WO2021223411A1 - 一种空调系统控制方法、装置和空调系统 - Google Patents

一种空调系统控制方法、装置和空调系统 Download PDF

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Publication number
WO2021223411A1
WO2021223411A1 PCT/CN2020/130651 CN2020130651W WO2021223411A1 WO 2021223411 A1 WO2021223411 A1 WO 2021223411A1 CN 2020130651 W CN2020130651 W CN 2020130651W WO 2021223411 A1 WO2021223411 A1 WO 2021223411A1
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Prior art keywords
air
conditioning system
baby
preset
humidity value
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PCT/CN2020/130651
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English (en)
French (fr)
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杜亮
李文博
陈会敏
吴洪金
国德防
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青岛海尔空调器有限总公司
海尔智家股份有限公司
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Publication of WO2021223411A1 publication Critical patent/WO2021223411A1/zh

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    • 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
    • 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
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/79Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling the direction 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
    • F24F2120/12Position of occupants
    • 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
    • F24F2120/14Activity of occupants

Definitions

  • the present invention relates to the technical field of air-conditioning equipment, and in particular to an air-conditioning system control method, device and air-conditioning system.
  • the air-conditioning system is a kind of household appliance that is necessary in a conventional family bedroom.
  • a household air-conditioning system usually only has cooling and heating functions, and has a single function.
  • the embodiments of the present invention provide an air conditioning system control method and device.
  • the air conditioning system achieves the purpose of waking up parents before the baby cries, enriches the air conditioning function, and prevents the baby from crying at night disturbing neighbors' normal rest.
  • An air conditioning system control method including:
  • the status data including but not limited to: the humidity value of the baby's bedding position detected by the humidity sensor, and the baby's action frequency detected by the microwave sensor;
  • the air supply direction of the air conditioning system is adjusted based on the position of the parent until the parent is awakened by the microwave sensor.
  • the preset conditions include but are not limited to:
  • the humidity value of the baby bedding position detected by the humidity sensor is greater than the preset humidity value
  • the action frequency of the baby detected by the microwave sensor is greater than the first preset frequency value.
  • the above-mentioned air conditioning system control method further includes:
  • the air conditioning system is controlled to enter the heating mode, and the humidity value facing the air outlet is adjusted to be greater than the preset humidity value The area of the humidity value.
  • the above-mentioned air conditioning system control method further includes:
  • the action frequency of the baby detected by the microwave sensor is greater than the first preset frequency value
  • the action frequency of the baby is continuously calculated, and when the action frequency of the baby is less than the second preset frequency value, the control is performed.
  • the air-conditioning system is reset to the working state before the air-conditioning lamp enters the first lighting mode.
  • the above-mentioned air conditioning system control method further includes:
  • the voice receiving unit analyzes the collected sound information and finds that the baby is in a crying state, control the air-conditioning lamp of the air-conditioning system to enter the first lighting mode, and control the air-conditioning to enter the automatic working mode;
  • the location of the parent is detected based on the microwave sensor detection data, and the air-conditioning system is controlled to follow or avoid the location of the parent according to its own working conditions.
  • the air conditioner when the air conditioner is controlled to enter the automatic working mode, it is determined whether there is a pre-storage temperature.
  • the temperature regulates its own working conditions.
  • the above air conditioning system control method when the humidity value of the baby bedding position detected by the humidity sensor is greater than the preset humidity value, and the voice receiving unit analyzes the collected sound information to obtain that the baby exits the crying state, it further includes:
  • the air conditioning system is controlled to enter a heating mode, and the air outlet is adjusted to an area where the humidity value is greater than a preset humidity value.
  • An air conditioning system control device including:
  • the data collection unit is used to detect the status data of the baby area, the status data including but not limited to: the humidity value of the baby's bedding position detected by the humidity sensor, and the baby's action frequency detected by the microwave sensor;
  • the infant state judgment unit is used to judge whether the state data meets any one of the preset conditions, and when the state data meets any one of the preset conditions, output a trigger to the air conditioning system control unit Signal;
  • the air-conditioning system control unit is configured to control the air-conditioning lamp of the air-conditioning system to enter the first lighting mode, control the air-conditioning system to enter the air supply mode, and obtain the position of the parent after obtaining the trigger signal output by the infant state judging unit.
  • the position adjusts the air supply direction of the air-conditioning system until it is detected by the microwave sensor that the parent is awakened.
  • the conditions in the preset condition group include but are not limited to:
  • the humidity value of the baby bedding position detected by the humidity sensor is greater than the preset humidity value
  • the action frequency of the baby detected by the microwave sensor is greater than the first preset frequency value.
  • the air conditioning system control unit is further configured to: when the humidity value of the baby bedding position detected by the humidity sensor is greater than a preset humidity value, and it is detected that the parent is awakened, The air conditioning system is controlled to enter the heating mode, and the air outlet is adjusted to the area where the humidity value is greater than the preset humidity value.
  • the air-conditioning system control unit is further configured to:
  • the action frequency of the baby detected by the microwave sensor is greater than the first preset frequency value
  • the action frequency of the baby is continuously calculated, and when the action frequency of the baby is less than the second preset frequency value, the control is performed.
  • the air-conditioning system is reset to the working state before the air-conditioning lamp enters the first lighting mode.
  • An air conditioning system characterized in that the air conditioning system control device described in any one of the above is applied.
  • the above-mentioned solutions provided by the embodiments of the present invention detect the state of the baby through sensors.
  • the air-conditioning system is controlled to send air to the parents until the parents are awakened, so that the parents can Soothes the baby before crying, prevents the baby from crying at night, reduces the baby's crying interrupting the normal rest of the neighbors, and enriches the air-conditioning function.
  • FIG. 1 is a schematic flowchart of an air conditioning system control method provided by an embodiment of the application
  • FIG. 2 is a schematic flowchart of a control method for an air conditioning system according to another embodiment of the application.
  • FIG. 3 is a schematic flowchart of an air conditioning system control method according to another embodiment of the application.
  • FIG. 4 is a schematic flowchart of an air conditioning system control method provided by another embodiment of the application.
  • Fig. 5 is a schematic structural diagram of an air conditioning system control device provided by an embodiment of the application.
  • the method may include:
  • Step S101 Detect the status data of the baby area
  • This scheme can be used only at night, and the indoor light intensity information is collected through light intensity data. When the collected light intensity is less than the set light intensity, this scheme is executed.
  • the state data includes, but is not limited to: the humidity value of the baby's bedding position detected by the humidity sensor, and the baby's action frequency detected by the microwave sensor;
  • the humidity sensor may be one or more sheet-shaped sensors, which can be placed in the sleeping position of the baby when in use, and the humidity sensor can be used to detect whether the baby has a bed-wetting condition.
  • the humidity value detected by one or more humidity sensors is greater than the preset humidity value, it indicates that the baby has wetted the bed. As we all know, the baby will inevitably enter a crying state after wetting the bed;
  • the microwave sensor collects pulse data and the baby’s movement frequency during the data detection process. Since the pulse of an infant is significantly different from that of an adult, the pulse data can be used to detect whether the target object is a parent or a baby. In addition, the microwave sensor can also detect the action frequency and amplitude of the target object, as well as the position information of the target object. In this solution, when the microwave sensor detects that the baby's action frequency is too high, it indicates that the baby is about to be awake. Generally speaking, after a baby wakes up at night, if there is no parental comfort, it will inevitably enter a crying state;
  • Step S102 Determine whether the state data meets any one of the conditions in the preset condition group
  • a plurality of preset conditions are set in advance, and these preset conditions form a preset condition group, and the state of the baby is predicted through these preset conditions.
  • these conditions may include: the humidity sensor detects The humidity value of the baby's bedding position is greater than the preset humidity value; the action frequency of the baby detected by the microwave sensor is greater than the first preset frequency value, and when the state data meets any one of the preset condition groups, It can predict that the baby is about to enter the crying state;
  • Step S103 When the state data meets any one of the preset conditions, control the air-conditioning lamp of the air-conditioning system to enter the first lighting mode;
  • the air-conditioning lamp of the air conditioner may have two lighting modes, one of which is the conventional lighting mode in the prior art, and the other is the lighting mode, which can be set with
  • the output power of the air-conditioning lamp in turn achieves the purpose of setting its output light intensity, that is, the user can preset a mode of output power to be the first working mode of the air-conditioning, etc., when the air-conditioning lamp is working in the first In the lighting mode, it can provide users with soft lighting, thereby preventing the eyes of babies and parents from discomfort caused by the user turning on the indoor lighting and the excessive light output of the indoor lighting.
  • Step S104 Control the air conditioner to enter the air supply mode
  • the air-conditioning system can be used to send air to the parents to wake up the parents.
  • Step S105 Obtain the position of the parent, and adjust the air supply direction of the air-conditioning system based on the position of the parent until it is detected that the parent is awakened by the microwave sensor;
  • the position of the parent can be detected by the microwave sensor, and then the air supply direction of the air-conditioning system is determined based on the position of the parent, so that the air sent by the air-conditioning system directly falls on the parent, and the air-conditioning system is always kept at The state of sending air to the parent until the parent is awakened is detected by the microwave detector or image sensor.
  • the microwave sensor detects whether the parent is awakened
  • the pulse data can be used to determine in advance which object is the parent.
  • the parent will detect the amplitude and frequency of the parent's action, and when the amplitude and frequency of the action are greater than a predetermined value, it indicates that the parent is awakened.
  • the state of the baby is detected by sensors.
  • the air-conditioning system is controlled to send air to the parent until the parent is awakened, so that the parent can comfort the baby before the baby cries and prevent the baby Crying at night reduces the situation in which the baby's crying disturbs the normal rest of the neighbors.
  • step S105 obtain the position of the parent, and adjust the air-conditioning system based on the position of the parent After the air supply wind direction, the above method also includes:
  • Step S201 Monitoring the state of the parents in real time through the microwave sensor
  • the pulse data collected by the microblog sensor is used to determine which target object is the parent, and when the parent is determined, the frequency and amplitude of the parent's action are monitored;
  • Step S202 Determine whether the parent is awakened
  • Step S203 When it is detected that the parent is awakened, control the air-conditioning system to enter the heating mode or the air supply mode;
  • Step S204 and adjust the area facing the air outlet where the humidity value is greater than the preset humidity value
  • the baby's wet wet area can be dried quickly, and in this solution, in order to further speed up the drying, the maximum wind speed can be directly adjusted.
  • the air-conditioning light that controls the air-conditioning system is turned off.
  • the humidity sensor detects that When the humidity value of is less than the preset humidity value, control the air-conditioning system to return to the working state before lighting the air-conditioning lamp.
  • the baby’s action frequency is continuously calculated in real time, and the baby may be caused by some If the baby moves frequently due to some reasons, the baby may not wake up. At this time, before the parent is awakened, see Figure 3.
  • the above method also includes:
  • Step S301 Determine whether the baby's action frequency is less than a second preset frequency value
  • Step S302 When the baby's action frequency is less than the second preset frequency value, control the air-conditioning system to reset to the working state before the air-conditioning lamp enters the first lighting mode, and turn off the air-conditioning lamp;
  • the baby's action frequency is less than the second preset frequency value, it indicates that the baby has entered a deep sleep state again. At this time, there is no need to wake up the parents, and control the air conditioning system to reset to the work before the air conditioning lamp enters the first lighting mode Status, and turn off its air-conditioning light.
  • Step S401 When the voice receiving unit analyzes the collected sound information and finds that the baby is in a crying state;
  • Step S402 controlling the air conditioner lamp of the air conditioner system to enter the first lighting mode, and controlling the air conditioner to enter the automatic working mode;
  • the indoor ambient temperature can be detected first, and based on the detected ambient temperature, it is judged whether the indoor temperature needs to be adjusted. If adjustment is required, the air conditioning system is controlled to enter the automatic working mode, and subsequent actions are performed. If adjustment is not required , By judging whether the humidity value detected by the humidity sensor is greater than the set value, if yes, perform action S204 and its subsequent actions.
  • Step S403 Detect the position of the parent based on the microwave sensor detection data
  • Step S404 controlling the air-conditioning system to follow or avoid the position of the parent according to its own working conditions
  • the direction of the air supply is controlled to follow the parent
  • the direction of the air supply is controlled to avoid the position of the parent and the baby.
  • the target temperature can be a preset temperature preset by the parent.
  • the parent can enter a preset temperature into the air conditioning system in advance, and the air conditioning system saves the preset temperature.
  • the air conditioning system works in automatic mode
  • the preset temperature is used as the target temperature to adjust its working state, that is, when the air conditioner is controlled to enter the automatic working mode, it is judged whether there is a pre-storage temperature (preset temperature), and when there is a pre-storage temperature, the air-conditioning system is controlled to
  • the pre-storage temperature is a target temperature, and its operating conditions are adjusted according to the target temperature.
  • the wet wet area can also be dried quickly by blowing air to the wet wet area of the baby.
  • the humidity value of the baby bedding position detected by the humidity sensor is greater than the preset humidity value
  • the voice receiving unit analyzes the collected sound information to obtain that when the baby exits the crying state
  • the air conditioning system is controlled to enter the heating and air supply mode, and the air outlet is adjusted to the area where the humidity value is greater than the preset humidity value.
  • this application also discloses an air conditioning system control device.
  • the air conditioning system control device provided by the embodiment of the present invention.
  • the air-conditioning system control device described below and the air-conditioning system control method described above may refer to each other correspondingly.
  • the device may include:
  • the data collection unit 100 which corresponds to step S101 in the above method, is used to detect the status data of the baby area.
  • the status data includes but is not limited to: the humidity value of the baby bedding position detected by the humidity sensor, which is detected by the microwave sensor The movement frequency of the arriving baby;
  • the infant state judging unit 200 which corresponds to step S102 in the above method, is used to judge whether the state data meets any one of the preset conditions, and when the state data meets any one of the preset conditions When, output a trigger signal to the air conditioning system control unit;
  • the air-conditioning system control unit 300 which corresponds to steps S103-S105 in the above method, is used to control the air-conditioning lamp of the air-conditioning system to enter the first lighting mode after acquiring the trigger signal output by the infant state judgment unit to control the air-conditioning system Enter the air supply mode, obtain the position of the parent, and adjust the air supply direction of the air conditioning system based on the position of the parent until the parent is awakened by the microwave sensor.
  • the conditions in the preset condition group include but are not limited to:
  • the humidity value of the baby bedding position detected by the humidity sensor is greater than the preset humidity value
  • the action frequency of the baby detected by the microwave sensor is greater than the first preset frequency value.
  • the air conditioning system control unit is further configured to: when the humidity value of the baby's bedding position detected by the humidity sensor is greater than the preset humidity value, and it is detected that the parent is awakened, the air conditioning system is controlled to enter the control system. Thermal mode, and adjust the air outlet to the area where the humidity value is greater than the preset humidity value.
  • the air conditioning system control unit is also used for:
  • the action frequency of the baby detected by the microwave sensor is greater than the first preset frequency value
  • the action frequency of the baby is continuously calculated, and when the action frequency of the baby is less than the second preset frequency value, the control is performed.
  • the air-conditioning system is reset to the working state before the air-conditioning lamp enters the first lighting mode.
  • the above device further includes: a voice receiving unit for collecting indoor sound information, and sending the collected sound information to the air conditioning system control unit;
  • the air conditioning system control unit is also used for:
  • the voice receiving unit analyzes the collected sound information and finds that the baby is in a crying state, control the air-conditioning lamp of the air-conditioning system to enter the first lighting mode, and control the air-conditioning to enter the automatic working mode;
  • the location of the parent is detected based on the microwave sensor detection data, and the air-conditioning system is controlled to follow or avoid the location of the parent according to its own working conditions.
  • the air conditioning system control unit is also used to: when controlling the air conditioner to enter the automatic working mode, determine whether there is a pre-storage temperature, and when there is a pre-storage temperature, control the air-conditioning system to use the pre-storage temperature as the target temperature , Adjust its operating conditions according to the target temperature.
  • the air conditioning system control unit is also used for:
  • the humidity value of the baby's bedding position detected by the humidity sensor is greater than the preset humidity value
  • the voice receiving unit analyzes the collected sound information to obtain that when the baby exits the crying state
  • the air conditioning system is controlled to enter the heating mode and the air outlet is adjusted
  • the air-conditioning system is turned off or the air-conditioning system is restored to light up The previous working state of the air conditioner light.
  • the present application also discloses an air-conditioning system, and the air-conditioning system applies the air-conditioning system control device described in any one of the above-mentioned embodiments of the present application.
  • the air conditioning system is wirelessly connected to a humidity sensor, a microwave sensor, and a sound detection device to obtain humidity signals, microwave signals, and sound signals. Based on the humidity signals, microwave signals, and sound signals, perform the above-mentioned embodiments of the application. A series of judgment processing procedures.
  • the steps of the method or algorithm described in the embodiments disclosed in this document can be directly implemented by hardware, a software module executed by a processor, or a combination of the two.
  • the software module can be placed in random access memory (RAM), internal memory, read-only memory (ROM), electrically programmable ROM, electrically erasable programmable ROM, registers, hard disks, removable disks, CD-ROMs, or all areas in the technical field. Any other known storage media.

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Abstract

一种空调系统控制方法、装置和空调系统,方法包括:检测婴儿区域的状态数据(S101);判断状态数据是否满足预设条件组中的任意一个条件(S102);当状态数据满足预设条件时中的任意一个条件,控制空调系统的空调灯进入第一点亮模式(S103);控制空调进入送风模式(S104);获取家长位置,基于家长位置调节空调系统的送风风向,直至通过微波传感器检测到家长被唤醒(S105)。

Description

一种空调系统控制方法、装置和空调系统
本申请基于申请号为202010715746.6、申请日为2020年07月23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
本发明涉及空调设备技术领域,具体涉及一种空调系统控制方法、装置和空调系统。
背景技术
针对家中有婴儿的家庭而言,由于婴儿尚未形成固定的生物钟,婴儿的往往夜晚睡眠不稳定,经常会因为饥饿或者尿床(尿不湿满溢)而频繁翻身或啼哭,婴儿大声啼哭会打扰邻居正常休息。
空调系统是常规家庭卧室中必备的一种家电设备,但现有技术中,家用空调通常仅具有制冷、制热功能,功能单一。
发明内容
有鉴于此,本发明实施例提供一种空调系统控制方法和装置,通过空调系统达到婴儿啼哭之前唤醒家长的目的,丰富了空调功能,并且防止了婴儿夜间啼哭打扰邻居正常休息。
为实现上述目的,本发明实施例提供如下技术方案:
一种空调系统控制方法,包括:
检测婴儿区域的状态数据,所述状态数据包括但不限于:由湿度传感器检测到的婴儿铺垫位置的湿度值,由微波传感器检测到的婴儿的动作频率;
判断所述状态数据是否满足预设条件组中的任意一个条件;
当所述状态数据满足预设条件时中的任意一个条件时,控制空调系统的空调灯进入第一点亮模式;
控制空调进入送风模式;
获取家长位置;
基于所述家长位置调节空调系统的送风风向,直至通过所述微波传感器检测到家长被唤醒。
可选的,上述空调系统控制方法中,所述预设条件包括但不限于:
所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值;
所述微波传感器检测到的婴儿的动作频率大于第一预设频率值。
可选的,上述空调系统控制方法,还包括:
当所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值时,且检测到家长 被唤醒时,控制空调系统进入制热模式,并调节出风口对向所述湿度值大于预设湿度值的区域。
可选的,上述空调系统控制方法,还包括:
当所述微波传感器检测到的婴儿的动作频率大于第一预设频率值后,对所述婴儿的动作频率进行持续计算,当所述婴儿的动作频率小于第二预设频率值时,控制所述空调系统复位到空调灯进入第一点亮模式之前的工作状态。
可选的,上述空调系统控制方法,还包括:
当语音接收单元对采集到的声音信息进行分析得到婴儿处于啼哭状态时,控制空调系统的空调灯进入第一点亮模式,控制空调进入自动工作模式;
基于所述微波传感器检测数据检测家长位置,控制所述空调系统根据自身的工况控制送风风向随或避开家长位置。
可选的,上述空调系统控制方法,当控制空调进入自动工作模式时,判断是否存在预保存温度,当存在预保存温度时,控制空调系统以所述预保存温度为目标温度,根据所述目标温度调节自身工况。
可选的,上述空调系统控制方法,当湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值,且语音接收单元对采集到的声音信息进行分析得到婴儿退出啼哭状态时,还包括:
控制所述空调系统进入制热模式,并调节出风口对向所述湿度值大于预设湿度值的区域。
一种空调系统控制装置,包括:
数据采集单元,用于检测婴儿区域的状态数据,所述状态数据包括但不限于:由湿度传感器检测到的婴儿铺垫位置的湿度值,由微波传感器检测到的婴儿的动作频率;
婴儿状态判断单元,用于判断所述状态数据是否满足预设条件组中的任意一个条件,当所述状态数据满足预设条件时中的任意一个条件时,向所述空调系统控制单元输出触发信号;
空调系统控制单元,用于在获取到所述婴儿状态判断单元输出的触发信号后,控制空调系统的空调灯进入第一点亮模式,控制空调进入送风模式,获取家长位置,基于所述家长位置调节空调系统的送风风向,直至通过所述微波传感器检测到家长被唤醒。
可选的,上述空调系统控制装置中,婴儿状态判断单元在判断所述状态数据是否满足预设条件组中的任意一个条件时,所述预设条件组中的条件包括但不限于:
所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值;
所述微波传感器检测到的婴儿的动作频率大于第一预设频率值。
可选的,上述空调系统控制装置中,所述空调系统控制单元,还用于:当所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值,且检测到家长被唤醒时,控制空调系统进入制热模式,并调节出风口对向所述湿度值大于预设湿度值的区域。
可选的,上述空调系统控制装置中,所述空调系统控制单元还用于:
当所述微波传感器检测到的婴儿的动作频率大于第一预设频率值后,对所述婴儿的动作频率进行持续计算,当所述婴儿的动作频率小于第二预设频率值时,控制所述空调系统复位到空调灯进入第一点亮模式之前的工作状态。
一种空调系统,其特征在于,应用上述任意一项所述的空调系统控制装置。
基于上述技术方案,本发明实施例提供的上述方案,通过传感器检测婴儿状态,当婴儿出现频繁动作或者是婴儿出现尿床状况时,控制空调系统向家长送风,直至家长被唤醒,使得家长能够在婴儿啼哭之前安抚婴儿,防止了婴儿夜间啼哭,减少了婴儿因啼哭打扰邻居正常休息的情况,并且丰富了空调功能。
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空调系统控制方法的流程示意图;
图2为本申请另一实施例提供的一种空调系统控制方法的流程示意图;
图3为本申请另一实施例提供的一种空调系统控制方法的流程示意图;
图4为本申请另一实施例提供的一种空调系统控制方法的流程示意图;
图5为本申请实施例提供的一种空调系统控制装置的结构示意图。
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。
针对于现有技术中,夜间婴儿大声啼哭会打扰邻居和家长的正常休息的问题,本申请公开了一种空调系统控制方法,参见图1,该方法可以包括:
步骤S101:检测婴儿区域的状态数据;
本方案可以仅用于夜晚使用,及,通过光强数据对室内光强信息进行采集,当采集到的光强小于设定光强时,执行本方案。
在本申请实施例公开的技术方案中,所述状态数据包括但不限于:由湿度传感器检测到的婴儿铺垫位置的湿度值,由微波传感器检测到的婴儿的动作频率;
在本申请实施例公开的技术方案中,所述湿度传感器可以为一个或多个片状传感器, 在使用时,可以放置于婴儿睡觉位置处,通过这些湿度传感器检测婴儿是否出现尿床状况,当其中一个或多个湿度传感器检测到的湿度值大于预设湿度值时,表明婴儿已经尿床,众所周知的是,婴儿尿床以后必然会进入啼哭状态;
在本方案中,微波传感器在数据检测过程中会采集到脉搏数据,以及采集到婴儿的动作频率,由于婴儿脉搏与成人脉搏具有明显差别,因此可以通过脉搏数据可以检测目标对象是家长还是婴儿,并且,通过所述微波传感器还可以检测目标对象的动作频率和幅度,以及目标对象的位置信息,在本方案中,当通过所述微波传感器检测到婴儿动作频率过大时,表明婴儿处于即将清醒的状态,通常而言,婴儿夜晚清醒后,如果没有家长安慰必然会进入啼哭状态;
步骤S102:判断所述状态数据是否满足预设条件组中的任意一个条件;
在本方案中,通过预先设置多个预设条件,由这些预设条件形成预设条件组,通过这些预设条件对婴儿的状态进行预测,例如,这些条件可以包括:所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值;所述微波传感器检测到的婴儿的动作频率大于第一预设频率值,当所述状态数据是否满足预设条件组中的任意一个条件时,即可预测婴儿即将进入啼哭状态;
步骤S103:当所述状态数据满足预设条件时中的任意一个条件时,控制空调系统的空调灯进入第一点亮模式;
实际生活中,当家长发现婴儿醒来时,经常会陷入是否开灯的两难选择,开灯会刺激家长和婴儿的眼睛,而且婴儿睡意全无,更不易再次入睡;不开灯,家长找东西(奶瓶、尿不湿等)不方便,会磕碰床边而身体疼痛,申请人通过研究发现,空调灯完全能够在一定程度上起到照明的效果,且其输出的光强较低,不会对家长和婴儿的眼睛产生不适。
在本申请中,所述空调的空调灯可以有两种点亮模式,其中一种点亮模式为现有技术中常规的点亮模式,另一中点亮模式中,用可以设定所述空调灯的输出功率,进而达到设置其输出光强的目的,即,用户可以预先设置一种输出功率的模式为所述空调等的第一工作模式,当所述空调灯工作在所述第一点亮模式时,可以给用户提供柔和的灯光,从而防止因用户开启室内照明灯,因室内照明灯输出光强过大而造成的婴儿和家长眼睛不适的问题。
步骤S104:控制空调进入送风模式;
在本方案中,在婴儿进入正式啼哭状态之前,可以通过空调系统向家长送风的方式,唤醒家长。
步骤S105:获取家长位置,基于所述家长位置调节空调系统的送风风向,直至通过所述微波传感器检测到家长被唤醒;
在本方案中,可以通过所述微波传感器检测到家长位置,然后在基于家长位置确定空调系统的送风风向,使得所述空调系统送出的风直接落在家长身上,所述空调系统一直保持在向家长送风的状态,直至通过所述微波检测器或者是图像传感器检测到家长被唤醒, 在通过所述微波传感器检测家长是否被唤醒时,可以预先通过脉搏数据确定哪个对象为家长,在确定家长以后,检测家长的动作幅度和频率,当其动作幅度和频率大于预定值时,表明家长被唤醒。
在本方案中,通过传感器检测婴儿状态,当婴儿出现频繁动作或者是婴儿出现尿床状况时,控制空调系统向家长送风,直至家长被唤醒,使得家长能够在婴儿啼哭之前安抚婴儿,防止了婴儿夜间啼哭,减少了婴儿因啼哭打扰邻居正常休息的情况。
在本申请另一实施例公开的技术方案中,如果婴儿是因尿床而唤醒家长的话,家长醒后必然会移动婴儿到没有尿湿的位置,此时,可以通过空调系统对婴儿尿床区域进行烘干,此时,在本方案中,参见图2,当所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值,步骤S105:获取家长位置,基于所述家长位置调节空调系统的送风风向之后,上述方法还包括:
步骤S201:通过微波传感器实时监测家长状态;
在本方案中,通过所述微博传感器采集到的脉搏数据,判断哪个目标对象是家长,当家长确定以后,在监测所述家长的动作频率和幅度;
步骤S202:判断家长是否被唤醒;
通过家长的动作频率和幅度来判断家长是否被唤醒;
步骤S203:当检测到家长被唤醒时,控制空调系统进入制热模式或者是送风模式;
步骤S204:并调节出风口对向所述湿度值大于预设湿度值的区域;
从而快速烘干婴儿尿湿区域,并且,在本方案中,为了进一步加快烘干,可以直接调节为最大风速。
当检测到家长和婴儿的动作频率降低到第二预设值以下时,表明家长和婴儿均进入入睡状态,此时控制所述关空调系统的空调灯熄灭,当检测到所述湿度传感器检测到的湿度值小于预设湿度值时,控制空调系统恢复至点亮空调灯之前的工作状态。
在本申请另一实施例公开的技术方案中,如果是因为婴儿频繁动作而要唤醒家长时(家长还未被唤醒),实时对所述婴儿的动作频率进行持续计算,婴儿有可能是因为某些原因导致其动作频繁的,接下来婴儿也可能不会醒来,此时,在家长被唤醒之前,参见图3,上述方法还包括:
步骤S301:判断所述婴儿的动作频率是否小于第二预设频率值;
步骤S302:当所述婴儿的动作频率小于第二预设频率值时,控制所述空调系统复位到空调灯进入第一点亮模式之前的工作状态,且熄灭其空调灯;
当所述婴儿的动作频率小于第二预设频率值时,表明婴儿又进入了熟睡状态,此时,无需唤醒家长了,控制所述空调系统复位到空调灯进入第一点亮模式之前的工作状态,且熄灭其空调灯。
在夜间,婴儿也有可能在没有任何征兆的情况下直接进入啼哭状态,此时婴儿进入啼哭状态时,家长必然会起夜,在本方案中,为了为家长提供舒适的环境温度,参见图4, 上述方法还包括:
步骤S401:当语音接收单元对采集到的声音信息进行分析得到婴儿处于啼哭状态时;
步骤S402:控制空调系统的空调灯进入第一点亮模式,控制空调进入自动工作模式;
实际生活中,如果是在夏天加上天气炎热,家长夜晚哄婴儿入睡时,由于天气炎热,家长更易燥热,而冬天哄婴儿如实时,离开被子又家长有会觉得冷。针对于此,在本方案中,当检测到婴儿啼哭(通常而言,婴儿啼哭后家长必然会起床哄婴儿入睡)后,空调进入自动工作模式后,基于环境温度调节其进入制冷模式还是制热模式;
在本方案中,可以首先对室内环境温度进行检测,基于检测到的环境温度判断是否需要对室内温度进行调节,如果需要调节,控制空调系统进入自动工作模式,并执行后续动作,如果不需要调节,通过判断湿度传感器检测到的湿度值是否大于设定值,如果是,执行动作S204,以及其后续动作。
步骤S403:基于所述微波传感器检测数据检测家长位置;
步骤S404:控制所述空调系统根据自身的工况控制送风风向随或避开家长位置;
例如,当空调系统工作在制热模式时,控制送风风向跟随家长,当空调系统工作在制冷模式时,控制空调送风风向避开家长位置和婴儿位置。
在空调进入自动模式时,其目标温度可以是家长预先设置的一个预设温度,家长可以预先向空调系统录入一个预设温度,空调系统将该预设温度保存下来,当空调系统工作在自动模式时,以所述预设温度为目标温度调节自身工作状态,即,当控制空调进入自动工作模式时,判断是否存在预保存温度(预设温度),当存在预保存温度时,控制空调系统以所述预保存温度为目标温度,根据所述目标温度调节自身工况。
在本申请实施例中,还可以通过向所述婴儿尿湿区域送风的方式快速烘干尿湿区域,此时,当湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值,且通过语音接收单元对采集到的声音信息进行分析得到婴儿退出啼哭状态时,控制所述空调系统进入制热、送风模式,并调节出风口对向所述湿度值大于预设湿度值的区域。
对应于上述方法,本申请还公开了一种空调系统控制装置,装置中的各个单元的具体工作内容,请参见上述方法实施例的内容,下面对本发明实施例提供的空调系统控制装置进行描述,下文描述的空调系统控制装置与上文描述的空调系统控制方法可相互对应参照。
参见图5,该装置可以包括:
数据采集单元100,其与上述方法中步骤S101相对应,用于检测婴儿区域的状态数据,所述状态数据包括但不限于:由湿度传感器检测到的婴儿铺垫位置的湿度值,由微波传感器检测到的婴儿的动作频率;
婴儿状态判断单元200,其与上述方法中步骤S102相对应,用于判断所述状态数据是否满足预设条件组中的任意一个条件,当所述状态数据满足预设条件时中的任意一个条 件时,向所述空调系统控制单元输出触发信号;
空调系统控制单元300,其与上述方法中步骤S103-S105相对应,用于在获取到所述婴儿状态判断单元输出的触发信号后,控制空调系统的空调灯进入第一点亮模式,控制空调进入送风模式,获取家长位置,基于所述家长位置调节空调系统的送风风向,直至通过所述微波传感器检测到家长被唤醒。
与上述方法相对应,婴儿状态判断单元在判断所述状态数据是否满足预设条件组中的任意一个条件时,所述预设条件组中的条件包括但不限于:
所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值;
所述微波传感器检测到的婴儿的动作频率大于第一预设频率值。
与上述方法相对应,所述空调系统控制单元,还用于:当所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值,且检测到家长被唤醒时,控制空调系统进入制热模式,并调节出风口对向所述湿度值大于预设湿度值的区域。
与上述方法相对应,所述空调系统控制单元还用于:
当所述微波传感器检测到的婴儿的动作频率大于第一预设频率值后,对所述婴儿的动作频率进行持续计算,当所述婴儿的动作频率小于第二预设频率值时,控制所述空调系统复位到空调灯进入第一点亮模式之前的工作状态。
与上述方法相对应,上述装置中,还包括:语音接收单元,用于采集室内声音信息,将采集到的声音信息发送至所述空调系统控制单元;
所述空调系统控制单元还用于:
当语音接收单元对采集到的声音信息进行分析得到婴儿处于啼哭状态时,控制空调系统的空调灯进入第一点亮模式,控制空调进入自动工作模式;
基于所述微波传感器检测数据检测家长位置,控制所述空调系统根据自身的工况控制送风风向随或避开家长位置。
与上述方法相对应,所述空调系统控制单元还用于:控制空调进入自动工作模式时,判断是否存在预保存温度,当存在预保存温度时,控制空调系统以所述预保存温度为目标温度,根据所述目标温度调节自身工况。
与上述方法相对应,所述空调系统控制单元还用于:
湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值,且语音接收单元对采集到的声音信息进行分析得到婴儿退出啼哭状态时,控制所述空调系统进入制热模式,并调节出风口对向所述湿度值大于预设湿度值的区域,当检测到所述湿度传感器检测到的湿度值小于某一预设低值时,关闭所述空调系统或者是恢复空调系统至点亮所述空调灯之前的工作状态。
对应于上述装置,本申请还公开了一种空调系统,所述空调系统应用有本申请上述任意一项实施例所述的空调系统控制装置。
所述空调系统通过无线方式与湿度传感器、微波传感器以及声音检测装置相连,以获取湿度信号、微波信号、声音信号,基于所述湿度信号、微波信号、声音信号进行本申请上述实施例提到的一系列的判断处理过程。
为了描述的方便,描述以上系统时以功能分为各种模块分别描述。当然,在实施本发明时可以把各模块的功能在同一个或多个软件和/或硬件中实现。
本说明书中的各个实施例均采用递进的方式描述,各个实施例之间相同相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。尤其,对于系统或系统实施例而言,由于其基本相似于方法实施例,所以描述得比较简单,相关之处参见方法实施例的部分说明即可。以上所描述的系统及系统实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性劳动的情况下,即可以理解并实施。
专业人员还可以进一步意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、计算机软件或者二者的结合来实现,为了清楚地说明硬件和软件的可互换性,在上述说明中已经按照功能一般性地描述了各示例的组成及步骤。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本发明的范围。
结合本文中所公开的实施例描述的方法或算法的步骤可以直接用硬件、处理器执行的软件模块,或者二者的结合来实施。软件模块可以置于随机存储器(RAM)、内存、只读存储器(ROM)、电可编程ROM、电可擦除可编程ROM、寄存器、硬盘、可移动磁盘、CD-ROM、或技术领域内所公知的任意其它形式的存储介质中。
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。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。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发明的精神或范围的情况下,在其它实施例中实现。因此,本发明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. 一种空调系统控制方法,其特征在于,包括:
    检测婴儿区域的状态数据,所述状态数据包括但不限于:由湿度传感器检测到的婴儿铺垫位置的湿度值,由微波传感器检测到的婴儿的动作频率;
    判断所述状态数据是否满足预设条件组中的任意一个条件;
    当所述状态数据满足预设条件时中的任意一个条件时,控制空调系统的空调灯进入第一点亮模式;
    控制空调进入送风模式;
    获取家长位置;
    基于所述家长位置调节空调系统的送风风向,直至通过所述微波传感器检测到家长被唤醒。
  2. 根据权利要求1所述的空调系统控制方法,其特征在于,所述预设条件包括但不限于:
    所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值;
    所述微波传感器检测到的婴儿的动作频率大于第一预设频率值。
  3. 根据权利要求2所述的空调系统控制方法,其特征在于,还包括:
    当所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值时,且检测到家长被唤醒时,控制空调系统进入制热模式,并调节出风口对向所述湿度值大于预设湿度值的区域。
  4. 根据权利要求2所述的空调系统控制方法,其特征在于,还包括:
    当所述微波传感器检测到的婴儿的动作频率大于第一预设频率值后,对所述婴儿的动作频率进行持续计算,当所述婴儿的动作频率小于第二预设频率值时,控制所述空调系统复位到空调灯进入第一点亮模式之前的工作状态。
  5. 根据权利要求1所述的空调系统控制方法,其特征在于,还包括:
    当语音接收单元对采集到的声音信息进行分析得到婴儿处于啼哭状态时,控制空调系统的空调灯进入第一点亮模式,控制空调进入自动工作模式;
    基于所述微波传感器检测数据检测家长位置,控制所述空调系统根据自身的工况控制送风风向随或避开家长位置。
  6. 根据权利要求5所述的空调系统控制方法,其特征在于,当控制空调进入自动工作模式时,判断是否存在预保存温度,当存在预保存温度时,控制空调系统以所述预保存温度为目标温度,根据所述目标温度调节自身工况。
  7. 根据权利要求5所述的空调系统控制方法,其特征在于,当湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值,且语音接收单元对采集到的声音信息进行分析得到婴儿退出啼哭状态时,还包括:
    控制所述空调系统进入制热模式,并调节出风口对向所述湿度值大于预设湿度值的区 域。
  8. 一种空调系统控制装置,其特征在于,包括:
    数据采集单元,用于检测婴儿区域的状态数据,所述状态数据包括但不限于:由湿度传感器检测到的婴儿铺垫位置的湿度值,由微波传感器检测到的婴儿的动作频率;
    婴儿状态判断单元,用于判断所述状态数据是否满足预设条件组中的任意一个条件,当所述状态数据满足预设条件时中的任意一个条件时,向所述空调系统控制单元输出触发信号;
    空调系统控制单元,用于在获取到所述婴儿状态判断单元输出的触发信号后,控制空调系统的空调灯进入第一点亮模式,控制空调进入送风模式,获取家长位置,基于所述家长位置调节空调系统的送风风向,直至通过所述微波传感器检测到家长被唤醒。
  9. 根据权利要求8所述的空调系统控制装置,其特征在于,婴儿状态判断单元在判断所述状态数据是否满足预设条件组中的任意一个条件时,所述预设条件组中的条件包括但不限于:
    所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值;
    所述微波传感器检测到的婴儿的动作频率大于第一预设频率值。
  10. 根据权利要求9所述的空调系统控制装置,其特征在于,所述空调系统控制单元,还用于:当所述湿度传感器检测到的婴儿铺垫位置的湿度值大于预设湿度值,且检测到家长被唤醒时,控制空调系统进入制热模式,并调节出风口对向所述湿度值大于预设湿度值的区域。
  11. 根据权利要求9所述的空调系统控制装置,其特征在于,所述空调系统控制单元还用于:
    当所述微波传感器检测到的婴儿的动作频率大于第一预设频率值后,对所述婴儿的动作频率进行持续计算,当所述婴儿的动作频率小于第二预设频率值时,控制所述空调系统复位到空调灯进入第一点亮模式之前的工作状态。
  12. 一种空调系统,其特征在于,应用有权利要求8-11任意一项所述的空调系统控制装置。
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