Design of optimal controllers for distributed systems using finite dimensional state observers

P. Stavroulakis, P. Sarachik
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引用次数: 7

Abstract

The problem of constructing an "observer" to enable us to implement an approximate optimal control for a distributed parameter system is examined where the state is measured at a few pre-specified points. The observer is formulated as the output of a dynamical system described by a set of ordinary differential equations. Both distributed and boundary control problems are studied and the observer-formulation is set up for both cases. Some reasonable assumptions have been made in order that the approximation introduced by the eigenfunction expansion technique be satisfactory. For the case of the boundary control problem, a simple example is solved to illustrate the method.
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基于有限维状态观测器的分布式系统最优控制器设计
构造一个“观测器”的问题,使我们能够实现分布参数系统的近似最优控制,其中状态是在几个预先指定的点上测量的。观测器被表述为由一组常微分方程描述的动力系统的输出。研究了分布控制问题和边界控制问题,建立了两种情况下的观测器公式。为了使本征函数展开技术所引入的近似是令人满意的,还作了一些合理的假设。对于边界控制问题,通过一个简单的算例说明了该方法。
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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