Title :
Design and implementation of an audio-visual integrated wireless sensor remote monitoring network on Wetland
Author :
Li Xiuhong ; Cheng Xiao ; Yang Rongjin ; Zhang Haijing ; Zhang Jialin
Author_Institution :
Coll. of Global Change & Earth Syst. Sci., Beijing Normal Univ., Beijing, China
Abstract :
Audio-visual integral monitoring technology can improve the accuracy of environmental monitoring and target tracking. Wetland ecosystems have a rich biodiversity and a high value of ecosystem services. An audio-visual integrated wetland monitoring sensor network was researched and developed based on the self-developed embedded operation system ZKOS. This network improves the Wi-Fi CSMA/CA mechanism of long-distance wireless transmission, and it integrates professional camera and microphone devices. The network was installed in the Poyang Lake bottomland to study the bird and cow activities and the grass growth of the ecological environment by remote monitoring and to study the wetland eco-network. In this paper, the network is introduced using the example of bird monitoring. The user can open and close the network by short message of mobile phone. According to different application purposes, the network can be widely used in long-term continuous remote observations of vegetation and animal ecology on different ecosystems.
Keywords :
audio-visual systems; carrier sense multiple access; environmental monitoring (geophysics); radiotelemetry; target tracking; wetlands; wireless LAN; wireless sensor networks; Poyang Lake; Wi-Fi CSMA/CA mechanism; ZKOS; animal ecology; audio-visual integral monitoring technology; audio-visual integrated wireless sensor remote monitoring network; biodiversity; bird activity; bird monitoring; camera integration; cow activity; ecological environment; ecosystem service; embedded operation system; environmental monitoring accuracy; grass growth; long-distance wireless transmission; microphone device integration; mobile phone; short message; target tracking; wetland econetwork; wetland ecosystem; Birds; Hardware; Lakes; Monitoring; Protocols; Streaming media; Wireless communication; Audio-visual integration; birds; remote monitoring; wetland; wireless sensor net-works;
Conference_Titel :
Mechatronic Sciences, Electric Engineering and Computer (MEC), Proceedings 2013 International Conference on
Conference_Location :
Shengyang
Print_ISBN :
978-1-4799-2564-3
DOI :
10.1109/MEC.2013.6885136