CN211625617U - Multifunctional air outlet equipment with infrared data acquisition function - Google Patents
Multifunctional air outlet equipment with infrared data acquisition function Download PDFInfo
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- CN211625617U CN211625617U CN201921886405.4U CN201921886405U CN211625617U CN 211625617 U CN211625617 U CN 211625617U CN 201921886405 U CN201921886405 U CN 201921886405U CN 211625617 U CN211625617 U CN 211625617U
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Abstract
A multifunctional air outlet device with an infrared data acquisition function is provided with a main body and a plurality of infrared induction devices, wherein the main body is used for performing at least one of heating temperature control, air outlet control, humidification control or purification control according to infrared signals; and the infrared sensing device is used for acquiring at least one of the ambient temperature, the body temperature, the human body position or the crowd distribution of the current area and correspondingly obtaining an infrared signal. The utility model discloses a multi-functional air-out equipment can gather current region's ambient temperature, body temperature, human position and crowd distribution in real time from many angles to carry out analysis processes, and adjust the work of main part. This take multi-functional air-out equipment of infrared data acquisition function can gather current region's infrared data and carry out work regulation, improves intelligent degree and user's experience and feels. Simultaneously, the multifunctional air outlet equipment has the functions of purification, heating and humidification, and reduces the occupied space and the operation difficulty.
Description
Technical Field
The utility model relates to an air-out equipment field, in particular to take multi-functional air-out equipment of infrared data acquisition function.
Background
The existing air outlet equipment has less infrared data acquisition, is only controlled by simple startup and shutdown, and cannot be adjusted according to the real-time infrared data of the current area, so that the intelligent degree of the air outlet equipment is low, and the experience of a user is greatly reduced.
Therefore, the multifunctional air outlet equipment with the infrared data acquisition function is necessary to solve the defects of the prior art.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to avoid prior art's weak point and provide a take multi-functional air-out equipment of infrared data acquisition function. This take multi-functional air-out equipment of infrared data acquisition function can gather current region's infrared data and carry out work regulation, improves intelligent degree and user's experience and feels.
The above object of the present invention is achieved by the following technical measures:
the utility model provides a take multi-functional air-out equipment of infrared data acquisition function is provided with and heats main part and a plurality of infrared induction system of at least one of temperature control, air-out control, humidification control or purification control according to infrared signal, and infrared induction system assembles in the main part.
And the infrared sensing device is used for acquiring at least one of the ambient temperature, the body temperature, the human body position or the crowd distribution of the current area and correspondingly obtaining an infrared signal.
The utility model discloses a take multi-functional air-out equipment of infrared data acquisition function still is provided with processing apparatus, and processing apparatus assembles in the main part and is connected with infrared induction system respectively.
The processing device analyzes according to the infrared signal to obtain a processing signal, the processing signal is sent to the main body, and the main body regulates and controls at least one of heating temperature, wind speed or air outlet range according to the processing signal.
Preferably, the infrared sensor device is mounted to the main body and the external device, respectively.
Preferably, the infrared sensing device is movable with an external device.
Preferably, the infrared sensing device is provided with an infrared probe and a rotating assembly used for driving the infrared probe to rotate, the rotating assembly is fixedly assembled on external equipment, and the infrared probe is assembled on the rotating assembly.
Preferably, the infrared sensing device is movably mounted right above the air outlet of the main body.
Preferably, the infrared sensing device is provided with an infrared probe and a rotating assembly used for driving the infrared probe to rotate, the rotating assembly is fixedly assembled on the main body, and the infrared probe is assembled on the rotating assembly.
Preferably, the infrared sensing device is fixedly mounted right above the air outlet of the main body.
Preferably, above-mentioned infrared induction system is provided with infrared probe and supporting seat, and supporting seat fixed mounting is in the main part, and infrared probe fixed mounting is in rotating assembly.
Preferably, the infrared probe is a wide-angle infrared probe.
Preferably, the main body is further provided with a purification assembly, and the purification assembly is connected with the linkage control device.
The purification assembly is used for purifying the airflow, so that the output airflow is output in the form of purified air.
Preferably, the main body is provided with a heating assembly, and the heating assembly is connected with the linkage control device.
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 main body is provided with a humidifying assembly, and the humidifying assembly is connected with the linkage control device.
The humidifying assembly is used for humidifying the air flow, so that the output air flow is output in a humidifying mode.
Preferably, the body is provided with a drive assembly for generating the air flow.
The utility model discloses an air-out equipment with infrared data acquisition function, for the air-out equipment that can work according to the current environment condition automatic control.
Preferably, the main body is further provided with an AI control component capable of automatically controlling according to the current environmental condition, and the AI control component is respectively connected with the main body, the infrared sensing device and the processing device.
Preferably, the main body is further provided with a data acquisition device, and the data acquisition device is respectively connected with the AI control component and the processing device.
Preferably, the data acquisition device is provided with a temperature sensor, and the temperature sensor is respectively connected with the AI control component and the processing device.
The temperature sensor is used for detecting the temperature of the current area in real time and obtaining a temperature signal.
Preferably, the data acquisition device is provided with a humidity sensor, and the humidity sensor is respectively connected with the AI control component and the processing device.
And the humidity sensor is used for detecting the humidity of the current area in real time and obtaining a humidity signal.
Preferably, the data acquisition device is provided with a PM2.5 sensor, and the PM2.5 sensor is respectively connected with the AI control component and the processing device.
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 microns in the current region in real time and obtaining a PM2.5 signal.
Preferably, the data acquisition device is provided with a CO2Sensor, CO2The sensors are respectively connected with the AI control component and the processing device.
CO2The sensor is used for detecting CO in the current area2Concentration and obtaining a product having CO2Value of CO2A signal.
Preferably, the data acquisition device is provided with an air speed sensor, and the air speed sensor is respectively connected with the AI control component and the processing device.
And the wind speed sensor is used for detecting the speed of the air in real time to obtain a wind speed signal.
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 provided with a camera monitoring device and a sleep controller for monitoring eye closure of a human body, and the sleep controller is respectively connected with the main body, the processing device and the camera monitoring device.
In the sleep mode, the sleep controller controls the humidification assembly to enable the current humidity to be kept at the humidity threshold value, the sleep controller controls the driving assembly and enables the speed of air flow generated by the driving assembly to be kept smaller than or equal to the air speed threshold value, and the sleep controller controls the heating assembly to enable the temperature of the current area to be kept at the temperature threshold value.
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 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 a wind direction swinging device, and the wind direction swinging device is used for controlling wind direction and wind volume.
Preferably, the customized intelligent wind control device is provided with an intelligent wind controller, and the intelligent wind controller is respectively connected with the wind direction swinging device, the processing device, the input device and the main body.
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 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 provided with a heating controller and a signal receiver, the heating controller is connected with the processing device and the main body, and the signal receiver is wirelessly connected with the remote terminal.
And a heating controller for controlling the main body to heat according to a heating instruction of a user.
The user sends the heating instruction to signal receiver, and signal receiver sends the heating instruction to the heating controller, and the heating controller is connected through current regional heating according to temperature signal and the heating instruction control main part that receives.
Preferably, the remote terminal is a mobile phone, a tablet computer or an APP.
The utility model discloses a take multi-functional air-out equipment of infrared data acquisition function is provided with and heats main part and a plurality of infrared induction device of at least one in temperature control, air-out control, humidification control or purification control according to infrared signal, and infrared induction device assembles in the main part; and the infrared sensing device is used for acquiring at least one of the ambient temperature, the body temperature, the human body position or the crowd distribution of the current area and correspondingly obtaining an infrared signal. The utility model discloses a multi-functional air-out equipment can gather current region's ambient temperature, body temperature, human position and crowd distribution in real time from many angles to carry out analysis processes, and adjust the work of main part. This take multi-functional air-out equipment of infrared data acquisition function can gather current region's infrared data and carry out work regulation, improves intelligent degree and user's experience and feels. Simultaneously, the multifunctional air outlet equipment has the functions of purification, heating and humidification, and reduces the occupied space and the operation difficulty.
Drawings
The present invention will be further described with reference to the accompanying drawings, but the contents in the drawings do not constitute any limitation to the present invention.
Fig. 1 is the utility model discloses a take signal transmission schematic diagram of multi-functional air-out equipment of infrared data acquisition function.
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 will be further explained by the following examples.
Example 1.
The utility model provides a take multi-functional air-out equipment of infrared data acquisition function, as shown in figure 1, is provided with and heats main part and a plurality of infrared induction device of at least one of temperature control, air-out control, humidification control or purification control according to infrared signal, and infrared induction device assembles in the main part.
And the infrared sensing device is used for acquiring at least one of the ambient temperature, the body temperature, the human body position or the crowd distribution of the current area and correspondingly obtaining an infrared signal.
The utility model discloses a take multi-functional air-out equipment of infrared data acquisition function still is provided with processing apparatus, and processing apparatus assembles in the main part and is connected with infrared induction system respectively.
The processing device analyzes according to the infrared signal to obtain a processing signal, the processing signal is sent to the main body, and the main body regulates and controls at least one of heating temperature, wind speed or air outlet range according to the processing signal.
The utility model discloses a plurality of infrared induction device assemble respectively in main part and external equipment. The infrared sensing devices have the advantages that infrared signals can be detected from multiple angles, so that a three-dimensional scene graph can be obtained, the accuracy of infrared sensing is improved, and misjudgment caused by coincidence of a human body in a certain dimension is avoided.
The infrared sensing device is provided with an infrared probe and a rotating assembly used for driving the infrared probe to rotate, the rotating assembly is fixedly assembled on the external device, and the infrared probe is assembled on the rotating assembly.
The infrared induction device is movably assembled right above the air outlet of the main body. The infrared sensing device is provided with an infrared probe and a rotating assembly used for driving the infrared probe to rotate, the rotating assembly is fixedly assembled on the main body, and the infrared probe is assembled on the rotating assembly.
The utility model discloses an infrared probe detects human position and crowd's distribution principle as follows: and infrared imaging is carried out to obtain a plurality of temperature field graphs in the area. When the position of the human body changes, the front and back temperature field images are necessarily changed. For example, the user only changes the front-back position, for example, when the user approaches, the image displayed by the infrared image is larger, and when the user moves away, the image displayed by the infrared image is smaller. When the left and right positions of the user change, the left and right changes of the position of the generated image relative to the positioning coordinate are judged, and the change of the environment state is obtained by analyzing the graph change. When the position of the user moves, the user is marked at the position 1 in the temperature field before moving, the user is marked at the position 2 after moving, and the user is judged to move through real-time continuous marking, and meanwhile, the position change condition of the user is obtained.
The principle of the infrared probe for detecting the ambient temperature and the body temperature is common knowledge and should be known to those skilled in the art, and therefore will not be described herein again. It should be noted that, the utility model discloses an infrared probe is used widely in the industrial production, and infrared probe's model and structure are not simultaneously the utility model discloses a key, consequently no longer describe herein one by one.
To the utility model discloses a rotating assembly's effect is for can assembling infrared probe activity in main part or external equipment, realizes that infrared probe can independently rotate or external equipment directly over the air outlet of main part to detect with the multi-angle. The rotating assembly for such a function has been widely used in daily life, and the structure thereof will be known to those skilled in the art, and thus will not be described herein again.
The utility model discloses an infrared probe is wide angle infrared probe. The wide-angle infrared probe is used for detecting in a wider range.
The utility model discloses an in the multi-functional air-out equipment of taking infrared data acquisition function, the main part still is provided with the wind channel subassembly, and the wind channel subassembly is used for the drainage air. The main body is also provided with a purification component which is connected with the linkage control device; the purification assembly is used for purifying the airflow, so that the output airflow is output in the form of purified air. The main body is provided with a heating component, and the heating component is connected with the linkage control device; the heating assembly is used for heating the air flow, so that the output air flow is output in a warm air form. The main body is provided with a humidifying component, and the humidifying component is connected with a linkage control device; the humidifying assembly is used for humidifying the air flow, so that the output air flow is output in a humidifying mode. The main body is provided with a drive assembly for generating an air flow.
The infrared probe collects the ambient temperature, the body position and the crowd distribution of the current area in real time to obtain infrared signals and sends the infrared signals to the processing device, the processing device receives the infrared signals, analyzes and processes the infrared signals to obtain processing signals and sends the processing signals to the heating assembly and the driving assembly, and the heating assembly and the driving assembly receive the processing signals and work.
The utility model discloses use this embodiment as an example to explain, when the infrared probe gathers current region's ambient temperature in real time, human body temperature, human position and crowd distribute and obtain infrared signal and send to processing apparatus, if ambient temperature is 23 ℃, and the ambient temperature setting value is when 25 ℃, and crowd distributes when the concrete position of both sides and human body of air-out equipment, processing apparatus receives infrared signal and analysis processes obtains the signal processing and sends to warm subassembly and drive assembly of heating, warm subassembly of heating receives the signal processing and increases the heating, drive assembly receives the signal processing and supplies air to the specific position direction of the human body of the both sides of air-out equipment.
The utility model discloses a processing apparatus can only realize that data reception and processing function's treater can all regard as the utility model discloses a treater also is the wide application in industrial production to the treater that has this kind of function, and the model and the structure of treater are not simultaneously the utility model discloses a key, consequently no longer describe here one by one.
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 structure of wind channel subassembly, purification subassembly, warm subassembly, drive assembly and humidification subassembly also is not the utility model discloses a utility model is key, consequently no longer states tired one by one here.
This multi-functional air-out equipment can gather current region's ambient temperature, body temperature, human position and crowd's distribution in real time from many angles to analysis processes, and the work of adjusting the main part. This take multi-functional air-out equipment of infrared data acquisition function can gather current region's infrared data and carry out work regulation, improves intelligent degree and user's experience and feels.
Example 2.
The utility model provides a take multi-functional air-out equipment of infrared data acquisition function, other characteristics are the same with embodiment 1, the difference lies in: the infrared induction device is fixedly assembled right above the air outlet of the main body. The infrared sensing device is provided with an infrared probe and a supporting seat, the supporting seat is fixedly assembled on the main body, and the infrared probe is fixedly assembled on the rotating assembly.
The utility model discloses an infrared probe follows the rotation of main part and rotates. This embodiment can reduce the production cost as compared with embodiment 1.
This multi-functional air-out equipment can gather current region's ambient temperature, body temperature, human position and crowd's distribution in real time from many angles to analysis processes, and the work of adjusting the main part. This take multi-functional air-out equipment of infrared data acquisition function can gather current region's infrared data and carry out work regulation, improves intelligent degree and user's experience and feels.
Example 3.
The utility model provides a take multi-functional air-out equipment of infrared data acquisition function, as shown in fig. 2 to 5, other characteristics are the same with embodiment 1, the difference lies in: the utility model discloses a multi-functional air-out equipment is for the multi-functional air-out equipment that can work according to the current environment condition automatic control.
The main body 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 respectively connected with the main body, the infrared sensing device and the processing device.
The utility model discloses a main part still is provided with data acquisition device, and data acquisition device is connected with AI control assembly and processing apparatus respectively.
The data acquisition device is provided with a temperature sensor, and the temperature sensor is respectively connected with the AI control component and the processing device; the temperature sensor is used for detecting the temperature of the current area in real time and obtaining a temperature signal.
The data acquisition device is provided with a humidity sensor, and the humidity sensor is respectively connected with the AI control component and the processing device; and the humidity sensor is used for detecting the humidity of the current area in real time and obtaining a humidity signal.
The data acquisition device is provided with a PM2.5 sensor, and the PM2.5 sensor is respectively connected with the AI control component and the processing device; 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 microns in the current region in real time and obtaining a PM2.5 signal.
The data acquisition device is provided with CO2Sensor, CO2The sensors are respectively connected with the AI control component and the processing device; CO 22The sensor is used for detecting CO in the current area2Concentration ofAnd obtaining a catalyst having CO2Value of CO2A signal.
The data acquisition device is provided with an air speed sensor, and the air speed sensor is respectively connected with the AI control component and the processing device; and the wind speed sensor is used for detecting the speed of the air in real time to obtain a wind speed signal.
The infrared probe collects the ambient temperature, the body position and the crowd distribution of the current area in real time to obtain infrared signals and sends the infrared signals to the processing device, the temperature signals of the temperature sensor are sent to the processing device, the humidity signals of the humidity sensor are sent to the processing device, the PM2.5 signals of the PM2.5 sensor are sent to the processing device, and CO is generated by CO2CO of sensor2The signal is sent to a processing device, the wind speed signal of the wind speed sensor is sent to the processing device, the infrared signal of the infrared sensor is sent to the processing device, and the processing device respectively receives the infrared signal, the temperature signal, the humidity signal, the PM2.5 signal and the CO2The signal, the infrared signal and the wind speed signal are analyzed and processed to obtain a processing signal, the processing signal is sent to the purification assembly, the heating assembly, the driving assembly and the humidification assembly, and the purification assembly, the heating assembly, the driving assembly and the humidification assembly receive the processing signal and work.
The AI control assembly comprises a sleep control device, a customized intelligent air control device, a purification control device and a heating control device.
The sleep control device is used for judging whether a user is in a sleep state and starting a sleep mode.
The customized intelligent air control device is used for receiving the indication of a user and controlling the customized required air quantity blowing to the wind-receiving target.
The purification control device is used for judging whether people exist in the current area or not, and starting the purification mode according to the air quality of the current area.
Wherein, the heating controller controls the main body to heat according to the heating instruction of the user.
It should be noted that the present invention relates to a temperature sensor, a humidity sensor, a PM2.5 sensor, and a CO sensor2The sensor and the wind speed sensor are widely applied to industrial production, and a person skilled in the art should understand thatKnowing its working principle, temperature sensor, humidity sensor, PM2.5 sensor, and CO2The model and the structure of sensor and wind speed sensor are not the utility model discloses a key point, consequently no longer describe here one by one.
The utility model discloses a remote terminal can be cell-phone, panel computer or APP, and the remote terminal of this embodiment is the cell-phone. The utility model discloses a wireless connection is WIFI wireless connection or mobile network wireless connection, and the wireless connection of this embodiment is WIFI wireless connection.
The multifunctional air outlet equipment with the infrared data acquisition function obtains the wind speed of the current area through the wind speed signal, the temperature signal obtains the temperature of the current area, the humidity signal obtains the humidity of the current area, the infrared signal obtains the human body action, the human body quantity, the spatial position of the human body and the like of a user in the current area, the PM2.5 signal obtains the concentration of the PM2.5 in the current area, and the wind speed signal obtains the wind speed in the current area.
The sleep control device is provided with a camera monitoring device and a sleep controller for monitoring human eye closure, and the sleep controller is respectively connected with the main body, the processing device and the camera monitoring device.
In the sleep mode, the sleep controller controls the humidification assembly to enable the current humidity to be kept at the humidity threshold value, the sleep controller controls the driving assembly and enables the speed of air flow generated by the driving assembly to be kept smaller than or equal to the air speed threshold value, and the sleep controller controls the heating assembly to enable the temperature of the current area to be kept at the temperature threshold value.
When the camera monitoring equipment monitors that all people in the current area continuously close eyes and judges that no action exists in the human body in the current area according to the infrared signals within the 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 current area are not continuously closed or the human body in the current area moves according to the infrared signals within the time period of T minutes, the sleep controller judges that the sleep mode is not in the sleep state and does not start the sleep mode.
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 utility model discloses explain with this embodiment, for example, in 15 minutes, the surveillance equipment that makes a video recording monitors that all people in the current region continuously close the eye and judge according to infrared signal that the human body does not have when moving in the current region, then judge to sleep state and start the sleep mode. 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 15-26 ℃. And when the camera monitoring equipment monitors that the eyes of the current area are not continuously closed or the human body in the current area acts according to the infrared signals within 15 minutes, the sleep controller judges that the sleep mode is not in the 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 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 a wind direction swinging device, and the wind direction swinging device is used for controlling wind direction and wind quantity. The customized intelligent wind control device is provided with an intelligent wind controller, and the intelligent wind controller is connected with the wind direction swinging device, the processing device, the input device and the main body 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 according to the infrared signal, 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 utility model discloses use this embodiment to explain as an example, input device receives current user's instruction and obtains instruction signal and send to intelligent wind controller, when this user requires to keep out the wind, intelligent wind controller obtains current user's user spatial position through infrared signal, and intelligent wind controller drive assembly blows the air current to current user direction through the mode of blowing fast, reducing the wind speed or closing the hinge of main air duct subassembly in order to reduce when the shell rotates to current user place direction.
The purification control device is set as a purification controller, and the purification controller is respectively connected with the purification assembly, the driving assembly, the processing device and the data acquisition device.
When no human body activity exists in the infrared signal of the current area and the PM2.5 value in the purification signal is greater than or equal to the purification threshold value, the purification controller starts the purification mode; or
When human body activity exists in the infrared signals of the current region and the PM2.5 value in the purification signals 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 utility model discloses use this embodiment as the example explanation, do not have human life in the current region infrared signalThe PM2.5 value in the dynamic and clean signal is 135 mu 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 human body moves in the infrared signal of the current area, the purification controller does not start the purification mode.
The heating control device is provided with a heating controller and a signal receiver, the heating controller is connected with the processing device and the main body, and the signal receiver is in wireless connection with the remote terminal.
And a heating controller for controlling the main body to heat according to a heating instruction of a user.
The user sends the heating instruction to signal receiver, and signal receiver sends the heating instruction to the heating controller, and the heating controller is connected through current regional heating according to temperature signal and the heating instruction control main part that receives.
Before arriving at home, the user can send a heating instruction through the signal receiver, so that the household equipment starts rapid heating, and the indoor environment reaches a comfortable temperature after the user arrives at home.
The utility model discloses a sleep controller, intelligent wind controller, purification controller and warm controller of system all can regard as for realizing the controller of data analysis and judgement function, the controller that has these functions the utility model discloses a controller also is the wide application in industrial production to the controller that has this kind of function, and the model and the structure of simultaneous controller are not the utility model discloses a key, consequently no longer describe here one by one.
The utility model discloses a signal receiver is for having the signal receiver of signal reception function, and the signal receiver who has these functions can all be regarded as the utility model discloses a signal receiver also uses widely in industrial production to the signal receiver who has this kind of function, and signal transceiver's model and structure are not simultaneously the utility model discloses a key, consequently no longer describe here one by one.
This multi-functional air-out equipment can gather current region's ambient temperature, body temperature, human position and crowd's distribution in real time from many angles to analysis processes, and the work of adjusting the main part. This take multi-functional air-out equipment of infrared data acquisition function can gather current region's infrared data and carry out work regulation, improves intelligent degree and user's experience and feels. Simultaneously, the multifunctional air outlet equipment has the functions of purification, heating and humidification, and reduces the occupied space and the operation difficulty.
It should be finally noted that the above embodiments are only intended to illustrate the technical solutions of the present invention and not to limit the scope of the present invention, and although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention can be modified or replaced with equivalents without departing from the spirit and scope of the technical solutions of the present invention.
Claims (33)
1. The utility model provides a take multi-functional air-out equipment of infrared data acquisition function which characterized in that: the device comprises a main body and a plurality of infrared sensing devices, wherein the main body is used for performing at least one of heating temperature control, air outlet control, humidification control or purification control according to infrared signals;
and the infrared sensing device is used for acquiring at least one of the ambient temperature, the body temperature, the human body position or the crowd distribution of the current area and correspondingly obtaining an infrared signal.
2. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the infrared induction device is arranged in the main body and is connected with the infrared induction device;
the processing device analyzes according to the infrared signal to obtain a processing signal, the processing signal is sent to the main body, and the main body regulates and controls at least one of heating temperature, wind speed or air outlet range according to the processing signal.
3. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the infrared sensing device is respectively assembled on the main body and the external equipment.
4. The multifunctional air outlet device with the infrared data acquisition function of claim 3, wherein: the infrared sensing device moves external equipment.
5. The multifunctional air outlet device with the infrared data acquisition function of claim 4, wherein: the infrared sensing device is provided with an infrared probe and a rotating assembly used for driving the infrared probe to rotate, the rotating assembly is fixedly assembled on external equipment, and the infrared probe is assembled on the rotating assembly.
6. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the infrared induction device is movably assembled right above the air outlet of the main body.
7. The multifunctional air outlet device with the infrared data acquisition function of claim 6, wherein: the infrared sensing device is provided with an infrared probe and a rotating assembly used for driving the infrared probe to rotate, the rotating assembly is fixedly assembled on the main body, and the infrared probe is assembled on the rotating assembly.
8. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the infrared induction device is fixedly assembled right above the air outlet of the main body.
9. The multifunctional air outlet device with the infrared data acquisition function of claim 8, wherein: the infrared sensing device is provided with an infrared probe and a supporting seat, the supporting seat is fixedly assembled on the main body, and the infrared probe is fixedly assembled on the rotating assembly.
10. The multifunctional air outlet device with the infrared data acquisition function of claim 5, 7 or 9, wherein: the infrared probe is a wide-angle infrared probe.
11. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the main body is also provided with a purification assembly, and the purification assembly is connected with the linkage control device;
the purification assembly is used for purifying the airflow, so that the output airflow is output in the form of purified air.
12. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the main body is provided with a heating assembly, and the heating assembly is connected with the linkage control device;
the heating assembly is used for heating the air flow, so that the output air flow is output in a warm air form.
13. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the main body is provided with a humidifying component, and the humidifying component is connected with a linkage control device;
the humidifying assembly is used for humidifying the air flow, so that the output air flow is output in a humidifying mode.
14. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the main body is provided with a drive assembly for generating an air flow.
15. The multifunctional air outlet device with the infrared data acquisition function of claim 1, wherein: the air outlet device can automatically control the work according to the current environment condition.
16. The multifunctional air outlet device with the infrared data acquisition function of claim 2, wherein: the main part still is provided with the AI control assembly that can realize automatic control according to the current environmental conditions, and AI control assembly is connected with main part, infrared induction device and processing apparatus respectively.
17. The multifunctional air outlet device with the infrared data acquisition function of claim 16, wherein: the main part still is provided with data acquisition device, and data acquisition device is connected with AI control assembly and processing apparatus respectively.
18. The multifunctional air outlet device with the infrared data acquisition function of claim 17, wherein: the data acquisition device is provided with a temperature sensor, and the temperature sensor is respectively connected with the AI control component and the processing device;
the temperature sensor is used for detecting the temperature of the current area in real time and obtaining a temperature signal.
19. The multifunctional air outlet device with the infrared data acquisition function of claim 17, wherein: the data acquisition device is provided with a humidity sensor, and the humidity sensor is respectively connected with the AI control component and the processing device;
and the humidity sensor is used for detecting the humidity of the current area in real time and obtaining a humidity signal.
20. The multifunctional air outlet device with the infrared data acquisition function of claim 17, wherein: the data acquisition device is provided with a PM2.5 sensor, and the PM2.5 sensor is respectively connected with the AI control component and the processing device;
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 microns in the current region in real time and obtaining a PM2.5 signal.
21. The multifunctional air outlet device with the infrared data acquisition function of claim 17, wherein: the data acquisition device is provided with CO2Sensor, CO2The sensors are respectively connected with the AI control component and the processing device;
CO2the sensor is used for detecting CO in the current area2Concentration ofAnd obtaining a catalyst having CO2Value of CO2A signal.
22. The multifunctional air outlet device with the infrared data acquisition function of claim 17, wherein: the data acquisition device is provided with an air speed sensor, and the air speed sensor is respectively connected with the AI control component and the processing device;
and the wind speed sensor is used for detecting the speed of the air in real time to obtain a wind speed signal.
23. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 16, wherein the AI control component is provided with a sleep control device, and the sleep control device is used for judging whether the user is in a sleep state and starting a sleep mode.
24. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 23, wherein the sleep control device is provided with a camera monitoring device and a sleep controller for monitoring eye closure of a human body, and the sleep controller is respectively connected with the main body, the processing device and the camera monitoring device.
25. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 23, wherein in the sleep mode, the sleep controller controls the humidification assembly to keep the current humidity at the humidity threshold, controls the driving assembly to keep the speed of the air flow generated by the driving assembly less than or equal to the wind speed threshold, and controls the warm air heating assembly to keep the temperature of the current area at the temperature threshold.
26. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 16, wherein the AI control component is provided with a customized intelligent air control device, and the customized intelligent air control device is used for receiving the indication of a user and controlling the customized required air quantity blown to the wind-receiving target.
27. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 26, wherein the customized intelligent air control device is provided with an input device, and the input device is used for receiving user instructions.
28. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 27, wherein the customized intelligent air control device is provided with an air direction swinging device, and the air direction swinging device is used for controlling air direction and air quantity.
29. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 28, wherein the customized intelligent air control device is provided with an intelligent air controller, and the intelligent air controller is respectively connected with the air direction swinging device, the processing device, the input device and the main body.
30. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 16, wherein the AI control component 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 a purification mode according to the air quality of the current area.
31. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 16, wherein the AI control component is provided with a warming control device, and the warming control device controls the warming mode through a remote terminal.
32. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 31, wherein the heating control device is provided with a heating controller and a signal receiver, the heating controller is connected with the processing device and the main body, and the signal receiver is wirelessly connected with the remote terminal;
the heating controller controls the main body to heat according to a heating instruction of a user;
the user sends the heating instruction to signal receiver, and signal receiver sends the heating instruction to the heating controller, and the heating controller is connected through current regional heating according to temperature signal and the heating instruction control main part that receives.
33. The multifunctional air outlet device with the infrared data acquisition function as claimed in claim 31, wherein the remote terminal is a mobile phone, a tablet personal computer or an APP.
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110864433A (en) * | 2019-11-04 | 2020-03-06 | 佛山市云米电器科技有限公司 | Multifunctional air outlet equipment with infrared data acquisition function |
CN112229045A (en) * | 2020-10-23 | 2021-01-15 | 深圳市华创智能工程技术有限公司 | Intelligent temperature control method, device and system of matrix switching system |
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2019
- 2019-11-04 CN CN201921886405.4U patent/CN211625617U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110864433A (en) * | 2019-11-04 | 2020-03-06 | 佛山市云米电器科技有限公司 | Multifunctional air outlet equipment with infrared data acquisition function |
CN112229045A (en) * | 2020-10-23 | 2021-01-15 | 深圳市华创智能工程技术有限公司 | Intelligent temperature control method, device and system of matrix switching system |
CN112229045B (en) * | 2020-10-23 | 2021-12-31 | 深圳市华创智能工程技术有限公司 | Intelligent temperature control method, device and system of matrix switching system |
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