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Energy-efficient distributed control of large-scale systems: A switched system approach

机译:大型系统的节能分布式控制:交换系统方法

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This paper is concerned with the sensor-network-based distributed control of large-scale systems with the power constraint. In the underlying system, the measurement is firstly sampled under nonuniform sampling periods, which are varying in a given set. Then, the measurement size reduction technique and communication rate reduction method are used to save the constrained power in sensor networks. Specifically, only one element of sampled measurement is chosen at each sampling time instant, and it is then quantized and transmitted to the neighbouring controllers. Based on the switched system approach, a unified model is presented to capture the nonuniform sampling, the measurement size reduction, the transmission rate reduction and the controller failure phenomenon. A new sufficient condition is obtained such that the filtering error system is exponentially stable in the mean-square sense with a prescribed H performance level. Based on this condition, the controller gains are designed by using the cone complementarity linearization algorithm. Finally, a simulation study is given to show the effectiveness of the proposed new design technique. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本文涉及具有功率约束的大型系统的基于传感器网络的分布式控制。在基础系统中,首先在不均匀的采样周期内对测量进行采样,采样周期在给定的集合中有所变化。然后,使用测量尺寸减小技术和通信速率减小方法来节省传感器网络中的受限功率。具体而言,在每个采样时刻仅选择一个采样测量元素,然后将其量化并传输到相邻控制器。基于交换系统方法,提出了一个统一的模型来捕获非均匀采样,测量尺寸减小,传输速率减小和控制器故障现象。获得了一个新的充分条件,使得滤波误差系统在均方意义上具有规定的H性能水平时呈指数稳定。在此条件下,采用锥互补线性化算法设计控制器增益。最后,仿真研究表明了所提出的新设计技术的有效性。版权所有(c)2015 John Wiley&Sons,Ltd.

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