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Try-once-discard scheduling for stochastic networked control systems

机译:随机网络控制系统的尝试一次丢弃调度

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In practical networked control systems (NCS), such as smart grids, cooperative robotics, and sensor networks, often multiple control applications share a communication infrastructure, requiring a smart and efficient scheduling mechanism to coordinate the access to the capacity-limited communication medium. In this article we consider the problem of event-based scheduling design for NCSs consisting of multiple control loops over a shared communication medium. We extend the notion of Try-Once-Discard (TOD), which is one of the basic deterministic event-based scheduling protocols for resource constrained NCSs, to the case of multiple stochastic control systems coupled via a shared communication medium subject to capacity limitation and stochastic packet delivery failure. Showing that the overall network-induced error is a homogeneous Markov chain in our stochastic set-up, we first study stability properties of such networked systems under the TOD scheduling scheme employing the concepts of stochastic stability. Then, we derive sufficient stability conditions under the TOD rule assuming that the communication channel is not ideal, i.e. a scheduled data packet for transmission might be lost in the communication channel with a non-zero probability. Furthermore, we derive analytic performance bounds by finding uniform upper-bounds for an average quadratic cost function. The numerical simulations are performed for variety of system parameters and NCS set-ups to strengthen our stability claim as well as illustrating performance bounds. Additionally, we show that the TOD scheduling rule outperforms the conventional time-triggered, and uniform and non-uniform random channel access arbitration mechanisms, in terms of efficient coordination of channel access in stochastic NCSs.
机译:在实际联网控制系统(NCS)中,例如智能电网,协作机器人和传感器网络,通常多个控制应用程序共享通信基础设施,需要智能和有效的调度机制来协调对容量有限通信介质的访问。在本文中,我们考虑基于事件的调度设计的问题,用于在共享通信介质上由多个控制循环组成的NCS。我们扩展了尝试一次丢弃(TOD)的概念,这是资源受限NCS的基于基于确定的基于事件的调度协议之一,到通过经受容量限制的共享通信介质耦合的多个随机控制系统的情况。随机数据包输送失败。表明整个网络诱导的误差是我们随机设置中的同类马尔可夫链,我们首先研究采用随机稳定性概念的TOD调度方案下等网络系统的稳定性特性。然后,假设通信信道不是理想的,我们在TOD规则下导出足够的稳定性条件,即用于传输的预定数据分组可能在具有非零概率的通信信道中丢失。此外,我们通过找到平均二次成本函数的均匀上限来推导分析性能界限。为各种系统参数和NCS设置执行数值模拟,以加强我们的稳定性主张以及说明性能界限。另外,就ToP塑性NCS中的信道访问的有效协调而言,TOD调度规则优于传统的时间触发和均匀和不均匀的随机信道访问仲裁机制。

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