基于无线传感网络的水质在线移动监测系统
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浙江省基础公益研究计划(LGF18F010008)


Online Mobile Water Quality Monitoring System Using Wireless Sensor Networks
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    摘要:

    针对静态离线水质监测方法存在采样误差大、监测频次低、监测数据分散以及无法实时反馈水质状况的连续动态变化等问题, 研发了基于无线传感网络的水质在线移动监测系统. 该系统由水下监测器、浮标节点和可视化软件组成. 水下监测器模仿金枪鱼外观设计, 内部装备水质传感器(温度、pH、浊度和电导率等)用于获取水质参数信息; 浮标节点采用太阳能供电方式, 负责接收、处理、中继及转发来自多个水下监测器的数据; 多个水下监测器之间, 水下监测器与浮标节点之间采用170 MHz无线射频模块或水声通信, 浮标节点与岸边基站采用ZigBee通信; 可视化软件包括上位机与移动终端. 本系统的实施解决了传统人工取样监测的局限性, 实现水域任意点的水质在线监测.

    Abstract:

    An online mobile water quality monitoring system, which is based on wireless sensor networks, is developed to solve the existing problems in the static off-line monitoring methods, such as large sampling errors, low monitoring frequency, dispersed monitoring data and lack of real-time feedback on continuous dynamic changes of water quality. The system is composed of an underwater monitor, buoy nodes, and visual software. The exterior design of the underwater monitor mimics tuna appearance, and the internal is equipped with water quality sensors (regarding temperature, pH, turbidity, conductivity, etc.) to acquire the parameters of water quality. Buoy nodes, depending on solar power, are responsible for receiving, processing, relaying, and forwarding the data from multiple underwater monitors. The underwater monitors communicate with each other and the buoy nodes through a 170 MHz wireless radio frequency module or underwater sound, while the buoy nodes communicate with shore stations by ZigBee. In addition, visual software includes PC and mobile terminals. This system overcomes the limitations of traditional monitoring based on manual sampling, achieving online monitoring of water quality at any point.

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刘燕娜,屠德展,潘晓曼,高学江,王瑞,洪榛.基于无线传感网络的水质在线移动监测系统.计算机系统应用,2021,30(9):104-109

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  • 收稿日期:2020-12-13
  • 最后修改日期:2021-01-11
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  • 在线发布日期: 2021-09-04
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