奇摄动连续系统的离散时间观测器:第二部分,非自治系统

K. Shouse, David G. Taylor
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引用次数: 6

摘要

提出了一种设计非线性奇摄动连续非自治系统离散观测器的新方法。我们的设计方法是基于状态到测量映射的反演。为了利用系统的双时间尺度特性,利用多速率测量和计算构造了独立的慢速和快速降阶观测器。对于具有分段常数输入的系统,本文以类tikhonov近似定理的形式介绍了作为降阶观测器基础的基本近似。最后给出了该理论的一个实际应用,即仅通过定子电流测量来实现永磁同步电机的调速。数值模拟证明了该应用的降阶观测器的优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Discrete-Time Observers for Singularly Perturbed Continuous-Time Systems: Part II, Nonautonomous Systems
A new technique for designing discrete-time observers for nonlinear singularly perturbed continuous-time nonautonomous systems is presented. Our design approach is based on inversion of state-to-measurement maps. In order to exploit the two-time-scale nature of the system, separate slow and fast reduced-order observers are constructed using multirate measurements and computation. The underlying approximations, on which the reduced-order observers are based, are introduced here in the form of a Tikhonov-like approximation theorem for systems with piecewise-constant inputs. The paper concludes with a practical application of the theory, namely, velocity regulation of permanent-magnet synchronous motors using only stator current measurements. Numerical simulations demonstrate for this application the strengths and weaknesses of our reduced-order observers.
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