Sleep environment temperature management method and system based on galvanic skin
By dividing external and internal electrosilicon monitoring devices, combining sleep stage results and abnormal temperature changes, differentiated temperature adjustment strategies are formulated, which solves the problem of inaccurate temperature regulation in the sleep environment in the prior art and improves the quality of sleep.
Patent Information
- Application Number
- CN202510797007.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-16
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2045-06-16
AI Technical Summary
When adjusting the temperature of the human sleep environment, the prior art fails to differentiate the adjustment according to the temperature changes of different sleep stages and body parts, resulting in a decrease in sleep quality.
By dividing external and internal electroskin monitoring devices, the data of the external monitoring device determines whether the skin temperature meets the requirements, and combines the abnormal temperature changes of the internal monitoring device to determine whether temperature adjustment is needed, and combines the sleep staging results and internal monitoring data to formulate differentiated temperature adjustment strategies.
The temperature regulation at different sleep stages and body parts is achieved, reducing the interference of temperature regulation on sleep and improving sleep quality.
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Figure CN120332897A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of temperature control, and particularly relates to a method and system for managing the temperature of a sleep environment based on galvanic skin response (GSR). Background Art
[0002] The environmental temperature during human sleep has a great impact on the sleep quality. At present, when regulating the environmental temperature during human sleep, the automatic temperature regulation function of temperature control equipment is often used for adjustment, resulting in the accuracy of temperature regulation being difficult to meet the requirements.
[0003] To solve the above problems, the prior art solutions provide a technical solution for regulating the environmental temperature based on the detected GSR signal. The GSR signal changes with the change of skin temperature, so as to realize the targeted adjustment of the sleep environment.
[0004] However, when adjusting the environmental temperature, the prior art solutions ignore generating a differentiated temperature adjustment strategy according to the sleep stage of the human body. Specifically, when the human body is in the light sleep stage, a drastic change in the environmental temperature may interrupt the normal sleep process, making the sleep quality difficult to meet the requirements.
[0005] To solve the above technical problems, specifically, the present application provides a method and system for managing the temperature of a sleep environment based on GSR. Summary of the Invention
[0006] To achieve the object of the present invention, the present invention adopts the following technical solutions: A method for managing the temperature of a sleep environment based on GSR specifically includes: S1 Divide the GSR monitoring devices into external monitoring devices and internal monitoring devices according to the change situation of the monitoring data of the GSR monitoring devices at different positions; S2 When it is determined that the skin temperature data corresponding to the external monitoring device meets the requirements by using the monitoring data and the change situation of the monitoring data of the external monitoring device, determine the temperature change abnormal device of the internal monitoring device according to the change situation of the monitoring data of the internal monitoring device; S3 When it is determined that the first temperature adjustment strategy does not need to be used for temperature adjustment according to the distribution data of the temperature change abnormal device and the change situation of the monitoring data, enter the next step; S4 Obtain the sleep staging result of the monitoring target, and combine the monitoring data of different internal monitoring devices to determine the temperature adjustment strategy for the sleep environment of the monitoring target.
[0007] The beneficial effects of the present invention are as follows: By using the monitoring data of an external monitoring device and the variation of the monitoring data, it is determined whether the skin temperature data corresponding to the external monitoring device meets the requirements, thereby fully considering the temperature conditions of the body parts exposed outside the thermal insulation measures during sleep, avoiding temperature regulation when the temperature of the body parts outside the thermal insulation measures is too low or the temperature drops too quickly, and ensuring the sleep quality of the monitoring target.
[0008] Based on the sleep stage result of the monitoring target and the monitoring data of different internal monitoring devices, a temperature regulation strategy for the sleep environment of the monitoring target is determined. It not only considers adopting a differentiated temperature regulation strategy in different sleep stages to ensure the sleep quality of the monitoring target, but also takes into account the temperature conditions of the monitoring devices inside the thermal insulation measures, realizing differential temperature regulation of the sleep environment based on two dimensions of sleep stage and temperature conditions, thereby reducing the impact of sleep regulation on the sleep quality of users.
[0009] A further technical solution is that the monitoring data includes the monitoring data at different times within a recent preset period.
[0010] A further technical solution is that the variation of the monitoring data includes the variation amount of the monitoring data within a recent preset period.
[0011] A further technical solution is to divide the galvanic skin monitoring devices into external monitoring devices and internal monitoring devices, specifically including: Based on the variation of the monitoring data of the galvanic skin monitoring devices, determine the variation amount of the monitoring data of different galvanic skin monitoring devices within a recent preset period; Divide the galvanic skin monitoring devices into different variation amount intervals according to the variation amount of the monitoring data; Based on the types of monitoring devices corresponding to different variation amount intervals, divide the galvanic skin monitoring devices into external monitoring devices and internal monitoring devices.
[0012] A further technical solution is that when the type of the monitoring device corresponding to the variation amount interval where the galvanic skin monitoring device is located is an external monitoring device, it is determined that the galvanic skin monitoring device is an external monitoring device.
[0013] A further technical solution is to determine the regulation strategy for the sleep environment of the monitoring target based on the sum of the preset weight values of different overrun monitoring devices and the sleep stage result of the monitoring target, specifically including: When the sum of the preset weight values is less than the preset weight value threshold, there is no need to perform the regulation process for the sleep environment of the monitoring target temporarily; When the sum of the preset weight values is not less than the preset weight value threshold, determine the sleep stage corresponding to the monitoring target based on the sleep staging result of the monitoring target, and determine the adjustment strategy for the sleep environment of the monitoring target based on the sleep stage and the sum of the preset weight values.
[0014] A further technical solution lies in that determining the adjustment strategy for the sleep environment of the monitoring target based on the sleep stage and the sum of the preset weight values specifically includes: Based on the sleep stage, determine the weight value threshold corresponding to the sleep stage. When the sum of the preset weight values is greater than the weight value threshold, adopt the second adjustment strategy to adjust the sleep environment of the monitoring target; When the sum of the preset weight values is not greater than the weight value threshold, temporarily do not adjust the sleep environment of the monitoring target.
[0015] In a second aspect, the present invention provides a computer system, including: a memory and a processor connected by communication, and a computer program stored on the memory and capable of running on the processor. When the processor runs the computer program, it executes the above-mentioned method for managing the temperature of the sleep environment based on galvanic skin response.
[0016] Other features and advantages will be described in the following description. The objectives and other advantages of the present invention are achieved and obtained by the structures specifically pointed out in the description and the drawings.
[0017] To make the above objectives, features, and advantages of the present invention more obvious and understandable, the following specifically enumerates preferred embodiments and, in conjunction with the accompanying drawings, provides a detailed description as follows. Description of the Drawings
[0018] By referring to the drawings and describing its exemplary embodiments in detail, the above and other features and advantages of the present invention will become more obvious; Figure 1 is a flowchart of a method for managing the temperature of the sleep environment based on galvanic skin response; Figure 2 is a flowchart for dividing the galvanic skin response monitoring device into an external monitoring device and an internal monitoring device; Figure 3 is a flowchart for determining that the skin temperature data corresponding to the external monitoring device meets the requirements; Figure 4 is a flowchart of a method for determining the temperature change abnormal device of the internal monitoring device; Figure 5 is a flowchart of a method for determining the temperature adjustment strategy for the sleep environment of the monitoring target. Detailed Embodiments
[0019] To enable those skilled in the art to better understand the technical solutions in this specification, the following will clearly and completely describe the technical solutions in the embodiments of this specification in conjunction with the accompanying drawings in the embodiments of this specification. Obviously, the described embodiments are only a part of the embodiments of this specification, rather than all the embodiments. Based on the embodiments of this specification, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of this specification.
[0020] In this application, by utilizing the differences in the sleep stages of the monitored target, a differentiated temperature adjustment strategy is generated, thereby avoiding the impact on the sleep of the monitored target during the temperature adjustment process.
[0021] The external monitoring device is a monitoring device outside the heat preservation measures, such as a monitoring device outside the quilt or clothes. Specifically, a monitoring device with a relatively fast-changing curve of the monitored data is used as the external monitoring device, and a monitoring device with a relatively slow-changing curve is used as the internal monitoring device.
[0022] Specifically, the monitoring devices are divided into two groups according to the similarity degree of the changing curves of the monitored data. Based on the changing curves of the monitored data of the monitoring devices in different groups, the external monitoring device and the internal monitoring device are determined.
[0023] When the temperature corresponding to the monitored data of the external monitoring device is not less than 22 degrees and the temperature drop rate within the most recent 10 minutes is not greater than 0.3 degrees Celsius per minute, it indicates that the temperature of the external monitoring device is relatively appropriate and the temperature adjustment process can be carried out.
[0024] The temperature change abnormal device is an internal monitoring device for the sweating body part. Specifically, an internal monitoring device with multiple moments when the temperature change amount is greater than the preset change amount is used as the temperature change abnormal device.
[0025] When there are more than 5 temperature change abnormal devices, it indicates that multiple parts of the body are sweating, and then the temperature adjustment process needs to be carried out using an accelerated adjustment rate.
[0026] According to the preset temperature threshold corresponding to the sleep stage, determine the number of internal monitoring devices whose monitored data is greater than the preset temperature threshold in the current sleep stage. When the number of internal monitoring devices whose monitored data is greater than the preset temperature threshold is more than 5, then carry out the temperature adjustment process.
[0027] Embodiment 1 As Figure 1 shown, this application provides a method for managing the temperature of the sleep environment based on galvanic skin response, which specifically includes: S1 Divide the electrodermal monitoring devices into external monitoring devices and internal monitoring devices according to the changes in the monitoring data of the electrodermal monitoring devices at different positions; S2 When it is determined that the skin temperature data corresponding to the external monitoring device meets the requirements by using the monitoring data of the external monitoring device and the changes in the monitoring data, determine the temperature change abnormal device of the internal monitoring device according to the changes in the monitoring data of the internal monitoring device; S3 When it is determined that the temperature adjustment process does not need to adopt the first temperature adjustment strategy according to the distribution data of the temperature change abnormal device and the changes in the monitoring data, proceed to the next step; S4 Obtain the sleep staging result of the monitoring target, and combine the monitoring data of different internal monitoring devices to determine the temperature adjustment strategy for the sleep environment of the monitoring target.
[0028] Furthermore, the monitoring data includes the monitoring data at different times within the most recent preset period.
[0029] Specifically, the change situation of the monitoring data includes the change amount of the monitoring data within the most recent preset period.
[0030] It should be noted that as Figure 2 shown, dividing the electrodermal monitoring devices into external monitoring devices and internal monitoring devices specifically includes: Determine the change amount of the monitoring data of different electrodermal monitoring devices within the most recent preset period according to the change situation of the monitoring data of the electrodermal monitoring devices; Divide the electrodermal monitoring devices into different change amount intervals according to the change amount of the monitoring data; Based on the types of monitoring devices corresponding to different change amount intervals, divide the electrodermal monitoring devices into external monitoring devices and internal monitoring devices.
[0031] It should be noted that when the type of the monitoring device corresponding to the change amount interval where the electrodermal monitoring device is located is an external monitoring device, it is determined that the electrodermal monitoring device is an external monitoring device.
[0032] It can be understood that as Figure 3 shown, determining that the skin temperature data corresponding to the external monitoring device meets the requirements specifically includes: According to the monitoring data of different external monitoring devices, determine the external monitoring devices whose temperature data corresponding to the monitoring data is less than the preset temperature data threshold, and use them as interval monitoring devices; Determine the external monitoring devices with decreasing temperature according to the change situation of the monitoring data of different external monitoring devices; Determine whether the skin temperature data corresponding to the external monitoring device meets the requirements based on the proportion of the number of external monitoring devices with a lower temperature and the proportion of the number of interval monitoring devices.
[0033] Furthermore, determining whether the skin temperature data corresponding to the external monitoring device meets the requirements specifically includes: When any one of the proportion of the number of external monitoring devices with a lower temperature and the proportion of the number of interval monitoring devices is not within the preset proportion interval, it is determined that the skin temperature data corresponding to the external monitoring device does not meet the requirements.
[0034] It should be noted that when the skin temperature data corresponding to the external monitoring device does not meet the requirements, it is determined that the temperature adjustment of the sleep environment for the monitoring target is not required.
[0035] In another possible embodiment, determining that the skin temperature data corresponding to the external monitoring device meets the requirements specifically includes: Based on the monitoring data of different external monitoring devices, determine the external monitoring devices whose corresponding temperature data is less than the preset temperature data threshold, and use them as interval monitoring devices; Based on the change situation of the monitoring data of different external monitoring devices, determine the external monitoring devices with a lower temperature; Determine the temperature monitoring abnormal value based on the product of the proportion of the number of external monitoring devices with a lower temperature and the proportion of the number of interval monitoring devices, and use the temperature monitoring abnormal value to determine whether the skin temperature data corresponding to the external monitoring device meets the requirements.
[0036] Furthermore, when the temperature monitoring abnormal value is greater than the preset abnormal value threshold, it is determined that the skin temperature data corresponding to the external monitoring device does not meet the requirements.
[0037] Furthermore, as Figure 4 shown, the method for determining the device with abnormal temperature change of the internal monitoring device is: Based on the change situation of the monitoring data of the internal monitoring device, determine the moment when the change amount of the monitoring data of the internal monitoring device is greater than the preset change amount, and use it as the abnormal change moment; According to the change situation of the monitoring data after the abnormal change moment, determine the change amount of the monitoring data at different moments after the abnormal change moment, and determine the abnormal temperature change period of the internal monitoring device according to the change amount; Based on the duration of the temperature change period, determine whether the internal monitoring device is a device with abnormal temperature change.
[0038] Specifically, when the duration of the temperature change period is greater than a preset duration threshold, it is determined that the internal monitoring device is a temperature change abnormal device.
[0039] It should be noted that the temperature change abnormal period is a period in which the proportion of the number of moments when the change amount does not meet the requirements is greater than the preset proportion of the number of moments.
[0040] In another possible embodiment, the method for determining the temperature change abnormal device of the internal monitoring device is as follows: S21 Determine the moments when the change amount of the monitoring data of the internal monitoring device is greater than the preset change amount according to the change situation of the monitoring data of the internal monitoring device, and take them as abnormal change moments; It should be noted that in the above steps, if there is no moment when the change amount of the monitoring data of the internal monitoring device is greater than the preset change amount, that is, there is no abnormal change moment, it is determined that the internal monitoring device does not belong to the temperature change abnormal device. When there is an abnormal change moment, proceed to the next step.
[0041] S22 Determine the change amount of the monitoring data at different moments after the abnormal change moment according to the change situation of the monitoring data after the abnormal change moment, take the moments when the change amount of the monitoring data does not meet the requirements as the temperature change moments, take the period after the abnormal change moment as the screening change period, and determine the monitoring data change value according to the proportion of the number of temperature change moments after the screening change period and the change amount of the monitoring data at different temperature change moments; It can be understood that in the above steps, it is also necessary to further determine whether the change amounts of the monitoring data at different moments after the abnormal change moment are all small, that is, when they all meet the requirements, it is determined that the internal monitoring device does not belong to the temperature change abnormal device. When there is a moment when the change amount of the monitoring data after the abnormal change moment does not meet the requirements, and it is determined that the duration of the period after the abnormal change moment is less than the preset screening duration threshold, it is determined that the internal monitoring device does not belong to the temperature change abnormal device.
[0042] In addition, it should be further noted that if the duration of the period after the abnormal change moment is not less than the preset screening duration threshold, take the moments when the change amount of the monitoring data does not meet the requirements, that is, the change amount is large, as the temperature change moments. If the proportion of the number of temperature change moments after the abnormal change moment is greater than the preset proportion of the number of change moments, it is determined that the internal monitoring device belongs to the temperature change abnormal device. And when and only when the proportion of the number of temperature change moments after the abnormal change moment is not greater than the preset proportion of the number of change moments, and it is determined that the monitoring data change value does not meet the requirements, it is determined that the internal monitoring device belongs to the temperature change abnormal device. Only when the monitoring data change value meets the requirements, proceed to the next step. It should be noted that whether it meets the requirements can be determined by means of a threshold.
[0043] It is understandable that the monitoring data change value can be determined according to the product of the proportion of the number of temperature change moments after screening the change period and the average value of the change rates of the monitoring data at different temperature change moments.
[0044] S23 Obtain the duration of the screened change period, and combine the monitoring data change value of the screened change period to determine the temperature change abnormal value, and use the temperature change abnormal value to determine whether the internal monitoring device is a temperature change abnormal device.
[0045] In another embodiment, the temperature change abnormal value can be determined according to the product of the preset weight coefficient corresponding to the duration of the screened change period and the monitoring data change value of the screened change period. When the temperature change abnormal value is greater than the preset threshold, it is determined that the internal monitoring device is a temperature change abnormal device.
[0046] Furthermore, the temperature change abnormal device is an internal monitoring device for sweating in the skin area corresponding to the internal monitoring device.
[0047] Specifically, when the temperature change abnormal value is greater than the preset change value threshold, it is determined that the internal monitoring device is a temperature change abnormal device.
[0048] It should be noted that determining that the first temperature adjustment strategy is not required for temperature adjustment processing specifically includes: Based on the distribution data of the temperature change abnormal devices, determine the number of the temperature change abnormal devices; According to the change situation of the monitoring data of different temperature change abnormal devices, determine the change amount of the monitoring data between different adjacent moments, and according to the average value of the change amounts of the monitoring data between different adjacent moments, determine the temperature change weight values of different temperature change abnormal devices; Determine the sum of the change weight values through the sum of the temperature change weight values of different temperature change abnormal devices, and based on the sum of the change weight values, determine whether the first temperature adjustment strategy is required for temperature adjustment processing.
[0049] Furthermore, the temperature change weight value is determined according to the preset weight value corresponding to the average value of the change amounts of the monitoring data between different adjacent moments.
[0050] Optionally, when the sum of the change weight values is greater than the preset value threshold, it is determined that the first adjustment strategy is required for temperature adjustment processing.
[0051] It should be noted that the first adjustment strategy is to perform temperature adjustment processing on the sleep environment by using a preset temperature amount and a preset adjustment rate.
[0052] It is understandable that, as Figure 5 shown, the method for determining the temperature regulation strategy of the sleep environment of the monitored target is as follows: Based on the monitoring data of different internal monitoring devices, determine the temperature corresponding to the monitoring data of different internal monitoring devices at different times, and use it as the monitoring temperature; According to the monitoring temperatures of different internal monitoring devices at different times, determine the internal monitoring devices whose average monitoring temperature is greater than the preset monitoring temperature threshold, and use them as over-limit monitoring devices, and use the body positions corresponding to the over-limit monitoring devices to determine the preset weight values of different over-limit monitoring devices; Based on the sum of the preset weight values of different over-limit monitoring devices and the sleep staging result of the monitored target, determine the regulation strategy of the sleep environment of the monitored target.
[0053] It should be noted that due to the difference in sweating probability of different body parts, the reliability of the over-limit monitoring devices also varies. Therefore, the preset weight values can be determined through the preset correspondence between the body parts and the weight values.
[0054] Furthermore, based on the sum of the preset weight values of different over-limit monitoring devices and the sleep staging result of the monitored target, determining the regulation strategy of the sleep environment of the monitored target specifically includes: When the sum of the preset weight values is less than the preset weight value threshold, there is no need to perform the regulation process on the sleep environment of the monitored target for the time being; When the sum of the preset weight values is not less than the preset weight value threshold, based on the sleep staging result of the monitored target, determine the sleep stage corresponding to the monitored target, and based on the sleep stage and the sum of the preset weight values, determine the regulation strategy of the sleep environment of the monitored target.
[0055] In another embodiment, based on the sleep stage and the sum of the preset weight values, determining the regulation strategy of the sleep environment of the monitored target specifically includes: Based on the sleep stage, determine the weight value threshold corresponding to the sleep stage. When the sum of the preset weight values is greater than the weight value threshold, then adopt the second regulation strategy to regulate the sleep environment of the monitored target; When the sum of the preset weight values is not greater than the weight value threshold, then do not perform the regulation of the sleep environment of the monitored target for the time being.
[0056] It should be noted that the second regulation strategy is to use a preset temperature amount and a second preset regulation rate to perform the temperature regulation process on the sleep environment, where the second preset regulation rate is less than the preset regulation rate.
[0057] Optionally, the method for determining the temperature adjustment strategy of the sleep environment of the monitoring target is as follows: S41 Based on the monitoring data of different internal monitoring devices, determine the temperature corresponding to the monitoring data of different internal monitoring devices at different times, and use it as the monitoring temperature; It should be noted that in the above steps, if there is no moment when the monitoring temperature of different internal monitoring devices is greater than the preset monitoring temperature threshold, it is determined that the temperature adjustment of the sleep environment of the monitoring target is not required temporarily. Only when there is an internal monitoring device with a monitoring temperature greater than the preset monitoring temperature threshold, it is also necessary to further determine that there is no internal monitoring device with an average monitoring temperature greater than the preset monitoring temperature threshold, that is, when there is no over-limit monitoring device, it is determined that the temperature adjustment of the sleep environment of the monitoring target is not required temporarily. When there is an over-limit monitoring device, it is necessary to further proceed to the next step for the evaluation of the over-limit monitoring device.
[0058] S42 Take the internal monitoring device with an average monitoring temperature greater than the preset monitoring temperature threshold as the over-limit monitoring device, and use the body position corresponding to the over-limit monitoring device to determine the preset weight value of different over-limit monitoring devices; It can be understood that before proceeding to the next step, if the number of the over-limit monitoring devices is too large, that is, it does not meet the requirements or is greater than the threshold, the second adjustment strategy is used to adjust the sleep environment of the monitoring target. If the number of the over-limit monitoring devices meets the requirements, the body position corresponding to the over-limit monitoring device is used to determine the preset weight value of different over-limit monitoring devices, where the preset weight value is determined according to the one-to-one correspondence between the weight value and the body position.
[0059] In this case, at this time, if the sum of the preset weight values of different over-limit monitoring devices does not meet the requirements, the second adjustment strategy is used to adjust the sleep environment of the monitoring target. Only when the sum of the preset weight values of different over-limit monitoring devices meets the requirements, the determination of the over-limit outlier is carried out, where whether it meets the requirements is determined by setting a threshold.
[0060] S43 Based on the monitoring temperature of different over-limit monitoring devices at different times, determine the moment when the monitoring temperature is greater than the preset monitoring temperature threshold, and use it as the over-limit moment. Based on the product of the proportion of the number of over-limit moments of different over-limit monitoring devices and the preset weight value, determine the over-limit outlier of different over-limit monitoring devices; It should be noted that when there is an over-limit monitoring device with an over-limit outlier that does not meet the requirements, that is, the over-limit outlier is greater than 0.5 or more, the second adjustment strategy is used to adjust the sleep environment of the monitoring target. Only when there is no over-limit monitoring device with an over-limit outlier that does not meet the requirements, proceed to the next step.
[0061] S44 determines an adjustment strategy for the sleep environment of the monitoring target based on the sum of the over-limit outliers of different over-limit monitoring devices and the sleep staging result of the monitoring target.
[0062] Embodiment 2 In a second aspect, the present invention provides a computer system, including: a memory and a processor connected by communication, and a computer program stored on the memory and capable of running on the processor. When the processor runs the computer program, it executes the above-described method for managing the temperature of the sleep environment based on galvanic skin response.
[0063] Each embodiment in this specification is described in a progressive manner. The same or similar parts among the embodiments can be referred to each other. Each embodiment focuses on the differences from other embodiments. In particular, for the embodiments of the device, equipment, and non-volatile computer storage medium, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can be referred to the partial description of the method embodiments.
[0064] The above describes specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be executed in a different order than in the embodiments and still achieve the desired result. Additionally, the processes depicted in the drawings do not necessarily require the specific order or sequential order shown to achieve the desired result. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.
[0065] The above is only one or more embodiments of this specification and is not used to limit this specification. For those skilled in the art, one or more embodiments of this specification can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of one or more embodiments of this specification shall be included within the scope of the claims of this specification.
Claims
1. A method for managing the temperature of a sleep environment based on galvanic skin response, characterized in that, Specifically, it includes: Dividing the electrodermal monitoring devices into external monitoring devices and internal monitoring devices according to the variation of the monitoring data of the electrodermal monitoring devices at different positions; When it is determined that the skin temperature data corresponding to the external monitoring device meets the requirements by using the monitoring data of the external monitoring device and the variation of the monitoring data, determining the temperature variation abnormal device of the internal monitoring device according to the variation of the monitoring data of the internal monitoring device; When it is determined that the temperature adjustment process does not need to adopt the first temperature adjustment strategy according to the distribution data of the temperature variation abnormal device and the variation of the monitoring data, proceeding to the next step; Obtaining the sleep staging result of the monitoring target, and combining the monitoring data of different internal monitoring devices to determine the temperature adjustment strategy for the sleep environment of the monitoring target.
2. The method for managing the temperature of the sleep environment based on galvanic skin response according to claim 1, wherein, The monitoring data includes the monitoring data at different times within the most recent preset time period.
3. The method for managing the temperature of a sleep environment based on galvanic skin response according to claim 1, wherein The variation of the monitoring data includes the variation amount of the monitoring data within the most recent preset time period.
4. The method for managing the temperature of the sleep environment based on galvanic skin response according to claim 1, wherein Dividing the electrodermal monitoring devices into external monitoring devices and internal monitoring devices specifically includes: Determining the variation amount of the monitoring data of different electrodermal monitoring devices within the most recent preset time period according to the variation of the monitoring data of the electrodermal monitoring devices; Dividing the electrodermal monitoring devices into different variation amount intervals according to the variation amount of the monitoring data; Based on the types of the monitoring devices corresponding to different variation amount intervals, dividing the electrodermal monitoring devices into external monitoring devices and internal monitoring devices.
5. The method for managing the temperature of the sleep environment based on galvanic skin response according to claim 4, characterized in that, When the type of the monitoring device corresponding to the variation amount interval where the electrodermal monitoring device is located is an external monitoring device, determining that the electrodermal monitoring device is an external monitoring device.
6. The method for managing the temperature of a sleep environment based on galvanic skin response according to claim 1, characterized in that, Determining that the skin temperature data corresponding to the external monitoring device meets the requirements specifically includes: According to the monitoring data of different external monitoring devices, determining the external monitoring devices whose temperature data corresponding to the monitoring data is less than the preset temperature data threshold, and taking them as interval monitoring devices; Determining the external monitoring devices with decreasing temperature according to the variation of the monitoring data of different external monitoring devices; Based on the proportion of the number of external monitoring devices with decreasing temperature and the proportion of the number of interval monitoring devices, determining whether the skin temperature data corresponding to the external monitoring device meets the requirements.
7. The method for managing the temperature of a sleep environment based on galvanic skin response according to claim 1, wherein When the skin temperature data corresponding to the external monitoring device does not meet the requirements, determining that the temperature adjustment of the sleep environment of the monitoring target is not required.
8. The method for managing the temperature of the sleep environment based on galvanic skin response according to claim 1, wherein, The method for determining the temperature adjustment strategy for the sleep environment of the monitoring target is: Based on the monitoring data of different internal monitoring devices, determining the temperature corresponding to the monitoring data of different internal monitoring devices at different times, and taking it as the monitoring temperature; According to the monitoring temperatures of different internal monitoring devices at different times, determining the internal monitoring devices whose average monitoring temperature is greater than the preset monitoring temperature threshold, and taking them as over-limit monitoring devices, and determining the preset weight values of different over-limit monitoring devices by using the body positions corresponding to the over-limit monitoring devices; Determine the adjustment strategy for the sleep environment of the monitoring target based on the sum of the preset weight values of different over-limit monitoring devices and the sleep staging result of the monitoring target.
9. The method for managing the temperature of a sleep environment based on galvanic skin response according to claim 8, wherein Determine the adjustment strategy for the sleep environment of the monitoring target based on the sum of the preset weight values of different over-limit monitoring devices and the sleep staging result of the monitoring target, specifically including: When the sum of the preset weight values is less than the preset weight value threshold, there is no need to temporarily adjust the sleep environment of the monitoring target; When the sum of the preset weight values is not less than the preset weight value threshold, determine the sleep stage corresponding to the monitoring target based on the sleep staging result of the monitoring target, and determine the adjustment strategy for the sleep environment of the monitoring target based on the sleep stage and the sum of the preset weight values.
10. A computer system, comprising: A memory and a processor connected by communication, and a computer program stored on the memory and capable of running on the processor, characterized in that when the processor runs the computer program, it executes a method for managing the temperature of the sleep environment based on galvanic skin as described in any one of claims 1-9.
Citation Information
Patent Citations
Sleep staging method and control system based on dynamic skin temperature
CN114259210A
Temperature control method and device, equipment and storage medium
CN116576557A
Sleep environment parameter adjusting method and device, electronic equipment and storage medium
CN117404782A
Apparatus and method for controlling sleeping environment temperature
JP2014042773A
Sleep environment temperature control device and sleep environment temperature control method
JP2019024628A
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