用于水管腐蚀监测的无线传感器网络

Jacobus Kampman, Judas Masela, T. Joubert
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引用次数: 1

摘要

从腐蚀数据中开发准确的腐蚀模型是延长水基础设施系统使用寿命和降低维护成本的关键要求。这项工作展示了一种定制的概念验证系统的开发,该系统使用定制的集成腐蚀传感技术,由在线涡轮发电机收集的能量提供动力,执行水腐蚀监测。实现分布在供水基础设施系统中的无线腐蚀传感器节点星形拓扑网络,为实时在线监测供水基础设施系统的腐蚀提供了一种创新的解决方案。无线传感器网络包括一个无线接入点,该接入点提供用于检索腐蚀数据的接口和用于通信的连接。为了优化网络中的能源效率,设计并实现了一种使用时分多路接入形式的低功耗双向数据传输通信协议。在模拟管道现场设置中,收集和储存的能量在4.89 V下提供125.80 mWh,管内流速为13.25 l/min,这是南非市政饮用水供应的典型值。本地节点ER传感器可以测量电阻值的变化,精度为1%,并将在系统中使用一年。接入点实现EIS和LPR感知。提取的LPR值预测饮用水中的腐蚀速率为63.0 um/年。
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Wireless sensor network for water pipe corrosion monitoring
The development of accurate corrosion models from corrosion data is a key requirement for well informed, preemptive actions towards extending the life of water infrastructure systems and reducing maintenance costs. This work presents the development of a custom proof-of-concept system implementation performing water corrosion monitoring using custom integrated corrosion sensing technologies powered by energy harvested through an in-line turbine generator. Implementing a star topology network of wireless corrosion sensor nodes distributed through water infrastructure systems offers an innovative solution for real-time and on-line monitoring of corrosion in water infrastructure systems. The wireless sensor network includes a wireless access point that provides an interface for retrieval of the corrosion data and a nexus for communications. A low-power bidirectional data transfer communications protocol using a form of time-division multiplex access is designed and implemented towards the optimisation of energy efficiency in the network. In an emulated pipeline field setup, the energy harvested and stored provides 125.80 mWh at 4.89 V for an in-pipe flow rate of 13.25 l/min, a typical value for municipal potable water supply in South Africa. The local node ER sensor can of measure changes in resistance values to an accuracy of 1% and will be usable in-system for a year. The access point implements EIS and LPR sensing. The extracted LPR value predicts a corrosion rate is 63.0 um/year in potable water.
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