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Cross-Layer Adaptive Feedback Scheduling of Wireless Control Systems

机译:无线控制系统的跨层自适应反馈调度

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摘要

There is a trend towards using wireless technologies in networked control systems. However, the adverse properties of the radio channels make it difficult to design and implement control systems in wireless environments. To attack the uncertainty in available communication resources in wireless control systems closed over WLAN, a cross-layer adaptive feedback scheduling (CLAFS) scheme is developed, which takes advantage of the co-design of control and wireless communications. By exploiting cross-layer design, CLAFS adjusts the sampling periods of control systems at the application layer based on information about deadline miss ratio and transmission rate from the physical layer. Within the framework of feedback scheduling, the control performance is maximized through controlling the deadline miss ratio. Key design parameters of the feedback scheduler are adapted to dynamic changes in the channel condition. An event-driven invocation mechanism for the feedback scheduler is also developed. Simulation results show that the proposed approach is efficient in dealing with channel capacity variations and noise interference, thus providing an enabling technology for control over WLAN.
机译:在网络控制系统中存在使用无线技术的趋势。然而,无线电信道的不利特性使得难以在无线环境中设计和实现控制系统。为了解决在WLAN封闭的无线控制系统中可用通信资源中的不确定性,开发了一种跨层自适应反馈调度(CLAFS)方案,该方案利用了控制和无线通信的共同设计优势。通过利用跨层设计,CLAFS基于有关截止期限未命中率和来自物理层的传输速率的信息来调整应用层控制系统的采样周期。在反馈调度的框架内,通过控制截止期限未命中率可以最大化控制性能。反馈调度器的关键设计参数适用于信道条件的动态变化。还开发了用于反馈调度程序的事件驱动的调用机制。仿真结果表明,该方法在处理信道容量变化和噪声干扰方面是有效的,从而为控制WLAN提供了一种可行的技术。

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