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A singular perturbation approach to nonlinear observer design with an application to electromagnetic actuators

机译:用电磁致动器应用的非线性观测器设计的奇异扰动方法

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摘要

A constructive method for the design of nonlinear observers is discussed. To formulate conditions for the construction of the observer gains, stability results for nonlinear singularly perturbed systems are utilised. The nonlinear observer is designed directly in the given coordinates, where the error dynamics between the plant and the observer becomes singularly perturbed by a high-gain part of the observer injection, and the information of the slow manifold is exploited to construct the observer gains of the reduced-order dynamics. This is in contrast to typical high-gain observer approaches, where the observer gains are chosen such that the nonlinearities are dominated by a linear system. It will be demonstrated that the considered approach is particularly suited for self-sensing electromechanical systems. Two variants of the proposed observer design are illustrated for a nonlinear electromagnetic actuator, where the mechanical quantities, i.e. the position and the velocity, are not measured.
机译:讨论了非线性观察者设计的建设性方法。为了制定构建观察者增益的条件,利用非线性奇异扰动系统的稳定性结果。非线性观察者直接设计在给定的坐标中,其中工厂和观察者之间的误差动态由观察者喷射的高增益部分变得奇异地扰动,并且利用慢歧管的信息来构建观察者的增加减少的动态。这与典型的高增益观测器方法形成对比,其中选择观察者收益,使得非线性由线性系统主导。将证明考虑方法特别适用于自感应机电系统。所提出的观察者设计的两个变体用于非线性电磁致动器,其中没有测量机械量,即位置和速度。

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