A novel design of water environment monitoring system based on WSN

The importance of maintaining good water environment highlights the increasing need for advanced technologies. This paper proposes a novel design of water environment monitoring system based on wireless sensor networks (WSN). The system consists of three parts: sensor nodes; sink nodes and data moni...

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Vydáno v:2010 International Conference On Computer Design and Applications Ročník 2; s. V2-593 - V2-597
Hlavní autoři: Ning Jin, Renzhi Ma, Yunfeng Lv, Xizhong Lou, Qingjian Wei
Médium: Konferenční příspěvek
Jazyk:angličtina
Vydáno: IEEE 01.06.2010
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Abstract The importance of maintaining good water environment highlights the increasing need for advanced technologies. This paper proposes a novel design of water environment monitoring system based on wireless sensor networks (WSN). The system consists of three parts: sensor nodes; sink nodes and data monitoring center. The sensor nodes can be constructed with arbitrary parameter or multi-parameter sensor modules such as PH, dissolved oxygen (DO), conductivity and temperature. The measurement capacity ranges from 0 to 14 on PH value; from 0~20 mg/L on DO; from 0~2 S/cm on conductivity. The sink nodes communicate with the local or remote data monitoring center by RS232 or 3 G/GPRS. The performance shows the system can be effectively applied to some water area such as aquiculture, lake and river for distributed water environment automatic monitoring.
AbstractList The importance of maintaining good water environment highlights the increasing need for advanced technologies. This paper proposes a novel design of water environment monitoring system based on wireless sensor networks (WSN). The system consists of three parts: sensor nodes; sink nodes and data monitoring center. The sensor nodes can be constructed with arbitrary parameter or multi-parameter sensor modules such as PH, dissolved oxygen (DO), conductivity and temperature. The measurement capacity ranges from 0 to 14 on PH value; from 0~20 mg/L on DO; from 0~2 S/cm on conductivity. The sink nodes communicate with the local or remote data monitoring center by RS232 or 3 G/GPRS. The performance shows the system can be effectively applied to some water area such as aquiculture, lake and river for distributed water environment automatic monitoring.
Author Qingjian Wei
Ning Jin
Yunfeng Lv
Renzhi Ma
Xizhong Lou
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  surname: Renzhi Ma
  fullname: Renzhi Ma
  organization: Dept. of Inf. Eng., China Jiliang Univ., Hangzhou, China
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  surname: Yunfeng Lv
  fullname: Yunfeng Lv
  organization: Dept. of Inf. Eng., China Jiliang Univ., Hangzhou, China
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  surname: Xizhong Lou
  fullname: Xizhong Lou
  organization: Dept. of Inf. Eng., China Jiliang Univ., Hangzhou, China
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  surname: Qingjian Wei
  fullname: Qingjian Wei
  organization: Dept. of Inf. Eng., China Jiliang Univ., Hangzhou, China
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Snippet The importance of maintaining good water environment highlights the increasing need for advanced technologies. This paper proposes a novel design of water...
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StartPage V2-593
SubjectTerms automatic monitoring
Computerized monitoring
Conductivity measurement
Ground penetrating radar
Lakes
Remote monitoring
Rivers
sensor nodes
Sensor systems
Temperature measurement
Temperature sensors
water environment
wireless sensor network
Wireless sensor networks
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