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A Proposed Scalable Design and Simulation of Wireless Sensor Network-Based Long-Distance Water Pipeline Leakage Monitoring System

机译:基于无线传感器网络的远程输水管道泄漏监测系统的可扩展设计与仿真

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摘要

Anomalies such as leakage and bursts in water pipelines have severe consequences for the environment and the economy. To ensure the reliability of water pipelines, they must be monitored effectively. Wireless Sensor Networks (WSNs) have emerged as an effective technology for monitoring critical infrastructure such as water, oil and gas pipelines. In this paper, we present a scalable design and simulation of a water pipeline leakage monitoring system using Radio Frequency IDentification (RFID) and WSN technology. The proposed design targets long-distance aboveground water pipelines that have special considerations for maintenance, energy consumption and cost. The design is based on deploying a group of mobile wireless sensor nodes inside the pipeline and allowing them to work cooperatively according to a prescheduled order. Under this mechanism, only one node is active at a time, while the other nodes are sleeping. The node whose turn is next wakes up according to one of three wakeup techniques: location-based, time-based and interrupt-driven. In this paper, mathematical models are derived for each technique to estimate the corresponding energy consumption and memory size requirements. The proposed equations are analyzed and the results are validated using simulation.
机译:输水管道中的泄漏和爆裂等异常情况会对环境和经济造成严重后果。为了确保输水管道的可靠性,必须对其进行有效监控。无线传感器网络(WSN)已成为一种有效的技术,用于监视关键基础设施,例如水,石油和天然气管道。在本文中,我们介绍了使用射频识别(RFID)和WSN技术的输水管道泄漏监测系统的可扩展设计和仿真。拟议的设计针对长距离地下水管道,这些管道在维护,能耗和成本方面都有特殊考虑。该设计基于在管道内部署一组移动无线传感器节点,并允许它们根据预定顺序协同工作。在这种机制下,一次只有一个节点处于活动状态,而其他节点处于睡眠状态。接下来轮到该节点的节点将根据以下三种唤醒技术之一进行唤醒:基于位置的,基于时间的和中断驱动的。在本文中,针对每种技术推导了数学模型,以估算相应的能耗和内存大小要求。对提出的方程进行了分析,并通过仿真验证了结果。

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