一种用于机械耦合振动主动控制的IIR youla - kuucera参数化自适应前馈补偿器

I. Landau, T. Airimitoaie, M. Alma
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引用次数: 4

摘要

自适应前馈宽带振动(或噪声)补偿是目前使用的测量相关的干扰是可用的。然而,在大多数系统中,补偿器系统与干扰相关测量之间存在“正”反馈耦合。这可能导致系统的不稳定。提出了一种新的yula - kuucera (YK)参数化方法。中心补偿器保证了系统的稳定性,并通过自适应IIR youla - kuucera滤波器的参数实时增强了系统的性能。最后对系统进行了分析。本文的研究结果一方面推广了前人对FIR youla - kuucera自适应滤波器的研究结果,另一方面显著减少了相同性能水平下需要适应的参数数量。将该算法应用于振动主动控制(AVC)系统,并给出了实时结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An IIR Youla-Kucera parametrized adaptive feedforward compensator for active vibration control with mechanical coupling
Adaptive feedforward broadband vibration (or noise) compensation is currently used when a measurement correlated with the disturbance is available. However, in most of the systems there is a “positive” feedback coupling between the compensator system and the disturbance correlated measurement. This may lead to the instability of the system. The paper proposes a new Youla-Kucera (YK) parametrization of the compensator. The central compensator assures the stability of the system and its performances are enhanced in real time by the adaptation of the parameters of an IIR Youla-Kucera filter. An analysis of the resulting system is provided. The results of this paper on one hand generalize previous results obtained for FIR Youla-Kucera adaptive filters and on the other hand lead to a significant reduction of the number of parameter to be adapted for the same level of performance. The algorithm has been applied to an Active Vibration Control (AVC) system and real time results are presented.
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