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Critical Event Based Multichannel Process Control Monitoring using WSN for Industrial Applications

机译:基于关键的事件基于多声道过程控制监控,用于工业应用程序的WSN

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Industries have lots of benefit by integrating sensors in industrial plants for continuous sensing and monitoring the status of the system. This paper discusses the efficient process monitoring of pipelines that carry oil, gas, water, and other important resources for an essential infrastructures. A Wireless Sensor Networks (WSN) should be designed to obtain maximum throughput of data to efficiently monitor the health condition of the system and obtain timeliness for handling critical events in case of emergency. A real-time Multichannel Process Control Monitoring System is designed to monitor and control large network. For any real time system timeliness and throughput are equally important but are obtained on the compromise of each other. This paper proposes a Multichannel Process Monitoring Algorithm (MPMA) which brings a balance between timeliness and throughput by increasing in number of operating channels. The protocol has been implemented and experimentally evaluated on a testbed using nodes with standard IEEE 802.15.4. It has been observed that the proposed algorithm has shown an increase in timeliness and throughput compared with the standard algorithm.
机译:行业通过将传感器集成在工业设备中的传感器进行连续传感和监测系统状态,具有很多益处。本文讨论了携带石油,天然气,水和其他重要资源的管道的有效流程监测,以实现基本基础设施。无线传感器网络(WSN)应设计为获得最大数据的吞吐量,以有效监测系统的健康状况,并在紧急情况下获得处理关键事件的时间性。实时多通道过程控制监控系统旨在监控和控制大型网络。对于任何实时系统,时间性和吞吐量同样重要,但是在彼此的折衷中获得。本文提出了一种多通道过程监测算法(MPMA),其通过增加操作通道的数量来带来时间性和吞吐量之间的平衡。通过使用标准IEEE 802.15.4的节点在测试平台上实施和实验评估了协议。已经观察到,与标准算法相比,所提出的算法已经提高了时间和吞吐量。

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