to the comfortable sleep demand parameter, the regulation parameter corresponding to the air conditioner is determined; and according to the regulation parameter, the air conditioner is controlled to execute the air outlet operation corresponding to the regulation parameter. It can be seen that, by implementing the application, when it is detected that the air conditioner is running and the user is in a sleep state, the sleep sign parameter of the user can be acquired, and according to the sleep sign parameter, the sleep cycle parameter in which the user is currently located is analyzed, and then according to the sleep cycle parameter, the comfortable sleep demand parameter corresponding to the user is determined, and then according to the comfortable sleep demand parameter, the regulation parameter corresponding to the air conditioner is determined, so as to control the air conditioner to execute the air outlet operation after the regulation, which can intelligently regulate the air conditioner running based on the sleep sign parameter of the user in the sleep state and the sleep cycle in which the user is located, can improve the regulation flexibility of the air conditioner on the basis of improving the analysis accuracy of the sleep parameter of the user, thereby being beneficial to improving the air outlet accuracy of the air conditioner, improving the regulation accuracy of the air outlet of the air conditioner on the sleep environment, and further being beneficial to providing the sleep environment meeting the sleep condition of the user to the user in a targeted manner, and further being beneficial to improving the sleep comfort of the user and improving the sleep quality of the user. BRIEF DESCRIPTION OF DRAWINGS
[0105] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can also be obtained by those skilled in the art without any creative effort on the basis of these drawings.
[0106] Figure 1 is a scene schematic diagram of a scene to which an air conditioner regulation method based on a user sleep parameter disclosed in an embodiment of the application is applied;
[0107] Figure 2is a flow diagram of a user sleep parameter-based air conditioner regulation method disclosed by an embodiment of the present application;
[0108] Figure 3 is a flow diagram of another user sleep parameter-based air conditioner regulation method disclosed by an embodiment of the present application;
[0109] Figure 4 is a structural diagram of a user sleep parameter-based air conditioner regulation device disclosed by an embodiment of the present application;
[0110] Figure 5 is a structural diagram of another user sleep parameter-based air conditioner regulation device disclosed by an embodiment of the present application;
[0111] Figure 6 is a structural diagram of still another user sleep parameter-based air conditioner regulation device disclosed by an embodiment of the present application. DETAILED DESCRIPTION
[0112] In order to make the personnel in the art better understand the present application scheme, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor fall within the scope of protection of the present application.
[0113] The terms "first", "second", and the like in the specification of the present application and the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product, or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product, or end.
[0114] In this document, the reference to "embodiments" means that the specific features, structures, or characteristics described in connection with the embodiments can be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it mutually exclusive of other embodiments. The person skilled in the art explicitly and implicitly understands that the embodiments described herein can be combined with other embodiments.
[0115] The application discloses an air conditioner regulation and control method and device based on user sleep parameters, which can acquire sleep sign parameters of a user when detecting that an air conditioner is running and the user is in a sleep state, analyze sleep period parameters of the user according to the sleep sign parameters, determine corresponding comfortable sleep demand parameters of the user according to the sleep period parameters, determine corresponding regulation and control parameters of the air conditioner according to the comfortable sleep demand parameters, and control the air conditioner to perform air outlet operation after regulation and control, so that the air conditioner can be intelligently regulated and controlled in real time based on the sign parameters of the user in the sleep state and the sleep period of the user, the regulation and control flexibility of the air conditioner can be improved on the basis of improving the analysis accuracy of the sleep parameters of the user, the air outlet accuracy of the air conditioner can be improved, the regulation accuracy of the air outlet of the air conditioner on a sleep environment can be improved, and the sleep environment of the user can be provided according to the sleep condition of the user, the sleep comfort of the user can be improved, and the sleep quality of the user can be improved. The following will be described in detail.
[0116] In order to better understand the air conditioner regulation and control method and device based on user sleep parameters described in the application, first, the scene to which the air conditioner regulation and control method based on user sleep parameters is applied is described. The scene to which the method is applied is specifically a scene of air conditioner running, such as a scene in which the air conditioner needs to be regulated and controlled. Specifically, taking the scene in which the air conditioner needs to be regulated and controlled as an example, the scene can be as shown in Figure 1 Figure 1 The application discloses a scene to which the air conditioner regulation and control method based on user sleep parameters is applied. As shown in Figure 1 , the scene to which the method is applied is specifically a scene of air conditioner running, such as a scene in which the air conditioner needs to be regulated and controlled. Specifically, taking the scene in which the air conditioner needs to be regulated and controlled as an example, the scene can be as shown in
[0117] Further, the air conditioner can be intelligently regulated and controlled by performing the following operations: when detecting that the air conditioner is in a running state and the user is in a sleep state, acquiring sleep sign parameters of the user; analyzing sleep period parameters of the user according to the sleep sign parameters; the sleep period parameters include a current sleep period and a current sleep stage corresponding to the current sleep period; determining corresponding comfortable sleep demand parameters of the user according to the sleep period parameters; determining corresponding regulation and control parameters of the air conditioner according to the comfortable sleep demand parameters; and controlling the air conditioner to perform air outlet operation corresponding to the regulation and control parameters according to the regulation and control parameters.
[0118] It should be noted that Figure 1 The scene schematic diagram shown is only used to represent one of the scenes to which the air conditioner control method based on user sleep parameters is applicable, and is not used to limit other scenes to which the air conditioner control method based on user sleep parameters is applicable, and Figure 1 The scene schematic diagram shown does not limit the air conditioner model, the air conditioner installation position, the user's corresponding sleep position, and the layout of the target area.
[0119] The above describes one of the scenes to which the air conditioner control method based on user sleep parameters is applicable, and the following describes the air conditioner control method based on user sleep parameters in detail.
[0120] Embodiment one
[0121] Please refer to Figure 2 , Figure 2 is a flowchart of an air conditioner control method based on user sleep parameters disclosed by the embodiment of the present application. Wherein, Figure 2 The air conditioner control method based on user sleep parameters described can be applied to an air conditioner control device based on user sleep parameters, which can include one of a control device, a control terminal, a control system, and a server, wherein the server includes a local server or a cloud server, and the embodiment of the present application does not limit it; the device can be applied to a smart air conditioner or a control device corresponding to the smart air conditioner, and the device can also be applied to a smart home platform or a smart home system, and the embodiment of the present application does not limit it. As shown in the figure, Figure 2 The air conditioner control method based on user sleep parameters can include the following operations:
[0122] 101、When it is detected that the air conditioner is in a running state and the user is in a sleep state, the sleep sign parameter of the user is acquired.
[0123] In the embodiment of the present application, optionally, the sleep sign parameter of the user can include one or a combination of more of the sleep sign parameter, including eye movement parameter, breathing parameter, heart rate parameter, and body movement parameter, and the embodiment of the present application does not limit it; further optionally, the sleep sign parameter of the user corresponding to multiple time points can be acquired, and the embodiment of the present application does not limit it.
[0124] 102、According to the sleep sign parameter, the sleep cycle parameter of the user currently in is analyzed.
[0125] In the embodiment of the present application, the sleep cycle parameter currently experienced by the user can include a current sleep cycle and a current sleep stage corresponding to the current sleep cycle; wherein the current sleep cycle is one of the determined sleep cycles, and the current sleep stage is one of the sleep stages included in the current sleep cycle; optionally, the current sleep cycle can be one of a first sleep cycle, a second sleep cycle, a third sleep cycle, and a fourth sleep cycle, which are not limited in the embodiment of the present application; wherein the first sleep cycle, the second sleep cycle, the third sleep cycle, and the fourth sleep cycle are sleep cycles divided based on time sequence and / or sleep depth in the human sleep process, which are not limited in the embodiment of the present application; optionally, the current sleep stage can be one of a light sleep stage, a deep sleep stage, and an eye movement stage, which are not limited in the embodiment of the present application.
[0126] 103. Determine the comfortable sleep demand parameter corresponding to the user according to the sleep cycle parameter.
[0127] In the embodiment of the present application, the comfortable sleep demand parameter corresponding to the user is used to represent the environmental condition required to make the sleep comfort of the user in the sleep state reach the preset standard; optionally, the comfortable sleep demand parameter corresponding to the user can include one or a combination of more than one of the demand temperature, the demand humidity, the demand wind speed, and the demand wind direction, which are not limited in the embodiment of the present application.
[0128] 104. Determine the control parameter corresponding to the air conditioner according to the comfortable sleep demand parameter.
[0129] In the embodiment of the present application, optionally, the control parameter corresponding to the air conditioner can include an air outlet control parameter of the air conditioner and / or a swing control parameter corresponding to a wind guide assembly of the air conditioner, which are not limited in the embodiment of the present application; further optionally, the air outlet control parameter of the air conditioner can include one or a combination of more than one of the air outlet air volume, the air outlet air speed, and the air outlet temperature; optionally, the wind guide assembly of the air conditioner can include a swing leaf and / or a wind guide plate, wherein the swing leaf is used to adjust the air outlet direction of the air conditioner in the horizontal direction (for example, the left-right direction), and the wind guide plate is used to adjust the air outlet direction of the air conditioner in the vertical direction (for example, the up-down direction), which are not limited in the embodiment of the present application; further optionally, the swing control parameter corresponding to the wind guide assembly of the air conditioner can include one or a combination of more than one of the swing leaf swing angle range corresponding to the swing leaf, the wind guide plate upward angle range corresponding to the wind guide plate, the wind guide plate downward angle range corresponding to the wind guide plate, the swing leaf swing frequency corresponding to the swing leaf, and the wind guide plate swing frequency corresponding to the wind guide plate, which are not limited in the embodiment of the present application.
[0130] 105. Control the air conditioner to perform the air outlet operation corresponding to the control parameter according to the control parameter.
[0131] Optionally, the air outlet operation corresponding to the regulation parameter can include air outlet regulation operation of the air conditioner and / or swing regulation operation of the air guiding assembly of the air conditioner, and the embodiment of the present application is not limited thereto.
[0132] It can be seen that the method described in the embodiment of the present application can detect that the air conditioner is running and the user is in a sleep state, obtain the sleep sign parameter of the user, analyze the sleep cycle parameter of the user according to the sleep sign parameter, determine the comfortable sleep demand parameter of the user according to the sleep cycle parameter, determine the regulation parameter of the air conditioner according to the comfortable sleep demand parameter, and control the air conditioner to execute the air outlet operation after regulation, which can intelligently regulate the operation of the air conditioner based on the sign parameter of the user in the sleep state and the sleep cycle of the user, can improve the regulation flexibility of the air conditioner on the basis of improving the analysis accuracy of the sleep parameter of the user, thereby improving the air outlet accuracy of the air conditioner, improving the regulation accuracy of the sleep environment by the air outlet of the air conditioner, and providing the sleep environment meeting the sleep condition of the user to the user, thereby improving the sleep comfort of the user and improving the sleep quality of the user.
[0133] In an optional embodiment, analyzing the sleep cycle parameter of the user according to the sleep sign parameter can include the following operations:
[0134] obtaining current time information and current sleep duration of the user;
[0135] determining the sleep type of the user according to the current time information and the current sleep duration;
[0136] obtaining a plurality of sleep cycles corresponding to the sleep type and a sleep parameter range corresponding to each sleep cycle; each sleep cycle includes a plurality of sleep stages; the sleep parameter range corresponding to each sleep cycle includes a sleep stage order corresponding to each sleep stage of the sleep cycle, a sleep duration range corresponding to each sleep stage of the sleep cycle, and a sleep sign parameter range corresponding to each sleep stage of the sleep cycle;
[0137] determining the current sleep cycle of the user and the current sleep stage corresponding to the current sleep cycle according to the current sleep duration, the sleep sign parameter and all sleep parameter ranges.
[0138] The current time information can include one or more combinations of current time period information (for example, morning time period, noon time period, midnight time period), current specific time (for example, 12:00), and current week information (for example, day of the week), and embodiments of the present application are not limited thereto; wherein the current sleep duration of the user is the duration that the user has been in a sleep state for; wherein the sleep type corresponding to the user can include a long-time sleep type (for example, sleep at night) or a short-time sleep (for example, a nap, a short rest), and embodiments of the present application are not limited thereto.
[0139] Optionally, each sleep cycle can be one of a first sleep cycle, a second sleep cycle, a third sleep cycle, and a fourth sleep cycle, and each sleep stage can be one of a light sleep stage, a deep sleep stage, and an eye movement stage, and embodiments of the present application are not limited thereto.
[0140] It can be seen that the optional embodiment can determine the sleep type of the user according to the obtained current time information and the current sleep duration of the user, and then obtain a plurality of sleep cycle parameters corresponding to the sleep type and a sleep parameter range corresponding to each sleep cycle. Then, according to the current sleep duration, the sleep parameter range, and all sleep parameter ranges, the current sleep cycle in which the user is currently located and the current sleep stage corresponding to the current sleep cycle are determined, which can improve the analysis accuracy of the current sleep condition and the sleep parameter of the user, thereby facilitating the determination accuracy of the sleep cycle and the sleep stage in which the user is currently located, and further facilitating the determination accuracy of the subsequent comfortable sleep demand parameter.
[0141] In yet another optional embodiment, the method can further include the following operations:
[0142] The current running parameter of the air conditioner and the air outlet control parameter range corresponding to the sleep cycle parameter are obtained.
[0143] The current running parameter of the air conditioner can include one or more combinations of the current air outlet air volume, the current air outlet air speed, the current air outlet temperature, and the current air outlet direction, and embodiments of the present application are not limited thereto; the air outlet control parameter range corresponding to the sleep cycle parameter can include a first control parameter range corresponding to the current sleep cycle and / or a second control parameter range corresponding to the current sleep stage corresponding to the current sleep cycle, and embodiments of the present application are not limited thereto; wherein each of the above-mentioned air outlet control parameter ranges can include one or more combinations of an air outlet air volume range, an air outlet air speed range, an air outlet temperature range, a swing angle threshold of a swing leaf, an upward angle threshold of a deflector, a downward angle threshold of the deflector, a swing frequency threshold of the swing leaf, and a swing frequency threshold of the deflector, and embodiments of the present application are not limited thereto.
[0144] In the optional embodiment, optionally, determining the corresponding regulation parameter of the air conditioner according to the comfortable sleep demand parameter can include the following operations:
[0145] According to the determined sleep position of the user and the current operation parameter of the air conditioner, an environmental influence coefficient of the air outlet airflow of the air conditioner on the sleep environment of the user is analyzed;
[0146] Sleep thermal insulation information of the user is obtained; the sleep thermal insulation information includes bedding information used by the user and / or sleep clothing information of the user;
[0147] According to the sleep thermal insulation information and the sleep sign parameter, a heat loss coefficient of the user is analyzed;
[0148] According to the comfortable sleep demand parameter, the environmental influence coefficient and the heat loss coefficient, the corresponding regulation parameter of the air conditioner is determined; the corresponding regulation parameter of the air conditioner includes an air outlet regulation parameter of the air conditioner and / or a swing regulation parameter of the air guiding assembly of the air conditioner.
[0149] For example, the sleep position of the user can include position information of a bed, a sofa or a chair on which the user sleeps and / or position coordinate information of the current position of the user, and the embodiments of the present application are not limited thereto.
[0150] If the value of the environmental influence coefficient is positive and the value is larger, it indicates that the air outlet airflow of the air conditioner is more likely to affect the environmental parameter of the sleep environment of the user; if the value of the environmental influence coefficient is negative and the value is larger, it indicates that the air outlet airflow of the air conditioner is less likely to affect the environmental parameter of the sleep environment of the user, wherein the environmental parameter can include environmental temperature and / or environmental humidity and / or environmental air flow parameter, and the embodiments of the present application are not limited thereto.
[0151] Optionally, the bedding information used by the user can include one or more combinations of a bedding material of the bedding used by the user, a bedding size of the bedding, and a coverage situation of the bedding currently covering the user, and the embodiments of the present application are not limited thereto; optionally, the sleep clothing information of the user can include a clothing type (for example, a short sleeve type, a long sleeve type) of the current clothing of the user and / or a clothing material of the clothing, and the embodiments of the present application are not limited thereto.
[0152] If the value of the heat loss coefficient of the user is larger, it indicates that the user is more likely to lose body heat and feel cold.
[0153] It can be seen that the optional embodiment can analyze the environmental influence coefficient of the air outlet airflow of the air conditioner on the user's sleep environment through the user's sleep position and the current operating parameters of the air conditioner, analyze the heat loss coefficient of the user according to the obtained sleep heat preservation information and sleep sign parameter of the user, and determine the corresponding regulating parameters of the air conditioner according to the comfortable sleep demand parameter, the environmental influence coefficient and the heat loss coefficient. The heat loss of the user during sleep and the environmental influence of the air outlet of the air conditioner on the position of the user can be intelligently analyzed, so that the air conditioner regulating parameters can be more accurately determined based on the comfortable sleep demand parameter, thereby improving the accuracy of the air conditioner regulating parameters, improving the regulation accuracy of the air outlet of the air conditioner on the sleep environment, and making the determined air conditioner regulating parameters more in line with the user's perception of the environment, thereby providing a sleep environment in line with the user's sleep situation to the user more targeted, and improving the sleep comfort of the user.
[0154] In the optional embodiment, optionally, the method can further include the following operations:
[0155] Obtaining the current environmental temperature of the sleep environment where the user is located, and determining the comfortable temperature corresponding to the user;
[0156] Calculating the difference between the current environmental temperature and the comfortable temperature to obtain the current temperature difference;
[0157] According to the current temperature difference, determining the sleep airflow coverage demand corresponding to the air conditioner;
[0158] And, according to the comfortable sleep demand parameter, the environmental influence coefficient and the heat loss coefficient, determining the regulating parameters corresponding to the air conditioner, can include the following operations:
[0159] According to the comfortable sleep demand parameter, the environmental influence coefficient, the heat loss coefficient and the airflow coverage demand, determining the regulating parameters corresponding to the air conditioner.
[0160] It can be seen that the optional embodiment can also calculate the difference between the current environmental temperature of the sleep environment where the user is located and the comfortable temperature corresponding to the user, obtain the current temperature difference, and determine the sleep airflow coverage demand corresponding to the air conditioner according to the current temperature difference. According to the comfortable sleep demand parameter, the environmental influence coefficient, the heat loss coefficient and the airflow coverage demand, the regulating parameters corresponding to the air conditioner are determined, which can improve the analysis accuracy of the sleep airflow coverage demand, thereby improving the analysis accuracy of the air outlet regulating demand of the air conditioner, and further improving the air conditioner regulating accuracy.
[0161] In the optional embodiment, further optionally, according to the current temperature difference, determining the sleep airflow coverage demand corresponding to the air conditioner can include the following operations:
[0162] If the current temperature difference is less than or equal to the first preset temperature difference and greater than the second preset temperature difference, it is determined that the sleep airflow coverage requirement corresponding to the air conditioner is the first airflow settling coverage height.
[0163] If the current temperature difference is less than or equal to the second preset temperature difference and greater than the third preset temperature difference, it is determined that the sleep airflow coverage requirement corresponding to the air conditioner is the second airflow settling coverage height.
[0164] If the current temperature difference is less than or equal to the third preset temperature difference and greater than the fourth preset temperature difference, it is determined that the sleep airflow coverage requirement corresponding to the air conditioner is the third airflow settling coverage height.
[0165] Among them, the first preset temperature difference is greater than the second preset temperature difference, the second preset temperature difference is greater than the third preset temperature difference, and the third preset temperature difference is greater than the fourth preset temperature difference.
[0166] Among them, the airflow settling coverage height is used to represent the height between the initial position of the air outlet airflow of the air conditioner after the air outlet and the sleep position corresponding to the user; the first airflow settling coverage height is higher than or equal to the second airflow settling coverage height, and the second airflow settling coverage height is higher than or equal to the third airflow settling coverage height.
[0167] It can be seen that the optional embodiment can also determine different airflow settling coverage heights of the air conditioner according to different preset temperature difference ranges of the current temperature difference, improve the determination accuracy of the airflow settling coverage height, thereby facilitating the improvement of the determination accuracy of the airflow coverage requirement corresponding to the air conditioner, and further facilitating the air conditioner to more accurately cover the range required by the user for sleep through the air outlet, thereby facilitating the improvement of the adjustment accuracy of the air conditioner for the sleep environment.
[0168] Embodiment two
[0169] Please refer to Figure 3 , Figure 3 is a flowchart of an air conditioner control method based on user sleep parameters disclosed by the embodiment of the application. Among them, Figure 3 The air conditioner control method based on user sleep parameters described can be applied to an air conditioner control device based on user sleep parameters. The control device can include one of a control equipment, a control terminal, a control system and a server, wherein the server includes a local server or a cloud server, and the embodiments of the application are not limited; the device can be applied to a smart air conditioner or a control device corresponding to the smart air conditioner, and the device can also be applied to a smart home platform or a smart home system, and the embodiments of the application are not limited. As Figure 3 The air conditioner control method based on user sleep parameters can include the following operations:
[0170] 201, when it is detected that the air conditioner is in a running state and the user is in a sleep state, the sleep physical parameter of the user is acquired.
[0171] 202、analyze the sleep cycle parameter of the user according to the sleep sign parameter.
[0172] 203、determine whether the sleep cycle parameter matches the preset sleep cycle parameter.
[0173] In the embodiment of the present application, when the determination result of step 203 is yes, the operation of step 204-step 205 is executed; when the determination result of step 203 is no, the operation of step 206-step 207 is executed; after the operation of step 205 or step 207 is executed, the operation of step 208 is executed.
[0174] In the embodiment of the present application, optionally, determining whether the sleep cycle parameter matches the preset sleep cycle parameter can include the following operations:
[0175] determining whether the current sleep stage is the preset sleep stage and the current sleep state is the preset sleep state;
[0176] when it is determined that the current sleep stage is the preset sleep stage and the current sleep state is the preset sleep state, it is determined that the sleep cycle parameter matches the preset sleep cycle parameter;
[0177] when it is determined that the current sleep stage is not the preset sleep stage or the current sleep state is not the preset sleep state, it is determined that the sleep cycle parameter does not match the preset sleep cycle parameter.
[0178] The preset sleep stage can be the last sleep stage corresponding to the sleep type corresponding to the user, and the preset sleep state can be any sleep state other than the last sleep state in the last sleep stage. For example, the preset sleep stage can be the fourth sleep stage, and the preset sleep state can be the deep sleep stage. The embodiment of the present application is not limited.
[0179] In this way, the accuracy of determining whether the sleep cycle parameter meets the condition can be improved, thereby facilitating more accurate determination of whether the user will wake up, so as to more accurately regulate the operation of the air conditioner before the user wakes up, and thereby facilitating improvement of the sleep comfort of the user.
[0180] 204、determine the wake-up demand parameter corresponding to the user.
[0181] 205、determine the first sleep demand parameter corresponding to the user according to the wake-up demand parameter.
[0182] In the embodiment of the present application, optionally, the first sleep demand parameter corresponding to the user can include one or a combination of the first demand temperature, the first demand humidity, the first demand wind speed and the first demand wind direction, and the embodiment of the present application is not limited.
[0183] 206, determine the sleep-related parameter corresponding to the user.
[0184] 207, determine the second sleep demand parameter corresponding to the user according to the sleep-related parameter.
[0185] In the embodiment of the present application, optionally, the second sleep demand parameter corresponding to the user can include one or a combination of the second demand temperature, the second demand humidity, the second demand wind speed and the second demand wind direction, which is not limited in the embodiment of the present application.
[0186] 208, determine the control parameter corresponding to the air conditioner according to the comfortable sleep demand parameter.
[0187] In the embodiment of the present application, the comfortable sleep demand parameter corresponding to the air conditioner includes the first sleep demand parameter or the second sleep demand parameter.
[0188] 209, control the air conditioner to execute the air outlet operation corresponding to the control parameter according to the control parameter.
[0189] In the embodiment of the present application, for other detailed descriptions of steps 201-202 and steps 208-209, please refer to the detailed descriptions of steps 101-102 and steps 104-105 in the embodiment one, which will not be repeated here.
[0190] It can be seen that the method described in the embodiment of the present application can obtain the sleep sign parameter of the user when it is detected that the air conditioner is running and the user is in a sleep state, analyze the sleep cycle parameter of the user according to the sleep sign parameter, determine the comfortable sleep demand parameter of the user according to the sleep cycle parameter, and then determine the corresponding control parameter of the air conditioner according to the comfortable sleep demand parameter, so as to control the air conditioner to perform the air outlet operation after the control, which can intelligently control the operation of the air conditioner based on the sign parameter of the user in the sleep state and the sleep cycle of the user, can improve the control flexibility of the air conditioner on the basis of improving the analysis accuracy of the sleep parameter of the user, thereby being beneficial to improving the air outlet accuracy of the air conditioner, improving the adjustment accuracy of the air outlet of the air conditioner on the sleep environment, and further being beneficial to providing the sleep environment meeting the sleep condition of the user to the user, thereby being beneficial to improving the sleep comfort of the user and improving the sleep quality of the user. In addition, the analysis accuracy of the sleep cycle parameter of the user can be improved by judging whether the sleep cycle parameter of the user currently in is matched with the preset sleep cycle parameter, if the result of the judgment is yes, the wake-up demand parameter of the user is determined and the first sleep demand parameter of the user is determined according to the wake-up demand parameter, if the result of the judgment is no, the sleep association parameter of the user is determined and the second sleep demand parameter of the user is determined according to the sleep association parameter, which is beneficial to improving the determination flexibility and determination accuracy of the comfortable sleep demand parameter of the user, and further being beneficial to improving the accuracy of the comfortable sleep demand parameter and the determination accuracy of the control parameter of the air conditioner.
[0191] In an optional embodiment, the wake-up demand parameter comprises an estimated wake-up duration; the estimated wake-up duration is used to represent the duration from the current time to the time of the estimated wake-up of the user;
[0192] The determination of the wake-up demand parameter of the user can comprise the following operations:
[0193] The at least one sleep influence parameter of the user is obtained;
[0194] For each sleep influence parameter, it is judged whether the sleep influence parameter is in the preset parameter range corresponding to the sleep influence parameter;
[0195] For each sleep influence parameter, when it is judged that the sleep influence parameter is not in the preset parameter range corresponding to the sleep influence parameter, the sleep influence parameter is determined as a target influence parameter;
[0196] When there is at least one target influence parameter, the estimated wake-up duration of the user is determined according to all target influence parameters and the sleep sign parameter;
[0197] When there is no target influence parameter, the estimated wake-up duration of the user is determined according to the sleep sign parameter.
[0198] Optionally, the sleep influence parameter corresponding to the user can include a combination of one or more of a user corresponding alarm setting parameter, weather information corresponding to a sleep environment in which the user is located, and environmental noise information of the sleep environment in which the user is located, and embodiments of the present application are not limited thereto.
[0199] It can be seen that, in the optional embodiment, for the obtained at least one sleep influence parameter corresponding to the user, it is determined whether the sleep influence parameter is in the preset parameter range corresponding to the sleep influence parameter. If it is determined that the sleep influence parameter is not in the preset parameter range corresponding to the sleep influence parameter, the sleep influence parameter is determined as a target influence parameter. When there is at least one target influence parameter, the estimated wake-up time length corresponding to the user is determined according to all target influence parameters and sleep sign parameters. When there is no target influence parameter, the estimated wake-up time length corresponding to the user is determined according to the sleep sign parameters. The analysis accuracy of the sleep influence parameter corresponding to the user can be improved, thereby improving the determination accuracy of the sleep influence parameter that most likely affects the normal sleep of the user, and further improving the determination flexibility and accuracy of the estimated wake-up time length of the user, and further facilitating the improvement of the determination accuracy of the comfortable sleep demand parameter.
[0200] In the optional embodiment, for each sleep influence parameter, it is determined whether the sleep influence parameter is in the preset parameter range corresponding to the sleep influence parameter, including:
[0201] For each sleep influence parameter, when the sleep influence parameter is the alarm setting parameter, a target alarm countdown time length corresponding to the alarm setting parameter is determined. It is determined whether the alarm countdown time length is greater than a target sleep stage time length corresponding to a preset sleep cycle parameter. When it is determined that the alarm countdown time length is greater than the target sleep stage time length corresponding to the preset sleep cycle parameter, it is determined that the sleep influence parameter is in the preset parameter range corresponding to the sleep influence parameter. When it is determined that the alarm countdown time length is less than or equal to the target sleep stage time length corresponding to the preset sleep cycle parameter, it is determined that the sleep influence parameter is not in the preset parameter range corresponding to the sleep influence parameter.
[0202] For each sleep influence parameter, when the sleep influence parameter is the weather information, a weather influence coefficient of the weather information on an environmental parameter of a sleep environment in which the user is located is determined according to the weather information. It is determined whether the weather influence coefficient is less than or equal to a preset weather influence coefficient. When it is determined that the weather influence coefficient is less than or equal to the preset weather influence coefficient, it is determined that the sleep influence parameter is in the preset parameter range corresponding to the sleep influence parameter. When it is determined that the weather influence coefficient is greater than the preset weather influence coefficient, it is determined that the sleep influence parameter is not in the preset parameter range corresponding to the sleep influence parameter.
[0203] For each sleep influence parameter, when the sleep influence parameter is the ambient noise information, according to the ambient noise information, the ambient noise decibel is determined; it is judged whether the ambient noise decibel is less than or equal to the preset decibel; when it is judged that the ambient noise decibel is less than or equal to the preset decibel, it is determined that the sleep influence parameter is in the preset parameter range corresponding to the sleep influence parameter; when it is judged that the ambient noise decibel is greater than the preset decibel, it is determined that the sleep influence parameter is not in the preset parameter range corresponding to the sleep influence parameter.
[0204] It can be seen that the optional embodiment can also analyze the three parameters of the alarm clock setting parameter corresponding to the user, the weather information corresponding to the sleep environment of the user and the environmental noise information of the sleep environment of the user respectively, and when the alarm clock countdown length corresponding to the alarm clock setting parameter, the weather influence coefficient corresponding to the weather information and the ambient noise decibel are respectively in the preset range, it is determined that the sleep influence parameter is in the preset parameter range, which can improve the judgment accuracy of whether the sleep influence parameter is in the preset parameter range, thereby facilitating the improvement of the analysis accuracy of the sleep influence parameter, and further facilitating the improvement of the determination accuracy of the target influence parameter.
[0205] In the optional embodiment, optionally, the wake-up demand parameter can also include a combination of one or more of the wake-up comfortable temperature, the wake-up comfortable humidity, the wake-up comfortable wind speed and the wake-up comfortable wind direction;
[0206] The method can further include the following operations:
[0207] The current environmental temperature of the sleep environment of the user and the historical sleep record corresponding to the user are obtained;
[0208] The target sleep record corresponding to the current sleep period is filtered from the historical sleep record;
[0209] According to the target sleep record, the sleep sensitivity coefficient of the user in the current sleep period is determined.
[0210] The historical sleep record corresponding to the user can include the historical sleep sub-record of at least one sleep period and / or at least one sleep stage corresponding to each sleep period, which is not limited by the embodiments of the present application.
[0211] Optionally, the target sleep record corresponding to the current sleep period can include the historical sleep sub-record of the sleep period matched with the current sleep period and / or the historical sleep sub-record of the sleep period adjacent to the current sleep period, which is not limited by the embodiments of the present application.
[0212] If the value of the sleep sensitivity coefficient of the user in the current sleep period is larger, it means that the sleep condition of the user in the current sleep period is more easily disturbed.
[0213] It can be seen that the optional embodiment can also obtain the current environmental temperature of the sleep environment in which the user is located and the historical sleep record of the user, filter the target sleep record corresponding to the current sleep period from the historical sleep record, and determine the sleep sensitivity coefficient of the user in the current sleep period according to the target sleep record. The sleep sensitivity of the user in the current sleep period can be analyzed based on the historical sleep record of the user, thereby facilitating to improve the analysis accuracy of the sleep demand, and further facilitating to improve the determination accuracy of the comfortable sleep demand parameter.
[0214] In the optional embodiment, optionally, determining the first sleep demand parameter of the user according to the wake-up demand parameter can include the following operations:
[0215] analyzing a sleep demand change parameter corresponding to the current sleep period according to the current environmental temperature and the wake-up demand parameter;
[0216] determining the first sleep demand parameter of the user according to the sleep demand change parameter and the sleep sensitivity coefficient of the user in the current sleep period.
[0217] The sleep demand change parameter corresponding to the current sleep period can be used to represent the demand change of the user in the current sleep period for the sleep environment in which the user is located, and the sleep demand change parameter corresponding to the current sleep period can include one or a combination of more of the sleep environment temperature change trend, the sleep environment humidity change trend, the sleep environment wind speed change trend, and the sleep environment wind direction change trend, which is not limited by the embodiments of the present application.
[0218] It can be seen that the optional embodiment can also analyze the sleep demand change parameter corresponding to the current sleep period according to the current environmental temperature and the wake-up demand parameter, and determine the first sleep demand parameter of the user according to the sleep demand change parameter and the sleep sensitivity coefficient of the user in the current sleep period. Based on the accurate analysis of whether the user will wake up and the demand of the user for the environment when waking up, the analysis accuracy of the demand change of the sleep environment of the user can be improved, thereby improving the determination accuracy of the comfortable sleep demand parameter, and further facilitating to improve the determination accuracy of the air conditioning control parameter.
[0219] In another optional embodiment, the sleep-related parameter includes one or a combination of more of the sleep position of the user, the sleep posture parameter of the user, and the area parameter of the area in which the user is located.
[0220] The second sleep demand parameter of the user can be determined according to the sleep-related parameter, which can include the following operations:
[0221] analyzing the sleep posture parameter of the user to obtain a sleep posture change parameter of the user;
[0222] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0223] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0224] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0225] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0226] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0227] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0228] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0229] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0230] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0231] According to the sleep posture parameter and the sleep position change parameter, an environment perception situation of the user is analyzed, the environment perception situation of the user is used to represent a current perception situation of the user to an environment parameter of a sleep environment, and the environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0232] According to the sleep position corresponding to the user, the sleep environment adjustment demand, the determined sleep sensitivity coefficient and the hindering coefficient of the user in the current sleep cycle, a second sleep demand parameter corresponding to the user is determined.
[0233] It can be seen that the optional embodiment can obtain the sleep posture change parameter of the user by analyzing the sleep posture parameter corresponding to the user, evaluate the sleep stability of the user according to the sleep posture change parameter and the sleep sign parameter, analyze the environment perception situation of the user for the current sleep environment according to the sleep posture parameter and the sleep posture change parameter, determine the sleep environment adjustment demand corresponding to the user by comprehensively considering the environment perception situation and the sleep stability, and determine the second sleep demand parameter corresponding to the user according to the sleep position corresponding to the user, the sleep environment adjustment demand and the determined sleep sensitivity coefficient of the user in the current sleep cycle. The evaluation accuracy of the environment perception situation and the sleep stability of the user for the current environment can be improved on the basis of accurately analyzing the sleep related parameters of the user, so as to improve the accuracy of the sleep environment adjustment demand corresponding to the user, and further improve the determination accuracy of the comfortable sleep demand parameter and the air conditioner control parameter.
[0234] Embodiment three
[0235] Please refer to Figure 4 , Figure 4 is a structure schematic diagram of an air conditioner control device based on user sleep parameters disclosed by the embodiment of the application. Wherein, Figure 4 The air conditioner control device based on user sleep parameters described in the embodiment of the application can include one of a control device, a control terminal, a control system and a server, wherein the server includes a local server or a cloud server, and the embodiment of the application does not limit the server; the device can be applied to a smart air conditioner or a control device corresponding to the smart air conditioner, and the device can also be applied to a smart home platform or a smart home system, and the embodiment of the application does not limit the device. As shown in the figure, Figure 4 The air conditioner control device based on user sleep parameters can include:
[0236] The acquisition module 301 is configured to acquire the sleep sign parameter of the user when it is detected that the air conditioner is in a running state and the user is in a sleep state.
[0237] The analysis module 302 is configured to analyze the sleep cycle parameter of the user currently in according to the sleep sign parameter; the sleep cycle parameter includes a current sleep cycle and a current sleep stage corresponding to the current sleep cycle.
[0238] The determination module 303 is configured to determine the comfortable sleep demand parameter corresponding to the user according to the sleep cycle parameter.
[0239] The determining module 303 is further configured to determine the corresponding regulation parameter of the air conditioner according to the comfortable sleep demand parameter.
[0240] The control module 304 is configured to control the air conditioner to perform the air outlet operation corresponding to the regulation parameter according to the regulation parameter.
[0241] It can be seen that the device described in the embodiment of the present application can detect that the air conditioner is running and the user is in a sleep state, acquire the sleep sign parameter of the user, analyze the sleep period parameter of the user according to the sleep sign parameter, determine the comfortable sleep demand parameter of the user according to the sleep period parameter, determine the corresponding regulation parameter of the air conditioner according to the comfortable sleep demand parameter, and control the air conditioner to perform the air outlet operation after the regulation, so as to intelligently regulate the operation of the air conditioner based on the sign parameter of the user in the sleep state and the sleep period of the user, improve the regulation flexibility of the air conditioner on the basis of improving the analysis accuracy of the sleep parameter of the user, thereby improving the air outlet accuracy of the air conditioner, improving the regulation accuracy of the air outlet of the air conditioner on the sleep environment, and providing the sleep environment meeting the sleep condition of the user to the user, thereby improving the sleep comfort of the user and improving the sleep quality of the user.
[0242] In an optional embodiment, the specific manner in which the determining module 303 determines the corresponding comfortable sleep demand parameter of the user according to the sleep period parameter can include:
[0243] determining whether the sleep period parameter matches a preset sleep period parameter;
[0244] when it is determined that the sleep period parameter matches the preset sleep period parameter, determining the wake-up demand parameter of the user, and determining the first sleep demand parameter of the user according to the wake-up demand parameter;
[0245] when it is determined that the sleep period parameter does not match the preset sleep period parameter, determining the sleep correlation parameter of the user, and determining the second sleep demand parameter of the user according to the sleep correlation parameter;
[0246] The comfortable sleep demand parameter includes the first sleep demand parameter or the second sleep demand parameter.
[0247] It can be seen that the device described in the optional embodiment can determine the wake-up demand parameter corresponding to the user by judging whether the sleep cycle parameter currently experienced by the user matches the preset sleep cycle parameter, and determine the first sleep demand parameter corresponding to the user according to the wake-up demand parameter if the judgment result is yes, or determine the sleep correlation parameter corresponding to the user and determine the second sleep demand parameter corresponding to the user according to the sleep correlation parameter if the judgment result is no, which can improve the analysis accuracy of the sleep cycle parameter currently experienced by the user, thereby facilitating the determination flexibility and determination accuracy of the comfortable sleep demand parameter corresponding to the user, and further facilitating the accuracy of the comfortable sleep demand parameter and the determination accuracy of the air conditioning control parameter.
[0248] In the optional embodiment, optionally, the wake-up demand parameter includes an estimated wake-up duration; the estimated wake-up duration is used to represent the duration from the current time to the time of the estimated wake-up of the user;
[0249] The specific manner in which the determination module 303 determines the wake-up demand parameter corresponding to the user can include:
[0250] Obtaining at least one sleep influence parameter corresponding to the user;
[0251] For each sleep influence parameter, judging whether the sleep influence parameter is within the preset parameter range corresponding to the sleep influence parameter;
[0252] For each sleep influence parameter, when it is judged that the sleep influence parameter is not within the preset parameter range corresponding to the sleep influence parameter, the sleep influence parameter is determined as a target influence parameter;
[0253] When there is at least one target influence parameter, determining the estimated wake-up duration corresponding to the user according to all target influence parameters and sleep sign parameters;
[0254] When there is no target influence parameter, determining the estimated wake-up duration corresponding to the user according to the sleep sign parameter.
[0255] It can be seen that the device described in the optional embodiment can also determine whether the obtained at least one sleep influence parameter of the user is in the preset parameter range corresponding to the sleep influence parameter, and if it is determined that the sleep influence parameter is not in the preset parameter range corresponding to the sleep influence parameter, the sleep influence parameter is determined as the target influence parameter. When there is at least one target influence parameter, the estimated wake-up time of the user corresponding to all target influence parameters and sleep sign parameters is determined, and when there is no target influence parameter, the estimated wake-up time of the user corresponding to the sleep sign parameters is determined. This can improve the analysis accuracy of the sleep influence parameter of the user, thereby improving the determination accuracy of the sleep influence parameter that most likely affects the normal sleep of the user, and further improving the determination flexibility and accuracy of the estimated wake-up time of the user, thereby facilitating the determination accuracy of the comfortable sleep demand parameter.
[0256] In the optional embodiment, optionally, the wake-up demand parameter further includes a combination of one or more of the wake-up comfort temperature, the wake-up comfort humidity, the wake-up comfort wind speed, and the wake-up comfort wind direction;
[0257] The acquisition module 301 is also configured to acquire a current environment temperature of a sleep environment in which the user is located and a historical sleep record corresponding to the user;
[0258] As shown in the optional embodiment, the device can further include: Figure 5
[0259] The screening module 305 is configured to screen a target sleep record corresponding to the current sleep cycle from the historical sleep record;
[0260] The determination module 303 is also configured to determine a sleep sensitivity coefficient of the user corresponding to the current sleep cycle according to the target sleep record;
[0261] In addition, the specific manner in which the determination module 303 determines the first sleep demand parameter corresponding to the user according to the wake-up demand parameter can include:
[0262] According to the current environment temperature and the wake-up demand parameter, a sleep demand change parameter corresponding to the current sleep cycle is analyzed;
[0263] According to the sleep demand change parameter and the sleep sensitivity coefficient of the user corresponding to the current sleep cycle, the first sleep demand parameter corresponding to the user is determined.
[0264] It can be seen that the device described in the optional embodiment can also obtain the current environment temperature of the sleep environment in which the user is located and the historical sleep record of the user, filter the target sleep record corresponding to the current sleep period from the historical sleep record, and then determine the sleep sensitivity coefficient of the user corresponding to the current sleep period according to the target sleep record. The sleep sensitivity of the user in the current sleep period can be analyzed based on the historical sleep record of the user, thereby facilitating to improve the analysis accuracy of the sleep demand and further facilitating to improve the determination accuracy of the comfortable sleep demand parameter. In addition, the sleep demand change parameter corresponding to the current sleep period can be analyzed according to the current environment temperature and the wake-up demand parameter, and the first sleep demand parameter of the user can be determined according to the sleep demand change parameter and the sleep sensitivity coefficient of the user corresponding to the current sleep period. The analysis accuracy of the sleep demand change of the user can be improved based on the accurate analysis of whether the user will wake up and the demand of the user for the environment when waking up, thereby improving the determination accuracy of the comfortable sleep demand parameter and further facilitating to improve the determination accuracy of the air conditioning control parameter.
[0265] In the optional embodiment, optionally, the sleep-related parameter includes one or a combination of the following: a sleep position of the user, a sleep posture parameter of the user, and a region parameter corresponding to a region in which the user is located.
[0266] The specific manner in which the determination module 303 determines the second sleep demand parameter of the user according to the sleep-related parameter can include the following:
[0267] The sleep posture parameter of the user is analyzed to obtain a sleep posture change parameter of the user.
[0268] The sleep stability of the user is evaluated according to the sleep posture change parameter and the sleep sign parameter.
[0269] The environment perception situation of the user is analyzed according to the sleep posture parameter and the sleep posture change parameter. The environment perception situation of the user is used to represent the perception situation of the user for the environment parameter of the sleep environment in which the user is currently located. The environment perception situation includes a temperature perception situation and / or a humidity perception situation.
[0270] The sleep environment adjustment demand of the user is determined according to the environment perception situation and the sleep stability.
[0271] The second sleep demand parameter of the user is determined according to the sleep position of the user, the sleep environment adjustment demand, and the sleep sensitivity coefficient of the user corresponding to the current sleep period.
[0272] It can be seen that the device described in the optional embodiment can also obtain the sleep posture change parameter of the user by analyzing the corresponding sleep posture parameter of the user, evaluate the sleep stability of the user according to the sleep posture change parameter and the sleep sign parameter, analyze the current environmental perception of the user to the sleep environment according to the sleep posture parameter and the sleep posture change parameter, determine the sleep environment adjustment requirement of the user by comprehensively considering the environmental perception and the sleep stability, and determine the second sleep requirement parameter of the user according to the sleep position, the sleep environment adjustment requirement and the sleep sensitivity coefficient of the user in the current sleep cycle, so as to improve the evaluation accuracy of the environmental perception and the sleep stability of the user to the current environment on the basis of accurately analyzing the sleep-related parameters of the user, thereby improving the accuracy of the sleep environment adjustment requirement of the user, and further improving the determination accuracy of the comfortable sleep requirement parameter and the air conditioning control parameter.
[0273] In another optional embodiment, the sleep sign parameter includes a combination of one or more of an eye movement parameter, a breathing parameter, a heart rate parameter and a body movement parameter.
[0274] The specific manner in which the analysis module 302 analyzes the sleep cycle parameter of the user currently in according to the sleep sign parameter can include:
[0275] Obtaining current time information and current sleep duration of the user;
[0276] Determining the sleep type of the user according to the current time information and the current sleep duration;
[0277] Obtaining a plurality of sleep cycles corresponding to the sleep type and a sleep parameter range corresponding to each sleep cycle; each sleep cycle includes a plurality of sleep stages; the sleep parameter range corresponding to each sleep cycle includes a sleep stage order corresponding to each sleep stage of the sleep cycle, a sleep duration range corresponding to each sleep stage of the sleep cycle and a sleep sign parameter range corresponding to each sleep stage of the sleep cycle;
[0278] Determining the current sleep cycle in which the user is currently in and the current sleep stage corresponding to the current sleep cycle according to the current sleep duration, the sleep sign parameter and all sleep parameter ranges.
[0279] It can be seen that the device described in the optional embodiment can determine the sleep type of the user according to the obtained current time information and the current sleep duration of the user, then obtain a plurality of sleep cycles corresponding to the sleep type and a sleep parameter range corresponding to each sleep cycle, and then determine the current sleep cycle in which the user is currently located and the current sleep stage corresponding to the current sleep cycle according to the current sleep duration, the sleep parameter and all sleep parameter ranges, so as to improve the analysis accuracy of the current sleep condition and the sleep parameter of the user, thereby facilitating the determination accuracy of the sleep cycle and the sleep stage in which the user is currently located, and further facilitating the determination accuracy of the subsequent comfortable sleep demand parameter.
[0280] In yet another optional embodiment, the comfortable sleep demand parameter includes a combination of one or more of the demand temperature, the demand humidity, the demand wind speed and the demand wind direction.
[0281] The obtaining module 301 is further configured to obtain the current running parameter of the air conditioner and the air outlet control parameter range corresponding to the sleep cycle parameter.
[0282] In addition, the specific manner of determining the control parameter of the air conditioner according to the comfortable sleep demand parameter can include:
[0283] According to the determined sleep position of the user and the current running parameter of the air conditioner, analyzing the environmental influence coefficient of the air outlet airflow of the air conditioner on the sleep environment of the user;
[0284] Obtaining sleep heat preservation information of the user; the sleep heat preservation information includes bedding information used by the user and / or sleep clothing information of the user.
[0285] According to the sleep heat preservation information and the sleep parameter, analyzing the heat loss coefficient corresponding to the user.
[0286] According to the comfortable sleep demand parameter, the environmental influence coefficient and the heat loss coefficient, determining the control parameter of the air conditioner; the control parameter of the air conditioner includes the air outlet control parameter of the air conditioner and / or the swing control parameter corresponding to the air guide assembly of the air conditioner.
[0287] It can be seen that the device described in the optional embodiment can analyze the environmental influence coefficient of the air outlet airflow of the air conditioner on the user's sleep environment through the user's sleep position and the current operating parameters of the air conditioner, analyze the heat loss coefficient of the user according to the obtained sleep heat preservation information and sleep sign parameter of the user, and determine the corresponding regulating parameters of the air conditioner according to the comfortable sleep demand parameter, the environmental influence coefficient and the heat loss coefficient. The heat loss of the user during sleep and the environmental influence of the air outlet of the air conditioner on the position of the user can be intelligently analyzed, so that the air conditioner regulating parameters can be more accurately determined based on the comfortable sleep demand parameter, thereby improving the accuracy of the air conditioner regulating parameters, improving the regulation accuracy of the air outlet of the air conditioner on the sleep environment, and making the determined air conditioner regulating parameters more in line with the user's perception of the environment, thereby providing a sleep environment in line with the user's sleep situation to the user more targeted, and improving the sleep comfort of the user.
[0288] Embodiment four
[0289] Please refer to Figure 6 , Figure 6 is another structure diagram of the air conditioner regulating device based on user sleep parameters disclosed by the embodiment of the application. As Figure 6 shown, the air conditioner regulating device based on user sleep parameters can include:
[0290] a memory 401 storing executable program codes;
[0291] a processor 402 coupled with the memory 401;
[0292] The processor 402 calls the executable program codes stored in the memory 401 to execute the steps in the air conditioner regulating method based on user sleep parameters described in the embodiment one or the embodiment two of the application.
[0293] Embodiment five
[0294] The embodiment of the application discloses a computer storage medium, which stores computer instructions. When the computer instructions are called, the steps in the air conditioner regulating method based on user sleep parameters described in the embodiment one or the embodiment two of the application are executed.
[0295] Embodiment six
[0296] The embodiment of the application discloses a computer program product, which includes a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to make a computer execute the steps in the air conditioner regulating method based on user sleep parameters described in the embodiment one or the embodiment two.
[0297] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0298] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-Erasable Programmable Read-Only Memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.
[0299] Finally, it should be noted that the air conditioning control method and device based on user sleep parameters disclosed in the embodiments of the present invention are merely preferred embodiments of the present invention and are only used to illustrate the technical solutions of the present invention, not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. An air conditioning control method based on user sleep parameters, characterized in that, The method includes: When the air conditioner is detected to be running and the user is asleep, the user's sleep vital signs parameters are obtained; Based on the sleep vital signs parameters, the user's current sleep cycle parameters are analyzed; the sleep cycle parameters include the current sleep cycle and the current sleep stage corresponding to the current sleep cycle; Based on the sleep cycle parameters, determine the user's corresponding comfortable sleep requirement parameters; Based on the aforementioned comfortable sleep requirement parameters, determine the corresponding control parameters for the air conditioner; According to the control parameters, the air conditioner is controlled to perform the air outlet operation corresponding to the control parameters.
2. The air conditioning control method based on user sleep parameters according to claim 1, characterized in that, The step of determining the user's corresponding comfortable sleep requirement parameters based on the sleep cycle parameters includes: Determine whether the sleep cycle parameters match the preset sleep cycle parameters; When it is determined that the sleep cycle parameter matches the preset sleep cycle parameter, the wake-up requirement parameter corresponding to the user is determined, and the first sleep requirement parameter corresponding to the user is determined based on the wake-up requirement parameter. When it is determined that the sleep cycle parameter does not match the preset sleep cycle parameter, the sleep association parameter corresponding to the user is determined, and the second sleep requirement parameter corresponding to the user is determined based on the sleep association parameter. The comfortable sleep requirement parameters include either the first sleep requirement parameter or the second sleep requirement parameter.
3. The air conditioning control method based on user sleep parameters according to claim 2, characterized in that, The wake-up requirement parameters include the estimated wake-up duration; the estimated wake-up duration is used to represent the time from the current moment to the estimated time when the user wakes up; The step of determining the awakening requirement parameters corresponding to the user includes: Obtain at least one sleep-affecting parameter corresponding to the user; For each of the sleep-affecting parameters, determine whether the sleep-affecting parameter is within the preset parameter range corresponding to the sleep-affecting parameter; For each of the aforementioned sleep-influencing parameters, when it is determined that the sleep-influencing parameter is not within the preset parameter range corresponding to the sleep-influencing parameter, the sleep-influencing parameter is determined as the target influencing parameter; When at least one of the target influence parameters exists, the estimated wake-up time for the user is determined based on all the target influence parameters and the sleep sign parameters. When the target influencing parameter is not present, the estimated wake-up time for the user is determined based on the sleep symptom parameters.
4. The air conditioning control method based on user sleep parameters according to claim 3, characterized in that, The wake-up requirements parameters also include one or more combinations of wake-up comfort temperature, wake-up comfort humidity, wake-up comfort wind speed, and wake-up comfort wind direction; The method further includes: Obtain the current ambient temperature of the user's sleep environment and the user's corresponding historical sleep records; Select target sleep records from the historical sleep records that correspond to the current sleep cycle; Based on the target sleep record, determine the sleep sensitivity coefficient of the user in the current sleep cycle; And, determining the first sleep requirement parameter corresponding to the user based on the wake-up requirement parameter includes: Based on the current ambient temperature and the awakening requirement parameters, analyze the sleep requirement change parameters corresponding to the current sleep cycle; Based on the sleep demand change parameter and the user's sleep sensitivity coefficient corresponding to the current sleep cycle, the first sleep demand parameter corresponding to the user is determined.
5. The air conditioning control method based on user sleep parameters according to claim 2, characterized in that, The sleep-related parameters include one or more combinations of the user's sleep location, the user's sleep posture parameters, and the region parameters corresponding to the user's location. The step of determining the second sleep requirement parameter corresponding to the user based on the sleep association parameter includes: Analyze the sleep posture parameters corresponding to the user to obtain the sleep posture change parameters corresponding to the user; The sleep stability of the user is assessed based on the sleep posture change parameters and the sleep vital signs parameters. Based on the sleep posture parameters and the sleep posture change parameters, the user's environmental perception is analyzed; the user's environmental perception is used to represent the user's current perception of the environmental parameters of the sleep environment; the environmental perception includes temperature perception and / or humidity perception. Based on the environmental perception and sleep stability, determine the user's corresponding sleep environment adjustment needs; Based on the user's corresponding sleep location, sleep environment adjustment needs, and the determined sleep sensitivity coefficient of the user in the current sleep cycle, the second sleep requirement parameter corresponding to the user is determined.
6. The air conditioning control method based on user sleep parameters according to any one of claims 1-5, characterized in that, The sleep vital signs parameters include one or more combinations of eye movement parameters, respiratory parameters, heart rate parameters, and body movement parameters; The step of analyzing the user's current sleep cycle parameters based on the sleep vital signs parameters includes: Obtain the current time information and the user's current sleep duration; Based on the current time information and the current sleep duration, the sleep type corresponding to the user is determined; Obtain multiple sleep cycles corresponding to the sleep type and the range of sleep parameters corresponding to each sleep cycle; each sleep cycle includes multiple sleep stages; the range of sleep parameters corresponding to each sleep cycle includes the sleep stage order corresponding to each sleep stage in the sleep cycle, the range of sleep duration corresponding to each sleep stage in the sleep cycle, and the range of sleep vital sign parameters corresponding to each sleep stage in the sleep cycle. Based on the current sleep duration, the sleep vital signs parameters, and the range of all the sleep parameters, the current sleep cycle and the current sleep stage corresponding to the current sleep cycle are determined.
7. The air conditioning control method based on user sleep parameters according to any one of claims 1-5, characterized in that, The parameters for comfortable sleep include one or more combinations of required temperature, required humidity, required wind speed, and required wind direction. The method further includes: Obtain the current operating parameters of the air conditioner and the range of air outlet control parameters corresponding to the sleep cycle parameters; And, determining the corresponding control parameters of the air conditioner based on the comfortable sleep requirement parameters includes: Based on the determined sleeping position of the user and the current operating parameters of the air conditioner, the environmental impact coefficient of the airflow of the air conditioner on the sleeping environment of the user is analyzed. Obtain the user's sleep thermal insulation information; the sleep thermal insulation information includes the bedding information used by the user and / or the user's sleep clothing information; Based on the sleep thermal insulation information and the sleep vital signs parameters, analyze the heat loss coefficient corresponding to the user; Based on the comfortable sleep requirement parameters, the environmental impact coefficient, and the heat loss coefficient, the corresponding control parameters of the air conditioner are determined; the corresponding control parameters of the air conditioner include the air outlet control parameters of the air conditioner and / or the oscillation control parameters of the air guide component of the air conditioner.
8. An air conditioning control device based on user sleep parameters, characterized in that, The device includes: The acquisition module is used to acquire the user's sleep vital signs parameters when the air conditioner is detected to be running and the user is in a sleep state. The analysis module is used to analyze the user's current sleep cycle parameters based on the sleep vital signs parameters; the sleep cycle parameters include the current sleep cycle and the current sleep stage corresponding to the current sleep cycle; The determination module is used to determine the user's corresponding comfortable sleep requirement parameters based on the sleep cycle parameters; The determining module is further configured to determine the control parameters corresponding to the air conditioner based on the comfortable sleep requirement parameters; The control module is used to control the air conditioner to perform the air outlet operation corresponding to the control parameters according to the control parameters.
9. An air conditioning control device based on user sleep 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 air conditioning control method based on user sleep 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 air conditioning control method based on user sleep parameters as described in any one of claims 1-7.