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Design of Robust Input-Constrained Feedback Controllers for Nonlinear Systems

机译:非线性系统鲁棒输入约束反馈控制器的设计

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This work contributes to the optimal design of closed-loop nonlinear systems with input saturation in the presence of unknown uncertainty. Stability conditions based on contractive constraints were developed for a general class of nonlinear systems under some Lipschitz assumptions. Closed-loop robust stability and robustly optimal performance can be guaranteed in the presence of input bounds, if the solution of the design problem, formulated as a nonlinear semi-infinite program (SIP) with differential equation constraints, can be guaranteed to be feasible. In this work, the SIP is solved by means of a local reduction approach, which requires a local representation of the so-called lower level problems associated with the SIP. The suggested design method is illustrated by means of chemical reactor control problem.
机译:这项工作有助于存在未知不确定性的输入饱和度的闭环非线性系统的最佳设计。在一些嘴角假设下的一般非线性系统中开发了基于收缩约束的稳定性条件。如果设计问题的解决方案,配制为具有微分方程约束的非线性半无限程序(SIP)的解决方案,可以保证闭环强大的稳定性和强大的最佳性能可以保证可行。在这项工作中,SIP通过本地还原方法解决,该方法需要局部表示与SIP相关的所谓的较低级别问题。通过化学反应器控制问题说明了建议的设计方法。

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