Method and apparatus for sleep environment conditioning, sleep system, computer readable storage medium

By determining the sleep type based on the user's historical sleep time information and controlling the smart home appliance system to adjust the indoor environment, the problem of poor daytime sleep quality in existing technologies has been solved, creating a sleep environment that is more adapted to the user's needs and improving daytime sleep quality.

CN119713535BActive Publication Date: 2026-01-30HAIER JINGLING TECHNOLOGY (ZHEJIANG) CO LTD +1
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Patent Information

Application Number
CN202311281814.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-28
Publication Date
2026-01-30
Estimated Expiration
2043-09-28

AI Technical Summary

Technical Problem

Existing smart home appliance systems are unable to meet the daytime sleep needs of different users, resulting in more external interference and poor sleep quality.

Method used

By determining the sleep type based on the user's historical sleep time information, the system controls smart home appliances to enter or exit daytime sleep mode, and adjusts indoor temperature, humidity, air quality, and sound settings to suit the needs of users who sleep during the day or not.

Benefits of technology

Reduce the impact of external disturbances on users' daytime sleep quality and improve their daytime sleep quality.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

This application relates to the field of smart home appliance technology, and discloses a method for regulating the sleep environment, applied to a sleep system, comprising: determining the user's sleep type based on the user's historical sleep time information; controlling the sleep system to enter or exit daytime sleep mode according to the user's sleep type and the current time, to regulate indoor temperature, and / or humidity, and / or air quality improvement measures, and / or sound settings; wherein the user's sleep type includes daytime sleepers or non-daytime sleepers. This method reduces the impact of external interference on the user's daytime sleep quality and improves the user's daytime sleep quality. This application also discloses a sleep environment regulation device and sleep system, and a computer-readable storage medium.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent household appliances, for example to a method and device for sleep environment adjustment, a sleep system, and a computer readable storage medium. BACKGROUND

[0002] At present, many intelligent household appliances on the market have a sleep mode. Before sleeping, a user can start the sleep mode of the intelligent household appliance, so that the intelligent household appliance can work according to the sleep mode, thereby adjusting the sleep environment of the user. However, a sleep system including various types of intelligent household appliance devices is difficult to meet the sleep needs of different users.

[0003] The related technology discloses a control method of an adaptive air conditioner based on human body detection. First, a CO2(carbon dioxide) concentration sensor, a temperature sensor and a sound sensor are arranged in a room. Then, whether there is a person in the room is determined according to the CO2 concentration in the room, whether the air conditioner needs to be started and whether cooling or heating is needed is determined according to the temperature in the room, and whether a daytime mode or a sleep mode is selected is determined according to the average value of the sound in the room within a preset time threshold. Finally, the air conditioner is controlled according to the determinations.

[0004] In the process of implementing the embodiments of the present disclosure, it is found that at least the following problems exist in the related technology:

[0005] The external environment during the day and at night is quite different, for example, the sound and light in nature, the sound and light in a residential area, social information, and the prompt of a household device. At present, there are a large number of daytime sleep users, such as users who sleep once a day for a long time during the day, or part of the night shift population who need to sleep during the day for a long time. Therefore, the user is disturbed by the outside world when sleeping during the day, and the sleep quality is poor.

[0006] It should be noted that the information disclosed in the above background section is only used to strengthen the understanding of the background of the present application, and therefore can include information that does not constitute prior art known to those of ordinary skill in the art. SUMMARY

[0007] To have a basic understanding of some aspects of the disclosed embodiments, a brief summary is given below. The summary is not a general review, nor is it intended to determine key / important components or delineate the scope of protection of these embodiments, but as a prelude to the detailed description below.

[0008] The embodiments of the present disclosure provide a method and device for sleep environment adjustment, a sleep system, and a computer readable storage medium, to reduce the influence of external interference on the daytime sleep quality of a user and improve the daytime sleep quality of the user.

[0009] In some embodiments, the method is applied to a sleep system, comprising: determining a sleep type of a user according to historical sleep time information of the user; and controlling the sleep system to enter or exit a daytime sleep mode according to the sleep type of the user and a current time, to adjust indoor temperature, and / or humidity, and / or air improvement measures, and / or sound settings; wherein the sleep type of the user comprises a daytime sleep user or a non-daytime sleep user.

[0010] In some embodiments, the device is applied to a sleep system, comprising: a determining module configured to determine a sleep type of a user according to historical sleep time information of the user; and a control module configured to control the sleep system to enter or exit a daytime sleep mode according to the sleep type of the user and a current time, to adjust indoor temperature, and / or humidity, and / or air improvement measures, and / or sound settings; wherein the sleep type of the user comprises a daytime sleep user or a non-daytime sleep user.

[0011] In some embodiments, the device comprises a processor and a memory storing program instructions, the processor is configured to execute the method for sleep environment adjustment when running the program instructions.

[0012] In some embodiments, the sleep system comprises: a sleep system body; and the device for sleep environment adjustment installed on the sleep system body.

[0013] In some embodiments, the computer readable storage medium stores program instructions, the program instructions are used to make a computer execute the method for sleep environment adjustment when running.

[0014] The method and device for sleep environment adjustment, the sleep system, and the computer readable storage medium provided by the embodiments of the present disclosure can achieve the following technical effects:

[0015] First, the sleep type of a user is determined to be a daytime sleep user or a non-daytime sleep user according to historical sleep time information of the user, and then the sleep system is controlled to enter or exit a daytime sleep mode according to the sleep type of the user and a current time, to adjust indoor temperature, and / or humidity, and / or air improvement measures, and / or sound settings, so that the sleep environment is more suitable for daytime sleep users or non-daytime sleep users, and a suitable daytime sleep sleep scheme is provided to improve the daytime sleep quality of the user. The influence of external interference on the daytime sleep quality of the user is reduced, and the daytime sleep quality of the user is improved.

[0016] The general description and the following description are only exemplary and explanatory, and are not used to limit the present application. BRIEF DESCRIPTION OF DRAWINGS

[0017] One or more embodiments are illustrated by way of example in the figures that are not intended to be limiting of the embodiments. Like numbers refer to like elements throughout the drawings, which are not necessarily to scale, and in which:

[0018] Figure 1 is a schematic diagram of a sleep system provided by an embodiment of the present disclosure;

[0019] Figure 2 is a schematic diagram of a method for sleep environment conditioning provided by an embodiment of the present disclosure;

[0020] Figure 3 is a schematic diagram of another method for sleep environment conditioning provided by an embodiment of the present disclosure;

[0021] Figure 4 is a schematic diagram of another method for sleep environment conditioning provided by an embodiment of the present disclosure;

[0022] Figure 5 is a schematic diagram of another method for sleep environment conditioning provided by an embodiment of the present disclosure;

[0023] Figure 6 is a schematic diagram of a device for sleep environment conditioning provided by an embodiment of the present disclosure;

[0024] Figure 7 is a schematic diagram of another device for sleep environment conditioning provided by an embodiment of the present disclosure;

[0025] Figure 8 is a schematic diagram of a sleep system provided by an embodiment of the present disclosure. DETAILED DESCRIPTION

[0026] In order to enable every detailed understanding of the features and technical contents of the embodiments of the present disclosure, the implementation of the embodiments of the present disclosure is described in detail below in conjunction with the drawings, which are only used for reference and do not limit the embodiments of the present disclosure. In the following technical description, in order to facilitate explanation, a plurality of details are provided to provide a full understanding of the disclosed embodiments. However, one or more embodiments can still be implemented without these details. In other cases, well-known structures and devices can be simplified to show.

[0027] The terms "first", "second", and the like in the description and claims of the present disclosure and the above drawings are used to distinguish similar objects, and do not necessarily have to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present disclosure described herein can be implemented. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion.

[0028] The term "multiple" means two or more, unless otherwise specified.

[0029] In the embodiments of the present disclosure, the character " / " represents that the objects before and after it are in an "or" relationship. For example, A / B means A or B.

[0030] The term "and / or" is a description of the association relationship of the objects, which means that there can be three relationships. For example, A and / or B means that there are three relationships of A or B, or A and B.

[0031] The term "corresponding" can refer to an association relationship or a binding relationship. A and B correspond to each other means that there is an association relationship or a binding relationship between A and B.

[0032] In the embodiments of the present disclosure, the smart home appliance refers to a home appliance product formed by introducing microprocessors, sensor technology, network communication technology into home appliances, having the characteristics of intelligent control, intelligent sensing and intelligent application. The operation process of the smart home appliance often depends on the application and processing of modern technologies such as the Internet of Things, the Internet and electronic chips. For example, the smart home appliance can realize remote control and management of the smart home appliance by connecting electronic devices.

[0033] In combination with Figure 1 As shown in the drawings, the present disclosure provides a sleep system, which comprises an air conditioner 1, an air exchange device 2 connected with the outside world and an air purifier 3. The air conditioner 1, the air exchange device 2 connected with the outside world and the air purifier 3 are all connected with a server 4, and the air conditioner 1, the air exchange device 2 connected with the outside world, the air purifier 3 and the server 4 can communicate with each other.

[0034] Optionally, the sleep system further comprises an audio-visual device 5, a doorbell 6 and a sweeping robot 7. The audio-visual device 5, the doorbell 6 and the sweeping robot 7 are all connected with the server 4, and the audio-visual device 5, the doorbell 6, the sweeping robot 7 and the server 4 can communicate with each other.

[0035] Optionally, the sleep system further comprises an illumination intensity detection device. The illumination intensity detection device is used for detecting the illumination intensity.

[0036] In this way, the air conditioner can adjust the indoor temperature and the indoor humidity, the air exchange device connected with the outside world and the air purifier can improve the indoor air, and the audio-visual device, the doorbell and the sweeping robot can adjust the sound setting. Thus, the influence of external interference on the daytime sleep quality of the user is reduced, and the daytime sleep quality of the user is improved.

[0037] In combination with Figure 2 As shown in the drawings, the present disclosure provides a method for sleep environment adjustment, which comprises:

[0038] S201, the sleep system determines the sleep type of the user according to historical sleep time information of the user.

[0039] S202, the sleep system controls the sleep system to enter or exit the daytime sleep mode according to the sleep type of the user and the current time, to adjust the indoor temperature, and / or the humidity, and / or the air improvement measures, and / or the sound setting.

[0040] The sleep type of the user includes a daytime sleep user or a non-daytime sleep user.

[0041] The method for sleep environment adjustment provided by the embodiments of the present disclosure first determines the sleep type of the user as a daytime sleep user or a non-daytime sleep user according to the historical sleep time of the user, and then controls the sleep system to enter or exit the daytime sleep mode according to the sleep type of the user and the current time, to adjust the indoor temperature, and / or the humidity, and / or the air improvement measures, and / or the sound setting, so that the sleep environment is more suitable for the daytime sleep user or the non-daytime sleep user, and a suitable daytime sleep scheme is provided to improve the daytime sleep quality of the user. The influence of external interference on the daytime sleep quality of the user is reduced, and the daytime sleep quality of the user is improved.

[0042] Optionally, the sleep system determines the sleep type of the user according to the historical sleep time information of the user, including: the sleep system determines the number of days in which the user has daytime sleep behavior according to the historical sleep information of each day in a set historical day number. The sleep system determines the sleep type of the user according to the number of days in which the user has daytime sleep behavior in the set historical day number. Specifically, the value of the set historical day number can be 30 days or 14 days.

[0043] In this way, the number of days in which the user has daytime sleep behavior is first determined according to the history in the set historical day number, and the sleep type is determined according to the number of days in which the user has daytime sleep behavior, which is beneficial to more accurately determine the sleep type of the user, so as to more accurately control the sleep system to enter or exit the daytime sleep mode, and improve the daytime sleep quality of the user.

[0044] Optionally, the historical sleep time information includes historical sleep time and historical daytime sleep duration. The sleep system determines the number of days in which the user has daytime sleep behavior according to the historical sleep information of each day in the set historical day number, including: the sleep system determines the number of days in which the user has daytime sleep behavior according to the historical sleep time and the historical daytime sleep duration of each day in the set historical day number.

[0045] In this way, the number of days in which the user has daytime sleep behavior is determined by the historical sleep time and the historical daytime sleep duration of each day, which is beneficial to more accurately determine the sleep type, so as to more accurately control the sleep system to enter or exit the daytime sleep mode, and improve the daytime sleep quality of the user.

[0046] Optionally, the sleep system determines the number of days in which the user has the daytime sleep behavior according to the historical sleep-in time and the historical daytime sleep duration of each day in the set historical days, including:

[0047] In a case that the historical sleep-in time of the i-th day is later than or equal to the first time or the proportion of the historical daytime sleep duration to the standard duration is greater than or equal to the first proportion value, the sleep system determines that the user has the daytime sleep behavior on the i-th day. The sleep system counts the number of days in which the user has the daytime sleep behavior. Or,

[0048] In a case that the historical sleep-in time of the i-th day is earlier than the first time and the proportion of the historical daytime sleep duration to the standard duration is less than the first proportion value, the sleep system determines that the user does not have the daytime sleep behavior on the i-th day.

[0049] Wherein, i = 1, 2, …, N, N is the set historical days; the first time is a time earlier than the sunrise time by a first duration; and the historical daytime sleep duration is the sleep duration after the sunrise time.

[0050] It should be noted that the first time includes one sleep cycle.

[0051] In this way, the time later than or equal to the first time (the time difference from the sunrise time is less than or equal to one sleep cycle) is taken as the time at which the daytime sleep behavior starts, and thus the sleep cycle after the sunrise time has not been completed, so the daytime sleep behavior exists in this sleep cycle. Taking the time later than or equal to the sunrise time by one sleep cycle as the time at which the daytime sleep behavior starts is conducive to more accurately determining whether the user has the daytime sleep behavior. Taking the historical sleep-in time later than or equal to the first time or the proportion of the historical daytime sleep duration to the standard duration greater than or equal to the first proportion value as the judgment standard of the daytime sleep behavior is conducive to more accurately determining whether the user has the daytime sleep behavior.

[0052] Specifically, the first duration can be in the range of (0, 1.5h]. The value of one sleep cycle can be 1.5h. The value of the first proportion value can be 80%. More specifically, the value of the first duration can be 1.5h.

[0053] In this way, 1.5h includes one sleep cycle, and the time later than or equal to the first time (the time difference from the sunrise time is less than or equal to one sleep cycle) is taken as the time at which the daytime sleep behavior starts, and thus the sleep cycle after the sunrise time has not been completed, so the daytime sleep behavior exists in this sleep cycle. Taking the time later than or equal to the sunrise time by one sleep cycle as the time at which the daytime sleep behavior starts is conducive to more accurately determining whether the user has the daytime sleep behavior. This is conducive to reducing the difference in sleep environment caused by the circadian rhythm and improving sleep quality.

[0054] Optionally, the standard duration is determined by the sleep system according to historical sleep time information in the set historical days.

[0055] Specifically, the historical sleep time information further includes a historical all-day sleep duration. The sleep system determines the standard duration according to the historical sleep time information in the set historical days, including: the sleep system calculates an average value of the historical all-day sleep duration in each day in the set historical days to obtain the standard duration.

[0056] In this way, the user's daytime sleep duration is prevented from being too long or too short, thereby preventing the proportion of the historical daytime sleep duration in the daytime sleep duration from being too large or too small, and improving the accuracy of the determination of whether the user has a daytime sleep behavior. Furthermore, the influence of external interference on the user's daytime sleep quality is reduced, and the user's daytime sleep quality is improved.

[0057] Optionally, the sleep system determines the sleep type of the user according to the number of days in the set historical days in which the user has a daytime sleep behavior, including: the sleep system determines a proportion of the number of days in the set historical days in which the user has a daytime sleep behavior in the set historical days as a daytime sleep behavior proportion. The sleep system determines the sleep type of the user according to the daytime sleep behavior proportion.

[0058] In this way, the sleep type of the user is determined according to the daytime sleep behavior proportion, which is beneficial to more accurately determining the sleep type of the user according to the number of days in the set historical days in which the user has a daytime sleep behavior, thereby reducing the influence of external interference on the user's daytime sleep quality and improving the user's daytime sleep quality.

[0059] Optionally, the sleep system determines the sleep type of the user according to the daytime sleep behavior proportion, including: in a case where the daytime sleep behavior proportion is greater than or equal to a second proportion value, the sleep system determines that the sleep type of the user is a daytime sleep user. Or, in a case where the daytime sleep behavior proportion is less than the second proportion value, the sleep system determines that the sleep type of the user is a non-daytime sleep user. Specifically, the second proportion value can be 25%.

[0060] In this way, the higher the proportion of the number of days in the set historical days in which the user has a daytime sleep behavior in the set historical days, the more the user is accustomed to sleeping during the day, and the user is determined to be a daytime sleep user. The lower the proportion of the number of days in the set historical days in which the user has a daytime sleep behavior in the set historical days, the more the user occasionally sleeps during the day, and the user is determined to be a non-daytime sleep user. This is beneficial to more accurately determining the sleep type of the user, thereby reducing the influence of external interference on the user's daytime sleep quality and improving the user's daytime sleep quality.

[0061] Optionally, the sleep system controls the sleep system to enter or exit the daytime sleep mode according to the sleep type of the user and the current time, to adjust the indoor temperature, and / or the humidity, and / or the air improvement measures, and / or the sound reminding mode, including:

[0062] In the case that the sleep type of the user is the daytime sleep user and the current time is in the first daytime time interval, or the sleep type of the user is the non-daytime sleep user and the current time is in the second daytime time interval when the user enters the sleep state, the sleep system controls the sleep system to enter the daytime sleep mode to adjust the indoor temperature, and / or the humidity, and / or the air improvement measures, and / or the sound setting. Or, in the case that the sleep type of the user is the daytime sleep user and the current time is in the first nighttime time interval, or the sleep type of the user is the non-daytime sleep user and the current time is in the second nighttime time interval when the user enters the sleep state, the sleep system controls the sleep system to exit the daytime sleep mode.

[0063] In this way, if the sleep type of the user is the daytime sleep user and the current time is in the first daytime time interval, or the sleep type of the user is the non-daytime sleep user and the current time is in the second daytime time interval when the user enters the sleep state, it indicates that the user has a high probability of daytime sleep behavior at this time. At this time, the sleep system is controlled to enter the sleep mode, and the indoor temperature, and / or the humidity, and / or the air improvement measures, and / or the sound setting are adjusted to make the daytime sleep environment more suitable for the daytime sleep user or the non-daytime sleep user, to provide a suitable daytime sleep sleep scheme to improve the daytime sleep quality of the user. If the sleep type of the user is the daytime sleep user and the current time is in the first nighttime time interval, or the sleep type of the user is the non-daytime sleep user and the current time is in the second nighttime time interval when the user enters the sleep state, it indicates that the user has no daytime sleep behavior at this time. At this time, the daytime sleep mode is exited, which is beneficial to better reduce the energy consumption of the sleep system and is beneficial to provide an environment suitable for daytime activities. The influence of external interference on the daytime sleep quality of the user is reduced, and the daytime sleep quality of the user is improved.

[0064] Optionally, the sleep system controls the sleep system to enter the daytime sleep mode to adjust the indoor temperature, and / or the humidity, and / or the air improvement measures, and / or the sound setting, including: the sleep system controls the sleep system to enter the daytime sleep mode to adjust the indoor temperature, and / or the humidity, and / or the air improvement measures according to the indoor noise. And the sleep system adjusts the sound setting according to the set device whitelist information.

[0065] Thus, the sleep system controls the sleep system to enter the daytime sleep mode, adjusts the indoor temperature, and / or, humidity, and / or, air improvement measures according to the indoor noise. And the sleep system adjusts the sound settings, provides a suitable daytime sleep sleep program to improve the user's daytime sleep quality, and creates a suitable indoor environment for daytime sleep according to the set device whitelist information. Reduce the impact of external interference on the user's daytime sleep quality and improve the user's daytime sleep quality.

[0066] Optionally, the sleep system adjusts the indoor temperature, and / or, humidity, and / or, air improvement measures according to the indoor noise, including: in the case that the indoor noise is in the first noise interval, the sleep system controls the air conditioner to adjust the indoor temperature to the first temperature, the humidity to the first humidity, and the air improvement measure is to control the ventilation equipment connected with the outside to run ventilation, and the air purifier to stop running. Or, in the case that the indoor noise is in the second noise interval, the sleep system controls the air conditioner to adjust the indoor temperature to the second temperature, the humidity to the second humidity, and the sleep system adjusts the air improvement measure to control the ventilation equipment connected with the outside to run ventilation, and the air purifier to stop running, and controls the audio-visual equipment to play the set noise of the rain white noise audio. Or, in the case that the indoor noise is in the third noise interval, the air improvement measure is to control the ventilation equipment connected with the outside to stop running ventilation, and the air purifier to run. Wherein, the first temperature is greater than the second temperature, and the first humidity is lower than the second humidity; the first noise interval is lower than the second noise interval, and the second noise interval is lower than the third noise interval.

[0067] Specifically, the first temperature can be 22℃, the second temperature can be 20℃, the first humidity can be 40%, the second humidity can be 50%, the first noise interval can be [0, 30dB), the second noise interval can be [30dB, 50dB], and the third noise interval can be (50dB, +∞).

[0068] Thus, if the indoor noise is in the first noise interval, it indicates that the indoor noise is similar to the noise of the nighttime sleeping environment, and is relatively quiet. Therefore, the indoor temperature is adjusted to the first temperature, the indoor humidity is adjusted to the first humidity, and the daytime sleeping environment is created as "slightly noisy night", and the air exchange operation of the air exchange device connected with the outside is not stopped. If the indoor noise is in the first noise interval, it indicates that the indoor noise is higher than the noise of the nighttime sleeping environment. Therefore, the indoor temperature is adjusted to the second temperature, the indoor humidity is adjusted to the second humidity, and the daytime sleeping environment is created as "rainy day", and the air exchange operation of the air exchange device connected with the outside is not stopped. If the indoor noise is in the second noise interval, it indicates that it is difficult to reduce the noise by playing white noise. Therefore, the air exchange operation of the air exchange device connected with the outside is stopped, and the air purifier is turned on to improve the indoor air. In this way, the sleeping environment is more suitable for daytime sleeping users or non-daytime sleeping users, and a suitable daytime sleeping scheme is provided to improve the daytime sleeping quality of the user. The influence of external interference on the daytime sleeping quality of the user is reduced, and the daytime sleeping quality of the user is improved.

[0069] Optionally, the sleep system adjusts the sound setting according to the device whitelist information, including: in the case that the audio / video device, and / or, the doorbell, and / or, the sweeping robot is in the device whitelist, the sleep system controls the audio / video device to keep the original sound, and / or, the doorbell prompt type is sound or high pitch, and / or, the sweeping robot keeps running the timing task. Or, in the case that the audio / video device, and / or, the doorbell, and / or, the sweeping robot is not in the device whitelist, the sleep system controls the audio / video device to stop running, and / or, the doorbell prompt type is soundless or low pitch, and / or, the sweeping robot disables the timing task.

[0070] Specifically, the sleep system controls the audio / video device to keep the original sound, and / or, the doorbell prompt type is sound or high pitch, and / or, the sweeping robot keeps running the timing task, including: in the case that the audio / video device is in the device whitelist, the sleep system controls the audio / video device to keep the original sound. And / or, in the case that the doorbell is in the device whitelist, the sleep system controls the doorbell prompt type to be sound or high pitch. And / or, in the case that the sweeping robot is in the device whitelist, the sleep system controls the sweeping robot to keep running the timing task.

[0071] The sleep system controls the audio-visual device to stop running, and / or, the doorbell to prompt in a silent or low sound type, and / or, the sweeping robot to disable a timing task, including: in a case that the audio-visual device is not in the device whitelist, the sleep system controls the audio-visual device to stop running. And / or, in a case that the doorbell is not in the device whitelist, the sleep system controls the doorbell to prompt in a silent or low sound type. And / or, in a case that the sweeping robot is not in the device whitelist, the sleep system controls the sweeping robot to disable a timing task.

[0072] In this way, a whitelist information is set to adjust the sound settings of the audio-visual device, the doorbell, and the sweeping robot, so as to reduce the noise in the daytime sleep environment, provide a suitable daytime sleep scheme to improve the daytime sleep quality of the user, reduce the influence of external interference on the daytime sleep quality of the user, and improve the daytime sleep quality of the user.

[0073] Optionally, the first daytime time interval, the first nighttime time interval, the second daytime time interval, and the second nighttime time interval are determined according to a sunrise time and a sunset time.

[0074] In this way, it is beneficial to more accurately determine the first daytime time interval, the first nighttime time interval, the second daytime time interval, and the second nighttime time interval.

[0075] Optionally, the first daytime time interval is determined according to the sunrise time and the sunset time, including: determining a time interval starting from a second time to ending at the sunset time as the first daytime time interval. The second time is a time earlier than the sunrise time by a second time length. Specifically, the second time length can be 1.5 h.

[0076] In this way, for a daytime sleep user, the daytime sleep mode is entered at a second time earlier than the sunrise time, and the sleep cycle of the user before the sunrise time has not been completed after the sunrise time, so there is a daytime sleep behavior in this sleep cycle. At this time, the daytime sleep mode is entered, which is beneficial to avoid the sleep cycle being interrupted, reduce the difference in sleep environment caused by the day-night change, and improve the sleep quality.

[0077] Optionally, the first nighttime time interval is determined according to the sunrise time and the sunset time, including: determining a time interval starting from the sunset time to ending at a second time of the next day as the first nighttime time interval.

[0078] In this way, for a daytime sleep user, the daytime sleep mode is exited at a time outside the first daytime time interval, which is beneficial to better reduce the energy consumption of the sleep system and provide an environment suitable for daytime activities.

[0079] Optionally, the second daytime time interval is determined according to the sunrise time and the sunset time, including: determining a time interval starting from the sunrise time to ending at the sunset time as the second daytime time interval.

[0080] Thus, for the non-daytime sleep user, entering the daytime sleep mode between the sunrise time and the sunset time, is conducive to providing a suitable daytime sleep sleep scheme to improve the daytime sleep quality of the user. Reducing the influence of external interference on the daytime sleep quality of the user, and improving the daytime sleep quality of the user. Since the daytime sleep mode is not entered at the first time, it is conducive to better reducing the energy consumption of the sleep system.

[0081] Optionally, the second night time interval is determined according to the sunrise time and the sunset time, comprising: determining a time interval starting from the sunset time to ending at the sunrise time of the next day as the second night time interval.

[0082] Thus, at a time outside the second daytime time interval, the daytime sleep mode is not entered, which is conducive to better reducing the energy consumption of the sleep system, and is conducive to providing a suitable daytime activity environment.

[0083] Optionally, the determination of the sunrise time and the sunset time comprises: the sleep system receiving the sunrise time and the sunset time sent by the server. Or, the sleep system queries the sunrise time and the sunset time in the preset information library according to the light intensity detected by the light intensity sensor.

[0084] Thus, it is conducive to more accurately determining the sunrise time and the sunset time, thereby more accurately determining the first daytime time interval, the first night time interval, the second daytime time interval, and the second night time interval.

[0085] Optionally, after the sleep system controls the sleep system to enter the daytime sleep mode, the sleep system further comprises: in the case that the user wakes up, the sleep system controls the sleep system to exit the daytime sleep mode.

[0086] Thus, after the user wakes up, the daytime sleep mode is exited, which is conducive to providing a suitable daytime activity environment, and is conducive to better reducing the energy consumption of the sleep system.

[0087] In combination Figure 3 As shown in the figure, the embodiment of the present disclosure provides another method for adjusting a sleep environment, comprising:

[0088] S301, the sleep system determines the sleep type of the user according to historical sleep time information of the user.

[0089] S302, in the case that the sleep type of the user is a daytime sleep user and the current time is in the first daytime time interval, or the sleep type of the user is a non-daytime sleep user and the current time is in the second daytime time interval, the user enters a sleep state, the sleep system controls the sleep system to enter a daytime sleep mode, to adjust the indoor temperature, and / or, the humidity, and / or, the air improvement measures, and / or, the sound setting. Thus, for the non-daytime sleep user, entering the daytime sleep mode between the sunrise time and the sunset time, is conducive to providing a suitable daytime sleep sleep scheme to improve the daytime sleep quality of the user. Reducing the influence of external interference on the daytime sleep quality of the user, and improving the daytime sleep quality of the user. Since the daytime sleep mode is not entered at the first time, it is conducive to better reducing the energy consumption of the sleep system.

[0081] Optionally, the second night time interval is determined according to the sunrise time and the sunset time, comprising: determining a time interval starting from the sunset time to ending at the sunrise time of the next day as the second night time interval.

[0082] Thus, at a time outside the second daytime time interval, the daytime sleep mode is not entered, which is conducive to better reducing the energy consumption of the sleep system, and is conducive to providing a suitable daytime activity environment.

[0083] Optionally, the determination of the sunrise time and the sunset time comprises: the sleep system receiving the sunrise time and the sunset time sent by the server. Or, the sleep system queries the sunrise time and the sunset time in the preset information library according to the light intensity detected by the light intensity sensor.

[0084] Thus, it is conducive to more accurately determining the sunrise time and the sunset time, thereby more accurately determining the first daytime time interval, the first night time interval, the second daytime time interval, and the second night time interval.

[0085] Optionally, after the sleep system controls the sleep system to enter the daytime sleep mode, the sleep system further comprises: in the case that the user wakes up, the sleep system controls the sleep system to exit the daytime sleep mode.

[0086] Thus, after the user wakes up, the daytime sleep mode is exited, which is conducive to providing a suitable daytime activity environment, and is conducive to better reducing the energy consumption of the sleep system.

[0087] In combination Figure 3 As shown in the figure, the embodiment of the present disclosure provides another method for adjusting a sleep environment, comprising:

[0088] S301, the sleep system determines the sleep type of the user according to historical sleep time information of the user.

[0089] S302, in the case that the sleep type of the user is a daytime sleep user and the current time is in the first daytime time interval, or the sleep type of the user is a non-daytime sleep user and the current time is in the second daytime time interval, the user enters a sleep state, the sleep system controls the sleep system to enter a daytime sleep mode, to adjust the indoor temperature, and / or, the humidity, and / or, the air improvement measures, and / or, the sound setting.

[0090] S303, in the case that the user wakes up, the sleep system controls the sleep system to exit the daytime sleep mode.

[0091] S304, in the case that the sleep type of the user is a daytime sleep user and the current time is in the first nighttime time interval, or, the sleep type of the user is a non-daytime sleep user and the current time is in the second nighttime time interval, the sleep system controls the sleep system to exit the daytime sleep mode.

[0092] The sleep type of the user includes a daytime sleep user or a non-daytime sleep user.

[0093] The method for sleep environment adjustment provided by the embodiments of the present disclosure is adopted. If the sleep type of the user is a daytime sleep user and the current time is in the first daytime time interval, or, the sleep type of the user is a non-daytime sleep user and the current time is in the second daytime time interval, it indicates that the user has a high probability of daytime sleep behavior at this time. At this time, the sleep system is controlled to enter the sleep mode, the indoor temperature, and / or the humidity, and / or the measures for improving the air, and / or the sound setting are adjusted, so that the daytime sleep environment is more suitable for the daytime sleep user or the non-daytime sleep user, a suitable daytime sleep scheme is provided to improve the daytime sleep quality of the user. After the user wakes up, the daytime sleep mode is exited, which is beneficial to provide an environment suitable for daytime activities, and is beneficial to better reduce the energy consumption of the sleep system. If the sleep type of the user is a daytime sleep user and the current time is in the first nighttime time interval, or, the sleep type of the user is a non-daytime sleep user and the current time is in the second nighttime time interval, it indicates that the user has no daytime sleep behavior at this time. At this time, the daytime sleep mode is exited, which is beneficial to better reduce the energy consumption of the sleep system, and is beneficial to provide an environment suitable for daytime activities. The influence of external interference on the daytime sleep quality of the user is reduced, and the daytime sleep quality of the user is improved.

[0094] In combination with Figure 4 As shown in the figure, the embodiments of the present disclosure provide another method for sleep environment adjustment, which comprises:

[0095] S401, the sleep system determines the sleep type of the user according to historical sleep time information of the user.

[0096] S402, in the case that the sleep type of the user is a daytime sleep user and the current time is in the first daytime time interval, or, the sleep type of the user is a non-daytime sleep user and the current time is in the second daytime time interval, the sleep system controls the sleep system to enter the daytime sleep mode, so as to adjust the indoor temperature, and / or the humidity, and / or the measures for improving the air according to the indoor noise. And,

[0097] S403, the sleep system adjusts the sound setting according to the set device whitelist information.

[0098] S404, in the case that the user wakes up, the sleep system controls the sleep system to exit the daytime sleep mode.

[0099] S405, in the case that the sleep type of the user is a daytime sleep user and the current time is in the first nighttime time interval, or the sleep type of the user is a non-daytime sleep user and the current time is in the second nighttime time interval and the user enters a sleep state, the sleep system controls the sleep system to exit the daytime sleep mode.

[0100] The sleep type of the user includes a daytime sleep user or a non-daytime sleep user.

[0101] The method for sleep environment adjustment provided by the embodiment of the present disclosure is adopted. If the sleep type of the user is a daytime sleep user and the current time is in the first daytime time interval, or the sleep type of the user is a non-daytime sleep user and the current time is in the second daytime time interval and the user enters a sleep state, it indicates that the user has a high probability of daytime sleep behavior at this time. At this time, the sleep system is controlled to enter a sleep mode, and the indoor temperature, and / or the humidity, and / or the measure of improving air, and / or the sound setting are adjusted, so that the daytime sleep environment is more suitable for daytime sleep users or non-daytime sleep users, a sleep scheme suitable for daytime sleep is provided to improve the daytime sleep quality of the user, and an indoor environment suitable for daytime sleep is created. After the user wakes up, the daytime sleep mode is exited, which is beneficial to provide an environment suitable for daytime activities and to better reduce the energy consumption of the sleep system. If the sleep type of the user is a daytime sleep user and the current time is in the first nighttime time interval, or the sleep type of the user is a non-daytime sleep user and the current time is in the second nighttime time interval and the user enters a sleep state, it indicates that the user has no daytime sleep behavior at this time. At this time, the daytime sleep mode is exited, which is beneficial to better reduce the energy consumption of the sleep system and to provide an environment suitable for daytime activities. The influence of external interference on the daytime sleep quality of the user is reduced, and the daytime sleep quality of the user is improved.

[0102] In combination with Figure 5 The embodiment of the present disclosure provides another method for sleep environment adjustment, which comprises the following steps:

[0103] S501, the sleep system determines the sleep type of the user according to historical sleep time information of the user.

[0104] S502, in the case that the user's sleep type is a daytime sleep user and the current time is in the first daytime time interval, or the user's sleep type is a non-daytime sleep user and the current time is in the second daytime time interval, the sleep system controls the sleep system to enter a daytime sleep mode, and judges whether the indoor noise is in the first noise interval.

[0105] S503, in the case that the indoor noise is in the first noise interval, the sleep system controls the air conditioner to adjust the indoor temperature to be in the first temperature and the humidity to be in the first humidity, and the measure for improving air is to control the ventilation equipment connected with the outside to run ventilation, and the air purifier to stop running. Or,

[0106] S504, in the case that the indoor noise is in the second noise interval, the sleep system controls the air conditioner to adjust the indoor temperature to be in the second temperature and the humidity to be in the second humidity, and the measure for improving air is to control the ventilation equipment connected with the outside to run ventilation, and the air purifier to stop running, and to control the audio-visual equipment to play the set noise of the rain white noise audio. Or,

[0107] S505, in the case that the indoor noise is in the third noise interval, the sleep system adjusts the measure for improving air to be to control the ventilation equipment connected with the outside to stop running ventilation, and the air purifier to run.

[0108] S506, the sleep system adjusts the sound setting according to the set device white list information.

[0109] S507, in the case that the user wakes up, the sleep system controls the sleep system to exit the daytime sleep mode.

[0110] S508, in the case that the user's sleep type is a daytime sleep user and the current time is in the first nighttime time interval, or the user's sleep type is a non-daytime sleep user and the current time is in the second nighttime time interval, the sleep system controls the sleep system to exit the daytime sleep mode.

[0111] The sleep type of the user includes a daytime sleep user or a non-daytime sleep user. The first temperature is greater than the second temperature, and the first humidity is lower than the second humidity; the first noise interval is lower than the second noise interval, and the second noise interval is lower than the third noise interval.

[0112] If the user's sleep type is a daytime sleep user and the current time is in the first daytime time interval, or the user's sleep type is a non-daytime sleep user and the current time is in the second daytime time interval, and the user enters a sleep state, it indicates that the user has a high probability of daytime sleep behavior at this time. At this time, the sleep system is controlled to enter a sleep mode. If the indoor noise is in the first noise interval, it indicates that the indoor noise at this time is similar to the noise of the nighttime sleep environment and is relatively quiet. Only the indoor temperature needs to be adjusted to a first temperature, the humidity needs to be adjusted to a first humidity, and the daytime sleep environment can be created as "slightly noisy night". The air exchange operation of the air exchange device connected to the outside does not need to be stopped for noise reduction. If the indoor noise is in the first noise interval, it indicates that the indoor noise at this time is higher than the noise of the nighttime sleep environment. At this time, the indoor temperature is reduced to a second temperature, the indoor humidity is increased to a second humidity, and white noise audio is played to create a daytime sleep environment as "rainy day". The air exchange operation of the air exchange device connected to the outside does not need to be stopped for noise reduction. If the indoor noise is in the second noise interval, it indicates that it is difficult to reduce the noise by playing white noise in a non-rational shielding manner. At this time, the air exchange operation of the air exchange device connected to the outside is stopped for noise reduction, and an air purifier with smaller noise is turned on to improve the indoor air. In this way, the sleep environment is more suitable for daytime sleep users or non-daytime sleep users, and a suitable daytime sleep scheme is provided to improve the daytime sleep quality of the user. After the user wakes up and exits the daytime sleep mode, it is beneficial to provide an environment suitable for daytime activities and to better reduce the energy consumption of the sleep system. If the user's sleep type is a daytime sleep user and the current time is in the first nighttime time interval, or the user's sleep type is a non-daytime sleep user and the current time is in the second nighttime time interval, and the user enters a sleep state, it indicates that the user does not have daytime sleep behavior at this time. At this time, the daytime sleep mode is exited, which is beneficial to better reduce the energy consumption of the sleep system and to provide an environment suitable for daytime activities. The influence of external interference on the daytime sleep quality of the user is reduced, and the daytime sleep quality of the user is improved.

[0113] In combination Figure 6 As shown in FIG. 6, the embodiment of the present disclosure provides a device 200 for sleep environment adjustment, which comprises a determination module 601 and a control module 602. The determination module 601 is configured to determine the sleep type of a user according to historical sleep time information of the user. The control module 602 is configured to control a sleep system to enter or exit a daytime sleep mode according to the sleep type of the user and the current time, to adjust the indoor temperature, and / or the humidity, and / or the measures to improve the air, and / or the sound setting. The sleep type of the user includes a daytime sleep user or a non-daytime sleep user.

[0114] The device 200 for sleep environment adjustment provided by the embodiment of the present disclosure is used to determine the sleep type of the user as a daytime sleep user or a non-daytime sleep user according to the historical sleep time of the user, and then control the sleep system to enter or exit the daytime sleep mode according to the sleep type of the user and the current time, and adjust the indoor temperature, and / or the humidity, and / or the measures for improving the air, and / or the sound setting, so that the sleep environment is more suitable for the daytime sleep user or the non-daytime sleep user, and a sleep scheme suitable for daytime sleep is provided to improve the daytime sleep quality of the user. The influence of external interference on the daytime sleep quality of the user is reduced, and the daytime sleep quality of the user is improved.

[0115] In combination Figure 7 The device 300 for sleep environment adjustment provided by the embodiment of the present disclosure includes a processor 700 and a memory 701. Optionally, the device 300 can further include a communication interface 702 and a bus 703. The processor 700, the communication interface 702, and the memory 701 can communicate with each other through the bus 703. The communication interface 702 can be used for information transmission. The processor 700 can invoke the logic instructions in the memory 701 to execute the method for sleep environment adjustment of the above-mentioned embodiments.

[0116] In addition, the logic instructions in the memory 701 can be implemented in the form of a software functional unit and sold or used as an independent product, which can be stored in a computer readable storage medium.

[0117] The memory 701 as a computer readable storage medium can be used to store software programs, computer executable programs, such as program instructions / modules corresponding to the method in the embodiment of the present disclosure. The processor 700 executes the program instructions / modules stored in the memory 701, thereby performing function applications and data processing, that is, implementing the method for sleep environment adjustment in the above-mentioned embodiments.

[0118] The memory 701 can include a program storage area and a data storage area. The program storage area can store an operating system and at least one application required by a function; the data storage area can store data created according to the use of the terminal device, etc. In addition, the memory 701 can include a high-speed random access memory, and can further include a non-volatile memory.

[0119] In combination Figure 8As shown, the embodiment of the present disclosure provides a sleep system 100, comprising: a sleep system body, and the above-mentioned device 200 (300) for sleep environment adjustment. The device 200 (300) for sleep environment adjustment is installed on the sleep system body. The installation relationship described herein is not limited to being placed inside the sleep system body, but also includes installation connection with other components of the sleep system 100, including but not limited to physical connection, electrical connection or signal transmission connection, etc. Those skilled in the art can understand that the device 200 (300) for sleep environment adjustment can be adapted to a feasible sleep system body, thereby realizing other feasible embodiments.

[0120] The embodiment of the present disclosure provides a computer readable storage medium, which stores computer executable instructions, and the computer executable instructions are configured to execute the above-mentioned method for sleep environment adjustment.

[0121] The technical solution of the embodiment of the present disclosure can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes one or more instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the method described in the embodiment of the present disclosure. The aforementioned storage medium can be a non-transitory storage medium, such as a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, etc. various media that can store program codes.

[0122] The foregoing description and accompanying drawings fully illustrate embodiments of this disclosure to enable those skilled in the art to practice them. Other embodiments may include structural, logical, electrical, procedural, and other changes. The embodiments represent only possible variations. Individual components and functions are optional unless explicitly required, and the order of operation may vary. Parts and features of some embodiments may be included in or replace parts and features of other embodiments. Moreover, the terminology used in this application is for describing embodiments only and is not intended to limit the claims. As used in the description of embodiments and claims, the singular forms “a,” “an,” and “the” are intended to equally include the plural forms unless the context clearly indicates otherwise. Similarly, the term “and / or” as used in this application means including one or more of the associated listed items and all possible combinations thereof. Additionally, when used in this application, the term "comprise" and its variations "comprises" and / or "comprising" refer to the presence of stated features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or groups thereof. Without further limitations, an element defined by the phrase "comprises a..." does not exclude the presence of other identical elements in the process, method, or apparatus that includes said element. In this document, each embodiment may focus on the differences from other embodiments, and similar or identical parts between embodiments can be referred to mutually. For methods, products, etc., disclosed in the embodiments, if they correspond to the method section disclosed in the embodiments, the relevant parts can be referred to the description of the method section.

[0123] Those skilled in the art will recognize that the units and algorithm steps of the various examples described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the embodiments of this disclosure. Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0124] In the embodiments disclosed herein, the disclosed methods, products (including but not limited to apparatuses, devices, etc.), can be implemented in other manners. For example, the described apparatus embodiments can be implemented only in a form of a logical function, and can be implemented by using a manner such as software (for example, application program) or the like. In some embodiments, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the displayed or discussed coupling or direct coupling or indirect coupling between different units, or the coupling or direct coupling or indirect coupling between the displayed or discussed communication connections can be in a form of electrical, mechanical or other forms.

[0125] The flowcharts and block diagrams in the drawings show the possible implementation architectures, functions and operations of the system, method and computer program product according to the embodiments of the present disclosure. In this regard, each block in the flowcharts or block diagrams can represent a module, a program segment or a part of code containing one or more executable instructions for implementing a specified logical function. In some alternative implementations, the functions noted in the blocks can occur in an order different from that noted in the drawings. For example, two consecutive blocks can actually be executed substantially in parallel, and sometimes they can be executed in reverse order, depending on the functions involved. In the descriptions corresponding to the flowcharts and block diagrams in the drawings, the operations or steps corresponding to different blocks can also occur in an order different from that disclosed in the descriptions, and sometimes there is no specific order between different operations or steps. For example, two consecutive operations or steps can actually be executed substantially in parallel, and sometimes they can be executed in reverse order, depending on the functions involved. Each block in the block diagrams and / or flowcharts, and the combination of blocks in the block diagrams and / or flowcharts, can be implemented by a dedicated hardware-based system that performs the specified functions or actions, or can be implemented by a combination of dedicated hardware and computer instructions.

Claims

1. A method for sleep environment conditioning, characterized by, The application is applied to a sleep system, comprising: determining the sleep type of the user according to historical sleep time information of the user; controlling the sleep system to enter or exit a daytime sleep mode according to the sleep type of the user and the current time, to adjust indoor temperature, and / or humidity, and / or air improvement measures, and / or sound settings; which comprises: in the case that the sleep type of the user is a daytime sleep user and the current time is in a first daytime time interval, or the sleep type of the user is a non-daytime sleep user and the current time is in a second daytime time interval when the user enters a sleep state, controlling the sleep system to enter the daytime sleep mode to adjust indoor temperature, and / or humidity, and / or air improvement measures, and / or sound settings; or, controlling the sleep system to exit the daytime sleep mode in the case that the sleep type of the user is a daytime sleep user and the current time is in a first nighttime time interval, or the sleep type of the user is a non-daytime sleep user and the current time is in a second nighttime time interval when the user enters a sleep state; wherein the sleep type of the user comprises a daytime sleep user or a non-daytime sleep user.

2. The method of claim 1, wherein, determining the sleep type of the user according to historical sleep time information of the user, comprising: determining the number of days in which the user has daytime sleep behavior according to historical sleep information of each day within a set number of historical days; determining the sleep type of the user according to the number of days in which the user has daytime sleep behavior within a set number of historical days.

3. The method of claim 1, wherein, controlling the sleep system to enter the daytime sleep mode to adjust indoor temperature, and / or humidity, and / or air improvement measures, and / or sound settings, comprising: controlling the sleep system to enter the daytime sleep mode to adjust indoor temperature, and / or humidity, and / or air improvement measures according to indoor noise; and adjusting the sound settings according to the set device whitelist information.

4. The method of claim 3, wherein, The sleep system comprises an air conditioner, an air exchange device connected to the outside world, an air purifier and an audio-visual device, and the adjustment of indoor temperature, and / or humidity, and / or air improvement measures according to indoor noise comprises: in the case that the indoor noise is in a first noise interval, controlling the air conditioner to adjust the indoor temperature to a first temperature, the humidity to a first humidity, and the air improvement measure to control the air exchange device connected to the outside world to run, and the air purifier to stop running; or in the case that the indoor noise is in a second noise interval, controlling the air conditioner to adjust the indoor temperature to a second temperature, the humidity to a second humidity, and the air improvement measure to control the air exchange device connected to the outside world to run, and the air purifier to stop running, and controlling the audio-visual device to play a set noise of a rain white noise audio; or in the case that the indoor noise is in a third noise interval, adjusting the air improvement measure to control the air exchange device connected to the outside world to stop running, and the air purifier to run; wherein the first temperature is greater than the second temperature, the first humidity is lower than the second humidity; the first noise interval is lower than the second noise interval, and the second noise interval is lower than the third noise interval.

5. The method of claim 3, wherein, The sleep system comprises an audio-visual device, a doorbell and a sweeping robot, and the adjustment of the sound settings according to the set device whitelist information comprises: In the case that the audio-video device, and / or, the doorbell, and / or, the sweeping robot is in the device whitelist, the audio-video device is controlled to keep the original sound, and / or, the doorbell prompt type is sound or high pitch, and / or, the sweeping robot keeps running the timing task; or, In the case that the audio-video device, and / or, the doorbell, and / or, the sweeping robot is not in the device whitelist, the audio-video device is controlled to stop running, and / or, the doorbell prompt type is soundless or low pitch, and / or, the sweeping robot disables the timing task.

6. An apparatus for sleep environment conditioning, characterized by, Applied to a sleep system, comprising: A determination module configured to determine a sleep type of a user according to historical sleep time information of the user; A control module configured to control the sleep system to enter or exit a daytime sleep mode according to the sleep type of the user and a current time, to adjust indoor temperature, and / or, humidity, and / or, air improvement measures, and / or, sound settings; which includes: in the case that the sleep type of the user is a daytime sleep user and the current time is in a first daytime time interval, or, the sleep type of the user is a non-daytime sleep user and the current time is in a second daytime time interval when the user enters a sleep state, controlling the sleep system to enter the daytime sleep mode to adjust the indoor temperature, and / or, humidity, and / or, air improvement measures, and / or, sound settings; or, In the case that the sleep type of the user is a daytime sleep user and the current time is in a first nighttime time interval, or, the sleep type of the user is a non-daytime sleep user and the current time is in a second nighttime time interval when the user enters a sleep state, controlling the sleep system to exit the daytime sleep mode; Wherein, the sleep type of the user includes a daytime sleep user or a non-daytime sleep user.

7. An apparatus for sleep environment conditioning comprising a processor and a memory having stored therein program instructions, the apparatus characterized by, The processor is configured to execute the program instructions when running, to perform the method for sleep environment adjustment as claimed in any one of claims 1 to 5.

8. A sleep system characterized by, Comprising: A sleep system body; The device for sleep environment adjustment as claimed in claim 6 or 7 is installed in the sleep system body.

9. A computer readable storage medium storing program instructions, characterized in that, The program instructions are used to make the computer execute the method for sleep environment adjustment as claimed in any one of claims 1 to 5 when running.

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