WO2019205323A1 - 空调器及其参数调整方法、装置和可读存储介质 - Google Patents

空调器及其参数调整方法、装置和可读存储介质 Download PDF

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Publication number
WO2019205323A1
WO2019205323A1 PCT/CN2018/097391 CN2018097391W WO2019205323A1 WO 2019205323 A1 WO2019205323 A1 WO 2019205323A1 CN 2018097391 W CN2018097391 W CN 2018097391W WO 2019205323 A1 WO2019205323 A1 WO 2019205323A1
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WIPO (PCT)
Prior art keywords
sleep
air conditioner
user
parameter
sleep stage
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PCT/CN2018/097391
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English (en)
French (fr)
Inventor
邓焯伟
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
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Application filed by 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2019205323A1 publication Critical patent/WO2019205323A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/64Electronic processing using pre-stored data
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/65Electronic processing for selecting an operating mode
    • F24F11/66Sleep mode
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/88Electrical aspects, e.g. circuits

Definitions

  • the present application relates to the field of air conditioning technology, and in particular, to an air conditioner parameter adjustment method, an air conditioner parameter adjustment device, an air conditioner, and a readable storage medium.
  • the existing air conditioners have different operating parameters of the air conditioner according to the characteristics of the user in different sleep states to meet the user's sleep comfort requirements.
  • the sleep operation parameters of the existing air conditioners are all set parameters, and cannot be automatically adjusted for the actual sleep situation of the user.
  • the operation parameters can only be reset. To meet their own needs, greatly reducing the user's comfort experience.
  • the main purpose of the present application is to provide an air conditioner parameter adjustment method, which aims to automatically correct the operating parameters set by the air conditioner according to the actual sleep condition of the user, improve the accuracy of the air conditioner control, and ensure the user's sleep comfort requirement. Improve the user experience.
  • the present application provides an air conditioner parameter adjustment method, and the air conditioner parameter adjustment method includes the following steps:
  • the first adjusted operational parameter corresponding to the sleep phase is controlled to provide an environment that helps the user to enter a sleep stage with better sleep.
  • the air conditioner parameter adjustment method further includes:
  • the first feature value of the sleep phase includes a duration of the sleep phase
  • the step of determining whether the first feature value is located in the preset feature value interval includes:
  • the step of controlling to adjust the set operating parameter corresponding to the sleep phase comprises:
  • the method further includes:
  • the adjusted first set operation parameter is used as the set operation parameter corresponding to the sleep stage.
  • the set operating parameter corresponding to the sleep phase is restored to the first set operating parameter.
  • the method further includes:
  • the step of the air conditioner parameter adjustment method further includes:
  • the fourth set operating parameter corresponding to the sleep phase satisfying the condition is controlled to provide an environment that helps the user to enter a sleep cycle with better sleep.
  • the step of the air conditioner parameter adjustment method further includes:
  • the sleep stage in the sleep cycle satisfies the sleep stage adjustment condition, and the sleep stage that satisfies the condition is determined according to the comparison result.
  • the step of the air conditioner parameter adjustment method further includes:
  • the sleep state information includes a respiratory frequency and an action amplitude.
  • the step of determining, according to the sleep state information, a sleep stage that the user is currently located includes:
  • the method further includes:
  • the adjusted first set operation parameter is saved, and the next time the sleep stage of the same type as the current sleep stage is entered, the air conditioner operation is controlled according to the saved first set parameter.
  • the present application further provides an air conditioner parameter adjusting device, the air conditioner parameter adjusting device comprising: a memory, a processor, and an air conditioner stored on the memory and operable on the processor a parameter adjustment program that implements the following steps of the air conditioner parameter adjustment method when the air conditioner parameter adjustment program is executed by the processor:
  • the first adjusted operational parameter corresponding to the sleep phase is controlled to provide an environment that helps the user to enter a sleep stage with better sleep.
  • the present application further provides an air conditioner including the air conditioner parameter adjusting device as described above, the air conditioner parameter adjusting device comprising: a memory, a processor, and a memory stored in the memory An air conditioner parameter adjustment program operable on the processor, the air conditioner parameter adjustment program being implemented by the processor to implement the following steps of the air conditioner parameter adjustment method:
  • the first adjusted operational parameter corresponding to the sleep phase is controlled to provide an environment that helps the user to enter a sleep stage with better sleep.
  • the present invention further provides a readable storage medium, wherein the readable storage medium stores an air conditioner parameter adjustment program, and the air conditioner parameter adjustment program is implemented by the processor to implement the following air conditioner parameters. Steps to adjust the method:
  • the first adjusted operational parameter corresponding to the sleep phase is controlled to provide an environment that helps the user to enter a sleep stage with better sleep.
  • An air conditioner parameter adjustment method obtains sleep state information of a user in a space occupied by an air conditioner, and the sleep state information is detected by a radar sensor, and the sleep stage of the user is determined according to the sleep state information, and the air conditioner is The set operating parameters corresponding to each sleep stage are set to meet the user's comfort requirements in the sleep stage, but the user can achieve the actual sleep state under the operating parameters may be different from the user's comfortable sleep state.
  • the gap (such as the duration of the sleep phase, the respiratory rate, the amplitude of the motion, etc.), when the sleep phase meets the sleep phase adjustment condition, the control adjusts the first set operation parameter corresponding to the sleep phase to provide a user to enter the sleep
  • a better sleep stage environment in which the radar sensor is used to detect the user's sleep state information, and the wearable device is not required to contact the human body, thereby improving the user's comfort, so as to automatically correct the operating parameters set by the air conditioner to make corrections.
  • the operating parameters can be adapted to the user's actual sleep Improve the accuracy of air-conditioning control, guarantee sleep comfort needs of users and improve user experience.
  • FIG. 1 is a schematic structural diagram of a device in a hardware operating environment involved in an air conditioner parameter adjustment method according to an embodiment of the present application
  • FIG. 2 is a first schematic flowchart of a method for adjusting parameters of an air conditioner according to an embodiment of the present application
  • FIG. 3 is a second schematic flowchart of a method for adjusting parameters of an air conditioner according to an embodiment of the present application
  • FIG. 4 is a third schematic flowchart of a method for adjusting parameters of an air conditioner according to an embodiment of the present application
  • FIG. 5 is a fourth schematic flowchart of a method for adjusting parameters of an air conditioner according to an embodiment of the present application.
  • FIG. 6 is a fifth schematic flowchart of a method for adjusting parameters of an air conditioner according to an embodiment of the present application.
  • FIG. 7 is a sixth schematic flowchart of a method for adjusting parameters of an air conditioner according to an embodiment of the present application.
  • the main solution of the embodiment of the present application is: acquiring sleep state information of a user in a space occupied by an air conditioner detected by a radar sensor; determining a sleep stage in which the user is currently located according to the sleep state information; and satisfying in the sleep stage During the sleep phase adjustment condition, the first adjusted operational parameter corresponding to the sleep phase is controlled to provide an environment that helps the user to enter a sleep stage with better sleep.
  • the application provides a solution for automatically correcting the operating parameters set by the air conditioner, so that the corrected operating parameters can be adapted to the actual sleep condition of the user, improving the accuracy of the air conditioning control, and ensuring the user's sleep comfort requirements. To improve the user experience.
  • an air conditioner is proposed.
  • the air conditioner may include a processor 1001, such as a CPU, a memory 1002, a sleep state information detecting device 1003, and a communication bus 1004.
  • the communication bus 1004 is used to implement connection communication between these components.
  • the memory 1002 may be a high speed RAM memory or a stable memory (non-volatile) Memory), such as disk storage.
  • the memory 1002 can also optionally be a storage device independent of the aforementioned processor 1001.
  • the sleep state information detecting device 1003 is specifically configured to detect state information of each user in the space occupied by the air conditioner, such as a user's respiratory frequency, heartbeat frequency, pulse rate, motion amplitude, and the like.
  • the sleep state information detecting device 1003 is specifically a radar sensor, which is disposed on the air conditioner body or in an indoor environment where the air conditioner is located, and starts to monitor each user in the space occupied by the air conditioner in real time or after receiving a sleep command issued by the user. Sleep status information, such as the user's breathing rate and range of motion.
  • the radar sensor may be specifically provided in plurality, and each radar sensor acquires a sleep state information of a user.
  • the sleep state information detecting device 1003 can also use a wearable device, a camera, an infrared sensor, etc. according to actual needs, but the use of the wearable device affects the user's body feeling, making it difficult for the user to enter deep sleep; the camera is expensive to use. It is easy to invade personal privacy and cannot be recognized when the human body is covered with obstacles such as quilts and clothes, and the infrared sensor is costly. Therefore, using the radar sensor to obtain the user's sleep state information can measure the respiratory frequency and the motion range of the human body through non-contact, without affecting the human body's sleep, reducing costs, and protecting privacy. It will be understood by those skilled in the art that the device structure illustrated in FIG. 1 does not constitute a limitation to the device, and may include more or less components than those illustrated, or some components may be combined, or different component arrangements.
  • an air conditioner parameter adjustment program may be included in the memory 1002 as a computer storage medium.
  • an embodiment of the present application further provides an air conditioner parameter adjustment device, which may be a function module built in an air conditioner or a control device that is independent of an air conditioner and is connected to an air conditioner.
  • the air conditioner parameter adjustment device may include the processor 1001, the memory 1002, and an air conditioner parameter adjustment program operable on the processor 1001.
  • the processor 1001 may be configured to call an air conditioner parameter adjustment program stored in the memory 1002. And the related steps of the air conditioner parameter adjustment method in the following embodiments are performed.
  • the embodiment of the present application further provides a readable storage medium, where the readable storage medium stores an air conditioner parameter adjustment program, and when the air conditioner parameter adjustment program is executed by the processor, the air conditioner in the following embodiments is implemented. The steps related to the parameter adjustment method.
  • an embodiment of the present application provides an air conditioner parameter adjustment method, where the air conditioner parameter adjustment method includes:
  • Step S10 acquiring sleep state information of a user in a space occupied by the air conditioner, where the sleep state information is detected by a radar sensor;
  • the air conditioner working space is a space environment in a building or a structure, and the space environment for the function of cooling, heating or dehumidification of the air conditioner, the space used may be the space where the air conditioner is located, or the air conditioner The space outside can be set, but the space can be cooled, heated or dehumidified; the space environment, for example, is the user's bedroom, room (bedroom), kitchen, or shopping mall.
  • the sleep state information may specifically be the physical frequency information of the user such as the respiratory rate, the heartbeat frequency, the pulse, the blood pressure, the exercise range, and the sleep duration.
  • a radar sensor detects a user's sleep state information, and different users use different radar sensors for detection to obtain accurate sleep state information detection data.
  • the radar sensor is used to obtain the user's respiratory frequency to realize the determination of the user attribute information, without wearing the wearable device, and does not affect the human body's sleep; without using a camera, etc., the cost can be reduced and the privacy can be protected.
  • Step S20 determining, according to the sleep state information, a sleep stage in which the user is currently located
  • the sleep state information includes the respiratory frequency and the action amplitude. Since the user has different characteristic values of the respiratory frequency and the action amplitude under different sleep stages, the respiratory frequency and the action amplitude can achieve an accurate and effective sleep stage for the user. Detection. After the user's respiratory frequency and motion amplitude are obtained, the user's respiratory rate change rate can be calculated according to the user's respiratory frequency, and the user's motion amplitude change rate is calculated according to the motion amplitude. According to the magnitude of the user's motion, it can be determined whether the user is in a sleep cycle. The user's sleep stage can be determined based on one or more of the magnitude of the respiratory rate, the magnitude of the motion amplitude, the rate of change of the respiratory rate, and the rate of change of the range of motion.
  • the sleep stage may specifically include an awake state, a sleep state, a light sleep state, a deep sleep state, and a REM state.
  • Step S30 when the sleep stage meets the sleep stage adjustment condition, controlling to adjust the first set operation parameter corresponding to the sleep stage to provide an environment that helps the user to enter a sleep stage with better sleep.
  • Whether the sleep stage satisfies the sleep stage adjustment condition may be based on whether the type of the sleep stage is accurate. Specifically, the type of the previous sleep stage of the sleep stage in which the user is currently located may be determined according to the sleep state information, and the current sleep stage is determined according to the type of the previous sleep stage. Whether the type of sleep stage is accurate, for example, the previous sleep stage is a shallow sleep stage, the current sleep stage type should be a deep sleep stage, and if it is an awake stage, the current sleep stage type is inaccurate, that is, the current The sleep stage meets the sleep stage adjustment conditions.
  • the feature values of the current sleep stage such as the duration, the respiratory rate, the motion amplitude, etc.
  • the corresponding preset feature value interval is determined according to the type of the current sleep stage, and it is determined whether the first feature value is located in the preset feature value interval. If yes, the sleep stage adjustment condition is not satisfied, and if not, the sleep stage adjustment condition is satisfied.
  • the preset feature value interval is specifically set according to the user's comfort requirement in the sleep stage, and different sleep stages, different users, different comfort requirements, and different feature value types may correspondingly set different preset feature value intervals. .
  • the first set operation parameter corresponding to the adjustment sleep stage may be specifically adapted to the type of the current sleep stage, the size of the first feature value of the sleep stage, the first feature value of the sleep stage, and the size of the preset feature value interval.
  • the relationship, the type of the first feature value, and the like are specifically set to different adjustment methods.
  • the adjustment manner may be specifically: when the sleep stage adjustment condition is met in the current sleep stage, the preset adjustment amount is increased or decreased according to a specific rule on the basis of the first set operation parameter, wherein the specific rule may be specifically adjusted times and adjusted Frequency, adjustment direction, adjustment timing, etc.; or according to different characteristics of the current sleep stage (different sleep stage types, different feature value types, different feature value sizes, etc.) correspondingly set different adjustment target values, in the current sleep When the phase meets the sleep phase adjustment condition, the first set operation parameter is adjusted to the corresponding target value.
  • the first set operating parameter is an air conditioner operating parameter set by the air conditioner according to a user preference in the current sleep stage, and the first set operating parameter may specifically include temperature, humidity, wind speed, air guiding angle or action.
  • the adjusted first set running parameter may be saved, and the user runs according to the saved adjusted first setting when the user enters the same type of sleep stage as the current sleep stage next time.
  • the parameters are run.
  • the sleep stage meets the sleep stage adjustment condition, it indicates that the first set operation parameter is accurate, the user's sleep quality can be ensured, and the first set operation parameter corresponding to the current sleep stage can be adjusted without any adjustment.
  • An air conditioner parameter adjustment method acquires sleep state information of a user in a space occupied by an air conditioner detected by a radar sensor, and determines a sleep stage currently in which the user is located according to the sleep state information, in the sleep stage
  • the first adjusted operational parameter corresponding to the sleep phase is controlled to provide an environment that helps the user to enter a better sleep stage of sleep. Since the set operating parameters corresponding to each sleep stage of the air conditioner are set to meet the user's comfort requirements in the sleep stage, the user can achieve the actual sleep state under the operating parameters and may be comfortable with the user's sleep state.
  • the first adjusted operational parameter corresponding to the sleep phase is adjusted to provide assistance to the user.
  • the radar sensor is used to detect the user's sleep state information, and the wearable device is not required to contact the human body, thereby improving the user's comfort, so as to automatically correct the operating parameters set by the air conditioner.
  • the corrected operating parameters can be adapted to the actual sleep situation of the user, improve the accuracy of the air conditioning control, ensure the user's sleep comfort requirements, and improve the user experience.
  • an embodiment of the present application provides an air conditioner parameter adjustment method, where the air conditioner parameter adjustment method further includes:
  • Step S01 determining a first feature value of the sleep stage according to the sleep state information, and determining a corresponding preset feature value interval according to the sleep stage;
  • Step S02 determining whether the first feature value is located in the preset feature value interval
  • step S03 If yes, go to step S03, if no, go to step S04;
  • Step S03 determining that the sleep stage does not satisfy the sleep stage adjustment condition
  • step S04 it is determined that the sleep stage satisfies the sleep stage adjustment condition.
  • the first characteristic value corresponding to the sleep stage may specifically include the type of the sleep stage, the duration of the duration, the size of the respiratory frequency, the magnitude of the motion amplitude, the rate of change of the respiratory frequency, and the rate of change of the motion amplitude.
  • Different sleep stages, according to different comfort characteristics of the user, different preset feature value intervals may be correspondingly set to represent the user's comfort state.
  • the first feature value When the first feature value is located in the preset feature value interval, it indicates that the user is in a comfortable state during the current sleep phase, and at this time, it is determined that the sleep phase does not satisfy the sleep phase adjustment condition, and the first set operation parameter may not be adjusted; If the feature value is not in the preset feature value interval, the user is in an uncomfortable state during the current sleep phase. At this time, it is determined that the sleep stage satisfies the sleep stage adjustment condition, and the first set operation parameter needs to be adjusted.
  • the duration of the sleep phase is determined according to the sleep state information.
  • the duration is greater than the preset value, it is determined that the duration of the sleep phase is too long, and the first set operation parameter corresponding to the sleep phase needs to be adjusted.
  • the user's sleep quality is specifically quantified to determine the timing of the adjustment of the set operating parameters accurately, which is more accurate in adjusting the operating parameters of the air conditioner.
  • the step of controlling to adjust the set operating parameter corresponding to the sleep phase includes:
  • Step S31 acquiring a sleep stage change rule corresponding to the user
  • Step S32 determining a next sleep stage of the sleep stage according to the sleep stage change rule
  • Step S33 acquiring a second set operation parameter corresponding to the latter sleep stage
  • Step S34 determining a first target parameter according to the first set operating parameter and the second set operating parameter
  • Step S35 adjusting the first set operating parameter according to the first target parameter.
  • the sleep stage change rule is specifically in the sleep curve of the user's good sleep quality, and the order of the sleep stage changes sequentially, such as the sleep stage from sleep to light sleep to deep sleep to REM, after going to sleep, sleeping to deep sleep to REM constantly Loop and so on. According to the sleep phase change rule, the type of the previous sleep stage of one of the sleep stages and the type of the latter sleep stage can be determined.
  • the characteristic parameter in the current sleep stage satisfies the adjustment condition. If the current sleep stage is the shallow sleep stage, and the duration is too long, the latter sleep stage may be determined according to the sleep stage change rule, such as the deep sleep stage, and the latter sleep stage is acquired.
  • the second set operation parameter is the same as the first set operation parameter type, the air conditioner operating parameter set by the air conditioner according to the user preference in the latter sleep stage, and the second set operation parameter may specifically include temperature, humidity, and wind speed. , guide the wind to adjust the angle or action.
  • the first set operating parameter is adjusted to the first target parameter.
  • the preset adjustment amount is preset, the relationship between the second set operation parameter and the first set operation parameter may also be compared. If the second set operation parameter is greater than the first set operation parameter, the corresponding The adjusted first set operation parameter is greater than the current first set operation parameter, and the preset adjustment amount may be added on the basis of the first set operation parameter to implement adjustment of the first set operation parameter.
  • the positive adjustment of the first set operation parameter can be implemented, so that the first set operation parameter after the current sleep stage adjustment is closer to the next sleep stage, thereby speeding up the user from the sleep stage to the next sleep stage, It is avoided that the user stays for too long in the case of abnormal characteristic data of the current sleep stage, so that the air conditioner control parameters are more accurate, so as to improve the user's sleep quality.
  • the method further includes:
  • Step S40 controlling the air conditioner to operate according to the adjusted first set operating parameter
  • Step S41 determining whether the user enters the latter sleep stage from the sleep stage
  • step S412 If yes, go to step S411, if no, go to step S412.
  • Step S411 the adjusted first set operation parameter is used as the set operation parameter corresponding to the sleep stage;
  • Step S412 restoring the set operation parameter corresponding to the sleep stage to the first set operation parameter.
  • the control air conditioner operates according to the adjusted first set operating parameter.
  • the user's current sleep stage is acquired again, and it is determined whether the user's sleep stage enters the above-mentioned after the adjusted sleep stage.
  • a sleep stage such as from light sleep to deep sleep, if it is, it indicates that the adjustment is accurate, and the adjusted first set operation parameters are saved as the set operation parameters corresponding to the previous sleep stage, and are subsequently entered and
  • the operation parameter is operated according to the adjusted first setting; if not, the adjustment is inaccurate, the adjustment of the first set operation parameter is cancelled, and the adjusted sleep stage is correspondingly
  • the set operating parameters are restored to the original first set operating parameters.
  • the adjusted first set operation parameter is ensured to be the corresponding adjusted sleep stage.
  • the method further includes:
  • Step S413 when the user enters the sleep phase again, and the feature value is not located in the preset parameter interval, determining a previous sleep phase of the sleep phase according to the sleep phase change rule;
  • Step S414 acquiring a third set operation parameter corresponding to the previous sleep stage
  • Step S415 determining a second target parameter according to the first set operating parameter and the third set operating parameter
  • the third set operating parameter is the same as the first set operating parameter type, the air conditioner operating parameter set by the air conditioner according to the user preference in the previous sleep stage, and the third set operating parameter may specifically include temperature, humidity, and wind speed. , guide the wind to adjust the angle or action.
  • the first set operating parameter is adjusted to the second target parameter.
  • the relationship between the third set operation parameter and the first set operation parameter may also be compared, and if the third set operation parameter is smaller than the first set operation parameter, the corresponding The adjusted first set operation parameter is smaller than the current first set operation parameter, and the preset adjustment amount can be reduced in the first set operation parameter to implement adjustment of the first set operation parameter.
  • the first set operation parameter is reversely adjusted, so that the first set operation parameter after the current sleep stage adjustment is closer to the previous one.
  • the user is accelerated from the previous sleep stage to the sleep stage, avoiding the user staying for too long in the case of abnormal characteristic data of the current sleep stage, and making the air conditioner control parameters more accurate, so as to improve the user's sleep quality.
  • the steps of the air conditioner parameter adjustment method further include:
  • Step S50 continuously acquire sleep state information of the user during a sleep period of the user;
  • Step S60 determining, according to the sleep state information, all sleep stages of the user during the sleep period
  • Step S70 when the sleep stage in the sleep cycle satisfies the sleep stage adjustment condition, determining a sleep stage that satisfies the condition;
  • Step S80 controlling to adjust the fourth set running parameter corresponding to the sleep stage that satisfies the condition, to provide an environment that helps the user to enter a sleep cycle with better sleep.
  • the user's sleep cycle is specifically from the awake state in which the user is ready to enter sleep, to the entire time period in which the user wakes up to enter the awake state again, and may determine to enter after obtaining the sleep control command input by the user or making a judgment according to the sleep state information of the user. Sleep cycle.
  • the action amplitude detected by the radar sensor is compared with the preset amplitude. When less than the preset amplitude, the task is currently in the sleep cycle of the user; if greater than or equal to the preset amplitude, it may be determined that the user is not currently in the sleep cycle of the user. . By determining the magnitude of the user's motion, the detection of the user's sleep cycle is effectively and accurately performed to ensure that the obtained sleep state information is accurate and valid data.
  • Each user's sleep stage changes during the multiple sleep processes are similar, and a preset user sleep stage change curve can be established by acquiring a sleep stage change of the user's multiple sleep cycles or a feature value corresponding to each sleep stage. Determining all sleep stages in the sleep period according to the sleep state information, determining whether the sleep stage change of the current sleep period of the user or the change of the feature value corresponding to each sleep stage is consistent with the preset in the preset user sleep stage change curve The trend of changes in the sleep stage or the trend of eigenvalues, such as whether the order of changes in the sleep stage is consistent, whether the trend of the duration of the same kind of sleep stage is consistent, etc. If consistent, the sleep stage in the sleep cycle does not satisfy the sleep stage adjustment condition.
  • the sleep setting corresponds to a fourth set operating parameter.
  • the sleep stage in the whole sleep cycle of the user can be monitored to determine the sleep quality of the user during the whole sleep cycle.
  • the abnormal sleep stage is determined, and the fourth corresponding to the sleep stage is adjusted.
  • the operating parameters set by the air conditioner can be automatically corrected, so that the corrected operating parameters can be adapted to the sleep condition of the user throughout the cycle, and the accuracy of the air conditioning control is improved to provide a user-friendly sleep.
  • a good sleep cycle environment ensures that the user can get better sleep quality throughout the sleep cycle and improve the user experience.
  • the steps of the air conditioner parameter adjustment method further include:
  • Step S91 determining, according to the sleep state information, a second feature value of all sleep stages in the sleep cycle
  • Step S92 analyzing a change trend of the second feature value corresponding to each sleep stage in the sleep cycle
  • Step S93 comparing and determining whether the change trend is consistent with a preset change trend
  • the sleep stage in the sleep cycle satisfies the sleep stage adjustment condition, and the sleep stage that satisfies the condition is determined according to the comparison result.
  • the second characteristic value corresponding to the sleep stage may specifically include the type of the sleep stage, the duration of the duration, the magnitude of the respiratory frequency, the magnitude of the motion amplitude, the rate of change of the respiratory frequency, and the rate of change of the motion amplitude.
  • the duration of a light sleep will be shorter and shorter, and deep sleep and REM will last longer and longer, and this trend will change when approaching waking.
  • the change curve of the user's sleep stage is different from the preset change curve.
  • the duration of the REM is shorter and shorter, and there is no rising process, that is, the REM state can be regarded as an abnormal sleep stage, and the air conditioner is
  • the set operating parameters corresponding to the current REM state are adjusted according to the second preset rule, such as performing fine adjustment on the air supply volume or humidity.
  • the sleep quality of each sleep stage user in the sleep cycle is quantitatively characterized by the second feature value, and the change trend of the second feature value is compared with the preset change trend to determine the quality of the user throughout the sleep cycle.
  • the change trend of the second eigenvalue is inconsistent with the preset change trend, indicating that there is a sleep stage with poor sleep quality
  • the sleep stage that satisfies the sleep stage adjustment condition is determined according to the comparison result and adjusted, thereby discovering that the entire user is affected.
  • the sleep cycle of the quality of the sleep cycle adjusts the set operating parameters of the response to provide an environment that helps the user to go to sleep for a better sleep cycle.
  • step S01 to step S04 determining whether the sleep stage in the sleep cycle satisfies the sleep stage adjustment condition, and referring to the manner of step S01 to step S04, using the same comparison method as the first feature value for the second feature value of each sleep stage, determining each Whether the sleep stage meets the sleep stage adjustment condition, and adjusts the set operation parameters corresponding to the sleep stage that satisfies the condition.
  • the technical solution of the present application which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM as described above). , a disk, an optical disk, including a number of instructions for causing a terminal device (which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) to perform the methods described in the various embodiments of the present application.
  • a terminal device which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.

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Abstract

一种空调器参数调整方法,包括以下步骤:(S10)获取通过雷达传感器检测到的空调器所作用空间内用户的睡眠状态信息;(S20)根据睡眠状态信息确定用户当前所处的睡眠阶段;(S30)当睡眠阶段满足睡眠阶段调整条件时,控制调整睡眠阶段对应的第一设定运行参数。还涉及一种空调器参数调整装置、空调器以及可读存储介质。

Description

空调器及其参数调整方法、装置和可读存储介质
技术领域
本申请涉及空调技术领域,尤其涉及一种空调器参数调整方法、空调器参数调整装置、空调器以及可读存储介质。
背景技术
随着人们对空调器舒适性要求的不断提高,现有的空调器依据用户在不同的睡眠状态的特点,对应设置不同的空调器的运行参数以适应用户的睡眠舒适性需求。
然而,现有空调的睡眠运行参数均为设定不变的参数,不能自动的针对于用户实际的睡眠情况进行调整,在用户睡眠过程中出现不舒适时,只能通过重新设置运行参数的方式以满足自身需求,大大的降低用户的舒适性体验。
上述内容仅用于辅助理解本申请的技术方案,并不代表承认上述内容是现有技术。
发明内容
本申请的主要目的在于提供一种空调器参数调整方法,旨在针对用户的实际睡眠情况,自动的修正空调器设定的运行参数,提高空调控制的准确性,保证用户的睡眠舒适性需求,提高用户体验。
为实现上述目的,本申请提供一种空调器参数调整方法,所述空调器参数调整方法包括以下步骤:
获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息由雷达传感器检测得到;
根据所述睡眠状态信息确定用户当前所处的睡眠阶段;以及,
在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
可选地,所述空调器参数调整方法还包括:
根据所述睡眠状态信息确定所述睡眠阶段的第一特征值,根据所述睡眠阶段确定对应的预设特征值区间;
判断所述第一特征值是否位于所述预设特征值区间;
若是,则判定所述睡眠阶段不满足睡眠阶段调整条件;以及,
若否,则判定所述睡眠阶段满足睡眠阶段调整条件。
可选地,所述睡眠阶段的第一特征值包括所述睡眠阶段的持续时长,所述判断所述第一特征值是否位于所述预设特征值区间的步骤包括:
判断所述睡眠阶段的持续时长是否小于或等于预设值。
可选地,所述控制调整所述睡眠阶段对应的设定运行参数的步骤包括:
获取所述用户对应的睡眠阶段变化规则;
根据所述睡眠阶段变化规则确定所述睡眠阶段的后一个睡眠阶段;
获取所述后一个睡眠阶段对应的第二设定运行参数;
根据所述第一设定运行参数和所述第二设定运行参数确定第一目标参数;以及,
根据所述第一目标参数调整所述第一设定运行参数。
可选地,所述根据所述第一目标参数调整所述第一设定运行参数的步骤之后,还包括:
控制所述空调器按照调整后的第一设定运行参数运行;
判断所述用户是否从所述睡眠阶段进入所述后一个睡眠阶段;
若是,则将调整后的第一设定运行参数作为所述睡眠阶段对应的设定运行参数;以及,
若否,则将所述睡眠阶段对应的设定运行参数恢复为所述第一设定运行参数。
可选地,所述将所述睡眠阶段对应的设定运行参数恢复为所述第一设定运行参数的步骤之后,还包括:
在用户再次进入所述睡眠阶段,且所述特征值不位于所述预设参数区间时,根据所述睡眠阶段变化规则确定所述睡眠阶段的前一个睡眠阶段;
获取所述前一个睡眠阶段对应的第三设定运行参数;
根据所述第一设定运行参数和所述第三设定运行参数确定第二目标参数;以及,
根据所述第二目标参数调整所述第一设定运行参数。
可选地,所述空调器参数调整方法的步骤还包括:
在用户的睡眠周期内,持续获取所述用户的睡眠状态信息;
根据所述睡眠状态信息确定用户在所述睡眠周期内的所有睡眠阶段;
在所述睡眠周期内的睡眠阶段满足睡眠阶段调整条件时,确定满足条件的睡眠阶段;以及,
控制调整所述满足条件的睡眠阶段所对应的第四设定运行参数,以提供有助于用户进入睡眠更好的睡眠周期的环境。
可选地,所述空调器参数调整方法的步骤还包括:
根据所述睡眠状态信息确定所述睡眠周期内所有睡眠阶段的第二特征值;
分析所述睡眠周期内每种睡眠阶段对应的第二特征值的变化趋势;
比对并判断所述变化趋势与预设变化趋势是否一致;
若一致,则判定所述睡眠周期内的睡眠阶段不满足睡眠阶段调整条件;以及,
若不一致,则判定所述睡眠周期内的睡眠阶段满足睡眠阶段调整条件,并根据比对结果确定所述满足条件的睡眠阶段。
可选地,所述空调器参数调整方法的步骤还包括:
通过所述雷达传感器检测所述用户的动作幅度;
判断所述动作幅度是否小于预设幅度;
在所述动作幅度小于所述预设幅度时,判定当前处于用户的睡眠周期内;以及,
在所述动作幅度大于或等于所述预设幅度时,判定当前不处于用户的睡眠周期内。
可选地,所述睡眠状态信息包括呼吸频率和动作幅度。
可选地,所述根据所述睡眠状态信息确定用户当前所处的睡眠阶段的步骤包括:
根据所述呼吸频率计算所述用户的呼吸频率变化率,根据所述动作幅度计算所述用户的动作幅度变化率;以及,
根据所述呼吸频率、所述动作幅度、所述呼吸频率变化率、以及所述动作幅度的变化率确定所述用户当前所处的睡眠阶段。
可选地,所述在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数的步骤之后,还包括:
将调整后的第一设定运行参数进行保存,在下一次进入与当前睡眠阶段相同类型的睡眠阶段时,按照保存的调整后的第一设定参数控制空调器运行。
此外,为实现上述目的,本申请还提供一种空调器参数调整装置,所述空调器参数调整装置包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的空调器参数调整程序,所述空调器参数调整程序被所述处理器执行时实现如下空调器参数调整方法的步骤:
获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息由雷达传感器检测得到;
根据所述睡眠状态信息确定用户当前所处的睡眠阶段;以及,
在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
此外,为实现上述目的,本申请还提供一种空调器,所述空调器包括如上所述的空调器参数调整装置,所述空调器参数调整装置包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的空调器参数调整程序,所述空调器参数调整程序被所述处理器执行时实现如下空调器参数调整方法的步骤:
获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息由雷达传感器检测得到;
根据所述睡眠状态信息确定用户当前所处的睡眠阶段;以及,
在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
此外,为实现上述目的,本发明还提供一种可读存储介质,所述可读存储介质上存储有空调器参数调整程序,所述空调器参数调整程序被处理器执行时实现如下空调器参数调整方法的步骤:
获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息由雷达传感器检测得到;
根据所述睡眠状态信息确定用户当前所处的睡眠阶段;以及,
在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
本申请实施例提出的一种空调器参数调整方法,获取空调器所作用空间内用户的睡眠状态信息,睡眠状态信息由雷达传感器检测得到,根据睡眠状态信息确定用户当前所处的睡眠阶段,空调器每个睡眠阶段所对应的设定运行参数是以适应该睡眠阶段内用户舒适需求为目标制定的,但设定运行参数下用户所能达到实际的睡眠状态可能与用户的舒适睡眠状态有所差距(如睡眠阶段的持续时长、呼吸频率、动作幅度等),在睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境,其中,采用雷达传感器检测用户的睡眠状态信息,无需使用可穿戴设备接触人体,提高用户的舒适性,以实现自动对空调器设定的运行参数进行修正,使修正后的运行参数能适应于用户实际的睡眠情况,提高空调控制的准确性,保证用户的睡眠舒适性需求,提高用户体验。
附图说明
图1是本申请实施例空调器参数调整方法涉及的硬件运行环境的设备结构示意图;
图2为本申请实施例空调器参数调整方法的第一流程示意图;
图3为本申请实施例空调器参数调整方法的第二流程示意图;
图4为本申请实施例空调器参数调整方法的第三流程示意图;
图5为本申请实施例空调器参数调整方法的第四流程示意图;
图6为本申请实施例空调器参数调整方法的第五流程示意图;
图7为本申请实施例空调器参数调整方法的第六流程示意图。
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本申请,并不用于限定本申请。
本申请实施例的主要解决方案是:获取通过雷达传感器检测到的空调器所作用空间内用户的睡眠状态信息;根据所述睡眠状态信息确定用户当前所处的睡眠阶段;在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
由于现有技术,空调的设定运行参数不能适应于用户的实际睡眠情况进行调整。
本申请提供一种解决方案,可自动对空调器设定的运行参数进行修正,使修正后的运行参数能适应于用户实际的睡眠情况,提高空调控制的准确性,保证用户的睡眠舒适性需求,提高用户体验。
在本申请实施例中,提出一种空调器。
如图1所示,该空调器中可以包括:处理器1001,例如CPU,存储器1002,睡眠状态信息检测装置1003以及通信总线1004。其中,通信总线1004用于实现这些组件之间的连接通信。存储器1002可以是高速RAM存储器,也可以是稳定的存储器(non-volatile memory),例如磁盘存储器。存储器1002可选的还可以是独立于前述处理器1001的存储装置。
其中,睡眠状态信息检测装置1003具体用于检测空调器所作用空间内每个用户在睡眠过程中的状态信息,如用户的呼吸频率、心跳频率、脉搏、运动幅度等。
该睡眠状态信息检测装置1003具体为雷达传感器,设置于空调器本体上或者空调器所在的室内环境中,实时或在接收到用户发出的睡眠指令后开始监测空调器所作用空间内每个用户的睡眠状态信息,如用户的呼吸频率和运动幅度。雷达传感器可具体设置有多个,每个雷达传感器获取一个用户的睡眠状态信息。
此外睡眠状态信息检测装置1003还可根据实际需求使用可穿戴式设备、摄像头、红外传感器等,但是可穿戴式设备的使用会对用户体感造成影响,使用户难以进入深度睡眠;摄像头的使用成本高、容易侵犯个人隐私、并在人体覆盖有被子、衣服等障碍物时无法实现识别,而红外传感器成本较高。因而,使用雷达传感器获取用户的睡眠状态信息可通过非接触测量人体的呼吸频率和运动幅度,不影响人体睡眠,降低成本,保护隐私。本领域技术人员可以理解,图1中示出的装置结构并不构成对装置的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
如图1所示,作为一种计算机存储介质的存储器1002中可以包括空调器参数调整程序。
参照图1,本申请实施例还提出一种空调器参数调整装置,该空调器参数调整装置可为内置于空调器内部的功能模块,也可是独立于空调器、与空调器通讯连接的控制装置。该空调器参数调整装置可包括上述处理器1001,存储器1002以及可在所述处理器1001上运行的空调器参数调整程序,处理器1001可以用于调用存储器1002中存储的空调器参数调整程序,并执行以下实施例中空调器参数调整方法的相关步骤操作。
此外,本申请实施例还提出一种可读存储介质,所述可读存储介质上存储有空调器参数调整程序,所述空调器参数调整程序被处理器执行时实现执行以下实施例中空调器参数调整方法的相关步骤操作。
参照图2,本申请实施例提供一种空调器参数调整方法,所述空调器参数调整方法包括:
步骤S10,获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息通过雷达传感器检测到的;
在空调器接收用户睡眠指令进入睡眠模式后,或者在空调器使用的过程中,通过设于空调器上或设于空调器所作用空间内的雷达传感器间隔获取或持续监测空调器所作用空间内用户的睡眠状态信息。空调器作用空间为一建筑或构建物内的空间环境,为空调器发生制冷、制热或除湿等功能所产生作用的空间环境,所作用的空间可以是空调器所在的空间,或者是空调器可以设置空间外部,但会对该空间起到制冷、制热或除湿的效果;所述空间环境,例如,为用户的卧室,房间(卧室)、厨房,或者是商场等。
睡眠状态信息可具体为呼吸频率、心跳频率、脉搏、血压、运动幅度等用户的体征信息以及睡眠时长等。
其中,一个雷达传感器检测一个用户的睡眠状态信息,不同的用户采用不同的雷达传感器进行检测,以获得准确的睡眠状态信息检测数据。
通过雷达传感器获取用户的呼吸频率从而实现对用户属性信息的判定,无需佩戴可穿戴设备,不影响人体睡眠;无需使用摄像头等,可降低成本,保护隐私。
步骤S20,根据所述睡眠状态信息确定用户当前所处的睡眠阶段;
用户不同的睡眠阶段具有不同的睡眠状态信息。其中,睡眠状态信息包括呼吸频率和动作幅度,由于用户在不同的睡眠阶段下,具有不同的呼吸频率和动作幅度的特征值,通过呼吸频率和动作幅度可实现对用户的睡眠阶段准确、有效的检测。在获取到用户的呼吸频率和动作幅度后,可根据用户的呼吸频率计算用户的呼吸频率变化率,根据动作幅度计算用户的动作幅度变化率。根据用户的动作幅度的大小,可判定用户是否处于睡眠周期。根据呼吸频率的大小、动作幅度的大小、呼吸频率的变化率以及动作幅度的变化率中的一项或多项可确定用户的睡眠阶段。
其中,睡眠阶段可具体包括清醒状态、入睡状态、浅睡状态、深睡状态和REM状态等。
步骤S30,在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
睡眠阶段是否满足睡眠阶段调整条件的依据可以为睡眠阶段的类型是否准确,具体可根据睡眠状态信息确定用户当前所处的睡眠阶段的前一个睡眠阶段的类型,根据前一个睡眠阶段的类型判断当前所处的睡眠阶段的类型是否准确,如前一个睡眠阶段为浅睡阶段,则当前睡眠阶段的类型应为深睡阶段,若为清醒阶段,则当前的睡眠阶段的类型不准确,即当前的睡眠阶段满足睡眠阶段调整条件。此外,也可以提取当前睡眠阶段的特征值,如持续时长、呼吸频率、动作幅度等,根据当前睡眠阶段的类型确定对应的预设特征值区间,判断第一特征值是否位于预设特征值区间中,若是,则不满足睡眠阶段调整条件,若否,则满足睡眠阶段调整条件。其中,预设特征值区间根据用户在该睡眠阶段的舒适性要求进行具体设定,不同睡眠阶段、不同用户、不同舒适性要求、不同的特征值的类型可对应设置不同的预设特征值区间。
其中,调整睡眠阶段对应的第一设定运行参数可具体为,适应于当前睡眠阶段的类型、睡眠阶段的第一特征值的大小、睡眠阶段的第一特征值与预设特征值区间的大小关系、第一特征值的类型等而具体设置不一样的调整方式。调整方式可具体为在当前睡眠阶段满足睡眠阶段调整条件时,在第一设定运行参数的基础上按照特定规则增加或减少预设的调整量,其中,特定规则可具体为调整的次数、调整的频率、调整方向、调整时机等;或者依据当前睡眠阶段不同的特征(不同的睡眠阶段类型、不同的特征值类型、不同的特征值大小等)对应设定不同的调整目标值,在当前睡眠阶段满足睡眠阶段调整条件时,将第一设定运行参数调整至对应的目标值。
第一设定运行参数为空调器在当前睡眠阶段根据用户偏好设定的空调器运行参数,第一设定运行参数可具体包括温度、湿度、风速、导风调角度或动作等。
调整第一设定运行参数后,可将调整后的第一设定运行参数进行保存,在用户下一次进入与当前睡眠阶段相同类型的睡眠阶段时,按照保存的调整后的第一设定运行参数运行。
此外,在所述睡眠阶段满足睡眠阶段调整条件时,表明第一设定运行参数准确,可保证用户的睡眠质量,当前睡眠阶段对应的第一设定运行参数可不做任何调整。
本申请实施例提出的一种空调器参数调整方法,获取通过雷达传感器检测到的空调器所作用空间内用户的睡眠状态信息,根据睡眠状态信息确定用户当前所处的睡眠阶段了,在睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。由于空调器每个睡眠阶段所对应的设定运行参数是以适应该睡眠阶段内用户舒适需求为目标制定的,但设定运行参数下用户所能达到实际的睡眠状态可能与用户的舒适睡眠状态有所差距(如睡眠阶段的持续时长、呼吸频率、动作幅度等),在睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境,其中,采用雷达传感器检测用户的睡眠状态信息,无需使用可穿戴设备接触人体,提高用户的舒适性,以实现自动对空调器设定的运行参数进行修正,使修正后的运行参数能适应于用户实际的睡眠情况,提高空调控制的准确性,保证用户的睡眠舒适性需求,提高用户体验。
参照图3,本申请实施例提供一种空调器参数调整方法,所述空调器参数调整方法还包括:
步骤S01,根据所述睡眠状态信息确定所述睡眠阶段的第一特征值,根据所述睡眠阶段确定对应的预设特征值区间;
步骤S02,判断所述第一特征值是否位于所述预设特征值区间;
若是,则执行步骤S03,若否,则执行步骤S04;
步骤S03,判定所述睡眠阶段不满足睡眠阶段调整条件;
步骤S04,判定所述睡眠阶段满足睡眠阶段调整条件。
睡眠阶段对应的第一特征值可具体包括睡眠阶段的类型、持续时长、呼吸频率的大小、动作幅度的大小、呼吸频率的变化率以及动作幅度的变化率等。不同的睡眠阶段,依据用户的不同舒适性特征,可对应设置不同的预设特征值区间,以表征用户的舒适性状态。
当第一特征值位于预设特征值区间内,则表明用户在当前睡眠阶段处于舒适状态,此时判定所述睡眠阶段不满足睡眠阶段调整条件,第一设定运行参数可不做调整;当第一特征值不位于预设特征值区间,则用户在当前睡眠阶段处于不舒适状态。此时判定所述睡眠阶段满足睡眠阶段调整条件,第一设定运行参数需进行调整。
例如,根据睡眠状态信息确定睡眠阶段的持续时长,当持续时长大于预设值时,判定睡眠阶段的持续时长过长,需对睡眠阶段对应的第一设定运行参数进行调整。
通过确定当前睡眠阶段的第一特征值及对应的预设特征值区间,根据第一特征值与预设特征值区间的关系,实现对用户在当前睡眠阶段睡眠质量的一个表征,第一特征值在预设特征值区间内,则睡眠质量好,无需调整第一设定运行参数,第一特征值不在预设特征值区间内,则睡眠质量不好,需调整第一设定运行参数,实现对用户的睡眠质量进行具体的量化,以确定准确的设定运行参数的调整时机,是空调器的设定运行参数的调整更加的准确。
具体的,如图4所示,所述控制调整所述睡眠阶段对应的设定运行参数的步骤包括:
步骤S31,获取所述用户对应的睡眠阶段变化规则;
步骤S32,根据所述睡眠阶段变化规则确定所述睡眠阶段的后一个睡眠阶段;
步骤S33,获取所述后一个睡眠阶段对应的第二设定运行参数;
步骤S34,根据所述第一设定运行参数和所述第二设定运行参数确定第一目标参数;
步骤S35,根据所述第一目标参数调整所述第一设定运行参数。
睡眠阶段变化规则具体为在用户睡眠质量好的睡眠阶段变化曲线中,睡眠阶段依次变化的次序,如睡眠阶段依次从入睡到浅睡到深睡到REM,入睡后浅睡到深睡到REM不断循环等。根据睡眠阶段变化规则,可确定其中一个睡眠阶段的前一个睡眠阶段的类型以及后一个睡眠阶段的类型。
在当前睡眠阶段的特征参数满足调整条件,如当前睡眠阶段为浅睡阶段,且持续时长过长时,可根据睡眠阶段变化规则确定后一个睡眠阶段,如深睡阶段,并获取后一个睡眠阶段的第二设定运行参数。第二设定运行参数为与第一设定运行参数类型相同的,空调器在后一个睡眠阶段根据用户偏好设定的空调器运行参数,第二设定运行参数可具体包括温度、湿度、风速、导风调角度或动作等。
根据第二设定运行参数与第一设定运行参数确定第一目标参数,可具体为计算第二设定运行参数与第一设定运行参数的中值,将中值作为第一目标参数,此时,调整第一设定运行参数至第一目标参数。此外,当预设有预设调整量时,也可比较第二设定运行参数与第一设定运行参数之间的关系,若第二设定运行参数大于第一设定运行参数,对应使调整后的第一设定运行参数大于当前的第一设定运行参数,可在第一设定运行参数的基础上增加预设的调整量,以实现对第一设定运行参数的调节。
通过上述方式,可实现对第一设定运行参数的正向调节,使当前睡眠阶段调整后的第一设定运行参数更加靠近后一个睡眠阶段,从而加快用户从睡眠阶段进入后一个睡眠阶段,避免用户在当前睡眠阶段的特征数据异常的情况下停留时间过长,使空调器控制参数更为的准确,以提高用户的睡眠质量。
进一步的,如图5所示,所述根据所述第一目标参数调整所述第一设定运行参数的步骤之后,还包括:
步骤S40,控制所述空调器按照调整后的第一设定运行参数运行;
步骤S41,判断所述用户是否从所述睡眠阶段进入所述后一个睡眠阶段;
若是,则执行步骤S411,若否,则执行步骤S412。
步骤S411,调整后的第一设定运行参数作为所述睡眠阶段对应的设定运行参数;
步骤S412,将所述睡眠阶段对应的设定运行参数恢复为所述第一设定运行参数。
在当前睡眠阶段下,控制空调器按照调整后的第一设定运行参数运行,运行一定时间后,再次获取用户的当前睡眠阶段,判断用户的睡眠阶段是否从被调整的睡眠阶段进入上述的后一个睡眠阶段,如从浅睡进入到深睡,若是,则表明调整准确,将调整后的第一设定运行参数保存,作为之前的睡眠阶段对应的设定运行参数,并在后续进入与被调整的睡眠阶段相同类型的睡眠阶段时,按照调整后的第一设定运行参数运行;若否,则表明调整不准确,取消对第一设定运行参数的调整,将被调整的睡眠阶段对应的设定运行参数恢复到原来的第一设定运行参数。
通过上述方式,可在对第一设定运行参数进行调整后,判断第一设定运行参数的调整是否准确,保证调整后的第一设定运行参数准确后才作为被调整的睡眠阶段对应的设定运行参数,从而保证调整的有效性和准确性,可使空调器的控制更为的准确,更好的保障用户的睡眠质量。
参照图6,所述将所述睡眠阶段对应的设定运行参数恢复为所述第一设定运行参数的步骤之后,还包括:
步骤S413,在用户再次进入所述睡眠阶段,且所述特征值不位于所述预设参数区间时,根据所述睡眠阶段变化规则确定所述睡眠阶段的前一个睡眠阶段;
步骤S414,获取所述前一个睡眠阶段对应的第三设定运行参数;
步骤S415,根据所述第一设定运行参数和所述第三设定运行参数确定第二目标参数;
步骤S416,根据所述第二目标参数调整所述第一设定运行参数。
通过上述方式,在用户在同一个睡眠周期内再次进入与被调整的睡眠阶段相同类型的睡眠阶段,或者在用户在下一个睡眠周期内再次进入与被调整的睡眠阶段相同类型的睡眠阶段时,再次提取当前睡眠阶段的第一特征值,判断第一特征值是否位于预设参数区间,在第一特征值不位于预设参数区间,即之前的用户舒适性问题再次出现时,可根据睡眠阶段变化规则确定前一个睡眠阶段,如入睡阶段,并获取前一个睡眠阶段的第三设定运行参数。第三设定运行参数为与第一设定运行参数类型相同的,空调器在前一个睡眠阶段根据用户偏好设定的空调器运行参数,第三设定运行参数可具体包括温度、湿度、风速、导风调角度或动作等。
根据第三设定运行参数与第一设定运行参数确定第二目标参数,可具体为计算第二设定运行参数与第一设定运行参数的中值,将中值作为第二目标参数,此时,调整第一设定运行参数至第二目标参数。此外,当预设有预设调整量时,也可比较第三设定运行参数与第一设定运行参数之间的关系,若第三设定运行参数小于第一设定运行参数,对应使调整后的第一设定运行参数小于当前的第一设定运行参数,可在第一设定运行参数减小预设的调整量,以实现对第一设定运行参数的调节。
通过上述方式,可在对第一设定运行参数的正向调节不准确时,对第一设定运行参数进行反向调节,使当前睡眠阶段调整后的第一设定运行参数更加靠近前一个睡眠阶段,从而加快用户从前一个睡眠阶段进入睡眠阶段,避免用户在当前睡眠阶段的特征数据异常的情况下停留时间过长,使空调器控制参数更为的准确,以提高用户的睡眠质量。
进一步的,参照图7,所述空调器参数调整方法的步骤还包括:
步骤S50,在用户的睡眠周期内,持续获取所述用户的睡眠状态信息;
步骤S60,根据所述睡眠状态信息确定用户在所述睡眠周期内的所有睡眠阶段;
步骤S70,在所述睡眠周期内的睡眠阶段满足睡眠阶段调整条件时,确定满足条件的睡眠阶段;
步骤S80,控制调整所述满足条件的睡眠阶段所对应的第四设定运行参数,以提供有助于用户进入睡眠更好的睡眠周期的环境。
用户的睡眠周期具体为从用户准备进入睡眠的清醒状态,到用户醒来再次进入清醒状态的整个时间周期,可在获取到用户输入的睡眠控制指令或者根据用户的睡眠状态信息进行判断之后确定进入睡眠周期。
其中,通过雷达传感器检测的到的动作幅度与预设幅度做比较,在小于预设幅度时,任务当前处于用户的睡眠周期;若大于或等于预设幅度,可判定当前不处于用户的睡眠周期。通过对用户动作幅度的判定,有效准确的实现对用户睡眠周期的检测,以保证得到的睡眠状态信息为准确有效的数据。
每个用户在其多次的睡眠过程中的睡眠阶段变化大同小异,可通过获取用户多个睡眠周期的睡眠阶段变化或每个睡眠阶段对应的特征值制定预设的用户睡眠阶段变化曲线。可根据睡眠状态信息确定睡眠周期内的所有睡眠阶段,判断用户当前的睡眠周期的睡眠阶段变化或每个睡眠阶段对应的特征值的变化,是否符合预设用户睡眠阶段变化曲线中的预设的睡眠阶段变化趋势或特征值变化趋势,如睡眠阶段变化的顺序是否一致,同种睡眠阶段的持续时间的变化趋势是否一致等,若一致,则睡眠周期内的睡眠阶段不满足睡眠阶段调整条件,无需对睡眠周期对应的设定运行参数进行调节,若不一致,则表明睡眠周期内的睡眠阶段满足睡眠阶段调整条件,则确定睡眠周期中的异常睡眠阶段,作为满足条件的睡眠阶段,并控制调整该睡眠阶段对应的第四设定运行参数。
其中,调整满足条件的睡眠阶段对应的第四设定运行参数的具体方式可参照上述对第一设定运行参数的调整方式,在此不做赘述。
通过上述方式,可对用户整个睡眠周期中的睡眠阶段进行监控,判断用户在整个睡眠周期中的睡眠质量,在睡眠质量不好时,确定异常的睡眠阶段,并调整该睡眠阶段对应的第四设定运行参数,可自动对空调器设定的运行参数进行修正,使修正后的运行参数能适应于用户整个周期的睡眠情况,提高空调控制的准确性,以提供有助于用户进入睡眠更好的睡眠周期的环境,保证用户整个睡眠周期都能得到较好的睡眠质量,提高用户体验。
所述空调器参数调整方法的步骤还包括:
步骤S91,根据所述睡眠状态信息确定所述睡眠周期内所有睡眠阶段的第二特征值;
步骤S92,分析所述睡眠周期内每种睡眠阶段对应的第二特征值的变化趋势;
步骤S93,比对并判断所述变化趋势与预设变化趋势是否一致;
若一致,则判定所述睡眠周期内的睡眠阶段不满足睡眠阶段调整条件;
若不一致,则判定所述睡眠周期内的睡眠阶段满足睡眠阶段调整条件,并根据比对结果确定所述满足条件的睡眠阶段。
睡眠阶段对应的第二特征值可具体包括睡眠阶段的类型、持续时长、呼吸频率的大小、动作幅度的大小、呼吸频率的变化率以及动作幅度的变化率等。
比对和判断所述睡眠周期中每种睡眠阶段对应的特征数据的变化趋势是否与预设变化趋势一致;若是,则判定不存在所述异常睡眠阶段,判定所述睡眠周期内的睡眠阶段不满足睡眠阶段调整条件;若否,则判定导致趋势不一致的第二特征值所对应的睡眠阶段为所述异常睡眠阶段,判定所述睡眠周期内的睡眠阶段满足睡眠阶段调整条件。
例如,浅睡的持续时间会越来越短,深睡和REM持续时间越来越长,当接近清醒时,这种趋势才会改变。当在S105步骤中发现,用户此次的睡眠阶段的变化曲线与预设的变化曲线不同,如REM持续时间越来越短,没有一个上升的过程,即可以认为REM状态为异常睡眠阶段,空调会根据第二预设规则对当前REM状态对应的设定运行参数进行调整,如对送风量或湿度再进行一次微调等操作。
通过上述方式,通过第二特征值对睡眠周期中每个睡眠阶段用户的睡眠质量进行量化表征,将第二特征值的变化趋势与预设变化趋势作比较,以判断用户在整个睡眠周期的质量,在第二特征值的变化趋势与预设变化趋势不一致时,表明存在睡眠质量不好的睡眠阶段,则根据比对结果确定满足睡眠阶段调整条件的睡眠阶段并进行调整,从而发现影响用户整个睡眠周期质量的睡眠阶段并调整响应的设定运行参数,以提供有助于用户进入睡眠更好的睡眠周期的环境。
此外,判定睡眠周期内的睡眠阶段是否满足睡眠阶段调整条件,还可参照步骤S01至步骤S04的方式,对每个睡眠阶段的第二特征值采用与第一特征值同样的比较方式,判定每个睡眠阶段是否满足睡眠阶段调整条件,并对满足条件的睡眠阶段对应的设定运行参数进行调整。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者***不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者***所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者***中还存在另外的相同要素。
上述本申请实施例序号仅仅为了描述,不代表实施例的优劣。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。根据这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在如上所述的一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本申请各个实施例所述的方法。
以上仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (15)

  1. 一种空调器参数调整方法,其中,所述空调器参数调整方法包括以下步骤:
    获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息由雷达传感器检测得到;
    根据所述睡眠状态信息确定用户当前所处的睡眠阶段;以及,
    在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
  2. 如权利要求1所述的空调器参数调整方法,其中,所述空调器参数调整方法还包括:
    根据所述睡眠状态信息确定所述睡眠阶段的第一特征值,根据所述睡眠阶段确定对应的预设特征值区间;
    判断所述第一特征值是否位于所述预设特征值区间;
    若是,则判定所述睡眠阶段不满足睡眠阶段调整条件;以及,
    若否,则判定所述睡眠阶段满足睡眠阶段调整条件。
  3. 如权利要求2所述的空调器参数调整方法,其中,所述睡眠阶段的第一特征值包括所述睡眠阶段的持续时长,所述判断所述第一特征值是否位于所述预设特征值区间的步骤包括:
    判断所述睡眠阶段的持续时长是否小于或等于预设值。
  4. 如权利要求3所述的空调器参数调整方法,其中,所述控制调整所述睡眠阶段对应的设定运行参数的步骤包括:
    获取所述用户对应的睡眠阶段变化规则;
    根据所述睡眠阶段变化规则确定所述睡眠阶段的后一个睡眠阶段;
    获取所述后一个睡眠阶段对应的第二设定运行参数;
    根据所述第一设定运行参数和所述第二设定运行参数确定第一目标参数;以及,
    根据所述第一目标参数调整所述第一设定运行参数。
  5. 如权利要求4所述的空调器参数调整方法,其中,所述根据所述第一目标参数调整所述第一设定运行参数的步骤之后,还包括:
    控制所述空调器按照调整后的第一设定运行参数运行;
    判断所述用户是否从所述睡眠阶段进入所述后一个睡眠阶段;
    若是,则将调整后的第一设定运行参数作为所述睡眠阶段对应的设定运行参数;以及,
    若否,则将所述睡眠阶段对应的设定运行参数恢复为所述第一设定运行参数。
  6. 如权利要求5所述的空调器参数调整方法,其中,所述将所述睡眠阶段对应的设定运行参数恢复为所述第一设定运行参数的步骤之后,还包括:
    在用户再次进入所述睡眠阶段,且所述特征值不位于所述预设参数区间时,根据所述睡眠阶段变化规则确定所述睡眠阶段的前一个睡眠阶段;
    获取所述前一个睡眠阶段对应的第三设定运行参数;
    根据所述第一设定运行参数和所述第三设定运行参数确定第二目标参数;以及,
    根据所述第二目标参数调整所述第一设定运行参数。
  7. 如权利要求1所述的空调器参数调整方法,其中,所述空调器参数调整方法的步骤还包括:
    在用户的睡眠周期内,持续获取所述用户的睡眠状态信息;
    根据所述睡眠状态信息确定用户在所述睡眠周期内的所有睡眠阶段;
    在所述睡眠周期内的睡眠阶段满足睡眠阶段调整条件时,确定满足条件的睡眠阶段;以及,
    控制调整所述满足条件的睡眠阶段所对应的第四设定运行参数,以提供有助于用户进入睡眠更好的睡眠周期的环境。
  8. 如权利要求7所述的空调器参数调整方法,其中,所述空调器参数调整方法的步骤还包括:
    根据所述睡眠状态信息确定所述睡眠周期内所有睡眠阶段的第二特征值;
    分析所述睡眠周期内每种睡眠阶段对应的第二特征值的变化趋势;
    比对并判断所述变化趋势与预设变化趋势是否一致;
    若一致,则判定所述睡眠周期内的睡眠阶段不满足睡眠阶段调整条件;以及,
    若不一致,则判定所述睡眠周期内的睡眠阶段满足睡眠阶段调整条件,并根据比对结果确定所述满足条件的睡眠阶段。
  9. 如权利要求7所述的空调器参数调整方法,其中,所述空调器参数调整方法的步骤还包括:
    通过所述雷达传感器检测所述用户的动作幅度;
    判断所述动作幅度是否小于预设幅度;
    在所述动作幅度小于所述预设幅度时,判定当前处于用户的睡眠周期内;以及,
    在所述动作幅度大于或等于所述预设幅度时,判定当前不处于用户的睡眠周期内。
  10. 如权利要求1所述的空调器参数调整方法,其中,所述睡眠状态信息包括呼吸频率和动作幅度。
  11. 如权利要求10所述的空调器参数调整方法,其中,所述根据所述睡眠状态信息确定用户当前所处的睡眠阶段的步骤包括:
    根据所述呼吸频率计算所述用户的呼吸频率变化率,根据所述动作幅度计算所述用户的动作幅度变化率;以及,
    根据所述呼吸频率、所述动作幅度、所述呼吸频率变化率、以及所述动作幅度的变化率确定所述用户当前所处的睡眠阶段。
  12. 如权利要求1所述的空调器参数调整方法,其中,所述在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数的步骤之后,还包括:
    将调整后的第一设定运行参数进行保存,在下一次进入与当前睡眠阶段相同类型的睡眠阶段时,按照保存的调整后的第一设定参数控制空调器运行。
  13. 一种空调器参数调整装置,其中,所述空调器参数调整装置包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的空调器参数调整程序,所述空调器参数调整程序被所述处理器执行时实现如下空调器参数调整方法的步骤:
    获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息由雷达传感器检测得到;
    根据所述睡眠状态信息确定用户当前所处的睡眠阶段;以及,
    在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
  14. 一种空调器,其中,所述空调器包括空调器参数调整装置,所述空调器参数调整装置包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的空调器参数调整程序,所述空调器参数调整程序被所述处理器执行时实现如下空调器参数调整方法的步骤:
    获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息由雷达传感器检测得到;
    根据所述睡眠状态信息确定用户当前所处的睡眠阶段;以及,
    在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
  15. 一种可读存储介质,其特征在于,所述可读存储介质上存储有空调器参数调整程序,所述空调器参数调整程序被处理器执行时实现如下空调器参数调整方法的步骤:
    获取空调器所作用空间内用户的睡眠状态信息,所述睡眠状态信息由雷达传感器检测得到;
    根据所述睡眠状态信息确定用户当前所处的睡眠阶段;以及,
    在所述睡眠阶段满足睡眠阶段调整条件时,控制调整所述睡眠阶段对应的第一设定运行参数,以提供有助于用户进入睡眠更好的睡眠阶段的环境。
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