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Wireless Model-Based Predictive Networked Control System Over Cooperative Wireless Network

机译:协作无线网络中基于无线模型的预测网络控制系统

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摘要

Owing to their distributed architecture, networked control systems (NCSs) are proven to be feasible in scenarios where a spatially distributed feedback control system is required. Traditionally, such NCSs operate over real-time wired networks. Recently, in order to achieve the utmost flexibility, scalability, ease of deployment, and maintainability, wireless networks such as IEEE 802.11 wireless local area networks (LANs) are being preferred over dedicated wired networks. However, conventional NCSs with event-triggered controllers and actuators cannot operate over such general purpose wireless networks since the stability of the system is compromised due to unbounded delays and unpredictable packet losses that are typical in the wireless medium. Approaching the wireless networked control problem from two perspectives, this work introduces a practical wireless NCS and an implementation of a cooperative medium access control protocol that work jointly to achieve decent control under severe impairments, such as unbounded delay, bursts of packet loss and ambient wireless traffic. The proposed system is evaluated on a dedicated test platform under numerous scenarios and significant performance gains are observed, making cooperative communications a strong candidate for improving the reliability of industrial wireless networks.
机译:由于其分布式架构,网络控制系统(NCS)被证明在需要空间分布式反馈控制系统的情况下是可行的。传统上,此类NCS通过实时有线网络运行。近来,为了获得最大的灵活性,可伸缩性,易于部署和可维护性,与专用有线网络相比,诸如IEEE 802.11无线局域网(LAN)之类的无线网络更受青睐。但是,具有事件触发的控制器和执行器的常规NCS无法在此类通用无线网络上运行,因为系统的稳定性由于无线媒体中常见的无限延迟和不可预测的分组丢失而受到损害。从两个角度解决无线网络控制问题,这项工作介绍了一种实用的无线NCS和协作媒体访问控制协议的实现,这些协议共同工作以在严峻的障碍(例如无限延迟,丢包突发和环境无线)下实现良好的控制。交通。拟议的系统在众多场景下的专用测试平台上进行了评估,并观察到了显着的性能提升,使协作通信成为提高工业无线网络可靠性的强大候选者。

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