US2026009553A1PendingUtilityA1

Indoor air cleaning system with networking mechanism

Assignee: MICROJET TECHNOLOGY CO LTDPriority: Jul 5, 2024Filed: May 28, 2025Published: Jan 8, 2026
Est. expiryJul 5, 2044(~17.9 yrs left)· nominal 20-yr term from priority
F24F 2221/18F24F 13/06F24F 11/0001F24F 8/108F24F 2110/70F24F 11/63F24F 7/007F24F 7/003F24F 2110/72F24F 11/58F24F 2110/65F24F 2110/20F24F 2110/50F24F 2110/64F24F 11/64F24F 2110/66F24F 2110/10
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Claims

Abstract

An indoor air cleaning system with a networking mechanism is disclosed and applied in an indoor field for detecting and cleaning air pollution completely. A real-time air quality monitoring in the indoor field is achieved by arranging plural air detectors, at least one gas molecule control hardware device, at least one air conditioning device and a networked cloud computing service device in the indoor field and forming an intelligent linked system by the arranged air detectors in an outdoor filed and the indoor field. Meanwhile, the air pollution in the indoor field is also detected and intelligently compared with an ambient air quality status, and an air guiding volume of an air guiding fan is instantly controlled according to the air quality. Whereby an energy saving benefit of the effective controlling operation of the purification device is achieved.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . An indoor air cleaning system with a networking mechanism, comprising:
 a plurality of gas detectors arranged in an indoor field and an outdoor field to detect air pollution information;   a networked cloud computing service device receiving the air pollution information of the indoor field and the outdoor field through Internet of Things communication to store and form an air pollution big data database, and intelligently selecting and issuing a control instruction;   at least one gas molecule control hardware device arranged in the indoor field, and having at least one of the plurality of gas detectors disposed therein, wherein the gas molecule control hardware device comprises an air guiding fan, a filter component and a driving controller, and the gas detector is electrically connected to the driving controller, and receives the control instruction to the driving controller through the Internet of Things communication to control actuation operation of the air guiding fan, so that air in the indoor field is ventilated and air pollution is guided through the filter component for purification and complete clean room treatment, and the gas detector externally transmits the air pollution information in the indoor field; and   at least one air conditioning device arranged in the indoor field and having at least one of the plurality of gas detectors disposed therein, wherein the air conditioning device comprises an air guiding fan, a cooling/heat exchanger and a driving controller, wherein the gas detector is electrically connected to the driving controller and receives the control instruction to the drive controller through the Internet of Things communication to control actuation operation of the air guiding fan, so that the air in the indoor field is guided through the cooling/heat exchanger to adjust a temperature and humidity of the air in the indoor field, and the gas detector externally transmits temperature and humidity information of the air in the indoor field;   wherein the networked cloud computing service device receives the air pollution information and the temperature and humidity information of the air, and intelligently selects to issue the control instruction to the air guiding fan of the gas molecule control hardware device and the air guiding fan of the air conditioning device to enable the actuation operation according to an intelligent calculation comparison of the air pollution big data database, so as to guide the air pollution in the space of the indoor field through the filter component to purify the air pollution to achieve complete clean room treatment;   wherein after a required equivalent of the clean air delivery rate (CADR) for the indoor space is determined by the intelligent (AI) calculation comparison of the networked cloud computing service device, a number of the gas molecule control hardware device and an optimal clean air delivery rate (CADR) of the air guiding fan of the gas molecule control hardware equipment are determined according to the required equivalent of the clean air delivery rate (CADR), so as to realize a real-time detection of air pollution purification and the complete clean room treatment, whereby cleanliness reaches a clean room level and a cost-effectiveness of complete clean room treatment is optimized.   
     
     
         2 . The indoor air cleaning system with the networking mechanism according to  claim 1 , wherein at least one air inlet, at least one ventilation port and at least one exhaust port are disposed in the indoor field, wherein the gas molecule control hardware device comprises at least one gas exchange device, which corresponds to the air inlet of the indoor field and in communication with the air of the indoor field, wherein the networked cloud computing service device intelligently calculates and compares the air pollution information of the indoor field and the outdoor field, wherein when the air pollution information of the indoor field is higher than the air pollution information of the outdoor field, the networked cloud computing service device issues the control instruction to the gas detector inside the gas exchange device through the Internet of Things communication to receive the control instruction for the driving controller controlling the actuation operation of the gas exchange device, whereby air of the outdoor field is introduced into the indoor field through the air inlet, and then the air of the indoor field is exhausted through the exhaust port for ventilation. 
     
     
         3 . The indoor air cleaning system with the networking mechanism according to  claim 2 , wherein when the gas detector of the gas exchange device detects that the air pollution information of the indoor field exceeds an air pollution setting safety value, the control instruction is directly issued to the driving controller to control the actuation operation of the gas exchange device, so that the air of the outdoor field is introduced into the indoor field for ventilation. 
     
     
         4 . The indoor air cleaning system with the networking mechanism according to  claim 3 , wherein the air pollution information of the indoor field and the outdoor field is air pollution data of carbon dioxide (CO 2 ), and ventilation is performed to achieve a zero difference of carbon dioxide (CO 2 ) between the indoor field and the outdoor field. 
     
     
         5 . The indoor air cleaning system with the networking mechanism according to  claim 2 , wherein when the gas exchange device is enable the actuation operation for ventilation, a positive pressure greater than 0 Pa is maintained in the space of the indoor field to prevent air pollution in the outdoor field from entering the indoor field, wherein the gas exchange device is a fresh air fan or a full heat exchanger. 
     
     
         6 . The indoor air cleaning system with the networking mechanism according to  claim 1 , wherein the gas molecule control hardware device comprises at least one purifier, which is plugged-in to the space of the indoor field, and the networked cloud computing service device issues the control instruction to the gas detector inside the purifier through the Internet of Things communication, wherein the control instruction is received by the driving controller to control the actuation operation of the air guiding fan, so as to guide the air pollution in the space of the indoor field to be filtered and purified by the filter component, and the air purified is then introduced into the space of the indoor field, whereby the air pollution in the space of the indoor field is guided to pass through the filter component multiple times for air pollution purification and complete clean room treatment. 
     
     
         7 . The indoor air cleaning system with the networking mechanism according to  claim 2 , wherein the gas molecule control hardware device comprises at least one exhaust device, which is built-in to the indoor field, corresponds to the exhaust port and is in communication with the outdoor field, wherein the networked cloud computing service device issues the control instruction to the gas detector inside the exhaust device through the Internet of Things communication, wherein the control instruction is received by the driving controller to control the actuation operation of the air guiding fan to guide the air pollution in the space of the indoor field to be introduced by the air guiding fan through the filter component for filtration and purification and discharged to the outdoor field, whereby the air pollution in the space of the indoor field is purified to achieve the complete clean room treatment. 
     
     
         8 . The indoor air cleaning system with the networking mechanism according to  claim 7 , further comprising a clean room disposed in the indoor field, wherein the air conditioning device is in communication with the clean room to adjust a room temperature and humidity and perform gas ventilation, the air guiding fan inside the air conditioning device introduces the air of the indoor field, and the air purified is introduced into the clean room, wherein the air purified is adjusted to an appropriate temperature and humidity through the cooling/heat exchanger, and the networked cloud computing service device issues the control instruction to the gas detector inside the air conditioning device through the Internet of Things communication to receive the control instruction to the driving controller to control the actuation operation of the air guiding fan, so as to adjust the temperature and humidity of the air in the indoor field, wherein the clean room is in communication with the exhaust port, and the exhaust port is embedded in the exhaust device to discharge the air in the clean room to the outdoor field for ventilation, so as to form the clean room for air pollution purification and complete clean room treatment, wherein the cooling/heat exchanger of the air conditioning device sets the temperature and humidity at safety values to maintain the temperature at 25° C.±3° C. and the humidity at 50%±10%. 
     
     
         9 . The indoor air cleaning system with the networking mechanism according to  claim 1 , wherein the gas molecule control hardware device comprises at least one dehumidifier, which is plugged-in to the space of the indoor field, and the cloud computing service device issues the control instruction to the gas detector inside the dehumidifier through the Internet of Things communication, wherein the control instruction is received by the driving controller to control the actuation operation of the air guiding fan, the air pollution in the space of the indoor field is guided by the air guiding fan and purified by the filter component for air pollution purification and complete clean room treatment, and the temperature and humidity of the air in the indoor field is adjusted, wherein the dehumidifier sets the temperature and humidity at safety values to maintain the temperature at 25° C.±3° C. and the humidity at 50%±10%. 
     
     
         10 . The indoor air cleaning system with the networking mechanism according to  claim 1 , wherein the gas molecule control hardware device comprises at least one vacuum cleaner, which is plugged-in to the space of the indoor field, and the networked cloud computing service device issues the control instruction to the gas detector inside the vacuum cleaner through the Internet of Things communication, and the control instruction is received by the driving controller to control the actuation operation of the air guiding fan, wherein the air pollution in the space of the indoor field is guided to the filter component for air pollution purification and complete clean room treatment. 
     
     
         11 . The indoor air cleaning system with the networking mechanism according to  claim 2 , further comprising at least one circulating ventilation channel disposed in the indoor field, wherein the at least one circulating ventilation channel is surrounded and isolated by a plurality of partitions and formed on one side of the indoor field, the circulating ventilation channel has at least one air return port, and the circulating ventilation channel is in communication with the air inlet, the ventilation port and the exhaust port in the indoor field. 
     
     
         12 . The indoor air cleaning system with the networking mechanism according to  claim 11 , wherein the gas molecule control hardware device comprises at least one fan filter unit (FFU), which is built-in to the circulating ventilation channel and corresponds to the ventilation port in communication with the air of the indoor field, wherein the networked cloud computing service device issues the control instruction to the gas detector inside the fan filter unit (FFU) through the Internet of Things communication, the control instruction is received by the gas detector and transmitted to the driving controller to control the actuation operation of the air guiding fan, and the air pollution in the space of the indoor field is guided from the plurality of air return ports into the circulating ventilation channel to filtered and purified by the filter component inside the fan filter unit (FFU), wherein the air purified is then introduced into the space of the indoor field from the ventilation port, so that the air pollution in the space of the indoor field is guided to enter the circulating ventilation channel multiple times for air pollution purification and complete clean room treatment. 
     
     
         13 . The indoor air cleaning system with the networking mechanism according to  claim 12 , wherein the gas molecule control hardware device comprises at least one exhaust device, which is built-in to the circulating ventilation channel, corresponds to the air return port, and is in communication with the air of the indoor field, wherein the networked cloud computing service device issues the control instruction to the gas detector inside the exhaust device through the Internet of Things communication, wherein the control instruction is received by the gas detector and transmitted to the driving controller to control the actuation operation of the air guiding fan, so that the air pollution in the space of the indoor field is guided from the air return port to pass through the filter component for filtration and purification, wherein the air purified is then introduced into the circulating ventilation channel for filtration and purification, so that the air pollution in the space of the indoor field is guided to pass through the filter component in the circulating ventilation channel multiple times for air pollution purification and complete clean room treatment. 
     
     
         14 . The indoor air cleaning system with the networking mechanism according to  claim 13 , further comprising a clean room, wherein the air conditioning device is in communication with the clean room to adjust a room temperature and humidity and perform gas ventilation, the air guiding fan inside the air conditioning device introduces the air of the indoor field, and the air purified is introduced into the clean room, wherein the air purified is adjusted to an appropriate temperature and humidity through the cooling/heat exchanger, and the networked cloud computing service device issues the control instruction to the gas detector inside the air conditioning device through the Internet of Things communication to receive the control instruction to the driving controller to control the actuation operation of the air guiding fan, adjust the temperature and humidity of the air in the indoor field, wherein the clean room is in communication with the air return pot, and the exhaust device is embedded in the air return port to introduce the air in the clean room into the circulating ventilation channel for ventilation in the clean room, so that the clean room for air pollution purification and complete clean room treatment is achieved, wherein the cooling/heat exchanger of the air conditioning device sets the temperature and humidity at safety values to maintain the temperature at 25° C.±3° C. and the humidity at 50%±10%. 
     
     
         15 . The indoor air cleaning system with the networking mechanism according to  claim 1 , wherein the gas molecule control hardware device comprises an extractor hood system, which is arranged in a kitchen of the indoor space, wherein the extractor hood system comprises an exhaust channel, which is arranged above a cooking appliance and in communication with the outdoor field, wherein the air guiding fan, the filter component and the driving controller are arranged in the exhaust channel, and the gas detector arranged in the exhaust channel and electrically connected to the driving controller receives the control instruction to the driving controller through the Internet of Things communication to control the actuation operation of the air guiding fan, wherein the extractor hood system comprises an oil fume exhaust body, which is arranged in front of the cooking appliance and in communication with the outdoor field, wherein the air guiding fan, the filter component and the driving controller are arranged in the fume exhaust body, and the gas detector is arranged in the oil fume exhaust body and electrically connected to the driving controller, and the control instruction is received by the gas detector to the driving controller through the Internet of Things communication to control the actuation operation of the air guiding fan, wherein the networked cloud computing service device issues the control instruction to the gas detector inside the exhaust channel and the gas detector inside the oil fume exhaust body of the extractor hood system through the Internet of Things communication, wherein the control instruction is transmitted to the driving controller to control the actuation operation of the air guiding fan, and the air pollution in the kitchen of the indoor field flows into the exhaust channel and the oil fume exhaust body and passes through the filter component for filtering and purification, and then introduced into the outdoor field, so that the kitchen for air pollution purification and complete clean room treatment is achieved. 
     
     
         16 . The indoor air cleaning system with the networking mechanism 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, or a wired communication for communicating with the networked cloud computing service device via a wired line, 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. 
     
     
         17 . The indoor air cleaning system with the networking mechanism 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 the air pollution, and the microprocessor processes the air pollution to output and provide the air pollution information to the communicator for a communication transmission externally. 
     
     
         18 . The indoor air cleaning system with the networking mechanism according to  claim 1 , wherein the filter component is a filter with a minimum efficiency reporting value (MREV) of 8 or above, or 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, wherein the filter component is combined with a decomposition layer a decomposition layer coated thereon, and the decomposition layer uses chemical means to sterilize the air pollution, wherein comprises at least one selected from the group consisting of an activated carbon, a cleansing factor containing chlorine dioxide layer, an herbal protective layer extracted from ginkgo and Japanese  Rhus chinensis , a silver ion, a zeolite and a combination thereof, wherein the activated carbon has a formaldehyde absorption capacity greater than 1,500 mg. 
     
     
         19 . The indoor air cleaning system with the networking mechanism according to  claim 1 , wherein the networked cloud computing service device comprises a wireless network cloud computing service module, a cloud control service unit, a device management unit and an application program unit. 
     
     
         20 . The indoor air cleaning system with the networking mechanism according to  claim 1 , wherein the clean room level is ZAPClean Room 1˜12, wherein the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 1 is ranged from 195000 m 3 /h to 370000 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 2 is ranged from 58000 m 3 /h to 115000 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 3 is ranged from 17500 m 3 /h 35000 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 4 is ranged from 5200 m 3 /h 10000 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 5 is ranged from 1500 m 3 /h to 3000 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 6 is ranged from 450 m 3 /h to 1000 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 7 is ranged from 135 m 3 /h to 300 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 8 is ranged from 60 m 3 /h to 135 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 9 is ranged from 35 m 3 /h to 80 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 10 is ranged from 15 m 3 /h to 40 m 3 /h, the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 11 is ranged from 10 m 3 /h to 30 m 3 /h, and the required equivalent of the clean air delivery rate (CADR) per cubic meter at the clean room level of ZAPClean Room 12 is ranged from 3 m 3 /h to 10 m 3 /h.

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