Incorporating emergency alarms in reliable wireless process control

Bo Li, Lanshun Nie, Chengjie Wu, Humberto González, Chenyang Lu
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引用次数: 62

Abstract

Recent years have witnessed adoption of wireless sensor-actuator networks (WSANs) in process control. Many real-world process control systems must handle various emergency alarms under stringent timing constraints in addition to regular control loops. However, despite considerable theoretical results on wireless control, the problem of incorporating emergency alarms in wireless control has received little attention. This paper presents, to the best of our knowledge, the first systematic approach to incorporate emergency alarms into wireless process control. The challenge in emergency communication lies in the fact that emergencies occur occasionally, but must be delivered within their deadlines when they occur. The contributions of this work are three-fold: (1) we propose efficient real-time emergency communication protocols based on slot stealing and event-based communication; (2) we build an open-source WirelessHART protocol stack in the Wireless Cyber-Physical Simulator (WCPS) for holistic simulations of wireless control systems; (3) we conduct systematic studies on a coupled water tank system controlled over a 6-hop 21-node WSAN. Our results demonstrate our real-time emergency communication approach enables timely emergency handling, while allowing regular feedback control loops to effectively share resources in WSANs during normal operations.
在可靠的无线过程控制中加入紧急警报
近年来,无线传感器-执行器网络(WSANs)在过程控制中的应用越来越广泛。除常规控制回路外,许多现实世界的过程控制系统必须在严格的时间约束下处理各种紧急报警。然而,尽管在无线控制方面已经取得了相当多的理论成果,但在无线控制中加入紧急报警的问题却很少受到重视。本文提出,据我们所知,第一个系统的方法,将紧急报警纳入无线过程控制。紧急情况通信的挑战在于,紧急情况偶尔发生,但必须在紧急情况发生的最后期限内交付。本工作的贡献有三个方面:(1)提出了基于插槽窃取和基于事件通信的高效实时应急通信协议;(2)在无线网络物理模拟器(WCPS)中构建开源的WirelessHART协议栈,用于无线控制系统的整体仿真;(3)对6跳21节点WSAN控制的耦合水箱系统进行了系统研究。我们的研究结果表明,我们的实时应急通信方法能够及时处理紧急情况,同时允许常规反馈控制回路在正常运行期间有效地共享wsan中的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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