State variable constraints on the performance of optimal Maglev suspension controllers

J. Paddison, C. Macleod, R. Goodall
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引用次数: 11

Abstract

The influence of the choices of state variables when designing linear optimal controllers for low speed magnetically suspended (Maglev) vehicles is examined. The design process takes account of both random and deterministic track inputs, and shows that the controllers which are produced by a LQG approach do not in general give a satisfactory response for deterministic inputs. The performance for a number of state space formulations is evaluated, and compared in the context of the suspension design requirements. Two of the formulations include the effect of integral control to reduce the low frequency errors and improve the response to deterministic inputs.<>
最优磁悬浮悬架控制器性能的状态变量约束
研究了状态变量的选择对低速磁悬浮车辆线性最优控制器设计的影响。设计过程考虑了随机和确定性的轨迹输入,并表明由LQG方法产生的控制器通常不能对确定性输入给出满意的响应。在悬架设计要求的背景下,对一些状态空间公式的性能进行了评估和比较。其中两个公式包括积分控制的作用,以减少低频误差和提高对确定性输入的响应。
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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