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Adaptive sliding mode control for a class of uncertain discrete-time systems using multi-rate output measurement

机译:使用多速率输出测量的一类不确定离散时间系统的自适应滑模控制

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摘要

This article is concerned with the design of an adaptive sliding mode control (SMC) for a class of uncertain discrete-time systems using the multi-rate output measurement. The states of the discrete-time systems are assumed to be taken in the multi-rate output measurement by the contamination with measurement noise. The uncertainties are assumed not to satisfy the matching condition, and are expressed in a parameterised form. A least squares estimator (LSE) to take the estimates for the un-measurable states and the uncertainties is designed in a batch form by using the noisy multi-rate output measurement. The proposed adaptive SMC is designed by using the sliding surface expressed as the linear state function and the estimates obtained from the LSE. It is proved that the estimation errors converge to zero as time tends to infinite, and the states of the system are bounded under the action of the proposed adaptive SMC. The effectiveness of the proposed method is indicated through the simulation experiment in a simple system.
机译:本文涉及使用多速率输出测量的一类不确定离散时间系统的自适应滑模控制(SMC)的设计。假定离散时间系统的状态是由于测量噪声的污染而在多速率输出测量中采用的。假定不确定度不满足匹配条件,并以参数化形式表示。通过使用有噪声的多速率输出测量,以批处理形式设计了一个最小二乘估计器(LSE)以对不可测量的状态和不确定性进行估计。通过使用表示为线性状态函数的滑动表面和从LSE获得的估计值设计提出的自适应SMC。证明了随着时间趋于无限,估计误差收敛到零,并且在所提出的自适应SMC的作用下系统的状态受到限制。通过在一个简单系统中的仿真实验表明了该方法的有效性。

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