In-domain finite dimensional control of distributed parameter port-Hamiltonian systems via energy shaping

Ning Liu, Yongxin Wu, Y. L. Gorrec, L. Lefévre, Héctor Ramírez
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引用次数: 1

Abstract

In this paper we consider in-domain control of distributed parameter port-Hamiltonian systems defined on a one dimensional spatial domain. Through an early lumping approach we extend the control by interconnection and energy shaping approach to the use of distributed control over the spatial domain. With the established finite dimensional controller, the closed-loop performances can be modified over a given range of frequencies while guaranteeing the closedloop stability of the infinite dimensional system. Two cases are investigated, the ideal case where the controller acts on the complete spatial domain (infinite dimensional distributed control), and the more realistic one where the control is piecewise homogeneous (finite rank distributed control). The proposed control strategies are illustrated through simulations on the stabilization of a vibrating Timoshenko
分布参数端口-哈密顿系统的能量整形域内有限维控制
本文研究一维空间域上定义的分布参数端口-哈密顿系统的域内控制问题。通过早期的集总方法,我们将互连控制和能量整形方法扩展到在空间域上使用分布式控制。利用所建立的有限维控制器,可以在给定频率范围内修改闭环性能,同时保证无限维系统的闭环稳定性。研究了两种情况,理想情况下,控制器作用于完全空间域(无限维分布式控制),更现实的情况下,控制器是分段齐次的(有限秩分布式控制)。通过振动铁木申科的镇定仿真,说明了所提出的控制策略
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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