离散控制器设计

J. Leigh
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引用次数: 5

摘要

本章讨论离散时间控制(即在计算机中可实现的那种)的理论和实践,以实现连续时间过程的闭环控制。因此,我们关注的是混合反馈回路中连续时间过程的离散时间控制。一个自然的问题浮现了:与连续控制器相比,离散控制器有什么优势?答案非常令人失望。就控制理论而言,没有任何优势(这一点的证明是,每个可实现的离散时间信号都是连续时间信号,但反之则为假)。研究离散时间控制的原因本质上是实用的:允许使用可靠的小型低成本数字电子设备作为控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Discrete controller design
This chapter discusses the theory and practice of discrete time control (i.e. the sort that is implementable in computers) to achieve closed-loop control of continuous time processes. Thus, we are concerned with the discrete time control of continuous time processes within a hybrid feedback loop. A natural initial question suggests itself: what are the advantages of discrete, as opposed to continuous, controllers? The answer is very disappointing. As far as control theory is concerned, there are no advantages (the proof of this is that every realisable discrete time signal is a continuous time signal, but the converse is false). The reason for studying discrete time control is essentially practical: to allow reliable miniature low-cost digital electronic devices to be used as controllers.
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