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Bounded integral control for regulating input-to-state stable non-linear systems

机译:有界积分控制,用于调节输入到状态稳定的非线性系统

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In this paper, a bounded integral controller (BIC) is proposed for regulating non-linear systems with guaranteed closed-loop system stability. It is proven that the BIC generates a bounded control output independently from the plant parameters and states and guarantees closed-loop system stability in the sense of boundedness with the only knowledge of the input-to-state (practical) stability (ISpS) of the plant. Furthermore, an analytic selection of the BIC parameters is presented to guarantee a given bound for the control output, suitably extending the BIC application to locally ISpS plant systems as well. Its performance is investigated using non-linear Lyapunov methods and it is proven that it can approximate the behavior of the traditional integral controller (IC) near steady state. Simulation results of a locally ISS system are provided to compare the BIC with the IC operation under a given bound of the control output.
机译:本文提出了一种有界积分控制器(BIC),用于调节具有保证的闭环系统稳定性的非线性系统。事实证明,BIC可以独立于工厂参数和状态而生成有界控制输出,并且仅在知道有界的输入状态(实际)稳定性(ISpS)的情况下,就有界性而言可以确保闭环系统的稳定性。植物。此外,还提供了BIC参数的解析选择,以保证控制输出的给定范围,从而也将BIC应用适当地扩展到本地ISpS工厂系统。使用非线性Lyapunov方法研究了它的性能,并证明了它可以近似于接近稳态的传统积分控制器(IC)的行为。提供了本地ISS系统的仿真结果,以在控制输出的给定范围内将BIC与IC操作进行比较。

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