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Simultaneous compensation of input and state delays for nonlinear systems

机译:非线性系统的输入和状态延迟的同时补偿

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摘要

The problem of compensation of arbitrary large input delay for nonlinear systems was solved recently with the introduction of the nonlinear predictor feedback. In this paper we solve the problem of compensation of input delay for nonlinear systems with simultaneous input and state delays of arbitrary length. The key challenge, in contrast to the case of only input delay, is that the input delay-free system (on which the design and stability proof of the closed-loop system under predictor feedback are based) is infinite-dimensional. We resolve this challenge and we design the predictor feedback law that compensates the input delay. We prove global asymptotic stability of the closed-loop system using two different techniques-one based on the construction of a Lyapunov functional, and one using estimates on solutions. We present two examples, one of a nonlinear delay system in the feedforward form with input delay, and one of a scalar, linear system with simultaneous input and state delays.
机译:最近,随着非线性预测器反馈的引入,解决了非线性系统补偿任意大输入延迟的问题。在本文中,我们解决了同时具有任意长度输入和状态延迟的非线性系统的输入延迟补偿问题。与仅输入延迟的情况相比,关键挑战在于输入无延迟系统(预测器反馈下的闭环系统的设计和稳定性证明所基于的系统)是无限维的。我们解决了这一难题,并设计了可补偿输入延迟的预测器反馈定律。我们使用两种不同的技术证明了闭环系统的全局渐近稳定性,一种基于Lyapunov泛函的构造,另一种基于对解的估计。我们提供了两个示例,一个是具有输入延迟的前馈形式的非线性延迟系统,另一个是具有同时输入和状态延迟的标量线性系统。

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