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Real-Time Wireless Routing for Industrial Internet of Things

机译:工业物联网的实时无线路由

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摘要

With the emergence of the Industrial Internet of Things (IIoT), process industries have started to adopt wireless sensor-actuator networks (WSANs) for control applications. It is crucial to achieve real-time communication in this emerging class of networks, and routing has significant impacts on end-to-end communication delays in WSANs. However, despite considerable research on real-time transmission scheduling and delay analysis for such networks, real-time routing remains an open question for WSANs. This paper presents a conflict-aware real-time routing approach for WSANs, leveraging a key observation that conflicts among transmissions involving a common field device can contribute significantly to communication delays in industrial WSANs, such as WirelessHART networks. By incorporating conflict delays into the routing decisions, conflict-aware real-time routing algorithms allow a WSAN to accommodate more real- time flows while meeting their deadlines. Both evaluations based on simulations and experiments on a physical WSAN testbed show that conflict-aware real-time routing can lead to as much as a three-fold improvement in the real-time capacity of WSANs.
机译:随着工业物联网(IIoT)的出现,过程工业已开始采用无线传感器致动器网络(WSAN)进行控制应用。在这种新兴的网络类型中实现实时通信至关重要,路由对WSAN中的端到端通信延迟有重大影响。但是,尽管对此类网络的实时传输调度和延迟分析进行了大量研究,但实时路由仍然是WSAN的一个悬而未决的问题。本文提出了一种WSAN感知冲突的实时路由方法,该方法利用了一个关键的观察结果,即涉及公共现场设备的传输之间的冲突会显着影响工业WSAN(例如WirelessHART网络)中的通信延迟。通过将冲突延迟纳入路由决策中,可感知冲突的实时路由算法可使WSAN在满足其最终期限的情况下容纳更多实时流。在物理WSAN测试床上进行的仿真和实验评估均表明,可感知冲突的实时路由可将WSAN的实时容量提高多达三倍。

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