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Controllability and stabilizability of a networked control system with periodic communication constraints

机译:具有周期性通信约束的网络控制系统的可控性和稳定性

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This paper proposes a new model for a networked control system and considers its controllability and stabilizability. To control a linear time-invariant discrete-time plant via a bus with limited capacity, we introduce a hold device and a communication sequence which follows a given ω-periodic pattern. Incorporating the communication sequences and hold device into the original plant amounts to extending the original time-invariant state equation to a ω-periodic one which has the higher order. We assume that the communication sequence is admissible. It is shown that controllability and stabilizability of the plant are preserved in the periodic extended system under the assumption that the zeros of the communication sequence characteristic polynomial do not coincide with the eigenvalues of the plant.
机译:本文提出了一种新的网络控制系统模型,并考虑了其可控制性和稳定性。为了通过容量有限的总线控制线性时不变离散时间设备,我们引入了一个保持装置和一个遵循给定ω-周期模式的通信序列。将通信序列和保持设备合并到原始设备中,相当于将原始的时不变状态方程扩展为具有更高阶的ω-周期方程。我们假设通信顺序是可以接受的。结果表明,在通信序列特征多项式的零与植物特征值不一致的前提下,周期性扩展系统中保留了植物的可控制性和稳定性。

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