WO2024045658A1 - 睡眠时空调温度控制的方法、装置、设备和存储介质 - Google Patents

睡眠时空调温度控制的方法、装置、设备和存储介质 Download PDF

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Publication number
WO2024045658A1
WO2024045658A1 PCT/CN2023/090752 CN2023090752W WO2024045658A1 WO 2024045658 A1 WO2024045658 A1 WO 2024045658A1 CN 2023090752 W CN2023090752 W CN 2023090752W WO 2024045658 A1 WO2024045658 A1 WO 2024045658A1
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WIPO (PCT)
Prior art keywords
sleep
target
air conditioner
curve
user
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PCT/CN2023/090752
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English (en)
French (fr)
Inventor
张立智
李书佳
李建萍
李雅婷
曹师增
张乃伟
黄罡
Original Assignee
青岛海尔空调器有限总公司
青岛海尔空调电子有限公司
海尔智家股份有限公司
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Application filed by 青岛海尔空调器有限总公司, 青岛海尔空调电子有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔空调器有限总公司
Publication of WO2024045658A1 publication Critical patent/WO2024045658A1/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
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/56Remote control
    • 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
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/80Control systems characterised by their outputs; Constructional details thereof for controlling the temperature of the supplied air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2120/00Control inputs relating to users or occupants
    • F24F2120/10Occupancy

Definitions

  • the present invention relates to the technical field of air conditioning, and in particular to a method, device, equipment and storage medium for air conditioning temperature control during sleep.
  • the present invention provides a method, device, equipment and storage medium for air conditioning temperature control during sleep to further improve the user's sleep experience.
  • the first aspect of this application provides a method for controlling air conditioning temperature during sleep, including:
  • Target sleep curve Generate a target sleep curve based on the pre-collected sleep curves of the target user category; wherein the target sleep curve includes temperature values corresponding to multiple time points within the preset sleep duration;
  • the operation of the air conditioner is controlled according to the target sleep curve.
  • the method further includes:
  • the operation of the air conditioner is controlled according to the control parameters corresponding to the target user category; wherein each user category corresponds to a set of preset control parameters.
  • generating a target sleep curve based on the pre-collected sleep curves of the target user category includes:
  • controlling the operation of the air conditioner according to the target sleep curve includes:
  • the temperature value corresponding to the time point is sent to the air conditioner, so that the air conditioner operates according to the received temperature value.
  • the second aspect of this application provides a device for controlling air conditioning temperature during sleep, which is applied to a terminal.
  • the device includes:
  • a determining unit configured to determine at least one target user category among a plurality of preset user categories
  • a generation unit configured to generate a target sleep curve based on the pre-collected sleep curves of the target user category; wherein the target sleep curve includes temperature values corresponding to multiple time points within the preset sleep duration;
  • a control unit configured to control the operation of the air conditioner according to the target sleep curve.
  • control unit is also used for:
  • the operation of the air conditioner is controlled according to the control parameters corresponding to the target user category; wherein each user category corresponds to a set of preset control parameters.
  • the generating unit when the generating unit generates the target sleep curve based on the pre-collected sleep curve of the target user category, it is specifically used to:
  • control unit controls the air conditioner during operation according to the target sleep curve, specifically for:
  • the temperature value corresponding to the time point is sent to the air conditioner, so that the air conditioner operates according to the received temperature value.
  • a third aspect of this application provides a computer storage medium for storing a computer program.
  • the computer program When executed, it is specifically used to implement the method for controlling the temperature of an air conditioner during sleep provided in any one of the first aspect of this application.
  • a fourth aspect of this application provides an electronic device, including a memory and a processor
  • the memory is used to store computer programs
  • the processor is configured to execute the computer program, and is specifically configured to implement the method for controlling air conditioning temperature during sleep provided in any one of the first aspects of this application.
  • This application provides a method, device, equipment and storage medium for air conditioning temperature control during sleep, which are applied to terminals.
  • the method includes: determining at least one target user category among a variety of preset user categories; and based on the pre-collected target user categories.
  • the sleep curve of the category generates a target sleep curve; the target sleep curve includes temperature values corresponding to multiple time points within the preset sleep duration; the air conditioner operation is controlled according to the target sleep curve.
  • This solution can dynamically adjust the set temperature of the air conditioner according to the temperature values corresponding to each time point in the target sleep curve during the user's sleep period, so that the indoor temperature can meet the needs of the user at different stages of sleep and further improve the use experience of the air conditioner's sleep mode. .
  • Figure 1 is a flow chart of a method for controlling the temperature of an air conditioner during sleep provided by an embodiment of the present application
  • Figure 2 is an example diagram of a method for establishing a communication connection between a user terminal device and an air conditioner provided by an embodiment of the present application;
  • Figure 3 is a schematic diagram of an interface for determining target user categories provided by an embodiment of the present application.
  • Figure 4 is a schematic diagram of a sleep curve in a cooling mode provided by an embodiment of the present application.
  • Figure 5 is a schematic diagram of a sleep curve in a heating mode provided by an embodiment of the present application.
  • Figure 6 is a schematic structural diagram of a device for controlling air conditioning temperature during sleep provided by an embodiment of the present application.
  • FIG. 7 is a schematic structural diagram of an electronic device provided by an embodiment of the present application.
  • the terminal can be any general user terminal device, including but not limited to mobile phones, computers, tablets, etc. It can also be a dedicated control terminal for air conditioners, such as Remote control for air conditioner.
  • FIG. 1 is a flow chart of a method for controlling the temperature of an air conditioner during sleep provided by an embodiment of the present application.
  • the method may include the following steps.
  • S101 Determine at least one target user category among multiple preset user categories.
  • this embodiment can be executed after the user terminal device and the air conditioner establish a communication connection. Therefore, in some optional embodiments, before step S101, it may also include:
  • the user terminal device scans the NFC tag attached to the air conditioner tag
  • the user terminal device establishes a communication connection with the air conditioner based on the NFC tag.
  • the user terminal device can first establish a communication connection with the air conditioner, and the method of establishing the communication connection is not limited.
  • FIG. 2 is a method for establishing a communication connection between a user terminal device and an air conditioner provided in this embodiment.
  • NFC Near Field Communication
  • the advantage of the above method of establishing a communication connection is that it is easy to operate. You only need to bring a mobile phone or other user terminal device close to the NFC tag of the air conditioner, which can improve the user experience.
  • User categories can be divided based on multiple bases, and this embodiment does not limit the specific division method.
  • 6 user categories of boys, girls, dads, moms, grandpas and grandma can be divided according to age group and gender.
  • the boy category represents teenage males
  • the girl category represents teenage females
  • the dad and mom categories represent middle-aged men and middle-aged women respectively
  • the grandpa and grandma categories represent elderly men and elderly women respectively.
  • the user of the air conditioner can select at least one user category from the above-mentioned 6 user categories through the terminal, and the selected user category is the target user category.
  • Figure 3 is a schematic diagram of an interface for selecting a target user category provided by an embodiment of the present application.
  • the terminal can display the interface (1) as shown in Figure 3.
  • the interface (1) includes a curve display window 301, a user selection window 302 and an edit button 303.
  • the curve display window is used to display the currently generated target sleep curve. If the user turns on the sleep soundly function for the first time, the target sleep curve has not been generated yet. Therefore, in this case, any user from multiple user categories can be displayed in 301.
  • the user selection window displays multiple optional user categories, and the user can click the edit button 303 to select at least one user category.
  • the terminal After clicking 303, the terminal displays the interface shown in (2) of Figure 3.
  • the user can click at least one user category, and the terminal indicates on the interface which user categories are selected.
  • the terminal changes the background of the options corresponding to the two user categories to a dark background to distinguish them from other unselected user categories.
  • the user can click the "Confirm” option shown in interface (2) in Figure 3 to save the current selection. After the user clicks "Confirm”, the terminal will The selected user category is determined as the target user category. The user can also click the "Cancel” option shown in the interface (2) of Figure 3 to reselect the user category.
  • the terminal can display the interface again (1).
  • the user selects "Dad” and "Mom” in the interface (2), and then clicks Confirm. Then the terminal determines Dad and Mom as the target user category, and then the terminal returns to the interface (1), and at the same time in window 302 Use a dark background to indicate the current target user category, i.e. dads and moms.
  • the soundly dreaming function which can also be called the soundly dreaming mode, represents the operating mode of the air conditioner during the user's sleep.
  • the mode in which the air conditioner operates during the user's sleep can also be called the sleep mode, or other modes. , this embodiment does not limit the specific name.
  • S102 Generate a target sleep curve based on the pre-collected sleep curves of the target user category.
  • the target sleep curve includes temperature values corresponding to multiple time points within the preset sleep duration.
  • step S102 the memory of the terminal may pre-store the sleep curve corresponding to each user category in the cooling mode.
  • step S101 Combined with the example of user categories in step S101, please refer to Table 1, which is the sleep curve corresponding to each of the aforementioned user categories in the cooling mode.
  • the sleep curves corresponding to each user category shown in Table 1 can be represented by the schematic diagram of the sleep curve in the cooling mode shown in Figure 4.
  • the first row in Table 1 represents several time points divided by hours during sleep, such as 1 to 8 hours in the first row, which in turn represent the time point when sleep starts, the time point starting from the 2nd hour of sleep, and the 3rd hour. The starting time point, and so on, until the starting time point of the 8th hour.
  • the cells in rows 2 to 7 in Table 1 represent the sleep curve of each user category at each time point.
  • the corresponding temperature value in degrees Celsius.
  • the value of the third cell in the third row is 26.3, which means that in cooling mode, the sleep curve of the user category "Mom" starts at the second hour of sleep.
  • the corresponding temperature value is 26.3 degrees Celsius.
  • the meaning of the temperature value corresponding to each time point on the sleep curve of the user category can be that within a period of time after the time point (such as the next hour), the temperature value corresponding to the user category can be The room temperature at which users get optimal sleep quality.
  • the corresponding temperature value of the sleep curve of the "Mom” category at the time point starting from the second hour of sleep is 26.3 degrees Celsius, which means that for users of the "Mom” category, that is, middle-aged For female users, such users can get the best sleep quality when the indoor temperature is maintained at 26.3 degrees Celsius during the 2nd hour after sleep starts.
  • the sleep curve corresponding to each user category can be obtained in the following ways:
  • For each user category obtain the sleep data of a large number of users of this category at different time periods and at different indoor temperatures during sleep, determine the corresponding sleep quality based on the sleep data, and then analyze the optimal sleep quality of this category in each time period. Indoor temperature required for sleep quality.
  • Sleep data may include the user's motion amplitude data and motion frequency data collected through the camera during sleep, as well as the user's sleep depth data collected through the wearable device.
  • the sleep data of users in this category within the third hour after the start of sleep when the indoor temperature is 24, 25, 26, 27, and 28, so as to analyze the sleep data after the start of sleep.
  • Different sleep quality corresponding to different indoor temperatures in the 3rd hour. It was found that the sleep quality of users in this category was the best when the indoor temperature was between 26 and 27 degrees Celsius in the 3rd hour after the start of sleep. Therefore, it was determined that the sleep curve of the "Dad" category was at the 3rd hour. The corresponding temperature value at the beginning of 3 hours is 26.4.
  • the sleep curve for each user category can also be personalized and adjusted according to the user's configuration.
  • the terminal stores the sleep curve of each user category determined according to the above method, and a certain user A found that the sleep curve of the "Dad" category is not suitable for him while using the air conditioner, so he can compare the sleep curve of the "Dad” category. Make fine adjustments, for example, adjust the temperature value corresponding to the sleep curve of the "Dad” category in Table 1 at the beginning of the second hour from 25.6 to 25 degrees Celsius.
  • the sleep curves corresponding to each user category may include, in addition to the sleep curves of the cooling mode mentioned above, the sleep curves of the heating mode as shown in Table 2 below.
  • the sleep curves corresponding to each user category shown in Table 2 can be represented by the schematic diagram of the sleep curve in the heating mode shown in Figure 5.
  • Whether to work in cooling mode or heating mode can be selected by the user on the terminal. As shown in interface (1) of Figure 3, the user can select "cooling” or “heating” in the mode selection window to make the air conditioner work in cooling mode or heating mode, and determine the corresponding value of the cooling mode. Target sleep curve, or the sleep curve corresponding to the heating mode.
  • the terminal can determine whether to work in the cooling mode or the heating mode during sleep according to the user's operation. If it works in the cooling mode, it selects the sleep curve corresponding to the target user category in Table 1 and generates it accordingly.
  • the sleep curves shown in Table 1 and Table 2 are only examples provided by this application.
  • the time points can be divided by other lengths of time (such as 30 minutes), and are not limited to divided by 1 hour.
  • the set sleep duration can not be limited to 8 hours, but can be adjusted according to the user category. For example, teenagers sleep longer, so for boys and girls, the time points can be divided according to the total duration of 9 hours. The elderly sleep time is shorter, so corresponding Grandpa and grandma can divide the time points according to the total duration of 7 hours.
  • a target sleep curve based on the pre-collected sleep curves of the target user category including:
  • the average of the temperature values at the same time point in multiple sleep curves corresponding to multiple target user categories can be calculated, and the calculation result is determined as the target sleep
  • the temperature value of the curve at the corresponding time point is used to obtain the target sleep curve.
  • target sleep In cooling mode, assuming that the categories of grandpa and grandma are determined as the target user categories, then calculate the average of the sleep curves in rows 2 and 4 in Table 1, and the calculation result is used as the target sleep curve, as Here, target sleep The temperature value of the curve at the time point when sleep begins is the average of 25.5 and 25.2, which is 25.35.
  • step S102 the user's sleep curve in the specified working mode (cooling mode or heating mode) is directly determined as the target sleep curve.
  • the terminal can display an interface as shown in interface (1) in Figure 3, and display the currently generated target sleep curve in the curve display window 301 therein, and the user It can be checked whether the target sleep curve meets the requirements. If it does not meet the requirements, the user can re-determine a new target user category in the user selection window 302 to generate a new target sleep curve. Alternatively, the user can also directly click on the curve display window 301 to fine-tune the target sleep curve, such as adjusting the temperature value corresponding to at least one time point.
  • the air conditioner When performing step S103, if the air conditioner supports cooling mode and heating mode, the air conditioner first needs to be switched to the corresponding mode according to the user's configuration. For example, if the user configures the air conditioner to work in cooling mode during sleep, then the air conditioner needs to be switched to the cooling mode.
  • the time point at which sleep starts can be defined as the time point when step S103 starts to be executed. Subsequent corresponding time points are also determined with reference to the time point when step S103 starts to be executed.
  • the time point starting from the second hour can be defined as step The initial time point of the second hour after S103 starts, that is, the first second of the second hour.
  • step S103 can be executed immediately after the target sleep curve is generated and the user confirms the target sleep curve.
  • step S103 can also be executed immediately after obtaining the user's startup instruction.
  • the terminal displays the interface (1) in Figure 3.
  • the user can click the "Start Scene” button, and the instruction to click this button can be regarded as starting. instruction, so the terminal responds to the startup instruction and starts executing step S103.
  • step S103 can also be executed regularly according to the user's timing instructions. For example, after the user clicks the "Start Scene" button in the interface (1) in Figure 3, the terminal can display a timing interface, in which the user can choose to execute immediately or set a preset waiting time, such as 30 minutes. After setting the waiting time, the terminal starts counting from the time when the waiting time is set. When the timed time reaches the waiting time, for example, when it reaches 30 minutes, the terminal starts executing step S103.
  • step S103 can also be executed when it is detected that the user falls asleep.
  • the air conditioner can be equipped with devices such as cameras and body temperature sensors to collect the user's image data and temperature data through these devices. Analyze whether the user falls asleep based on the collected data, and then start executing step S103 when it is detected that the user falls asleep.
  • step S103 considering that the temperature value in the target sleep curve has decimals, and the control accuracy of some air conditioners does not support temperature values with decimals, the temperature value in the target sleep curve can be taken according to the rounding rule. all, Control the operation of the air conditioner according to the rounded temperature value.
  • the sleep curve of the mother category corresponds to a temperature value of 27.1 degrees Celsius at the beginning of the third hour of sleep.
  • the air conditioner is controlled to operate according to the sleep curve corresponding to the mother's analogy in step S103, when the time point of the third hour of sleep is reached, the temperature of the air conditioner is set to the temperature after rounding to 27.1, that is, 27 degrees Celsius.
  • this embodiment may also include the following steps:
  • the operation of the air conditioner is controlled according to the control parameters corresponding to the target user category; each user category corresponds to a set of preset control parameters.
  • Control parameters can include temperature, wind direction and wind speed, etc.
  • the specific values of the control parameters corresponding to each user category can be pre-configured according to the actual situation, which is not limited in this embodiment.
  • the values of corresponding control parameters between different user categories can be the same or different.
  • the values of the control parameters corresponding to the two categories of boys and girls are Home-1 degrees Celsius, low wind speed, and healthy upward blowing.
  • the operation of the air conditioner is controlled according to the control parameters corresponding to the two categories of boys and girls. , you can set the temperature of the air conditioner to Home-1 degrees Celsius, the wind speed to low wind speed, and the wind direction to upward air supply.
  • Home can be a preset default temperature.
  • Home can be equal to 26 degrees Celsius. Therefore, the temperature in the control parameters corresponding to the child and girl categories is equivalent to 25 degrees Celsius.
  • the values of the control parameters corresponding to the two categories of father and mother can be Home degrees Celsius, low wind speed, and healthy upward blowing; the values of the control parameters corresponding to the two categories of grandfather and grandmother can be Home+1 degrees Celsius, Low wind speed, healthy upward blowing.
  • controlling the air conditioner operation according to the target sleep curve may include:
  • the temperature value corresponding to the time point is sent to the air conditioner, so that the air conditioner operates according to the received temperature value.
  • step S103 The execution process of step S103 will be described in detail by taking the latter implementation as an example.
  • the target sleep curve is the sleep curve of the mother category shown in Table 1 in cooling mode
  • the temperature value corresponding to the time point when sleep starts in the sleep curve of the mother category, that is, 25.4 degrees Celsius is taken.
  • the temperature is adjusted to 25 degrees Celsius, and the 25 degrees Celsius temperature is sent to the air conditioner so that the air conditioner runs at 25 degrees Celsius within the next hour.
  • the terminal will round up the temperature value corresponding to that time point in the target sleep curve and send it to the air conditioner, so that the air conditioner will press the temperature value for the next hour. Run until the air conditioner automatically exits the sleep mode (or falls into a deep dream mode) after 8 full hours of operation.
  • the specific execution process corresponding to the former embodiment is similar to the above process. It only needs that the terminal sends all the target sleep curves to the air conditioner, and then the air conditioner executes the above process, which will not be described again.
  • This application provides a method for controlling air conditioner temperature during sleep, which is applied to a terminal.
  • the method includes: determining at least one target user category among a variety of preset user categories; and generating a target based on the sleep curve of the target user category collected in advance.
  • This solution can dynamically adjust the set temperature of the air conditioner according to the temperature values corresponding to each time point in the target sleep curve during the user's sleep period, so that the indoor temperature can meet the needs of the user at different stages of sleep and further improve the use experience of the air conditioner's sleep mode. .
  • the embodiment of the present application also provides a device for controlling the air conditioner temperature during sleep.
  • a device for controlling the air conditioner temperature during sleep Please refer to Figure 6, which is a schematic structural diagram of the device.
  • the device may include the following units.
  • the determining unit 601 is used to determine at least one target user category among multiple preset user categories.
  • the generating unit 602 is configured to generate a target sleep curve based on the pre-collected sleep curves of target user categories.
  • the target sleep curve includes temperature values corresponding to multiple time points within the preset sleep duration.
  • the control unit 603 is used to control the operation of the air conditioner according to the target sleep curve.
  • control unit 603 is also used to:
  • the operation of the air conditioner is controlled according to the control parameters corresponding to the target user category; each user category corresponds to a set of preset control parameters.
  • the generation unit 602 when generating the target sleep curve based on the pre-collected sleep curves of the target user category, the generation unit 602 is specifically used to:
  • control unit 603 controls the air conditioner during operation according to the target sleep curve, specifically for:
  • the temperature value corresponding to the time point is sent to the air conditioner, so that the air conditioner operates according to the received temperature value.
  • This application provides a device for controlling air conditioning temperature during sleep, which is applied to a terminal.
  • the device includes: a determining unit 601 determines at least one target user category among a variety of preset user categories; a generating unit 602 determines at least one target user category according to the pre-collected target user categories.
  • the sleep curve is used to generate a target sleep curve; wherein the target sleep curve includes temperature values corresponding to multiple time points within the preset sleep duration; the control unit 603 controls the operation of the air conditioner according to the target sleep curve.
  • This solution can dynamically adjust the set temperature of the air conditioner according to the temperature values corresponding to each time point in the target sleep curve during the user's sleep period, so that the indoor temperature can meet the needs of the user at different stages of sleep and further improve the use experience of the air conditioner's sleep mode. .
  • Embodiments of the present application also provide a computer storage medium for storing a computer program.
  • the computer program When executed, it is specifically used to implement the method of controlling air conditioning temperature during sleep provided by any embodiment of the present application.
  • An embodiment of the present disclosure provides a computer program that, when executed by a computer, causes the computer to implement the method for controlling the temperature of an air conditioner during sleep provided by any embodiment of the present application.
  • Embodiments of the present disclosure provide a computer program product.
  • the computer program product includes computer instructions stored on a computer-readable storage medium.
  • the program instructions When executed by a computer, the computer can implement any implementation of the present application.
  • the example provides the method of controlling the air conditioner temperature during sleep.
  • An embodiment of the present application also provides an electronic device. See FIG. 7 .
  • the device includes a memory 701 and a processor 702 .
  • Memory 701 is used to store computer programs.
  • the processor 702 is used to execute a computer program, and is specifically used to implement the method of controlling air conditioning temperature during sleep provided in any embodiment of the present application.
  • the above-mentioned electronic equipment can be understood as the computer board in the outdoor unit of the air conditioner and the memory installed on the computer board.
  • the above computer storage medium can be regarded as the memory installed on the computer board of the air conditioner outdoor unit.

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Abstract

一种睡眠时空调温度控制的方法、装置、设备和存储介质,应用于终端。方法包括:在多种预设的用户类别中确定出至少一个目标用户类别;根据预先收集的目标用户类别的睡眠曲线,生成目标睡眠曲线;其中,目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值;按目标睡眠曲线控制空调运行。在用户睡眠期间,根据目标睡眠曲线中各个时间点对应的温度值动态调整空调的设定温度,使得室内的温度满足用户睡眠的不同阶段的需求,进一步改善空调的睡眠模式的使用体验。

Description

睡眠时空调温度控制的方法、装置、设备和存储介质
本申请基于申请号为202211045509.9、申请日为2022年8月30日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本发明涉及空调技术领域,特别涉及一种睡眠时空调温度控制的方法、装置、设备和存储介质。
背景技术
目前多数空调器具有睡眠模式,睡眠模式对应有一组固定的控制参数,包括但不限于特定的温度,湿度,风速和风向等。开启睡眠模式后,空调器按照特定控制参数运行,使得室内环境适宜用户睡眠。
然而整个睡眠期间,随着用户体温的变化,适宜用户睡眠的温度也会发生变化,显然现有的睡眠模式的固定温度并不能满足这一需求。
发明内容
针对上述现有技术的缺点,本发明提供一种睡眠时空调温度控制的方法、装置、设备和存储介质,以进一步改善用户的睡眠体验。
本申请第一方面提供一种睡眠时空调温度控制的方法,包括:
在多种预设的用户类别中确定出至少一个目标用户类别;
根据预先收集的所述目标用户类别的睡眠曲线,生成目标睡眠曲线;其中,所述目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值;
按所述目标睡眠曲线控制所述空调运行。
可选的,所述在多种预设的用户类别中确定出至少一个目标用户类别之后,还包括:
在按所述目标睡眠曲线控制所述空调运行前,按所述目标用户类别对应的控制参数控制所述空调运行;其中,每一所述用户类别均对应一组预设的控制参数。
可选的,所述根据预先收集的所述目标用户类别的睡眠曲线,生成目标睡眠曲线,包括:
计算多个所述目标用户类别对应的多条睡眠曲线的平均值,将计算结果确定为目标睡 眠曲线。
可选的,所述按所述目标睡眠曲线控制所述空调运行,包括:
将所述目标睡眠曲线对应的曲线数据下发给所述空调,使所述空调按所述目标睡眠曲线运行;
或者,
每到所述目标睡眠曲线中的一个时间点,将所述时间点对应的温度值下发给所述空调,使所述空调按收到的温度值运行。
本申请第二方面提供一种睡眠时空调温度控制的装置,应用于终端,所述装置包括:
确定单元,用于在多种预设的用户类别中确定出至少一个目标用户类别;
生成单元,用于根据预先收集的所述目标用户类别的睡眠曲线,生成目标睡眠曲线;其中,所述目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值;
控制单元,用于按所述目标睡眠曲线控制所述空调运行。
可选的,所述控制单元还用于:
在按所述目标睡眠曲线控制所述空调运行前,按所述目标用户类别对应的控制参数控制所述空调运行;其中,每一所述用户类别均对应一组预设的控制参数。
可选的,所述生成单元根据预先收集的所述目标用户类别的睡眠曲线,生成目标睡眠曲线时,具体用于:
计算多个所述目标用户类别对应的多条睡眠曲线的平均值,将计算结果确定为目标睡眠曲线。
可选的,所述控制单元按所述目标睡眠曲线控制所述空调运行时,具体用于:
将所述目标睡眠曲线对应的曲线数据下发给所述空调,使所述空调按所述目标睡眠曲线运行;
或者,
每到所述目标睡眠曲线中的一个时间点,将所述时间点对应的温度值下发给所述空调,使所述空调按收到的温度值运行。
本申请第三方面提供一种计算机存储介质,用于存储计算机程序,所述计算机程序被执行时,具体用于实现本申请第一方面任意一项所提供的睡眠时空调温度控制的方法。
本申请第四方面提供一种电子设备,包括存储器和处理器;
所述存储器用于存储计算机程序;
所述处理器用于执行所述计算机程序,具体用于实现本申请第一方面任意一项所提供的睡眠时空调温度控制的方法。
本申请提供一种睡眠时空调温度控制的方法、装置、设备和存储介质,应用于终端,方法包括:在多种预设的用户类别中确定出至少一个目标用户类别;根据预先收集的目标用户类别的睡眠曲线,生成目标睡眠曲线;其中,目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值;按目标睡眠曲线控制空调运行。本方案能够在用户睡眠期间,根据目标睡眠曲线中各个时间点对应的温度值动态调整空调的设定温度,使得室内的温度满足用户睡眠的不同阶段的需求,进一步改善空调的睡眠模式的使用体验。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据提供的附图获得其他的附图。
图1为本申请实施例提供的一种睡眠时空调温度控制的方法的流程图;
图2为本申请实施例提供的一种用户终端设备和空调建立通信连接的方法示例图;
图3为本申请实施例提供的一种确定目标用户类别的界面示意图;
图4为本申请实施例提供的一种制冷模式下睡眠曲线的示意图;
图5为本申请实施例提供的一种制热模式下睡眠曲线的示意图;
图6为本申请实施例提供的一种睡眠时空调温度控制的装置的结构示意图;
图7为本申请实施例提供的一种电子设备的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
首先说明,本实施例提供的方法可以由终端执行,该终端可以是任意一种通用的用户终端设备,包括但不限于手机,电脑和平板电脑等,还可以是空调器专用的控制终端,比如空调的遥控器。
请参见图1,为本申请实施例提供的睡眠时空调温度控制的方法的流程图,该方法可以包括如下步骤。
S101,在多种预设的用户类别中确定出至少一个目标用户类别。
如前文所述,本实施例可以在用户终端设备和空调建立通信连接后执行,因此,在一些可选的实施例中,在步骤S101之前还可以包括:
用户终端设备扫描空调器标签粘贴的NFC标签;
用户终端设备根据NFC标签和空调器建立通信连接。
当应用于通用的用户终端设备时,该用户终端设备可以先和空调器建立通信连接,建立通信连接的方法不限。示例性的,请参见图2,为本实施例提供的一种用户终端设备和空调器建立通信连接的方法。
如图2所示,空调器上粘贴有近场通信(Near Field Communication,NFC)标签,用户可以将具有NFC功能的用户终端设备靠近空调器的NFC标签,用户终端设备自动扫描NFC标签内置的射频芯片,从而和空调器建立通信连接。
上述建立通信连接的方式的好处在于,操作简便,只需要将手机等用户终端设备靠近空调的NFC标签即可,能够改善用户的使用体验。
用户类别可以按多种依据划分得到,本实施例对具体的划分方式不做限定。
作为一种示例,可以按照年龄段和性别划分出男孩,女孩,爸爸,妈妈,爷爷和奶奶6个用户类别。
其中男孩类别表示青少年男性,女孩类别表示青少年女性,爸爸和妈妈类别分别表示中年男性和中年女性,爷爷和奶奶类别分别表示老年男性和老年女性。
在执行步骤S101时,空调器的用户可以通过终端在上述6个用户类别中选择至少一个用户类别,选中的用户类别就是目标用户类别。
请参见图3,为本申请实施例提供的一种选择目标用户类别的界面示意图。
当用户在终端上开启酣然入梦功能后,终端可以显示如图3所示的界面(1),可以看到界面(1)中包括曲线展示窗口301,用户选择窗口302和编辑按钮303。
曲线展示窗口用于显示当前生成的目标睡眠曲线,其中,若用户首次开启酣然入梦功能,此时还未生成目标睡眠曲线,所以这种情况下可以在301中显示多个用户类别中任意一个用户类别对应的睡眠曲线。
用户选择窗口显示有多个可选的用户类别,用户可以点击其中的编辑按钮303,来选择至少一个用户类别。
点击303后,终端显示如图3的(2)所示的界面,在该界面中,用户可以点击至少一个用户类别,终端在界面上指示出选中的用户类别是哪些。比如在图3的界面(2)中,用户点击“爸爸”和“妈妈”后,终端变更两个用户类别对应的选项的背景为深色背景,从而和其他未选中的用户类别相区别。
用户在选择了至少一个用户类别后可以点击图3的界面(2)所示的“确认”选项,从而保存当前的选择,在用户点击了“确认”后,终端就将界面(2)中用户选中的用户类别确定为目标用户类别。用户也可以点击图3的界面(2)所示的“取消”选项,以便重新选取用户类别。
用户点击“确认”选项后,终端可以再次显示界面(1)。
以图3为示例,用户在界面(2)中选中“爸爸”和“妈妈”,然后点击确认,于是终端将爸爸和妈妈确定为目标用户类别,然后终端返回界面(1),同时在窗口302用深色背景指示当前的目标用户类别,即爸爸和妈妈。
需要说明,酣然入梦功能,也可以称为酣然入梦模式,表示空调在用户睡眠期间的运行模式,在其他实施例中,用户睡眠期间空调运行的模式也可以称为睡眠模式,或者称为其他模式,本实施例对具体名称不做限定。
S102,根据预先收集的目标用户类别的睡眠曲线,生成目标睡眠曲线。
其中,目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值。
步骤S102中,终端的存储器中可以预先存储在制冷模式下,每一用户类别对应的睡眠曲线。
结合步骤S101中用户类别的示例,请参见表1,为制冷模式下前述各个用户类别对应的睡眠曲线。
表1
表1所示的各个用户类别对应的睡眠曲线,可以用图4所示的制冷模式下的睡眠曲线示意图表示。
表1中第一行表示睡眠期间按小时划分的若干个时间点,比如第一行的1至8小时,依次表示,睡眠开始的时间点,睡眠中第2小时开始的时间点,第3小时开始的时间点,以此类推,直至第8小时开始的时间点。
表1中第2行至第7行的单元格,则表示每一用户类别的睡眠曲线在每一时间点处对 应的温度值,单位为摄氏度,比如第3行的第3个单元格的数值为26.3,表示制冷模式下,“妈妈”这一用户类别的睡眠曲线在睡眠中第2小时开始的时间点处对应的温度值为26.3摄氏度。
对于每一个用户类别,该用户类别的睡眠曲线上每一个时间点对应的温度值的含义可以是,在该时间点之后的一段时间(比如之后的1个小时)内,使该用户类别对应的用户获得最佳睡眠质量的室内温度。
示例性的,表1中,制冷模式下,“妈妈”类别的睡眠曲线在睡眠中第2小时开始的时间点处对应的温度值为26.3摄氏度,表示对于“妈妈”类别的用户,即中年女性用户,当室内温度在睡眠开始后的第2小时期间保持在26.3摄氏度时,此类用户可以获得最佳的睡眠质量。
每一用户类别对应的睡眠曲线,可以通过如下方式获得:
针对每一用户类别,获取该类别的海量用户在睡眠期间不同时间段,不同室内温度下的睡眠数据,根据睡眠数据确定对应的睡眠质量,从而分析出每一时间段内该类别的获得最优睡眠质量所需的室内温度。
睡眠数据可以包括通过摄像头采集到的用户睡眠期间的动作幅度数据和动作频率数据,以及包括通过可穿戴设备采集到的用户的睡眠深度数据等。
示例性的,对于“爸爸”类别,采集该类别的用户在睡眠开始后的第3小时内,在室内温度为24,25,26,27,28时的睡眠数据,从而分析出睡眠开始后的第3小时内不同室内温度对应的不同睡眠质量,发现睡眠开始后的第3小时内室内温度在26至27摄氏度之间时该类别用户睡眠质量最高,于是确定“爸爸”类别的睡眠曲线在第3小时开始的时间点对应的温度值为26.4。
在一些可选的实施例中,每一用户类别的睡眠曲线,也可以根据用户的配置进行个性化调整。比如终端中存储有根据上述方法确定的每一用户类别的睡眠曲线,而某用户甲在使用空调器期间发现其中“爸爸”类别的睡眠曲线不适合自己,于是可以对“爸爸”类别的睡眠曲线进行微调,比如将表1中“爸爸”类别的睡眠曲线在第2小时开始的时间点处对应的温度值25.6,下调为25摄氏度。
可选的,考虑到部分空调器有制热功能,所以各个用户类别对应的睡眠曲线除了上述制冷模式的睡眠曲线之外,还可以包括如下表2所示的制热模式的睡眠曲线。

表2
表2中制热模式下各用户类别的睡眠曲线的含义和获取方式均可以参见前述制冷模式下的睡眠曲线的说明,此处不再赘述。
表2所示的各个用户类别对应的睡眠曲线,可以用图5所示的制热模式下的睡眠曲线示意图表示。
具体以制冷模式还是以制热模式工作,可以由用户在终端上选择。如图3的界面(1)所示,用户可以在模式选择窗口处,选择“制冷”或者“制热”,使得空调器以制冷模式工作,或者以制热模式工作,并确定制冷模式对应的目标睡眠曲线,或者制热模式对应的睡眠曲线。
也就是说,在步骤S102中,终端可以根据用户的操作确定睡眠期间以制冷模式还是制热模式工作,如果以制冷模式工作,就在表1中选取目标用户类别对应的睡眠曲线,据此生成目标睡眠曲线;如果以制热模式工作,就在表2中选取目标用户类别对应的睡眠曲线,据此生成目标睡眠曲线。
可以理解,表1和表2所示的睡眠曲线仅为本申请提供的示例。在其他可选的实施例中,划分时间点时可以按其他时长(比如30分钟)来划分,不限于按1小时划分。设定的睡眠时长可以不限于8小时,而是根据用户类别调整,比如青少年睡眠时间较长,所以对于男孩和女孩可以按9小时的总时长来划分时间点,老年睡眠时间较短,所以对应爷爷和奶奶可以按7小时的总时长来划分时间点。
可选的,根据预先收集的目标用户类别的睡眠曲线,生成目标睡眠曲线,包括:
计算多个目标用户类别对应的多条睡眠曲线的平均值,将计算结果确定为目标睡眠曲线。
也就是说,如果用户将多个用户类别确定为目标用户类别,则可以计算多个目标用户类别对应的多条睡眠曲线中,相同时间点的温度值的平均值,将计算结果确定为目标睡眠曲线在对应时间点的温度值,由此获得目标睡眠曲线。
以表1为例,在制冷模式下,假设将爷爷和奶奶类别确定为目标用户类别,则计算表1中第2行和第4行的睡眠曲线的平均值,计算结果作为目标睡眠曲线,由此,目标睡眠 曲线在睡眠开始时的时间点的温度值为25.5和25.2的平均值,即25.35。
可选的,如果用户仅选择了一个用户类别作为目标用户类别,在步骤S102中就直接将指定的工作模式(制冷模式或制热模式)下该用户的睡眠曲线确定为目标睡眠曲线。
在一些可选的实施例中,在确定目标睡眠曲线之后,终端可以显示如图3的界面(1)所示的界面,并在其中的曲线展示窗口301处显示当前生成的目标睡眠曲线,用户可以查看该目标睡眠曲线是否符合需求,如果不符合需求则用户可以重新在用户选择窗口302确定新的目标用户类别,从而生成新的目标睡眠曲线。或者,用户也可以直接点击曲线展示窗口301对目标睡眠曲线进行微调,比如调整其中至少一个时间点对应的温度值。
S103,按目标睡眠曲线控制空调运行。
在执行步骤S103时,如空调支持制冷模式和制热模式,则首先需要根据用户的配置将空调切换为对应的模式,比如用户配置在睡眠期间以制冷模式工作,则切换为制冷模式。
睡眠开始的时间点,可以定义为步骤S103开始执行时的时间点,后续对应的时间点也均以步骤S103开始执行的时间点为参照确定,比如第2小时开始的时间点,可以定义为步骤S103开始后的第2小时初始时间点,即第2小时的第1秒。
在一些可选的实施例中,步骤S103可以在生成目标睡眠曲线且用户确认目标睡眠曲线后立即开始执行。
在一些可选的实施例中,步骤S103也可以在获得用户的启动指令之后立即执行。以图3所示的界面为例,在生成目标睡眠曲线后,终端显示图3的界面(1),此时用户可以点击其中的“开启场景”按钮,点击该按钮的指令就可以视为启动指令,于是终端响应该启动指令,开始执行步骤S103。
在一些可选的实施例中,步骤S103也可以根据用户的定时指令定时执行。例如,用户点击图3的界面(1)的“开启场景”按钮后,终端可以显示定时界面,在该界面中用户可以选择立即执行,也可以设定一个预设的等待时长,比如30分钟。在设定等待时长后,终端从设定好等待时长的时刻开始计时,在计时的时长达到等待时长,比如达到30分钟时,终端开始执行步骤S103。
在一些可选的实施例中,步骤S103也可以在检测到用户入睡时开始执行,具体的,空调器可以配置有摄像头,体温传感器等器件,通过这些器件采集用户的图像数据和温度数据等,根据采集到的数据分析用户是否入睡,然后在检测出用户入睡时开始执行步骤S103。
可选的,在步骤S103中,考虑到目标睡眠曲线中的温度值有小数,而部分空调器的控制精度不支持带小数的温度值,可以按四舍五入的规律将目标睡眠曲线中的温度值取整, 按取整后的温度值控制空调器运行。
示例性的,制冷模式下,妈妈类别的睡眠曲线在睡眠第3小时开始的时间点对应温度值为27.1摄氏度。当步骤S103中按妈妈类比对应的睡眠曲线控制空调器运行时,在到达睡眠第3小时开始的时间点时,将空调器的温度设定为27.1取整后的温度,即27摄氏度。
如前文所述,在生成目标睡眠曲线之后,可能会经过一段时间才按目标睡眠曲线控制空调运行,因此,在确定目标用户类别之后,执行步骤S103之前,本实施例还可以包括如下步骤:
在空调进入睡眠模式前,按目标用户类别对应的控制参数控制空调运行;其中,每一用户类别均对应一组预设的控制参数。
控制参数可以包括温度,风向和风速等。每个用户类别对应的控制参数的具体数值可以根据实际情况预先配置,本实施例对此不作限定。
不同用户类别之间对应的控制参数的数值可以相同,也可以不同。
结合前述示例,男孩和女孩两个类别对应的控制参数的数值均为,Home-1摄氏度,低风速,健康上吹,也就是说,在按男孩和女孩两个类别对应的控制参数控制空调运行时,可以将空调的温度设定为Home-1摄氏度,风速设定为低风速,风向设定为向上送风。
其中,Home可以是一个预设的默认温度,比如Home可以等于26摄氏度,由此孩和女孩两个类别对应的控制参数中温度就相当于使25摄氏度。
参照上述示例,爸爸和妈妈两个类别对应的控制参数的数值均可以是,Home摄氏度,低风速,健康上吹;爷爷和奶奶两个类别对应的控制参数的数值均可以是Home+1摄氏度,低风速,健康上吹。各项控制参数及其数值的含义参见前文,不再赘述。
可选的,按目标睡眠曲线控制空调运行可以包括:
将目标睡眠曲线对应的曲线数据下发给空调,使空调按目标睡眠曲线运行;
或者,
每到目标睡眠曲线中的一个时间点,将时间点对应的温度值下发给空调,使空调按收到的温度值运行。
以后一种实施方式为例具体说明步骤S103的执行过程。
假设目标睡眠曲线为制冷模式下,表1所示的妈妈类别的睡眠曲线,那么终端首先在开始执行S103时,将妈妈类别的睡眠曲线中睡眠开始的时间点对应的温度值,即25.4摄氏度取整获得25摄氏度,将25摄氏度下发给空调器,使空调器在之后一小时内按25摄氏度运行。
开始执行S103一个小时后,到达第2小时开始的时间点,于是终端将26摄氏度(由 26.3摄氏度取整得到)发给空调器,使空调器在之后1小时内,也就是第2小时期间按26摄氏度运行。
开始执行S103二小时后,到达第3小时开始的时间点,于是终端将27摄氏度(由27.1摄氏度取整得到)发给空调器,使空调器在之后1小时内,也就是第3小时期间按27摄氏度运行。
之后以此类推,每经过1个小时到达下一个时间点时,终端就将目标睡眠曲线中该时间点对应的温度值取整下发给空调器,使空调器在之后1小时按该温度值运行,直至运行完整8小时后,空调器自动退出睡眠模式(或酣然入梦模式)为止。
前一种实施方式对应的具体执行过程和上述过程类似,只需要终端将目标睡眠曲线全部下发给空调器,然后空调器执行上述过程即可,不再赘述。
本申请提供一种睡眠时空调温度控制的方法,应用于终端,方法包括:在多种预设的用户类别中确定出至少一个目标用户类别;根据预先收集的目标用户类别的睡眠曲线,生成目标睡眠曲线;其中,目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值;按目标睡眠曲线控制空调运行。本方案能够在用户睡眠期间,根据目标睡眠曲线中各个时间点对应的温度值动态调整空调的设定温度,使得室内的温度满足用户睡眠的不同阶段的需求,进一步改善空调的睡眠模式的使用体验。
根据本申请实施例提供的睡眠时空调温度控制的方法,本申请实施例还提供一种睡眠时空调温度控制的装置,请参见图6,为该装置的结构示意图,该装置可以包括如下单元。
确定单元601,用于在多种预设的用户类别中确定出至少一个目标用户类别。
生成单元602,用于根据预先收集的目标用户类别的睡眠曲线,生成目标睡眠曲线。
其中,目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值。
控制单元603,用于按目标睡眠曲线控制空调运行。
可选的,控制单元603还用于:
在空调进入睡眠模式前,按目标用户类别对应的控制参数控制空调运行;其中,每一用户类别均对应一组预设的控制参数。
可选的,生成单元602根据预先收集的目标用户类别的睡眠曲线,生成目标睡眠曲线时,具体用于:
计算多个目标用户类别对应的多条睡眠曲线的平均值,将计算结果确定为目标睡眠曲线。
可选的,控制单元603按目标睡眠曲线控制空调运行时,具体用于:
将目标睡眠曲线对应的曲线数据下发给空调,使空调按目标睡眠曲线运行;
或者,
每到目标睡眠曲线中的一个时间点,将时间点对应的温度值下发给空调,使空调按收到的温度值运行。
本实施例提供的睡眠时空调温度控制的装置,其具体工作原理可以参见本申请任一实施例所提供的睡眠时空调温度控制的方法中的相关步骤,此处不再赘述。
本申请提供一种睡眠时空调温度控制的装置,应用于终端,装置包括:确定单元601在多种预设的用户类别中确定出至少一个目标用户类别;生成单元602根据预先收集的目标用户类别的睡眠曲线,生成目标睡眠曲线;其中,目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值;控制单元603按目标睡眠曲线控制空调运行。本方案能够在用户睡眠期间,根据目标睡眠曲线中各个时间点对应的温度值动态调整空调的设定温度,使得室内的温度满足用户睡眠的不同阶段的需求,进一步改善空调的睡眠模式的使用体验。
本申请实施例还提供一种计算机存储介质,用于存储计算机程序,计算机程序被执行时,具体用于实现本申请任一实施例所提供的睡眠时空调温度控制的方法。
本公开实施例提供了一种计算机程序,当所述计算机程序被计算机执行时,使所述计算机实现本申请任一实施例所提供的睡眠时空调温度控制的方法。
本公开实施例提供了一种计算机程序产品,所述计算机程序产品包括存储在计算机可读存储介质上的计算机指令,当所述程序指令被计算机执行时,使所述计算机实现本申请任一实施例所提供的睡眠时空调温度控制的方法。
本申请实施例还提供一种电子设备,请参见图7,该设备包括存储器701和处理器702。
存储器701用于存储计算机程序。
处理器702用于执行计算机程序,具体用于实现本申请任一实施例所提供的睡眠时空调温度控制的方法。
上述电子设备可以理解为空调外机内的电脑板以及电脑板上安装的存储器。
上述计算机存储介质可以视为空调外机的电脑板上安装的存储器。
最后,还需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,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、物品或者设备不仅包括那些要素,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、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。
需要注意,本申请中提及的“第一”、“第二”等概念仅用于对不同的装置、模块或单元进行区分,并非用于限定这些装置、模块或单元所执行的功能的顺序或者相互依存关系。
专业技术人员能够实现或使用本申请。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本申请的精神或范围的情况下,在其它实施例中实现。因此,本申请将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (12)

  1. 一种睡眠时空调温度控制的方法,其特征在于,应用于终端,所述方法包括:
    在多种预设的用户类别中确定出至少一个目标用户类别;
    根据预先收集的所述目标用户类别的睡眠曲线,生成目标睡眠曲线;其中,所述目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值;
    按所述目标睡眠曲线控制空调运行。
  2. 根据权利要求1所述的方法,其特征在于,所述在多种预设的用户类别中确定出至少一个目标用户类别之后,还包括:
    在按所述目标睡眠曲线控制所述空调运行前,按所述目标用户类别对应的控制参数控制所述空调运行;其中,每一所述用户类别均对应一组预设的控制参数。
  3. 根据权利要求1或2所述的方法,其特征在于,所述根据预先收集的所述目标用户类别的睡眠曲线,生成目标睡眠曲线,包括:
    计算多个所述目标用户类别对应的多条睡眠曲线的平均值,将计算结果确定为目标睡眠曲线。
  4. 根据权利要求1至3任一项所述的方法,其特征在于,所述按所述目标睡眠曲线控制所述空调运行,包括:
    将所述目标睡眠曲线对应的曲线数据下发给所述空调,使所述空调按所述目标睡眠曲线运行;
    或者,
    每到所述目标睡眠曲线中的一个时间点,将所述时间点对应的温度值下发给所述空调,使所述空调按收到的温度值运行。
  5. 一种睡眠时空调温度控制的装置,其特征在于,应用于终端,所述装置包括:
    确定单元,用于在多种预设的用户类别中确定出至少一个目标用户类别;
    生成单元,用于根据预先收集的所述目标用户类别的睡眠曲线,生成目标睡眠曲线;其中,所述目标睡眠曲线,包括预设的睡眠时长内多个时间点对应的温度值;
    控制单元,用于按所述目标睡眠曲线控制空调运行。
  6. 根据权利要求5所述的装置,其特征在于,所述控制单元还用于:
    在按所述目标睡眠曲线控制所述空调运行前,按所述目标用户类别对应的控制参数控制所述空调运行;其中,每一所述用户类别均对应一组预设的控制参数。
  7. 根据权利要求5或6所述的装置,其特征在于,所述生成单元根据预先收集的所述目标用户类别的睡眠曲线,生成目标睡眠曲线时,具体用于:
    计算多个所述目标用户类别对应的多条睡眠曲线的平均值,将计算结果确定为目标睡眠曲线。
  8. 根据权利要求5至7任一项所述的装置,其特征在于,所述控制单元按所述目标睡眠曲线控制所述空调运行时,具体用于:
    将所述目标睡眠曲线对应的曲线数据下发给所述空调,使所述空调按所述目标睡眠曲线运行;
    或者,
    每到所述目标睡眠曲线中的一个时间点,将所述时间点对应的温度值下发给所述空调,使所述空调按收到的温度值运行。
  9. 一种计算机存储介质,其特征在于,用于存储计算机程序,所述计算机程序被执行时,具体用于实现如权利要求1至4任一项所述的睡眠时空调温度控制的方法。
  10. 一种电子设备,其特征在于,包括存储器和处理器;
    所述存储器用于存储计算机程序;
    所述处理器用于执行所述计算机程序,具体用于实现如权利要求1至4任一项所述的睡眠时空调温度控制的方法。
  11. 一种计算机程序,当所述计算机程序被计算机执行时,使所述计算机实现如权利要求1至4任一项所述的睡眠时空调温度控制的方法。
  12. 一种计算机程序产品,所述计算机程序产品包括存储在计算机可读存储介质上的计算机指令,当所述程序指令被计算机执行时,使所述计算机实现如权利要求1至4任一项所述的睡眠时空调温度控制的方法。
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