基于LTV-FIR命令滤波的柔性关节运动平台机构振动抑制与跟踪控制

P. Kuresangsai, M. Cole
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引用次数: 0

摘要

提出了一种线性时变预滤波器设计,用于抑制LTV运动系统的残余振动。由于预滤波的延迟效应会影响跟踪性能,因此在恒速指令跟踪的预滤波综合方程中引入了额外的力矩约束。包含矩约束可以导致更高的预滤波器增益(H2范数),从而导致瞬态响应中的超调。它显示了如何通过指定的预览时间的非因果预滤波来减少这种影响。LTV-FIR预滤波器实验应用于多弯曲X-Y运动平台机构,其中位置相关动力学通过一组已识别的LTI模型的插值来捕获。实验结果表明,与因果预滤波器相比,带输入预览的预滤波器在保持良好跟踪性能的同时,减少了稳定时间和超调量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibration suppression and tracking control of a flexure-jointed motion stage mechanism using LTV-FIR command filtering
This paper presents a linear time-varying (LTV) prefilter design for residual vibration suppression in LTV motion systems. As tracking performance can be affected by delay effects from prefiltering, an additional moment constraint is introduced in the prefilter synthesis equations for tracking of constant velocity commands. Inclusion of the moment constraint can result in higher prefilter gain (H2 norm) which leads to overshoot in the transient response. It is shown how this effect can be reduced by noncausal prefiltering with specified preview time. The LTV-FIR prefilter is applied experimentally to a multi-flexure X-Y motion stage mechanism where the position-dependent dynamics are captured by interpolation of a set of identified LTI models. The experimental results confirm that the prefilter with input preview can reduce settling time and overshoot compared with the causal prefilter, while maintaining good tracking performance.
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