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Input-output linearization with delay cancellation for nonlinear delay systems: the problem of the internal stability

机译:具有非线性时滞系统的时延抵消的输入输出线性化:内部稳定性问题

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摘要

This paper investigates the issue of the internal stability of nonlinear delay systems controlled with a feedback law that performs exact input-output, linearization and delay cancellation. In previous works the authors showed that, unlike with the case of systems without state delays, when the relative degree is equal to the number of state variables and the output is forced to be identically zero, delay systems still possess a non-trivial internal state dynamics. Not only, in the same conditions delay systems are also characterized by a non-trivial input dynamics. Obviously, both internal state and input dynamics should give bounded trajectories, otherwise the exact input-output linearization and delay cancellation technique cannot be applied. This paper studies the relationships between the internal state and input dynamics of a controlled nonlinear delay system. An interesting result is that a suitable stability assumption on the internal state dynamics ensures that, when the output is asymptotically driven to zero, both the state and control variables asymptotically decay to zero. Copyright (C) 2003 John Wiley Sons, Ltd. [References: 16]
机译:本文研究了由反馈律控制的非线性延迟系统的内部稳定性问题,该反馈律执行精确的输入-输出,线性化和延迟抵消。在先前的工作中,作者表明,与没有状态延迟的系统不同,当相对度等于状态变量的数量并且输出被强制等于零时,延迟系统仍然具有非平凡的内部状态。动力学。不仅在相同条件下,延迟系统还具有非平凡的输入动态特性。显然,内部状态和输入动力学都应给出有界的轨迹,否则无法应用精确的输入输出线性化和延迟消除技术。本文研究了受控非线性时滞系统内部状态与输入动力学之间的关系。一个有趣的结果是,内部状态动力学的适当稳定性假设可确保在将输出渐近驱动到零时,状态变量和控制变量都渐渐衰减到零。版权所有(C)2003 John Wiley Sons,Ltd. [引用:16]

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