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Semiglobal Asymptotic Stabilization of Lower Triangular Systems by Digital Output Feedback

机译:数字输出反馈下三角系统的半球渐近稳定

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Digital control of nonlinear systems is studied by output feedback. It is proved that for nonlinear systems with a lower triangular structure, semiglobal asymptotic stabilization is still possible via discretized output feedback as long as a sampling time is small. The establishment of semiglobal asymptotic stabilizability needs no restrictive condition on the nonlinearities and/or unmeasurable states of the system, such as a linear growth condition or an output-dependent growth condition as commonly required in the case of global output feedback stabilization. It involves, however, tedious but subtle stability analysis due to the hybrid nature of the closed-loop system. A design method through "sample and hold" is developed to construct a semiglobally asymptotically stabilizing, digital output feedback compensator that consists of a high-gain nonlinear observer and controller, both with saturated states.
机译:通过输出反馈研究了非线性系统的数字控制。事实证明,对于具有较低三角形结构的非线性系统,只要采样时间很小,即可通过离散的输出反馈来实现半球渐近稳定。半球形渐近稳定性的建立在系统的非线性和/或未衡量状态下不需要限制条件,例如在全球输出反馈稳定的情况下通常所需的线性生长条件或输出依赖性生长条件。然而,由于闭环系统的混合性质,它涉及繁琐但微妙的稳定性分析。通过“采样和保持”的设计方法是开发的,以构建半球渐近稳定的数字输出反馈补偿器,该数字输出反馈补偿器包括高增益非线性观察者和控制器,包括饱和状态。

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