基于ZigBee网络的水环境无线监测系统设计
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广东高校优秀青年创新人才培育项目(LYM10035);教育部博士点新教师基金(20124404120002);省部产学研结合项目(2011B090400359);广东省农业机械化科研项目(粤农函[2010]605号)


The Design of Wireless Monitoring System of Water Environment Based on the ZigBee Network
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    摘要:

    设计了基于ZigBee网络的水环境无线监测系统,该系统由具有多源信息融合功能的水质无线监测节点、无线路由节点、数据网关和上位机监测中心组成,并引入了节点信息多样化采集机制,可对被监测水域实施有效的无线覆盖以及信息的可靠传输,完成对水环境常规指标,如溶解氧、pH、水温的实时在线监测.根据试验结果,在每1 h采集1次的工作条件下,额定容量为1 200 mA·h的电池可使无线监测节点工作1 231 d以上,可以满足对水环境长期自动监测的要求.该水环境无线监测系统具有低功耗、部署简单、组网灵活的特点,较适合于小型河流以及中小面积湖泊、鱼塘的水环境质量的长期在线监测.

    Abstract:

    A wireless water environmental monitoring system based on ZigBee technology was designed in this paper, which was composed of water quality monitoring node of multi-source information fusion, router node, gateway and upper computer monitoring software. The system introduced the node information collection mechanism of diversification, providing effective wireless network coverage and reliable data transmission for water environment, including the parameter of dissolved oxygen, pH and temperature. Experimental results showed that the wireless monitoring node could work for more than 1 231 days under the condition of sampling once per hour and supplying 1 200 mA?h capacity battery so as to meet the long-term automatic monitoring requirements of water environment. The wireless monitoring system has the advantage of low power consumption, simple deployment, flexible networking, which is suitable for the long term monitoring of water quality of small river, medium-sized area of lakes and ponds.

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徐 兴,岳学军,林 涛.基于ZigBee网络的水环境无线监测系统设计[J].华南农业大学学报,2013,34(4):593-597

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  • 收稿日期:2012-07-17
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  • 在线发布日期: 2013-10-12