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Generalized state-dependent scaling: Backstepping for local optimality, global inverse optimality, and global robust stability

机译:广义状态依赖性缩放:用于局部最优性,全局反向最优性和全局鲁棒稳定性的BackStepping

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This paper addresses the inverse optimal robust control problem for uncertain nonlinear systems. A new version of robust backstepping is proposed in which inverse optimality is achieved through the selection of generalized state-dependent scaling factors. The design procedure is always successful for uncertain nonlinear systems in strict-feedback form. The class of cost functionals allowed in the inverse optimal design is such that the uncertainty structure and desired level of global robustness can be prescribed a priori. Furthermore, the inverse optimal control law can always be designed such that its linearization is identical to a linear optimal control law for the linearized system with respect to a prescribed cost functional.
机译:本文解决了不确定非线性系统的反向最佳鲁棒控制问题。提出了一种新版本的鲁棒BackStepping,其中通过选择广义状态依赖性缩放因子来实现逆最优性。设计过程始终成功用于严格反馈形式的不确定非线性系统。逆最佳设计中允许的成本功能的类别是可以规定不确定性结构和期望的全局鲁棒性水平。此外,始终可以设计逆最佳控制定律,使得其线性化与线性化系统相对于规定的成本函数的线性最佳控制规律相同。

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