US2026055918A1PendingUtilityA1

Air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity

Assignee: MICROJET TECHNOLOGY CO LTDPriority: Aug 23, 2024Filed: Jul 14, 2025Published: Feb 26, 2026
Est. expiryAug 23, 2044(~18.1 yrs left)· nominal 20-yr term from priority
F24F 2110/10F24F 2110/70F24F 11/50F24F 2110/20F24F 11/63F24F 3/167F24F 2110/50F24F 11/72F24F 11/56F24F 11/64F24F 11/54F24F 11/0008F24F 6/12F24F 3/1405F24F 8/10F24F 2221/54F24F 3/14F24F 5/00F24F 3/065F24F 11/89F24F 3/16
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Claims

Abstract

An air pollution cleaning smart network mechanism system is disclosed and includes plural gas detectors, a cooling heat exchanger, a heating heat exchanger, a dehumidifier, a humidifier and a networked cloud computing service device. Each of the cooling heat exchanger, the heating heat exchanger, the dehumidifier and the humidifier includes the gas detector, an air guiding fan, a filter component and a driving controller. The networked cloud computing service device receives air pollution information, carbon dioxide pressure detection information and gas temperature and humidity information detected by the gas detectors, intelligently selects to issues control instructions to control actuation operation of the air guiding fans in the cooling heat exchanger, the heating heat exchanger, the dehumidifier and the humidifier. Thereby, the temperature and humidity in the indoor field is adjusted, and the air pollution gas in the indoor field is guided to the filter component for clean treatment.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . An air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity, comprising:
 a plurality of gas detectors arranged in an indoor field and an outdoor field to detect air pollution gas and output air pollution information, carbon dioxide (CO 2 ) pressure detection information, and gas temperature and humidity information;   at least one cooling exchanger arranged in the indoor field, and comprising at least one of the gas detectors, at least one air guiding fan, at least one filter component and at least one driving controller disposed therein, wherein the driving controller is electrically connected to the gas detector, and the gas detector receives a control instruction to control actuation operation of the air guiding fan through the driving controller, so that the air pollution gas is cleanly introduced into the indoor field through the filter component, wherein the at least one cooling exchanger comprises a cooling element to implement a cooling temperature-exchange transfer of the air pollution gas introduced by the air guiding fan to adjust the gas temperature in the indoor field;   at least one heating exchanger arranged in the indoor field, and comprising at least one of the gas detectors, at least one air guiding fan, at least one filter component and at least one driving controller disposed therein, wherein the driving controller is electrically connected to the gas detector, and the gas detector receives a control instruction to control actuation operation of the air guiding fan through the driving controller, so that the air pollution gas is cleanly introduced into the indoor field through the filter component, wherein the at least one heating exchanger comprises a heating element to implement a heating temperature-exchange transfer of the air pollution gas introduced by the air guiding fan to adjust the gas temperature in the indoor field;   at least one dehumidifier arranged in the indoor field, and comprising at least one of the gas detectors, at least one air guiding fan, at least one filter component and at least one driving controller disposed therein, wherein the driving controller is electrically connected to the gas detector, and the gas detector receives a control instruction to control actuation operation of the air guiding fan through the driving controller, so that the air pollution gas is cleanly introduced into the indoor field through the filter component, wherein the at least one dehumidifier comprises a condensing coil and an evaporating coil to implement a condensation water removal and heating temperature-exchange transfer of the air pollution gas introduced by the air guiding fan to adjust the gas temperature and humidity in the indoor field;   at least one humidifier arranged in the indoor field, and comprising at least one of the gas detectors, at least one air guiding fan, at least one filter component and at least one driving controller disposed therein, wherein the driving controller is electrically connected to the gas detector, and the gas detector receives a control instruction to control actuation operation of the air guiding fan through the driving controller, so that the air pollution gas is cleanly introduced into the indoor field through the filter component, wherein the at least one humidifier comprises a steam generating element to implement a steam generation and release into the air pollution gas introduced by the air guiding fan to adjust the gas temperature and humidity in the indoor field; and   at least one networked cloud computing service device comprising a wireless network cloud computing service module, a cloud control service unit, a device management unit, an application unit and an artificial intelligence generated content (AIGC) model, wherein the networked cloud computing service device receives the air pollution information, the carbon dioxide (CO 2 ) pressure detection information and the gas temperature and humidity information of the indoor field and the outdoor field through Internet of Things communication to store and form an air pollution bigdata database, and intelligently selects to issue the control instruction according to an intelligent calculation comparison of the air pollution information, the carbon dioxide (CO 2 ) pressure detection information and the gas temperature and humidity information;   wherein each of the gas detectors disposed in the cooling exchanger, the heating exchanger, the dehumidifier and the humidifier receives the control instruction and controls the activation operation of the air guiding fan through the driving controller, so that the gas temperature and humidity in the indoor field is adjusted, and the air pollution gas in the indoor field is guided to the filter component for clean treatment, whereby providing the indoor field with circulating air pollution purification and completely clean room treatment, and achieving the cleanliness of the clean room level.   
     
     
         2 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the gas temperature and humidity in the indoor field are adjusted to maintain the temperature at 25° C.±3° C. and the humidity at 50%±10%. 
     
     
         3 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , further comprising at least one gas exchange device, wherein the at least one gas exchange device comprises at least one of the gas detectors, at least one air guiding fan, at least one filter component and at least one driving controller disposed therein, the gas detector is electrically connected to the driving controller, and the gas detector receives the control instruction of the networked cloud computing service device through Internet of Things communication and transmits the control instruction to the driving controller to control the activation operation of the air guiding fan through the driving controller, thereby providing ventilation for the indoor field and providing a positive pressure air intake in the indoor field. 
     
     
         4 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 3 , wherein the gas exchange device is a fresh air fan, a full heat exchanger or a heating ventilation and air conditioning (HVAC). 
     
     
         5 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , further comprising at least one purification filter device, wherein the at least one purification filter device comprises at least one of the gas detectors, at least one air guiding fan, at least one filter component and at least one driving controller disposed therein, the gas detector is electrically connected to the driving controller, and the gas detector receives the control instruction of the networked cloud computing service device through Internet of Things communication and transmits the control instruction to the driving controller to control the activation operation of the air guiding fan through the driving controller, thereby implementing air pollution purification and completely clean room treatment in the indoor field. 
     
     
         6 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 5 , wherein the purification filter device comprises at least one purifier, at least one fan filter unit (FFU), at least one exhaust device, at least one smoke exhaust system or at least one mobile vacuum cleaner. 
     
     
         7 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , further comprising at least one oxygen generator, wherein the at least one oxygen generator comprises at least one of the gas detectors, at least one air guiding fan, at least one filter component and at least one driving controller disposed therein, the gas detector is electrically connected to the driving controller, and the gas detector receives the control instruction of the networked cloud computing service device through Internet of Things communication and transmits the control instruction to the driving controller to control the activation operation of the air guiding fan through the driving controller, wherein the at least one oxygen generator comprises an adsorption screen, the adsorption screen includes zeolite molecules disposed therein and adsorbing nitrogen in air introduced by the air guiding fan to generate oxygen, and the oxygen is provided to the indoor field to adjust the carbon dioxide (CO 2 ) and oxygen content in the indoor field, so that it allows to breathe sufficient oxygen content in the indoor field, a comfortable and safe environment is created, and safe breathing of clean air is maintained. 
     
     
         8 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the artificial intelligence generated content (AIGC) model of the networked cloud computing service device utilizes environmental detection parameters and equipment-enabled control to optimize an operating mode, thereby achieving the best balance of cleanliness, comfort, and energy saving for the cooling exchanger, the heat exchanger, the dehumidifier and the humidifier, a gas exchange device, a purification filter device, and an oxygen generator, wherein a power consumption is recorded in the operating mode to optimize a system operating cost at the same time. 
     
     
         9 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the filter component is a filter with a minimum efficiency reporting value (MREV) of 8 or above. 
     
     
         10 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the filter component is a filter with a high efficiency particulate air (HEPA) grade, wherein the filter with the high efficiency particulate air (HEPA) grade is of 10 or above, and has a dust holding capacity greater than 12,000 mg. 
     
     
         11 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the filter component is combined with a decomposition layer coated thereon, and the decomposition layer uses chemical means to sterilize the air pollution. 
     
     
         12 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 11 , wherein the decomposition layer is an activated carbon, a formaldehyde absorption of the activated carbon is greater than 1500 mg, or the decomposition layer is a cleansing factor containing chlorine dioxide layer. 
     
     
         13 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 11 , wherein the decomposition layer is an herbal protective layer extracted from ginkgo and Japanese  Rhus chinensis , a silver ion, or a zeolite. 
     
     
         14 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the filter component is combined with a light irradiation element to sterilize in chemical means, the light irradiation element is a photo-catalyst unit including a photo catalyst and an ultraviolet lamp, and the ultraviolet lamp has a power more than 120 mw. 
     
     
         15 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 14 , wherein the light irradiation element is a photo-plasma unit including a nanometer irradiation tube. 
     
     
         16 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the filter component is combined with a decomposition unit to sterilize in chemical means, and the decomposition unit is a negative ion unit or a plasma ion unit. 
     
     
         17 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the gas detector comprises a controlling circuit board, a gas detection main part, a microprocessor and a communicator, the controlling circuit board is electrically connected to the driving control element, and the gas detection main part, the microprocessor and the communicator are integrally packaged on the controlling circuit board and electrically connected to the controlling circuit board, wherein the microprocessor controls the detection of the gas detection main part, the gas detection main part detects air pollution, and the microprocessor processes the air pollution to output and provide air pollution information to the communicator for a communication transmission externally. 
     
     
         18 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein Internet of Things communication is a wireless communication for communicating with the networked cloud computing service device via a wireless connection, wherein the wireless communication transmission comprises one selected from the group consisting of a Wi-Fi module, a Bluetooth module, a radio frequency identification module and a near field communication (NFC) module. 
     
     
         19 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein Internet of Things communication is a wired communication for communicating with the networked cloud computing service device via a wired line. 
     
     
         20 . The air pollution cleaning smart network mechanism system for controlling indoor air temperature and humidity according to  claim 1 , wherein the cooling exchanger allows removing heat per hour equal to an a area of one ping (3.305785 m 2 )×600 BTU (cooling capacity), the air guiding fan of the cooling exchanger has a noise level of 35˜50 dB (decibels) during operation.

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