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Stabilization of linear systems with both input and state delays by observer-predictors

机译:观察者 - 预测因子的输入和状态延迟稳定线性系统

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This paper studies the stabilization of linear systems with both state and input delays where the input delay can be arbitrarily large yet exactly known. Observer-predictor based controllers are designed to predict the future states so that the input delay can be properly compensated. Necessary and sufficient conditions guaranteeing the stability of the closed-loop system are provided in terms of the stability of some simple linear time-delay systems refereed to as observer-error systems, by which the separation principle is discovered. Moreover, approaches in terms of linear matrix inequalities are also provided to design both the state feedback gains and observer gains. Finally, a numerical example illustrates that the proposed approaches are more effective and safe to implement than the existing methods. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了具有状态和输入延迟的线性系统的稳定,其中输入延迟可以任意大而恰恰是已知的。 基于观察者预测的控制器旨在预测未来状态,以便可以正确地补偿输入延迟。 在被判定为观察者误差系统的一些简单线性时延系统的稳定性方面提供了保证闭环系统的稳定性的必要和充分条件,通过该稳定性地提供了分离原理。 此外,还提供了线性矩阵不等式方面的方法,以设计状态反馈增益和观察者收益。 最后,一个数字示例说明了所提出的方法比现有方法更有效和安全地实现。 (c)2017 Elsevier Ltd.保留所有权利。

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