控制性能中行动和测量的相关性

P. Albertos
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引用次数: 2

摘要

本文分析了输入和输出变量在实现控制性能中的相对相关性。为了比较不同的控制结构,用极点位置来表示闭环控制系统的性能。附加在每个输入(输出)上的控制努力(控制贡献)被定义为其路径中不引起不稳定的最大允许延迟的倒数。该延迟可由变量连接下开闭环极点的位移粗略估计,定义为控制结构中的变量相关性。由于数字控制意味着在采样间隔时间内的开环控制,因此在控制的更新过程中总是存在时间延迟。大多数相关变量的小时间延迟可能导致不稳定的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relevance of actions and measurements in control performances
In this paper, the relative relevance of input and output variables in achieving the control performance is analysed. In order to compare different control structures, the performances of the closed loop controlled system are expressed by the poles' position. Attached to each input (output), the control effort (control contribution) is defined as the inverse of the maximum admissible delay in its path without provoking instability. This delay, that can be roughly estimated by the shift of the open-to-closed loop poles under the variable connection, is defined as the variable relevance in the control structure. As digital control implies open-loop control in the intersampling time interval, there is always a time delay in the updating of the control. Small time delays in the most relevant variables may result in unstable behaviour.
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