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Global stabilization of feedforward systems under perturbations in sampling schedule

机译:抽样计划中受干扰的前馈系统的全局稳定

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摘要

For nonlinear systems that are known to be globally asymptotically stabilizable, control over networks introduces a major challenge because of the asynchrony in the transmission schedule. Maintaining global asymptotic stabilization in sampled-data implementations with zeroorder hold and with perturbations in the sampling schedule is not achievable in general, but we show in this paper that it is achievable for the class of feedforward systems. We develop sampled-data feedback stabilizers which are not approximations of continuous-time designs but are discontinuous feedback laws that are specifically developed for maintaining global asymptotic stabilizability under any sequence of sampling periods that is uniformly bounded by a certain "maximum allowable sampling period."
机译:对于已知可以全局渐近稳定的非线性系统,由于传输调度中的异步性,对网络的控制带来了重大挑战。通常,在零阶保持和采样时间表中存在扰动的采样数据实现中保持全局渐近稳定是无法实现的,但是在本文中,我们证明了对于前馈系统而言这是可以实现的。我们开发了采样数据反馈稳定器,它不是连续时间设计的近似值,而是不连续反馈定律,专门为在任何由一定的“最大允许采样周期”统一界定的采样周期序列下保持全局渐近稳定而专门开发的。

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