CN110848939A - Family linkage system based on human body temperature work - Google Patents

Family linkage system based on human body temperature work Download PDF

Info

Publication number
CN110848939A
CN110848939A CN201911067122.1A CN201911067122A CN110848939A CN 110848939 A CN110848939 A CN 110848939A CN 201911067122 A CN201911067122 A CN 201911067122A CN 110848939 A CN110848939 A CN 110848939A
Authority
CN
China
Prior art keywords
body temperature
human body
linkage system
heating
system working
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201911067122.1A
Other languages
Chinese (zh)
Inventor
陈小平
林勇进
唐清生
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Foshan Viomi Electrical Technology Co Ltd
Original Assignee
Foshan Viomi Electrical Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Foshan Viomi Electrical Technology Co Ltd filed Critical Foshan Viomi Electrical Technology Co Ltd
Priority to CN201911067122.1A priority Critical patent/CN110848939A/en
Publication of CN110848939A publication Critical patent/CN110848939A/en
Pending legal-status Critical Current

Links

Images

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
    • F24F11/89Arrangement or mounting of control or safety devices
    • 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
    • F24F11/58Remote control using Internet communication
    • 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
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/10Temperature
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/20Humidity
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/30Velocity
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/50Air quality properties
    • F24F2110/64Airborne particle content
    • 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

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Physics & Mathematics (AREA)
  • Fuzzy Systems (AREA)
  • Mathematical Physics (AREA)
  • Human Computer Interaction (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

A family linkage system working based on the body temperature comprises a household appliance and external linkage equipment, wherein the household appliance is wirelessly connected with the external linkage equipment; the household appliance collects the body temperature data of the user in the current area, processes and works the body temperature data, and simultaneously transmits the body temperature data to the external linkage equipment. The home linkage system working based on the body temperature can collect body temperature data of the home linkage system, control the main body to work according to the body temperature data, and simultaneously share the body temperature data to external linkage equipment. The family linkage system can share data with other linkage equipment, and the utilization rate of resources is improved. Meanwhile, the household equipment has the functions of purification, heating and humidification, and reduces the occupied space and the operation difficulty. The household appliance can also adjust the human body comfort level of the user according to the comfort level model, so that the user is in the most comfortable environment.

Description

Family linkage system based on human body temperature work
Technical Field
The invention relates to the field of household equipment, in particular to a family linkage system working based on the body temperature of a human body.
Background
The existing household appliances work independently, the household appliances do not have the function of data sharing in linkage with other linkage appliances, for example, human body temperature data and information data collected by different household appliances are different, and different household appliances often have the same data collecting device, so that resource waste is caused.
Therefore, aiming at the defects of the prior art, the family linkage system based on the human body temperature work is necessary to solve the defects of the prior art.
Disclosure of Invention
The invention aims to avoid the defects of the prior art and provides a home linkage system working based on the body temperature of a human body. The family linkage system working based on the body temperature of the human body can share data with other linkage equipment, and the utilization rate of resources is improved.
The above object of the present invention is achieved by the following technical measures:
the household linkage system based on the human body temperature comprises a household appliance and external linkage equipment, wherein the household appliance is in wireless connection with the external linkage equipment.
The household appliance collects the body temperature data of the user in the current area, processes and works the body temperature data, and simultaneously transmits the body temperature data to the external linkage equipment.
Preferably, the household appliance is provided with an infrared detection module. The method is used for acquiring the body temperature data of the user in the current area.
Preferably, the household appliance is provided with an information collection processor, and the information collection processor is used for collecting the human body temperature data and controlling the household appliance to work according to the human body temperature data.
Preferably, the household appliance is provided with an information transceiver, and the information transceiver is wirelessly connected with the external linkage device.
And the information transceiver is used for receiving the human body temperature data of the infrared detection module and sending the human body temperature data by the external linkage equipment.
The infrared detection module is assembled on the household appliance; or
The infrared detection module is assembled on an external device.
Preferably, the household appliance is further provided with a purification assembly, and the purification assembly is connected with the information collection processor.
The purification assembly is used for purifying the airflow, so that the output airflow is output in the form of purified air.
Preferably, the household appliance is further provided with a heating component, and the heating component is connected with the information collection processor.
The heating assembly is used for heating the air flow, so that the output air flow is output in a warm air form.
Preferably, the household appliance is further provided with a humidifying component, and the humidifying component is connected with the information collection processor.
The humidifying assembly is used for humidifying the air flow, so that the output air flow is output in a humidifying mode.
Preferably, the household appliance is further provided with a driving component, and the driving component is connected with the information collection processor.
A drive assembly for generating an air flow.
Preferably, the household appliance is further provided with an air duct assembly for guiding air.
Preferably, the information transceiver is further wirelessly connected to the body-worn device.
Preferably, the human body wearing device is used for collecting the body temperature of the user in the current area in real time and obtaining the wearing signal.
Preferably, the household appliance is a household appliance capable of automatically controlling to work according to the current environmental condition.
Preferably, the household appliance is further provided with an AI control component capable of automatically controlling according to the current environmental condition, and the AI control component is connected with at least one of the purification component, the heating component, the air duct component, the driving component or the humidifying component, and is connected with the information collection processor and the information transceiver.
Preferably, the AI control module is provided with a sleep control device for determining whether the user is in a sleep state and starting a sleep mode.
Preferably, the sleep control device is connected to at least one of the heating unit, the driving unit, and the humidifying unit, and is connected to the information collection processor.
Preferably, the sleep control device is provided with a camera monitoring device for monitoring eye closure of a human body and a sleep controller, and the sleep controller is connected with at least one of the driving assembly, the humidifying assembly or the heating assembly, and is connected with the information collection processor and the camera monitoring device.
Preferably, the AI control module is provided with a customized intelligent air control device, and the customized intelligent air control device is used for receiving the instruction of the user and controlling the customized required air quantity blowing to the wind-receiving target.
Preferably, the customized intelligent wind control device is connected with the driving assembly and the information collection processor.
Preferably, the customized intelligent wind control device is provided with an input device, and the input device is used for receiving user instructions.
Preferably, the customized intelligent wind control device is provided with an intelligent wind controller, and the intelligent wind controller is respectively connected with the input device, the information collection processor and the driving assembly.
Preferably, the AI control module is provided with a purification control device, and the purification control device is used for judging whether a person exists in the current area, and starting the purification mode according to the air quality of the current area.
Preferably, the purge control means is connected to the information collecting processor and at least one of the drive unit and the purge unit.
Preferably, the purge control device is provided with a purge controller, and the purge controller is connected to the information collection processor and to at least one of the purge module and the drive module.
Preferably, the AI control module is provided with a heating control device, and the heating control device controls the heating mode through remote terminal operation.
Preferably, the heating control device is connected to the information collecting processor, and the signal transmitting/receiving device is connected to the heating unit.
Preferably, the heating control device is provided with a heating controller, and the heating controller is connected with the heating assembly.
And the heating controller is used for receiving a heating instruction sent by a user through the signal transceiver.
The user sends a heating instruction to the heating controller through the signal receiving and sending device, and the heating controller controls the heating assembly to heat through the current area according to the temperature signal and the received heating instruction.
Preferably, the AI control component is provided with a data acquisition device, and the data acquisition device is respectively connected with at least one of the intelligent air controller, the purification controller, the heating controller or the sleep controller.
Preferably, the data acquisition device is used for acquiring data of the current regional environment.
Preferably, the data acquisition device is provided with a temperature sensor, and the temperature sensor is used for detecting the temperature of the current area in real time and obtaining a temperature signal with a temperature value.
Preferably, the data acquisition device is provided with a humidity sensor, and the humidity sensor is used for detecting the humidity of the current area in real time and obtaining a humidity signal with a humidity value.
Preferably, the data acquisition device is provided with a wind speed sensor, and the wind speed sensor is used for detecting the speed of air in real time to obtain a wind speed signal.
Preferably, the data acquisition device is provided with a PM2.5 sensor, and the PM2.5 sensor is used for detecting the concentration of the particulate matters with equivalent diameters of less than or equal to 2.5 micrometers in the current area in real time and obtaining a PM2.5 signal with a PM2.5 value.
Preferably, the infrared detection module is an infrared sensor.
Preferably, above-mentioned human wearing equipment is bracelet or intelligent glasses.
The wireless connection is WIFI wireless connection or mobile network wireless connection.
Preferably, the external linkage device is at least one of an intelligent door lock, an intelligent curtain, an air conditioner, an air conditioning fan, a purifier, a fresh air machine, a refrigerator, a television, a humidifier or a dehumidifier.
Preferably, the information collection processor is an information collection processor that can be based on a comfort model.
Preferably, the household appliance is a fan heater, a purifier, a humidifier, a dehumidifier, a fresh air fan, a cooling fan, an air conditioner or a fan.
Preferably, the household appliance analyzes and blows air according to the body temperature data of the human body.
The household linkage system based on the human body temperature comprises a household appliance and external linkage equipment, wherein the household appliance is wirelessly connected with the external linkage equipment; the household appliance collects the body temperature data of the user in the current area, processes and works the body temperature data, and simultaneously transmits the body temperature data to the external linkage equipment. The home linkage system working based on the body temperature can collect body temperature data of the home linkage system, control working according to the body temperature data, and simultaneously share the body temperature data to external linkage equipment. The family linkage system working based on the body temperature of the human body can share data with other linkage equipment, and the utilization rate of resources is improved. Meanwhile, the household equipment has the functions of purification, heating and humidification, and reduces the occupied space and the operation difficulty. The household appliance can also adjust the human body comfort level of the user according to the comfort level model, so that the user is in the most comfortable environment.
Drawings
The invention is further illustrated by means of the attached drawings, the content of which is not in any way limiting.
Fig. 1 is a signal transmission schematic diagram of a home linkage system working based on human body temperature according to the present invention.
Fig. 2 is a signal transmission schematic diagram of a customized intelligent wind control device.
Fig. 3 is a signal transmission diagram of the purge control apparatus.
Fig. 4 is a signal transmission diagram of the heating control device.
Fig. 5 is a signal transmission diagram of the sleep control apparatus.
Detailed Description
The technical solution of the present invention is further illustrated by the following examples.
Example 1.
A home linkage system working based on the body temperature is shown in figure 1 and comprises a household appliance and external linkage equipment, wherein the household appliance is in wireless connection with the external linkage equipment.
The household appliance collects the body temperature data of the user in the current area, processes and works the body temperature data, and simultaneously transmits the body temperature data to the external linkage equipment.
The household appliance is provided with an infrared detection module. The method is used for acquiring the body temperature data of the user in the current area.
The household appliance is provided with an information collection processor which is used for collecting the body temperature data and controlling the household appliance to work according to the body temperature data.
The household appliance is provided with an information receiving and transmitting device, and the information receiving and transmitting device is in wireless connection with the external linkage equipment. And the information transceiver is used for receiving the human body temperature data of the infrared detection module and sending the human body temperature data by the external linkage equipment.
The information collection processor is connected with the information transceiver, the information transceiver is wirelessly connected with external linkage equipment, and the infrared detection module is connected with the information transceiver.
The infrared detection module collects body temperature data of a current area and sends the body temperature data to the information receiving and sending device, the information receiving and sending device receives the body temperature data and sends the body temperature data to the information collecting processor, the information collecting processor receives the body temperature data and processes the body temperature data to obtain a processing signal, the information collecting processor sends the processing signal to the main body, the main body receives the processing signal and works, and meanwhile the information receiving and sending device sends the body temperature data to external linkage equipment.
The infrared detection module can be assembled on household appliances and can also be assembled on external equipment. The infrared detection module of the present embodiment is mounted on an external device. Namely, the household appliance utilizes the human body temperature data acquired by the infrared detection module of the external equipment.
The household appliance is also provided with a purification component, and the purification component is connected with the information collection processor. The purification assembly is used for purifying the airflow, so that the output airflow is output in the form of purified air. The household appliance is also provided with a heating component, and the heating component is connected with the information collection processor; the heating assembly is used for heating the air flow, so that the output air flow is output in a warm air form. The household appliance is also provided with a humidifying component, and the humidifying component is connected with the information collection processor; the humidifying assembly is used for humidifying the air flow, so that the output air flow is output in a humidifying mode. The household appliance is also provided with a driving component, and the driving component is connected with the information collection processor; a drive assembly for generating an air flow. The household appliance is also provided with an air duct assembly for guiding air.
The infrared detection module collects body temperature data of a current area and sends the body temperature data to the information receiving and sending device, the information receiving and sending device receives the body temperature data and sends the body temperature data to the information collection processor, the information collection processor receives the body temperature data and processes the body temperature data to obtain a processing signal, the information collection processor sends the processing signal to the purification assembly correspondingly, the heating assembly, the driving assembly and the humidification assembly, the purification assembly, the heating assembly, the driving assembly and the humidification assembly correspondingly receive the processing signal respectively and work correspondingly, and meanwhile, the body temperature data of the information receiving and sending device is sent to external linkage equipment.
The information transceiver is also in wireless connection with the human body wearing equipment for collecting body temperature data. The human body wearing equipment is used for collecting the body temperature of a user in the current area in real time and obtaining a wearing signal.
The household appliances of the invention are a warm air blower, a purifier, a humidifier, a dehumidifier, a fresh air blower, a cooling fan, an air conditioner or a fan; the household appliance analyzes and supplies air according to the body temperature data. The household appliance in this embodiment is specifically a fan heater.
Human wearing equipment gathers user's wearing signal and sends to information transceiver, infrared detection module gathers current regional human body temperature data and sends to information transceiver, information transceiver receives human body temperature data and wears the signal and sends to the information collection treater, the information collection treater receives human body temperature data and wears the signal and handles according to the comfort level model and obtains the signal of handling, the information collection treater will handle the signal and correspond and send to the purification subassembly, warm subassembly of system, drive assembly and humidification subassembly, purify the subassembly, warm subassembly of system, drive assembly, humidification subassembly correspondence receives respectively the signal of handling and corresponds and carries out work, simultaneously information transceiver human body temperature data and wearing signal send to outside linkage equipment.
The human body wearing equipment is a bracelet or intelligent glasses. The human wearing equipment of this embodiment specifically is the bracelet.
The infrared detection module is an infrared sensor.
It should be noted that the air duct assembly, the purification assembly, the heating assembly, the driving assembly and the humidification assembly of the present invention are all common knowledge, and those skilled in the art should know the structure and principle thereof. The structures of the air duct assembly, the purification assembly, the heating assembly, the driving assembly and the humidifying assembly are not the key points of the invention, so that the structures are not described in detail.
The information collecting processor of the present invention can be a processor which can only realize data receiving and processing functions, and a processor having such functions is also widely used in industrial production, and the type and structure of the processor are not the main points of the present invention, and therefore, they will not be described in detail herein.
The information transceiver of the present invention, which can only realize data receiving and transmitting functions, can be used as the information transceiver of the present invention, and the information transceiver having such a function is also widely used in industrial production, and the type and structure of the information transceiver are not the main points of the present invention, and therefore, they will not be described in detail herein.
The wireless connection is WIFI wireless connection or mobile network wireless connection, and the specific connection is determined according to actual conditions. The wireless connection of this embodiment is a WIFI wireless connection.
The external linkage equipment is at least one of an intelligent door lock, an intelligent curtain, an air conditioner, an air conditioning fan, a purifier, a fresh air machine, a refrigerator, a television, a humidifier or a dehumidifier. The present embodiment is an air conditioner.
The invention is explained by taking the embodiment as an example, the bracelet acquires wearing signals of a user and transmits the wearing signals to the information transceiver, the infrared detection module acquires body temperature data of a current area and transmits the body temperature data to the information transceiver, the information transceiver receives the body temperature data and the wearing signals and transmits the body temperature data and the wearing signals to the information collection processor, the information collection processor receives the body temperature data and the wearing signals and processes the body temperature data and the wearing signals according to the comfort level model to obtain processed signals, the information collection processor correspondingly transmits the processed signals to the purification component, the heating component, the driving component and the humidification component, the purification component, the heating component, the driving component and the humidification component correspondingly receive the processed signals respectively and work correspondingly, and meanwhile, the body temperature data and the wearing signals of the information transceiver are transmitted to.
For example, when the body temperature data of the user received by the information collection processor is higher than a normal value, the user is in a fever state, and therefore the information collection processor carries out wind shielding processing on the user by the driving assembly. The information collection processor shares the human body temperature data to the air conditioner, the air conditioner receives the human body temperature data of the household equipment, so that the air conditioner knows the human body temperature data of the user, and if the body temperature of the user is high, namely the user is in a fever state, and the air conditioner can reduce the wind speed and adjust the temperature when the user is not suitable for blowing strong wind and low temperature.
Therefore, the household equipment and the external linkage equipment can realize data sharing, reduce the number of the acquisition devices and improve the utilization rate of the acquisition devices.
It should be noted that the external linkage device of the present invention is a function specifically connected to other household appliances, and such a function has been widely used in industrial production, and those skilled in the art should know the principle of the external linkage device, and the working principle of the external linkage device is not the focus of the present invention, so that it is not described herein one by one.
The home linkage system working based on the body temperature is provided with a household appliance and external linkage equipment, wherein the household appliance is wirelessly connected with the external linkage equipment; the household appliance collects the body temperature data of the user in the current area, processes and works the body temperature data, and simultaneously transmits the body temperature data to the external linkage equipment. The home linkage system working based on the body temperature can collect body temperature data of the home linkage system, control the main body to work according to the body temperature data, and simultaneously share the body temperature data to external linkage equipment. The family linkage system working based on the body temperature of the human body can share data with other linkage equipment, and the utilization rate of resources is improved. Meanwhile, the household equipment has the functions of purification, heating and humidification, and reduces the occupied space and the operation difficulty.
Example 2.
A family linkage system working based on human body temperature is shown in figures 2 to 5, other characteristics are the same as embodiment 1, and the difference is that: the household appliance can automatically control the work according to the current environment condition.
The household appliance is also provided with an AI control component which can realize automatic control according to the current environmental condition, and the AI control component is connected with at least one of the purification component, the heating component, the air channel component, the driving component or the humidifying component and is connected with the information collection processor and the information transceiver.
The AI control component of the invention is provided with a sleep control device which is used for judging whether a user is in a sleep state and starting a sleep mode. The sleep control device is connected with at least one of the heating assembly, the driving assembly or the humidifying assembly and is connected with the information collection processor. The sleep control device is provided with a camera monitoring device and a sleep controller for monitoring human eye closure, wherein the sleep controller is connected with at least one of the driving component, the humidifying component or the heating component and is connected with the information collection processor and the camera monitoring device.
The AI control assembly is provided with a data acquisition device which is respectively connected with at least one of the intelligent air controller, the purification controller, the heating controller or the sleep controller. The data acquisition device is used for acquiring data of the current area environment.
The data acquisition device is provided with a temperature sensor, and the temperature sensor is used for detecting the temperature of the current area in real time and obtaining a temperature signal with a temperature value.
The data acquisition device is provided with a humidity sensor, and the humidity sensor is used for detecting the humidity of the current area in real time and obtaining a humidity signal with a humidity value.
The data acquisition device is provided with a wind speed sensor, and the wind speed sensor is used for detecting the speed of air in real time to obtain a wind speed signal.
The data acquisition device is provided with a PM2.5 sensor, and the PM2.5 sensor is used for detecting the concentration of the particulate matters with equivalent diameters of less than or equal to 2.5 micrometers in the current area in real time and obtaining a PM2.5 signal with a PM2.5 value.
The remote terminal can be a mobile phone, a tablet computer or an APP, and the remote terminal of the embodiment is the mobile phone.
The infrared detection module can also collect human body signals, and the human body signals include the position of a human body, whether the human body is in the current area or not and human body action information.
When the camera monitoring equipment monitors that all people in the current area are continuously closed and the infrared signal of the information collection processor is that no action is caused by the human body in the current area within a time period of T minutes, the sleep controller judges that the people are in a sleep state and starts a sleep mode; or
When the camera monitoring equipment monitors that the eyes of the people in the current area are not continuously closed or the infrared signals of the information collection processor indicate that the people in the current area move within the time period of T minutes, the sleep controller judges that the people are in the non-sleep state and does not start the sleep mode.
In the sleep mode, the sleep controller controls the humidifying assembly to keep the current humidity at a humidity threshold value, the sleep controller controls the driving assembly to keep the speed of the air flow generated by the driving assembly to be less than or equal to a wind speed threshold value, and the sleep controller controls the heating assembly to keep the temperature of the current area at a temperature threshold value.
The temperature threshold is 15-26 ℃, the humidity threshold is 35-65%, and the wind speed threshold is 0.35 m/s. T is 15 minutes.
The present invention is explained in this embodiment, for example, when the camera monitoring device monitors that all people in the current area are continuously closed and the infrared signal of the information collecting processor is that no human body is moving in the current area within 15 minutes, it is determined as a sleep state and a sleep mode is started. The sleep mode is that the humidifying component is controlled by the sleep controller to keep the current humidity within the range of 35-65%, the driving component is controlled to keep the speed of the air flow generated by the driving component within 0.35m/s, and finally the heating component is controlled to keep the temperature of the current area within the range of 115-26 ℃. And when the infrared signal of the information collection processor indicates that the human body in the current area moves within 15 minutes, the sleep controller judges that the human body is in the non-sleep state and does not start the sleep mode.
It should be noted that the temperature threshold of the present invention is not limited to 15-26 ℃, and may be other temperatures; the humidity threshold is not limited to 35-65%, and other humidities can be adopted; the wind speed threshold is not limited to 0.35m/s, and other wind speeds can be adopted, and the specific implementation mode is determined according to the actual situation. T can be 15 minutes or other time, and the specific implementation mode is determined according to actual conditions.
The AI control assembly is provided with a customized intelligent air control device which is used for receiving the indication of a user and controlling the customized required air quantity blown to the wind-receiving target. The customized intelligent wind control device is connected with the driving assembly and the information collection processor. The customized intelligent wind control device is provided with an input device for receiving a user indication. The customized intelligent wind control device is provided with an intelligent wind controller, and the intelligent wind controller is connected with the input device, the information collection processor and the driving assembly respectively.
The input device receives the indication of the current user to obtain an indication signal and sends the indication signal to the intelligent air controller, the intelligent air controller monitors the spatial position of the current user in real time through infrared signals, and the intelligent air controller controls the driving assembly to increase or decrease the air volume when the shell rotates to the direction of the current user.
The present invention is described by taking this embodiment as an example, where the input device receives an instruction from a current user to obtain an instruction signal and sends the instruction signal to the intelligent wind controller, if the user requires to keep out wind, the intelligent wind controller obtains a spatial position of the current user through an infrared signal, and the intelligent wind controller drives the assembly to reduce airflow blowing toward the current user direction by quickly blowing, reducing a wind speed, or closing a hinge of the main air duct assembly when the housing rotates to the current user direction.
The AI control assembly is provided with a purification control device which is used for judging whether a person exists in the current area and starting a purification mode according to the air quality of the current area. The purification control device is connected with the information collection processor and at least one of the driving component or the purification component. The purification control device is provided with a purification controller, and the purification controller is connected with the information collection processor and is connected with at least one of the purification assembly or the driving assembly.
When the infrared signals sense that no human body moves in the current area and the PM2.5 value is larger than or equal to the purification threshold value, the purification controller starts a purification mode; or
When the infrared signals sense that human body movement exists in the current area or the PM2.5 value is smaller than the purification threshold value, the purification controller does not start the purification mode.
The purification threshold values comprise a first purification threshold value, a second purification threshold value, a third purification threshold value and a fourth purification threshold value.
When the purification threshold value is the first purification threshold value, the purification controller controls the driving assembly to generate micro-speed wind, and the purification controller controls the purification assembly to work. When the purification threshold value is the second purification threshold value, the purification controller controls the driving assembly to generate low-speed wind, and the purification controller controls the purification assembly to work. When the purification threshold value is the III purification threshold value, the purification controller controls the driving assembly to generate medium-speed wind, and the purification controller controls the purification assembly to work. When the purification threshold is the IV purification threshold, the purification controller controls the driving assembly to generate high wind and controls the purification assembly to work.
The first purification threshold was 35. mu.g/m3≤PM2.5≤75μg/m3II the purification threshold is 75 mu g/m3<PM2.5≤115μg/m3III the third decontamination threshold is 115. mu.g/m3<PM2.5≤150μg/m3The IV purge threshold is 150. mu.g/m3<PM2.5。
The present invention is illustrated by taking the embodiment as an example, when the infrared signal is that there is no human activity in the current region and the PM2.5 value is 135 μ g/m3In time, since the PM2.5 value is in the III purification threshold range, the purification controller controls the driving assembly to generate medium-speed wind, and the purification controller controls the purification assembly to work. When the purification is carried out for a period of time, the current PM2.5 value is reduced to 30 mu g/m3Namely, the purification controller controls the purification component to exit the purification mode. If the infrared signal indicates that the human body moves in the current area, the purification controller does not start the purification mode.
The AI control assembly is provided with a heating control device which controls the heating mode through a remote terminal. The heating control device is connected with the information collection processor, and the signal receiving and transmitting device is connected with the heating assembly. The heating control device is provided with a heating controller, and the heating controller is connected with the heating assembly. And the heating controller is used for receiving a heating instruction sent by a user through the signal transceiver.
The user sends a heating instruction to the heating controller through the signal receiving and sending device, and the heating controller controls the heating assembly to heat through the current area according to the temperature signal and the received heating instruction.
Before arriving at home, the user can send a heating instruction through the signal transceiver to enable the household equipment to start rapid heating, and after the user arrives at home, the indoor environment reaches a comfortable temperature.
The sleep controller, the intelligent air controller, the purification controller and the heating controller are all controllers capable of realizing data analysis and judgment functions, the controllers with the functions can be used as the controllers of the invention, the controllers with the functions can be widely applied to industrial production, and meanwhile, the types and the structures of the controllers are not the key points of the invention, so that the description is not repeated.
It should be noted that the temperature sensor, the humidity sensor, the infrared sensor, the PM2.5 sensor, the wind speed sensor and the camera device of the present invention are common knowledge, and those skilled in the art should know the usage method, model and operation principle thereof, and the present invention will not be described herein.
The home linkage system working based on the body temperature of a human body consists of a household appliance and external linkage equipment, wherein the household appliance is wirelessly connected with the external linkage equipment; the household appliance collects the body temperature data of the user in the current area, processes and works the body temperature data, and simultaneously transmits the body temperature data to the external linkage equipment. The home linkage system working based on the body temperature can collect body temperature data of the home linkage system, control the main body to work according to the body temperature data, and simultaneously share the body temperature data to external linkage equipment. The family linkage system working based on the body temperature of the human body can share data with other linkage equipment, and the utilization rate of resources is improved. Meanwhile, the household equipment has the functions of purification, heating and humidification, and reduces the occupied space and the operation difficulty.
Example 3.
A family linkage system based on human body temperature work has the same other characteristics as embodiment 1, and is different from the other characteristics in that: the information collection processor of the present invention is an information collection processor that can be based on a comfort model.
The comfort model according to the invention is as follows:
AT 1.07 × T +0.2 × e-0.65 × V-2.7 formula (i);
Figure BDA0002259726210000181
wherein AT is a somatosensory temperature value and the unit is; t is ambient temperature in units of; e is the vapor pressure in hPa; v is wind speed, and the unit is m/s; RH is relative humidity in%.
When the season is summer, AT is more than or equal to 13 ℃ and less than or equal to 18 ℃, the comfort level of the human body is very cold; when AT is more than 18 ℃ and less than or equal to 20 ℃, the comfort level of the human body is cold; when AT is more than 20 ℃ and less than or equal to 25 ℃, the comfort level of the human body is slightly cold; when AT is more than 25 ℃ and less than or equal to 27 ℃, the comfort level of the human body is cool; when AT is more than 27 ℃ and less than or equal to 30 ℃, the comfort level of the human body is heat; when AT is more than 30 ℃ and less than or equal to 33 ℃, the comfort level of the human body is very hot; when AT is more than 33 ℃ and less than or equal to 35 ℃, the comfort level of the human body is overheat; when AT is more than 35 ℃ and less than or equal to 37 ℃, the comfort level of the human body is too hot; when the temperature is lower than 37 ℃ and is AT, the comfort level of the human body is extremely hot.
When the season is winter and the temperature is not lower than 4 ℃ AT, the comfort level of the human body is very cold; when AT is more than 4 ℃ and less than or equal to 8 ℃, the comfort level of the human body is cold; when AT is more than 8 ℃ and less than or equal to 13 ℃, the comfort level of the human body is cool; when AT is more than 13 ℃ and less than or equal to 18 ℃, the comfort level of the human body is cool; when AT is more than 18 ℃ and less than or equal to 23 ℃, the comfort level of the human body is comfortable; when AT is more than 23 ℃ and less than or equal to 29 ℃, the comfort level of the human body is warm; when AT is more than 29 ℃ and less than or equal to 35 ℃, the comfort level of the human body is warm.
For example, in summer, the ambient temperature is 25 ℃, the relative humidity is 50%, and the optimum sensible temperature is set toAnd (3) calculating the wind speed of the position of the human body to be 1.86m/s by using the formula (I) and the formula (II) at 26 ℃. According to the model obtained by the known parameters and the early-stage flow field simulation, the distance from the human body to the fan is defined as A, and the wind speed of the air outlet is VFan blowerWhen A is less than or equal to 1.5m, i.e. VFan blower1.5V, when A is more than 1.5m and less than or equal to 3.0m, VFan blower2.0V, when A is more than 3.0m and less than or equal to 5.0m, VFan blower4.0V, when A > 5.0m, VFan blowerD. The distance between a person and the equipment is known to be 1.5m, and the wind speed of the air outlet is deduced to be 2.79 m/s. If the maximum outlet wind speed of the driving component is 5m/s, the information collection processor adjusts the driving component to enable the wind speed of the air outlet of the driving component to be 2.79 m/s.
For example, in winter, the temperature is less than 15 ℃, the relative humidity is 60%, and the distance from the person to the equipment is 1.5 m. The user opens the rapid heating mode of the equipment, and calculates the target heating temperature of the position of the human body to be 19.3 ℃ by using the formula (I) and the formula (II) according to the preset optimum body sensing temperature of 20.5 ℃ and the optimum wind speed of 0.2m/s of the position of the human body. And adjusting the heating component to perform heating in the maximum working rate state until the temperature of the position of the human body is 19.3 ℃, and deducing to obtain the air speed of the air outlet of 0.3m/s according to known parameters and a model obtained by early flow field simulation. If the maximum outlet wind speed of the driving component is 5m/s, the information collection processor adjusts the driving component to enable the wind speed of the air outlet of the driving component to be 0.3m/s because 0.3m/s is smaller than the maximum wind speed of the driving component.
The home linkage system working based on the body temperature of a human body consists of a household appliance and external linkage equipment, wherein the household appliance is wirelessly connected with the external linkage equipment; the household appliance collects the body temperature data of the user in the current area, processes and works the body temperature data, and simultaneously transmits the body temperature data to the external linkage equipment. The home linkage system working based on the body temperature can collect body temperature data of the home linkage system, control the main body to work according to the body temperature data, and simultaneously share the body temperature data to external linkage equipment. The family linkage system working based on the body temperature of the human body can share data with other linkage equipment, and the utilization rate of resources is improved. Meanwhile, the household equipment has the functions of purification, heating and humidification, and reduces the occupied space and the operation difficulty. The household appliance can also adjust the human body comfort level of the user according to the comfort level model, so that the user is in the most comfortable environment.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting the protection scope of the present invention, and although the present invention is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.

Claims (35)

1. The utility model provides a linkage system of family based on human body temperature work which characterized in that: the household appliance is wirelessly connected with the external linkage equipment;
the household appliance collects the body temperature data of the user in the current area, processes and works the body temperature data, and simultaneously transmits the body temperature data to the external linkage equipment.
2. The home linkage system working based on human body temperature according to claim 1, characterized in that: the household appliance is provided with an infrared detection module. The method is used for acquiring the body temperature data of the user in the current area.
3. The home linkage system working based on human body temperature according to claim 1, characterized in that: the household appliance is provided with an information collection processor which is used for collecting body temperature data and controlling the household appliance to work according to the body temperature data.
4. The home linkage system working based on human body temperature according to claim 1, characterized in that: the household appliance is provided with an information transceiver which is wirelessly connected with external linkage equipment,
and the information transceiver is used for receiving the human body temperature data of the infrared detection module and sending the human body temperature data by the external linkage equipment.
5. The home linkage system working based on human body temperature according to claim 2, characterized in that: the infrared detection module is assembled on the household appliance; or
The infrared detection module is assembled on an external device.
6. The home linkage system working based on human body temperature according to claim 3, characterized in that: the household appliance is also provided with a purification component, and the purification component is connected with the information collection processor;
the purification assembly is used for purifying the airflow, so that the output airflow is output in the form of purified air.
7. The home linkage system working based on human body temperature according to claim 3, characterized in that: the household appliance is also provided with a heating component, and the heating component is connected with the information collection processor;
the heating assembly is used for heating the air flow, so that the output air flow is output in a warm air form.
8. The home linkage system working based on human body temperature according to claim 3, characterized in that: the household appliance is also provided with a humidifying component, and the humidifying component is connected with the information collection processor;
the humidifying assembly is used for humidifying the air flow, so that the output air flow is output in a humidifying mode.
9. The home linkage system working based on human body temperature according to claim 3, characterized in that: the household appliance is also provided with a driving component, and the driving component is connected with the information collection processor;
a drive assembly for generating an air flow.
10. The home linkage system working based on human body temperature according to claim 3, characterized in that: the household appliance is also provided with an air duct assembly for guiding air.
11. The home linkage system working based on human body temperature according to claim 4, characterized in that: the information receiving and transmitting device is also in wireless connection with the human body wearing equipment;
the human body wearing equipment is used for collecting the body temperature of a user in the current area in real time and obtaining a wearing signal.
12. The home linkage system working based on human body temperature according to claim 1, characterized in that: the household appliance can automatically control the work according to the current environment condition.
13. The home linkage system working based on human body temperature according to claim 3, characterized in that: the household appliance is also provided with an AI control component which can realize automatic control according to the current environmental condition, and the AI control component is connected with at least one of the purification component, the heating component, the air channel component, the driving component or the humidifying component and is connected with the information collection processor and the information transceiver.
14. The home linkage system working based on human body temperature of claim 13, wherein: the AI control component is provided with a sleep control device which is used for judging whether a user is in a sleep state and starting a sleep mode.
15. The home linkage system working based on human body temperature of claim 14, wherein: the sleep control device is connected with at least one of the heating assembly, the driving assembly or the humidifying assembly and is connected with the information collection processor.
16. The home linkage system working based on human body temperature of claim 15, wherein: the sleep control device is provided with a camera monitoring device and a sleep controller for monitoring human eye closure, wherein the sleep controller is connected with at least one of the driving component, the humidifying component or the heating component and is connected with the information collection processor and the camera monitoring device.
17. The home linkage system working based on human body temperature of claim 13, wherein: the AI control assembly is provided with a customized intelligent air control device which is used for receiving the indication of a user and controlling the customized required air quantity blown to the wind-receiving target.
18. The home linkage system working based on human body temperature of claim 17, wherein: and the customized intelligent air control device is connected with the driving assembly and the information collection processor.
19. The home linkage system working based on human body temperature of claim 17, wherein: the customized intelligent wind control device is provided with an input device, and the input device is used for receiving user instructions.
20. The body temperature based home linkage system of claim 19, wherein: the intelligent air controller is connected with the input device, the information collection processor and the driving assembly respectively.
21. The home linkage system working based on human body temperature of claim 13, wherein: the AI control assembly is provided with a purification control device which is used for judging whether a person exists in the current area and starting a purification mode according to the air quality of the current area.
22. The home linkage system working based on human body temperature of claim 21, wherein: the purification control device is connected with the information collection processor and at least one of the driving component or the purification component.
23. The home linkage system working based on human body temperature of claim 13, wherein: the AI control assembly is provided with a heating control device, and the heating control device controls the heating mode through a remote terminal.
24. The home linkage system working based on human body temperature of claim 23, wherein: the heating control device is connected with the information collection processor, and the signal receiving and transmitting device is connected with the heating assembly.
25. The body temperature based home linkage system of claim 24, wherein: the heating control device is provided with a heating controller, and the heating controller is connected with the heating assembly;
the heating controller is used for receiving a heating instruction sent by a user through the signal receiving and sending device;
the user sends a heating instruction to the heating controller through the signal receiving and sending device, and the heating controller controls the heating assembly to heat through the current area according to the temperature signal and the received heating instruction.
26. The home linkage system working based on human body temperature of claim 13, wherein: the AI control component is provided with a data acquisition device which is respectively connected with at least one of the intelligent air controller, the purification controller, the heating controller or the sleep controller;
the data acquisition device is used for acquiring data of the current area environment.
27. The body temperature based home linkage system of claim 26, wherein: the data acquisition device is provided with a temperature sensor, and the temperature sensor is used for detecting the temperature of the current area in real time and obtaining a temperature signal with a temperature value.
28. The body temperature based home linkage system of claim 26, wherein: the data acquisition device is provided with a humidity sensor, and the humidity sensor is used for detecting the humidity of the current area in real time and obtaining a humidity signal with a humidity value.
29. The body temperature based home linkage system of claim 26, wherein: the data acquisition device is provided with a wind speed sensor, and the wind speed sensor is used for detecting the speed of air in real time to obtain a wind speed signal.
30. The body temperature based home linkage system of claim 26, wherein: the data acquisition device is provided with a PM2.5 sensor, and the PM2.5 sensor is used for detecting the concentration of particulate matters with equivalent diameters of less than or equal to 2.5 micrometers in a current area in real time and obtaining a PM2.5 signal with a PM2.5 value.
31. The home linkage system working based on human body temperature of claim 11, wherein: the human wearing equipment is a bracelet or intelligent glasses.
32. The home linkage system working based on human body temperature according to claim 1, characterized in that: the wireless connection is WIFI wireless connection or mobile network wireless connection.
33. The home linkage system working based on human body temperature according to claim 1, characterized in that: the external linkage equipment is at least one of an intelligent door lock, an intelligent curtain, an air conditioner, an air conditioning fan, a purifier, a fresh air machine, a refrigerator, a television, a humidifier or a dehumidifier.
34. The home linkage system working based on human body temperature according to claim 3, characterized in that: the information gathering processor is an information gathering processor that can be based on a comfort model.
35. The home linkage system working based on human body temperature according to claim 1, characterized in that: the household appliances are warm air blowers, purifiers, humidifiers, dehumidifiers, fresh air blowers, cooling fans, air conditioners or fans;
the household appliance analyzes and supplies air according to the body temperature data.
CN201911067122.1A 2019-11-04 2019-11-04 Family linkage system based on human body temperature work Pending CN110848939A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201911067122.1A CN110848939A (en) 2019-11-04 2019-11-04 Family linkage system based on human body temperature work

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201911067122.1A CN110848939A (en) 2019-11-04 2019-11-04 Family linkage system based on human body temperature work

Publications (1)

Publication Number Publication Date
CN110848939A true CN110848939A (en) 2020-02-28

Family

ID=69598861

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201911067122.1A Pending CN110848939A (en) 2019-11-04 2019-11-04 Family linkage system based on human body temperature work

Country Status (1)

Country Link
CN (1) CN110848939A (en)

Similar Documents

Publication Publication Date Title
CN110864436A (en) Intelligent household appliance system working in combination
CN211293657U (en) Household appliance and human body wearing equipment interconnection system
CN110836508A (en) Linkage system of household appliance and large-screen display equipment
CN110848941A (en) Household appliance and air purification detection equipment interconnection system
CN211454258U (en) Household appliance system with linked temperature adjustment
CN211628027U (en) Temperature data sharing household equipment
CN211293655U (en) Intelligent household appliance system combining temperature regulation
CN110939598B (en) Method for supplying air according to crowd distribution and fan
CN211625620U (en) Family linkage system based on human body temperature work
CN110865546A (en) Intelligent household appliance system combining temperature regulation
CN110865551A (en) Household appliance and crowd distribution detection equipment interconnection system
CN110850727A (en) Household appliance and environment detection equipment interconnection system
CN110848939A (en) Family linkage system based on human body temperature work
CN111102225A (en) Fan with air-out function is concentrated to crowd
CN110864437A (en) Household appliance system with linkage humidity adjustment function
CN110864434A (en) Intelligent household appliance system combined with humidity adjustment
CN110925981A (en) Fan with function of identifying people group distribution
CN110864430A (en) Multi-functional air-out equipment with environmental data gathers function
CN110989368A (en) Intelligent household appliance system combining indoor cleaning
CN110865548A (en) Household appliance system with linkage function of indoor cleanliness adjustment
CN110865614A (en) Intelligent household appliance system combined with air flow treatment
CN110836507A (en) Linkage system of household appliance and large-screen display equipment
CN211264164U (en) Household appliance and human body space position detection equipment interconnection system
CN211625621U (en) Humidity data sharing household equipment
CN110848942A (en) Humidity data sharing household equipment

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination