DocumentCode
54456
Title
Design and Application of a VOC-Monitoring System Based on a ZigBee Wireless Sensor Network
Author
Changhai Peng ; Kun Qian ; Chenyang Wang
Author_Institution
Sch. of Archit., Southeast Univ., Nanjing, China
Volume
15
Issue
4
fYear
2015
fDate
Apr-15
Firstpage
2255
Lastpage
2268
Abstract
Monitoring volatile organic compound (VOC) pollution levels in indoor environments is of great importance for the health and comfort of individuals, especially considering that people currently spend >80% of their time indoors. The primary aim of this paper is to design a low-power ZigBee sensor network and internode data reception control framework to use in the real-time acquisition and communication of data concerning air pollutant levels from VOCs. The network consists of end device sensors with photoionization detectors, routers that propagate the network over long distances, and a coordinator that communicates with a computer. The design is based on the ATmega16 microcontroller and the Atmel RF230 ZigBee module, which are used to effectively process communication data with low power consumption. Priority is given to power consumption and sensing efficiency, which are achieved by incorporating various smart tasking and power management protocols. The measured data are displayed on a computer monitor through a graphical user interface. The preliminary experimental results demonstrate that the wireless sensor network system can monitor VOC concentrations with a high level of accuracy and is thus suitable for automated environmental monitoring. Both good indoor air quality and energy conservation can be achieved by integrating the VOC monitoring system proposed in this paper with the residential integrated ventilation controller.
Keywords
Zigbee; chemical sensors; chemical variables measurement; computerised monitoring; data acquisition; graphical user interfaces; intelligent sensors; microcontrollers; microsensors; organic compounds; protocols; wireless sensor networks; ATmega16 microcontroller; Atmel RF230 ZigBee module; VOC-monitoring system; air pollutant; automated environmental monitoring; concentration measurement; data acquisition; data communication; energy conservation; graphical user interface; indoor air quality; indoor environment; internode data reception control framework; low-power ZigBee Wireless Sensor Network; network propagate; photoionization detector; power consumption; power management protocol; residential integrated ventilation controller; smart tasking; volatile organic compound; Base stations; Energy consumption; Hardware; Monitoring; Sensors; Wireless sensor networks; Zigbee; VOCs; ZigBee; monitoring; photoionization detector; wireless sensor networks;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2014.2374156
Filename
6965585
Link To Document