TWI667572B - Regulating air quality micro-monitoring method - Google Patents

Regulating air quality micro-monitoring method Download PDF

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TWI667572B
TWI667572B TW107127820A TW107127820A TWI667572B TW I667572 B TWI667572 B TW I667572B TW 107127820 A TW107127820 A TW 107127820A TW 107127820 A TW107127820 A TW 107127820A TW I667572 B TWI667572 B TW I667572B
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TW202009727A (en
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許逸群
陳俊能
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崑山科技大學
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Abstract

一種校正空氣品質微型監測方法,是應用在一空氣品質微型監測系統,空氣品質微型監測系統包括至少一檢測裝置、一雲端平台裝置及一行動裝置,一開始各檢測裝置的空氣濃度感測單元進行所在環境中的空汙濃度偵測,並傳輸至雲端平台裝置由雲端儲存單元儲存,行動裝置的行動端控制單元透過行動端無線藍牙傳輸單元配對連線至檢測端無線藍牙傳輸單元,並進行檢測裝置的校正。A method for correcting air quality micro-monitoring is applied to an air quality micro-monitoring system including at least one detecting device, a cloud platform device and a mobile device, and initially performing air concentration sensing units of each detecting device The air pollution concentration detection in the environment is transmitted to the cloud platform device and stored by the cloud storage unit. The mobile terminal control unit of the mobile device is paired to the wireless Bluetooth transmission unit of the detection terminal through the mobile wireless Bluetooth transmission unit, and is detected. Correction of the device.

Description

校正空氣品質微型監測方法Corrected air quality micro-monitoring method

本發明是有關一種校正空氣品質微型監測方法,尤其是可供校正測系統的真實體驗的校正空氣品質微型監測方法。The invention relates to a method for correcting air quality micro-monitoring, in particular to a corrected air quality micro-monitoring method for realizing the real experience of a calibration system.

現在空氣汙染日益嚴重,因此空氣品質微型監測系統現世已有一段時間,透過所述的空氣品質微型監測系統在特定的地區進行空氣品質的監控。Air pollution is now becoming more and more serious, so the air quality micro-monitoring system has been in existence for some time. Through the air quality micro-monitoring system, air quality monitoring is carried out in specific areas.

然而,習知的監測系統在操作上卻局限在過去之儀器上操作與輸入,機械化的按鍵操作校正,設備上之按鍵若任何異常,可能無法獲得有效的確認數據,且習知的監測系統亦缺乏網路連結化,造成測得數據無法透過遠端伺服器統計儲存及監控,令空氣品質監控效果無法有效提升。However, the conventional monitoring system is limited in operation and operation on the past instruments, mechanized key operation correction, and any abnormality of the buttons on the device may not obtain valid confirmation data, and the conventional monitoring system also The lack of network connectivity makes the measured data inaccessible to the remote server for statistical storage and monitoring, so that the air quality monitoring effect cannot be effectively improved.

因此,如何設計出一種可將空氣品質微型監測系統以智能校正方式進行校正,以獲得有有效的數據,同時將監測系統網路連結化,令數據可被遠端伺服器統計、儲存及監控,令空氣品質監控效果有效提升,這些都會是本案所要著重的問題與焦點。Therefore, how to design an air quality micro-monitoring system to be corrected by intelligent correction to obtain valid data, and to link the monitoring system network so that the data can be counted, stored and monitored by the remote server. Effectively improve the air quality monitoring effect, these will be the focus and focus of this case.

本發明之一目的在提供可以智能校正方式進行空氣品質微型監測系校正的校正空氣品質微型監測方法。It is an object of the present invention to provide a calibrated air quality micro-monitoring method that can perform an air quality micro-monitoring system correction in an intelligently calibrated manner.

本發明之另一目的將監測系統網路連結化,令數據可被遠端伺服器統計、儲存及監控的校正空氣品質微型監測方法。Another object of the present invention is to calibrate the network of monitoring systems to enable the calibrated air quality micro-monitoring method for data to be statistically stored, stored, and monitored by remote servers.

本發明一種校正空氣品質微型監測方法,是應用在一空氣品質微型監測系統,所述空氣品質微型監測系統包括至少一檢測裝置、一雲端平台裝置及一行動裝置,其中所述檢測裝置分別包括一檢測端處理單元、一檢測端無線網路單元、一檢測端無線藍牙傳輸單元及一空氣濃度感測元件,所述雲端平台裝置包括一雲端儲存單元、一雲端控制單元及一雲端無線網路單元,所述雲端控制單元是分別與所述雲端無線網路單元及所述雲端儲存單元相互信號連接,所述行動裝置包括一行動端無線藍牙傳輸單元及一行動端控制單元,所述行動端控制單元是與所述行動端無線藍牙傳輸單元相互信號連接,其中所述檢測端無線網路單元是與所述雲端無線網路單元相互信號連接,所述檢測端無線藍牙傳輸單元是與所述行動端無線藍牙傳輸單元相互信號連接,所述空氣濃度感測元件是與所述檢測端處理單元信號連接,並供偵測所在環境中的空氣濃度,其中所述校正空氣品質微型監測方法包括下列步驟: a)各該檢測裝置的該空氣濃度感測單元進行所在環境中的空汙濃度偵測,並將測得的一空汙資訊透過該檢測端無線網路單元傳輸至該雲端平台裝置; b)該雲端平台裝置的該雲端無線網路單元接收該空汙資訊,並將該空汙資訊傳輸至該雲端儲存單元儲存,以及由該雲端控制單元進行監控;及 c)該行動裝置的該行動端控制單元透過該行動端無線藍牙傳輸單元配對連線至該檢測端無線藍牙傳輸單元,並進行該檢測裝置的校正。The invention relates to a method for correcting air quality micro-monitoring, which is applied to an air quality micro-monitoring system, which comprises at least one detecting device, a cloud platform device and a mobile device, wherein the detecting device respectively comprises a a detection terminal processing unit, a detection terminal wireless network unit, a detection terminal wireless Bluetooth transmission unit and an air concentration sensing component, the cloud platform device comprises a cloud storage unit, a cloud control unit and a cloud wireless network unit The cloud control unit is separately connected to the cloud wireless network unit and the cloud storage unit, and the mobile device includes a mobile wireless Bluetooth transmission unit and a mobile terminal control unit, and the mobile terminal controls The unit is in signal connection with the mobile wireless Bluetooth transmission unit, wherein the detection wireless network unit is in signal connection with the cloud wireless network unit, and the detection terminal wireless Bluetooth transmission unit is associated with the action Wireless Bluetooth transmission units are connected to each other, the air concentration The measuring component is connected to the detecting end processing unit signal for detecting the air concentration in the environment, wherein the corrected air quality micro monitoring method comprises the following steps: a) the air concentration sensing unit of each detecting device Performing air pollution concentration detection in the environment, and transmitting the measured air pollution information to the cloud platform device through the detecting terminal wireless network unit; b) the cloud wireless network unit of the cloud platform device receiving the space And transmitting the air pollution information to the cloud storage unit for storage and monitoring by the cloud control unit; and c) the mobile terminal control unit of the mobile device is connected to the wireless Bluetooth transmission unit via the mobile terminal to The detecting end wireless Bluetooth transmission unit performs correction of the detecting device.

本發明之一種校正空氣品質微型監測方法,是由行動裝置替換習知的機械化之按鍵操作與輸入,以達到以智能校正的方式,進行空氣品質微型監測系的校正,且本案校正空氣品質微型監測方法更將監測系統網路連結化,令數據可被雲端平台裝置統計、儲存及監控,使空氣品質監控效果有效提升,並達成上述目的。A method for correcting air quality micro-monitoring according to the present invention replaces a conventional mechanized key operation and input by a mobile device to achieve an intelligent correction method for correcting an air quality micro-monitoring system, and the present method corrects air quality micro-monitoring The method further links the monitoring system network, so that the data can be statistically stored, stored and monitored by the cloud platform device, so that the air quality monitoring effect is effectively improved, and the above purpose is achieved.

依照本發明一實施例的校正空氣品質微型監測方法,是應用在一空氣品質微型監測系統,如1所示,所述的空氣品質微型監測系統包括至少一檢測裝置1、一雲端平台裝置2及一行動裝置3,其中檢測裝置分別包括一檢測端處理單元(MCU)11、一檢測端無線網路單元12、一檢測端無線藍牙傳輸單元13、一空氣濃度感測元件14及類比/數位轉換數據蒐集單元(ADC)15,雲端平台裝置2包括一雲端儲存單元21、一雲端控制單元22及一雲端無線網路單元23,雲端控制單元22是分別與雲端無線網路單元23及雲端儲存單元21相互信號連接,行動裝置3包括一行動端無線藍牙傳輸單元31及一行動端控制單元32,行動端控制單元32是與行動端無線藍牙傳輸單元31相互信號連接,其中檢測端無線網路單元12是與雲端無線網路單元23相互信號連接,檢測端無線藍牙傳輸單元13是與行動端無線藍牙傳輸單元31相互信號連接,空氣濃度感測元件14是與檢測端處理單元12信號連接,並供偵測所在環境中的空氣濃度。The method for correcting air quality micro-monitoring according to an embodiment of the present invention is applied to an air quality micro-monitoring system, as shown in FIG. 1, the air quality micro-monitoring system includes at least one detecting device 1, a cloud platform device 2, and a mobile device 3, wherein the detecting device comprises a detecting end processing unit (MCU) 11, a detecting end wireless network unit 12, a detecting end wireless Bluetooth transmitting unit 13, an air concentration sensing element 14, and an analog/digital conversion The data collection unit (ADC) 15 includes a cloud storage unit 21, a cloud control unit 22, and a cloud wireless network unit 23. The cloud control unit 22 is respectively connected to the cloud wireless network unit 23 and the cloud storage unit. 21 is connected to each other, and the mobile device 3 includes a mobile wireless Bluetooth transmission unit 31 and a mobile terminal control unit 32. The mobile terminal control unit 32 is connected to the mobile wireless Bluetooth transmission unit 31, wherein the wireless network unit is detected. 12 is a signal connection with the cloud wireless network unit 23, and the wireless Bluetooth transmission unit 13 at the detecting end is wireless Bluetooth with the mobile terminal. Signal input means 31 are connected to each other, the air concentration sensing element 14 is connected to the detection end signal processing unit 12, and for detecting where the air concentration in the environment.

一併參考圖2所示,一開始如步驟201,各檢測裝置1的空氣濃度感測單元14進行所在環境中的空汙濃度偵測,並將測得的一空汙資訊透過檢測端無線網路單元12傳輸至雲端平台裝置2,再如步驟202,雲端平台裝置2的雲端無線網路單元23接收空汙資訊,並將空汙資訊傳輸至雲端儲存單元21儲存,以及由雲端控制單元22進行監控,再如步驟203,行動裝置3的行動端控制單元32透過行動端無線藍牙傳輸單元31對連線至檢測端無線藍牙傳輸單元13,並進行檢測裝置1的校正,在本例中,所述的校正是由行動裝置3控制檢測裝置1的檢測端處理單元11進行空氣濃度感測元件14的電壓轉電流的穩定校正。Referring to FIG. 2 together, initially, in step 201, the air concentration sensing unit 14 of each detecting device 1 performs the air pollution concentration detection in the environment, and transmits the measured air pollution information to the detecting terminal wireless network. The unit 12 transmits to the cloud platform device 2, and then, as in step 202, the cloud wireless network unit 23 of the cloud platform device 2 receives the air pollution information, and transmits the air pollution information to the cloud storage unit 21 for storage, and is performed by the cloud control unit 22. Monitoring, in step 203, the mobile terminal control unit 32 of the mobile device 3 is connected to the wireless Bluetooth transmission unit 13 via the mobile wireless Bluetooth transmission unit 31, and performs correction of the detection device 1, in this example, The correction is performed by the mobile device 3 controlling the detecting end processing unit 11 of the detecting device 1 to perform stable correction of the voltage turning current of the air concentration sensing element 14.

如步驟204,由類比/數位轉換數據蒐集單元15施加一固定的測試電壓(假設訊號)至空氣濃度感測元件14,最後如步驟205,檢測端處理單元11在一預定時間內(例如1小時)統計出一變異系數(RSD),以供校正空氣濃度感測單元,並可獲得如圖3所示的測試數據資料,其中歷時RSD均小於0.3%。另方面,考量MCU工作負荷及系統穩定度,經測試後,行動裝置3連線需顯示定義為即時值,以六秒為均值,並以120次類比/數位輪詢(ADC Polling)訊號平均值為基準,而雲端平台裝置2的紀錄值定義為分鐘值,以一分鐘均值,並以1200次類比/數位輪詢(ADC Polling)訊號平均值為基準,以作為類比/數位轉換數據蒐集單元15的計算邏輯原則。In step 204, a fixed test voltage (assumed signal) is applied by the analog/digital conversion data collecting unit 15 to the air concentration sensing element 14, and finally, as in step 205, the detecting end processing unit 11 is in a predetermined time (for example, 1 hour). A coefficient of variation (RSD) is calculated for correcting the air concentration sensing unit, and test data as shown in FIG. 3 can be obtained, wherein the duration RSD is less than 0.3%. On the other hand, considering the MCU workload and system stability, after testing, the mobile device 3 connection needs to be defined as an immediate value, with an average of six seconds, and an average of 120 analog/digital polling (ADC Polling) signals. For the benchmark, the recorded value of the cloud platform device 2 is defined as a minute value, measured in one minute, and based on the average of 1200 analog polling (ADC Polling) signals as the analog/digital conversion data collecting unit 15 The principle of computational logic.

依照本發明另一實施例的校正空氣品質微型監測方法,一併參考圖1及圖4所示,在本例中,步驟203’ 行動裝置3的行動端控制單元32進行檢測裝置1的校正,其中所述的校正是由行動裝置3控制檢測裝置1的檢測端處理單元11進行檢測端無線藍牙傳輸單元13及行動端無線藍牙傳輸單元31的配對較正,其中本例中所述的配對較正方式,如步驟204’,進行多次的檢測端無線藍牙傳輸單元13及行動端無線藍牙傳輸單元31的配對,且每次檢測裝置1及行動裝置3之間的距離均不相同,再如步驟205’,平均每次可連接配對的距離,並獲得一距離平均值。According to another embodiment of the present invention, the method for correcting the air quality micro-monitoring is shown in FIG. 1 and FIG. 4 together. In this example, the action end control unit 32 of the mobile device 3 performs the correction of the detecting device 1 in step 203'. The correction is performed by the detecting device 11 of the detecting device 1 of the mobile device 3 to perform pairing correction of the detecting terminal wireless Bluetooth transmitting unit 13 and the mobile wireless Bluetooth transmitting unit 31, wherein the pairing correcting mode is described in this example. In step 204', the pairing of the detecting end wireless Bluetooth transmitting unit 13 and the mobile terminal wireless Bluetooth transmitting unit 31 is performed multiple times, and the distance between the detecting device 1 and the mobile device 3 is different each time, and then step 205 is performed. ', the average distance that can be paired each time, and get a distance average.

例如每次進行配對時,改變的距離檢測裝置1及行動裝置3之間的距離約0.6M,且每次皆關掉應用程式重新連結檢測端無線藍牙傳輸單元13及行動端無線藍牙傳輸單元31,反覆測量5次,總和的檢測端無線藍牙傳輸單元13及行動端無線藍牙傳輸單元31可連接距離平均值約是12M。另外,再隔約8cm實心牆的強況下從遠到近進行檢測端無線藍牙傳輸單元13及行動端無線藍牙傳輸單元31的距離測量,每次改變的距離是約0.3M,每次皆關掉應用程式重新連結檢測端無線藍牙傳輸單元13及行動端無線藍牙傳輸單元31,反覆測量3次,總和的檢測端無線藍牙傳輸單元13及行動端無線藍牙傳輸單元31可連接距離平均值約是4M。For example, each time the pairing is performed, the distance between the changed distance detecting device 1 and the mobile device 3 is about 0.6 M, and the application re-linking detecting terminal wireless Bluetooth transmitting unit 13 and the mobile terminal wireless Bluetooth transmitting unit 31 are turned off each time. The measurement is repeated 5 times, and the sum of the connection distance between the wireless Bluetooth transmission unit 13 and the mobile wireless Bluetooth transmission unit 31 of the sum is about 12M. In addition, the distance between the wireless Bluetooth transmission unit 13 and the wireless Bluetooth transmission unit 31 of the mobile terminal is measured from far to near under the condition of a solid wall of about 8 cm. The distance of each change is about 0.3M, and each time is closed. The application reconnects the detection terminal wireless Bluetooth transmission unit 13 and the mobile terminal wireless Bluetooth transmission unit 31, and measures 3 times repeatedly. The sum of the detection side wireless Bluetooth transmission unit 13 and the mobile terminal wireless Bluetooth transmission unit 31 can be connected to the average value. 4M.

依照本發明又一實施例的校正空氣品質微型監測方法,一併參考圖1及圖5所示,在本例中,步驟202及203間還包括步驟300,當檢測裝置1的檢測端無線藍牙傳輸單元13被觸發時,檢測端處理單元11將執行的程序進行中斷處理(Interrupt),並優先處理行動裝置3的行動端控制單元32的程序命令,再如步驟301,提供空汙資訊及檢測裝置1的狀態資料至行動裝置3,再如步驟302,檢測人員透過行動端控制單元32將已處理的狀態異常資料的警示關閉,並如步驟303,透過行動裝置3的行動端控制單元32重啟檢測裝置1的檢測端無線網路單元12,令檢測端無線網路單元12重新連線。According to still another embodiment of the present invention, a method for correcting air quality micro-monitoring is shown in FIG. 1 and FIG. 5. In this example, step 300 and step 203 further include step 300, when the detecting end of the detecting device 1 is wireless Bluetooth. When the transmission unit 13 is triggered, the detection end processing unit 11 performs an interrupt processing (Interrupt) on the executed program, and preferentially processes the program command of the mobile terminal control unit 32 of the mobile device 3, and then provides the air pollution information and detection as in step 301. The status data of the device 1 is sent to the mobile device 3. Then, in step 302, the detecting personnel closes the alarm of the processed abnormal state data through the mobile terminal control unit 32, and restarts through the mobile terminal control unit 32 of the mobile device 3 as in step 303. The detecting terminal wireless network unit 12 of the detecting device 1 causes the detecting terminal wireless network unit 12 to reconnect.

由於系統能耗問題,因此本實施例是將藍芽連線設計為被動性(人為觸動)輪詢(Polling)之感測值查詢。因此當檢測端無線藍牙傳輸單元13連線被觸發時,檢測端處理單元11立即執行中斷處理(Interrupt),以優先處理檢測人員透過行動裝置1所發出的系統命令。Due to system power consumption problems, this embodiment is designed to query the Bluetooth connection as a passive (man-made) polling polling value query. Therefore, when the connection terminal wireless Bluetooth transmission unit 13 is triggered, the detection processing unit 11 immediately performs an interrupt processing to preferentially process the system command issued by the detection personnel through the mobile device 1.

本發明之一種校正空氣品質微型監測方法,是由行動裝置替換習知的機械化之按鍵操作與輸入,以達到以智能校正的方式,進行空氣品質微型監測系的校正,令空氣濃度感測元件及各藍牙傳輸單元均可被有效的智能校正,同時,本案更將空氣品質微型監測系統進行網路連結佈局,令數據可回傳至遠端的雲端平台裝置,以供統計、儲存及監控,使空氣品質監控效果有效提升,並達成上述目的。The method for correcting air quality micro-monitoring according to the present invention replaces a conventional mechanized key operation and input by a mobile device to achieve an intelligent correction method for correcting an air quality micro-monitoring system, and an air concentration sensing element and Each Bluetooth transmission unit can be effectively intelligently corrected. At the same time, the air quality micro-monitoring system is network-connected, so that the data can be transmitted back to the remote cloud platform device for statistics, storage and monitoring. The air quality monitoring effect is effectively improved and achieves the above objectives.

雖然本發明已以較佳實施例揭露如上,然其並非用以限定本發明,任何熟習此技藝者,在不脫離本發明的精神和範圍內,當可作些許的更動與潤飾,因此本發明的保護範圍當視後附之申請專利範圍所界定者為準。While the invention has been described above by way of a preferred embodiment, it is not intended to limit the invention, and the invention may be modified and modified without departing from the spirit and scope of the invention. The scope of protection is subject to the definition of the scope of the patent application.

1‧‧‧檢測裝置1‧‧‧Detection device

2‧‧‧雲端平台裝置2‧‧‧Cloud platform device

3‧‧‧行動裝置3‧‧‧Mobile devices

11‧‧‧檢測端處理單元11‧‧‧Detection processing unit

12‧‧‧檢測端無線網路單元12‧‧‧Detection wireless network unit

13‧‧‧檢測端無線藍牙傳輸單元13‧‧‧Detector wireless Bluetooth transmission unit

14‧‧‧空氣濃度感測元件14‧‧‧Air concentration sensing element

15‧‧‧類比/數位轉換數據蒐集單元15‧‧‧ Analog/Digital Conversion Data Collection Unit

21‧‧‧雲端儲存單元21‧‧‧Cloud storage unit

22‧‧‧雲端控制單元22‧‧‧Cloud Control Unit

23‧‧‧雲端無線網路單元23‧‧‧Cloud wireless network unit

31‧‧‧行動端無線藍牙傳輸單元31‧‧‧Mobile wireless Bluetooth transmission unit

32‧‧‧行動端控制單元32‧‧‧Action Control Unit

201~205、203’~205’、300~303‧‧‧步驟201~205, 203’~205’, 300~303‧‧ steps

圖1是本案一實施例的一種互感球拍的方塊圖; 圖2是圖1之互感球拍的示意圖; 圖3是圖1之互感球拍的控制電路的方塊圖; 圖4是圖2之互感球拍的擊球回饋控制模組的側視圖;及 圖5本案另一實施例的一種互感球拍的擊球回饋控制模組的側視圖。1 is a block diagram of a mutual sense racket of the embodiment of the present invention; FIG. 2 is a schematic diagram of the mutual sense racket of FIG. 1; FIG. 3 is a block diagram of the control circuit of the mutual sense racket of FIG. A side view of the ball striking feedback control module; and FIG. 5 is a side view of a ball striking feedback control module of a mutual sense racket according to another embodiment of the present invention.

Claims (7)

一種校正空氣品質微型監測方法,係應用在一空氣品質微型監測系統,該空氣品質微型監測系統包括至少一檢測裝置、一雲端平台裝置及一行動裝置,其中該些檢測裝置分別包括一檢測端處理單元、一檢測端無線網路單元、一檢測端無線藍牙傳輸單元及一空氣濃度感測元件,該雲端平台裝置包括一雲端儲存單元、一雲端控制單元及一雲端無線網路單元,該雲端控制單元係分別與該雲端無線網路單元及該雲端儲存單元相互信號連接,該行動裝置包括一行動端無線藍牙傳輸單元及一行動端控制單元,該行動端控制單元係與該行動端無線藍牙傳輸單元相互信號連接,其中該檢測端無線網路單元係與該雲端無線網路單元相互信號連接,該檢測端無線藍牙傳輸單元係與該行動端無線藍牙傳輸單元相互信號連接,該空氣濃度感測元件係與該檢測端處理單元信號連接,並供偵測所在環境中的空氣濃度,其中該校正空氣品質微型監測方法包括下列步驟:a)各該檢測裝置的該空氣濃度感測單元進行所在環境中的空汙濃度偵測,並將測得的一空汙資訊透過該檢測端無線網路單元傳輸至該雲端平台裝置;b)該雲端平台裝置的該雲端無線網路單元接收該空汙資訊,並將該空汙資訊傳輸至該雲端儲存單元儲存,以及由該雲端控制單元進行監控;及c)該行動裝置的該行動端控制單元透過該行動端無線藍牙傳輸單元配對連線至該檢測端無線藍牙傳輸單元,並進行該檢測裝置的校正; 其中該步驟c)更包括一步驟c1)該行動裝置控制該檢測裝置的該檢測端處理單元進行該空氣濃度感測元件的電壓轉電流的穩定校正。 A method for correcting air quality micro-monitoring is applied to an air quality micro-monitoring system comprising at least one detecting device, a cloud platform device and a mobile device, wherein the detecting devices respectively comprise a detecting end processing The unit, a detecting terminal wireless network unit, a detecting terminal wireless Bluetooth transmitting unit and an air concentration sensing component, the cloud platform device comprises a cloud storage unit, a cloud control unit and a cloud wireless network unit, the cloud control The unit is respectively connected to the cloud wireless network unit and the cloud storage unit, and the mobile device comprises a mobile wireless Bluetooth transmission unit and a mobile terminal control unit, and the mobile terminal control unit transmits wireless Bluetooth transmission with the mobile terminal. The unit is connected to each other, wherein the wireless network unit of the detecting end is connected to the cloud wireless network unit, and the wireless Bluetooth transmitting unit of the detecting end is connected to the wireless Bluetooth transmitting unit of the mobile terminal, and the air concentration sensing is performed. Component system and the detection end processing unit signal Connected to and detect the air concentration in the environment, wherein the corrected air quality micro-monitoring method comprises the following steps: a) the air concentration sensing unit of each detecting device performs air pollution concentration detection in the environment, and Transmitting the measured air pollution information to the cloud platform device through the detecting terminal wireless network unit; b) the cloud wireless network unit of the cloud platform device receiving the air pollution information, and transmitting the air pollution information to the The cloud storage unit is stored and monitored by the cloud control unit; and c) the mobile terminal control unit of the mobile device is paired to the wireless Bluetooth transmission unit of the detection terminal through the mobile wireless transmission unit of the mobile terminal, and performs the detection. Correction of the device; Wherein the step c) further comprises a step c1), the mobile device controls the detecting end processing unit of the detecting device to perform stable correction of the voltage rotating current of the air concentration sensing element. 如申請專利範圍第1項所述的校正空氣品質微型監測方法,其中該檢測裝置更包括一類比/數位轉換數據蒐集單元,係與該檢測端處理單元信號連接,該步驟c1)包括:c11)該類比/數位轉換數據蒐集單元施加一固定的測試電壓至該空氣濃度感測元件;及c12)該檢測端處理單元在一預定時間內統計出一變異系數,以供校正該空氣濃度感測單元。 The method of claim 1, wherein the detecting device further comprises an analog/digital conversion data collecting unit connected to the detecting end processing unit, wherein the step c1) comprises: c11) The analog/digital conversion data collecting unit applies a fixed test voltage to the air concentration sensing element; and c12) the detecting end processing unit calculates a coefficient of variation for a predetermined time for correcting the air concentration sensing unit . 如申請專利範圍第1項所述的校正空氣品質微型監測方法,其中該步驟c)更包括一步驟c1’)該行動裝置控制該檢測裝置的該檢測端處理單元進行該檢測端無線藍牙傳輸單元及該行動端無線藍牙傳輸單元的配對較正。 The method for correcting air quality micro-monitoring according to claim 1, wherein the step c) further comprises a step c1') wherein the mobile device controls the detecting end processing unit of the detecting device to perform the detecting terminal wireless Bluetooth transmission unit. And the pairing of the wireless Bluetooth transmission unit of the mobile terminal is corrected. 如申請專利範圍第1項所述的校正空氣品質微型監測方法,該步驟c1’)包括:c11’)進行多次該檢測端無線藍牙傳輸單元及該行動端無線藍牙傳輸單元的配對,且每次該檢測裝置及該行動裝置之間的距離均不相同;及c12’)平均每次可連接配對的距離,並獲得一距離平均值。 The method for correcting air quality micro-monitoring according to claim 1, wherein the step c1') comprises: c11') performing a plurality of matching of the wireless Bluetooth transmission unit of the detection terminal and the wireless Bluetooth transmission unit of the mobile terminal, and each The distance between the detecting device and the mobile device is different; and c12') can average the distance of the pairing each time and obtain a distance average. 如申請專利範圍第1項所述的校正空氣品質微型監測方法,更包括一在步驟b)及c)之間的步驟d)當該檢測裝置的該檢測端無線藍牙傳輸單元被觸發時,該檢測端處理單元將執行的程序進行中斷處理,並優先處理該行動裝置的該行動端控制單元的程序命令。 The method for correcting air quality micro-monitoring according to claim 1, further comprising a step d) between steps b) and c) when the detecting end wireless Bluetooth transmission unit of the detecting device is triggered, The detecting end processing unit interrupts the executed program and preferentially processes the program command of the mobile terminal control unit of the mobile device. 如申請專利範圍第5項所述的校正空氣品質微型監測方法,其中該步驟d)包括d11)提供該空汙資訊及該檢測裝置的狀態資料至該行動裝置;及d12)該行動端控制單元將已處理的狀態異常資料的警示關閉。 The method for correcting air quality micro-monitoring according to claim 5, wherein the step d) comprises: d11) providing the air pollution information and status information of the detecting device to the mobile device; and d12) the mobile terminal control unit The alert for the processed status exception data is turned off. 如申請專利範圍第6項所述的校正空氣品質微型監測方法,其中該d1更包括在步驟d12)後的一步驟d13)透過該行動裝置的該行動端控制單元重啟該檢測裝置的該檢測端無線網路單元,令該檢測端無線網路單元重新連線。 The calibrated air quality micro-monitoring method according to claim 6, wherein the d1 further comprises a step d13 after the step d12): restarting the detecting end of the detecting device by the mobile terminal control unit of the mobile device The wireless network unit reconnects the wireless network unit of the detecting terminal.
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