CN106524393A - Human body temperature induction control system and controller - Google Patents
Human body temperature induction control system and controller Download PDFInfo
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- CN106524393A CN106524393A CN201610863372.6A CN201610863372A CN106524393A CN 106524393 A CN106524393 A CN 106524393A CN 201610863372 A CN201610863372 A CN 201610863372A CN 106524393 A CN106524393 A CN 106524393A
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/30—Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2110/00—Control inputs relating to air properties
- F24F2110/10—Temperature
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/50—Control or safety arrangements characterised by user interfaces or communication
- F24F11/56—Remote control
- F24F11/58—Remote control using Internet communication
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Abstract
Description
技术领域technical field
本发明涉及智能家居控制领域,特别是一种感应人体温度控制系统,通过感应人体温度和环境温度之间的差值来调节环境温度,提升家居环境的舒适度。The invention relates to the field of smart home control, in particular to a human body temperature sensing control system, which adjusts the ambient temperature by sensing the difference between the human body temperature and the ambient temperature, and improves the comfort of the home environment.
背景技术Background technique
炎炎夏天,空调成为了人们避暑降温的最佳家电,但是空调在给人已凉爽的温度同时,如果温度调节不合适,特别是晚上睡眠状态下,儿童容易踢掉被子暴露于空调房内,由于长时间的低温导致感冒等疾病发生。In the hot summer, air conditioners have become the best home appliances for people to avoid the heat and cool down. However, while the air conditioner provides a cool temperature, if the temperature adjustment is not appropriate, especially when sleeping at night, children are likely to kick off the quilt and be exposed to the air-conditioned room. Prolonged low temperature causes diseases such as colds to occur.
发明内容Contents of the invention
本发明首先针对现有技术中存在的技术问题提出了一种感应人体温度控制系统,能够实现在无人干预的情况下,根据人体的适应温度来自动调节空调温度的问题。The present invention first proposes an induction human body temperature control system for the technical problems existing in the prior art, which can automatically adjust the temperature of the air conditioner according to the adaptive temperature of the human body without human intervention.
为此,本发明采用以下技术方案:For this reason, the present invention adopts following technical scheme:
一种感应人体温度控制系统,包括:人体温度感应装置、信号处理装置以及红外遥控装置,所述人体温度感应装置连接至所述信号处理装置,所述信号处理装置连接至所述红外遥控装置;A human body temperature sensing control system, comprising: a human body temperature sensing device, a signal processing device and an infrared remote control device, the human body temperature sensing device is connected to the signal processing device, and the signal processing device is connected to the infrared remote control device;
所述人体温度感应装置被配置为以非接触的方式检测人体体温和环境温度,并输出电信号;The human body temperature sensing device is configured to detect human body temperature and ambient temperature in a non-contact manner, and output an electrical signal;
所述信号处理装置被配置为接收并处理所述人体温度感应装置输出的所述电信号,判断出所述人体体温与所述环境温度之间的差值,当所述差值超过预设值时,输出控制信号;The signal processing device is configured to receive and process the electrical signal output by the human body temperature sensing device to determine the difference between the body temperature of the human body and the ambient temperature, and when the difference exceeds a preset value When , output the control signal;
所述红外遥控装置被配置为处理来自所述信号处理装置输出的所述控制信号,输出红外遥控信号控制对空调等进行温度调节,进而减小所述人体温度与所述环境温度之间的差值,提高家庭环境温度的舒适度。The infrared remote control device is configured to process the control signal output from the signal processing device, and output an infrared remote control signal to control the temperature adjustment of the air conditioner, thereby reducing the difference between the human body temperature and the ambient temperature Value, improve the comfort of the home environment temperature.
进一步地,所述人体温度感应装置采用红外阵列传感器,所述红外阵列传感器包括红外透镜、热电堆阵列传感器和模数转换电路;Further, the human body temperature sensing device adopts an infrared array sensor, and the infrared array sensor includes an infrared lens, a thermopile array sensor, and an analog-to-digital conversion circuit;
所述红外透镜包括多个微透镜,用于将环境红外热辐射和人体红外热辐射汇聚到所述热电堆阵列传感器上,所述热电堆阵列传感器包括多个热电堆传感器,所述多个热电堆传感器分别对应所述多个微透镜,并检测来自所对应的微透镜的红外热辐射,所述热电堆阵列传感器连接所述模数转换电路,所述模数转换电路将所述热电堆阵列传感器输出的电信号值进行数字化处理,并通过标准接口输出温度分布电信号。The infrared lens includes a plurality of microlenses, which are used to converge the infrared heat radiation of the environment and the infrared heat radiation of the human body onto the thermopile array sensor, and the thermopile array sensor includes a plurality of thermopile sensors, and the plurality of thermopile The stack sensors respectively correspond to the plurality of microlenses, and detect infrared heat radiation from the corresponding microlenses, the thermopile array sensor is connected to the analog-to-digital conversion circuit, and the analog-to-digital conversion circuit converts the thermopile array The electrical signal value output by the sensor is digitized, and the temperature distribution electrical signal is output through a standard interface.
进一步地,所述信号处理装置用于将所述的人体温度感应装置的输出所述电信号进行运算处理,根据热电堆阵列传感器输出的温度分布值来判断所述人体温度与所述环境温度之间的差值,将所述差值与预设值进行对比,一旦超过预设值则输出温度控制信号给所述红外遥控装置。Further, the signal processing device is used for computing and processing the electrical signal output by the human body temperature sensing device, and judging the difference between the human body temperature and the ambient temperature according to the temperature distribution value output by the thermopile array sensor. The difference between them is compared with the preset value, and once the preset value is exceeded, a temperature control signal is output to the infrared remote control device.
进一步地,所述红外遥控装置被配置为具有红外遥控编码学习功能和通过无线或有线通信下载红外遥控编码功能;以及Further, the infrared remote control device is configured to have an infrared remote control code learning function and a function of downloading an infrared remote control code through wireless or wired communication; and
根据所述信号处理装置输出的控制信号判断出温度上调或下调,进而通过红外发射装置发送红外遥控信号,控制空调温度上调或下调。According to the control signal output by the signal processing device, it is judged that the temperature is adjusted up or down, and then the infrared remote control signal is sent through the infrared emitting device to control the temperature up or down of the air conditioner.
本发明所要解决的另一个技术问题是提供一种感应人体温度控制器,能够实现在无人干预的情况下,根据人体的适应温度来自动调节空调温度的问题。Another technical problem to be solved by the present invention is to provide an inductive human body temperature controller, which can automatically adjust the temperature of the air conditioner according to the adaptive temperature of the human body without human intervention.
为此,本发明采用以下技术方案:一种感应人体温度控制器,包含人体温度感应装置、信号处理装置、红外遥控装置以及无线通信装置;To this end, the present invention adopts the following technical solutions: a human body temperature sensing controller, including a human body temperature sensing device, a signal processing device, an infrared remote control device and a wireless communication device;
所述控制器应用于嵌入式墙面安装;以及The controller is applied to a recessed wall installation; and
所述控制器安装于室内通过检测人体体温和环境温度之间的温差来调整空调等设备的输出温度;以及The controller is installed indoors to adjust the output temperature of air conditioners and other equipment by detecting the temperature difference between human body temperature and ambient temperature; and
通过所述无线通信装置发送所述控制信号关联其他温控设备;sending the control signal through the wireless communication device to associate with other temperature control equipment;
所述人体温度感应装置连接至所述信号处理装置,所述信号处理装置连接至所述红外遥控装置;The human body temperature sensing device is connected to the signal processing device, and the signal processing device is connected to the infrared remote control device;
所述人体温度感应装置被配置为以非接触的方式检测人体体温和环境温度,并输出电信号;The human body temperature sensing device is configured to detect human body temperature and ambient temperature in a non-contact manner, and output an electrical signal;
所述信号处理装置被配置为接收并处理所述人体温度感应装置输出的所述电信号,判断出所述人体体温与所述环境温度之间的差值,当所述差值超过预设值时,输出控制信号;The signal processing device is configured to receive and process the electrical signal output by the human body temperature sensing device to determine the difference between the body temperature of the human body and the ambient temperature, and when the difference exceeds a preset value When , output the control signal;
所述红外遥控装置被配置为处理来自所述信号处理装置输出的所述控制信号,输出红外遥控信号控制对空调等进行温度调节,进而减小所述人体温度与所述环境温度之间的差值,提高家庭环境温度的舒适度。The infrared remote control device is configured to process the control signal output from the signal processing device, and output an infrared remote control signal to control the temperature adjustment of the air conditioner, thereby reducing the difference between the human body temperature and the ambient temperature Value, improve the comfort of the home environment temperature.
本发明的有益效果是:本发明的一种感应人体温度控制系统,通过感应人体温度和环境温度之间的差值来调节环境温度,解决了在无人干预的情况下,根据人体的适应温度来自动调节空调温度的问题,从而提升家居环境的舒适度。The beneficial effects of the present invention are: a human body temperature sensing control system of the present invention adjusts the ambient temperature by sensing the difference between the human body temperature and the ambient temperature, and solves the problem of adjusting the temperature according to the human body's adaptive temperature without human intervention. To automatically adjust the temperature of the air conditioner, thereby improving the comfort of the home environment.
附图说明Description of drawings
图1为本发明的一种人体感应控制系统示意图。Fig. 1 is a schematic diagram of a human body induction control system of the present invention.
图2为本发明的红外阵列传感器系统图。Fig. 2 is a system diagram of the infrared array sensor of the present invention.
图3为本发明的红外阵列传感器温度分布图。Fig. 3 is a temperature distribution diagram of the infrared array sensor of the present invention.
图4为本发明的一种人体感应控制器的控制流程图。Fig. 4 is a control flow chart of a human body induction controller of the present invention.
具体实施方式detailed description
实施例1,一种人体感应控制系统,参照附图1-3。Embodiment 1, a human body induction control system, refer to accompanying drawings 1-3.
按照图1,一种感应人体温度控制系统,包括所述人体温度感应装置11、所述信号处理装置12以及所述红外遥控装置13。所述人体温度感应装置11以非接触的方式检测所述人体14体温和所述环境16温度,并输出所述电信号。所述信号处理装置12接收并处理所述人体温度感应装置11输出的所述电信号,判断出所述人体14体温与所述环境16温度之间的差值,当所述差值超过预设值时,输出所述控制信号。According to FIG. 1 , a human body temperature sensing control system includes the human body temperature sensing device 11 , the signal processing device 12 and the infrared remote control device 13 . The human body temperature sensing device 11 detects the body temperature of the human body 14 and the temperature of the environment 16 in a non-contact manner, and outputs the electrical signal. The signal processing device 12 receives and processes the electrical signal output by the human body temperature sensing device 11, and determines the difference between the body temperature of the human body 14 and the temperature of the environment 16. When the difference exceeds a preset value, output the control signal.
所述红外遥控装置13处理来自所述信号处理装置输出的所述控制信号,输出红外遥控信号对所述空调15等进行温度调节,进而减小所述人体温度与所述环境温度之间的差值,提高家庭环境温度的舒适度。The infrared remote control device 13 processes the control signal output from the signal processing device, outputs an infrared remote control signal to adjust the temperature of the air conditioner 15, etc., and then reduces the difference between the human body temperature and the ambient temperature Value, improve the comfort of the home environment temperature.
进一步的,所述红外遥控装置13被配置为具有红外遥控编码学习功能和通过无线或有线通信下载红外遥控编码功能,以及根据所述信号处理装置12输出的控制信号判断出温度上调或下调,进而通过红外发射装置发送红外遥控信号,控制空调温度上调或下调。Further, the infrared remote control device 13 is configured to have an infrared remote control code learning function and a function of downloading an infrared remote control code through wireless or wired communication, and judge whether the temperature is adjusted up or down according to the control signal output by the signal processing device 12, and then The infrared remote control signal is sent through the infrared emitting device to control the temperature of the air conditioner to be adjusted up or down.
按照图2,所述红外陈列传感器11包括红外透镜21、热电堆阵列传感器22和模数转换电路23。所述红外透镜21由多个所述微透镜211组成,分别将所述环境16红外热辐射和所述人体14红外热辐射汇聚到所述热电堆阵列传感器22上,所述热电堆阵列传感器22由多个所述热电堆传感器221组成,不同的所述热电堆传感器221检测来自所述微透镜211的红外热辐射,不同的所述红外热辐射下所述热电堆传感器221输出的电信号值不同,所述模数转换电路23将所述热电堆传感器221输出的所述电信号值进行数字化处理,并通过标准接口输出温度分布电信号。According to FIG. 2 , the infrared array sensor 11 includes an infrared lens 21 , a thermopile array sensor 22 and an analog-to-digital conversion circuit 23 . The infrared lens 21 is composed of a plurality of microlenses 211, which respectively converge the infrared thermal radiation of the environment 16 and the infrared thermal radiation of the human body 14 onto the thermopile array sensor 22, and the thermopile array sensor 22 Composed of a plurality of thermopile sensors 221, different thermopile sensors 221 detect infrared thermal radiation from the microlens 211, and the electrical signal values output by the thermopile sensors 221 under different infrared thermal radiation Differently, the analog-to-digital conversion circuit 23 digitizes the electrical signal value output by the thermopile sensor 221 , and outputs an electrical signal of temperature distribution through a standard interface.
按照图3,所述温度分布图31显示了所述红外阵列传感器11检测到所述人体14和所述环境16温度的输出电信号值,不同灰度代表了不同的温度值,从而判断所述人体14和所述环境16之间的温差。According to FIG. 3 , the temperature distribution diagram 31 shows the output electrical signal values of the temperature of the human body 14 and the environment 16 detected by the infrared array sensor 11, and different gray scales represent different temperature values, thereby judging the The temperature difference between the human body 14 and the environment 16 .
实施例2,参照附图4。Embodiment 2, with reference to accompanying drawing 4.
按照图4,具体的实施例,所述一种感应人体温度控制器43,包含所述人体温度感应装置41、所述信号处理装置44、所述红外遥控装置47以及所述无线通信装置46;所述控制器43应用于嵌入式墙面安装;以及所述控制器43安装于室内通过检测人体14体温和所述环境16温度之间的温差来调整空调等设备的输出温度;以及通过所述无线通信装置46发送所述控制信号关联其他温控设备。According to FIG. 4 , a specific embodiment, the human body temperature sensing controller 43 includes the human body temperature sensing device 41, the signal processing device 44, the infrared remote control device 47 and the wireless communication device 46; The controller 43 is applied to the embedded wall installation; and the controller 43 is installed indoors by detecting the temperature difference between the body temperature of the human body 14 and the temperature of the environment 16 to adjust the output temperature of equipment such as air conditioners; and through the The wireless communication device 46 sends the control signal to associate with other temperature control devices.
本实施例的其他实施方式与实施例1相同。Other implementation modes of this embodiment are the same as Embodiment 1.
以上所述的具体实施方式对本发明的技术方案和有益效果进行了详细说明,应理解的是以上所述仅为本发明的最优选实施例,并不用于限制本发明,凡在本发明的原则范围内所做的任何修改、补充和等同替换等,均应包含在本发明的保护范围之内。The above-mentioned specific embodiments have described the technical solutions and beneficial effects of the present invention in detail. It should be understood that the above-mentioned are only the most preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, supplements and equivalent replacements made within the scope shall be included in the protection scope of the present invention.
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