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Dirac Structures on Hilbert Spaces and Boundary Control of Distributed Port-Hamiltonian Systems

机译:狄拉克哈尔伯特空间和分布式哈密顿系统边界控制的狄拉克结构

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摘要

The scope of this paper is to show how to exploit the properties of the Stokes-Dirac structure in the development of energy-based boundary control laws for distributed port-Hamiltonian systems. Usually, stabilisation of non-zero equilibria has been achieved by shaping the open-loop Hamiltonian function by interconnecting a finite-dimensional port-Hamiltonian controller to the boundary of the distributed parameter system. The procedure is based on the presence of structural invariants, namely Casimir functions, in closed-loop, but this approach fails when a non-zero power flow from the controller is required at the equilibrium (dissipation obstacle). This paper illustrates that the class of stabilising controllers can be enlarged by relying on the parametrisation of the system dynamics provided by the image representation of the Stokes-Dirac structure, that is able to show the effects of the boundary inputs on the state evolution in a simple and effective way.
机译:本文的范围是展示如何利用Stokes-Dirac结构的性质在发布分布式端口 - 哈密顿系统的基于能量的边界控制法中。通常,通过通过将有限维端口 - 哈密顿控制器互连到分布式参数系统的边界来实现非零均衡的稳定。该过程基于结构不变量的存在,即Casimir功能,在闭环中,但是当在均衡(耗散障碍物)中需要来自控制器的非零功率流动时,这种方法发生故障。本文说明了通过依赖于由Stokes-DIRAC结构的图像表示提供的系统动态的参数化,可以放大稳定控制器的类别能够显示边界输入对状态演变的影响简单有效的方式。

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