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Adaptive compensation of disturbances formed as sums of sinusoidal signals with application to an active vibration control benchmark

机译:自适应补偿正弦信号总和形成的干扰,并应用于主动振动控制基准

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摘要

An intuitive solution for the problem of adaptive attenuation of a disturbance formed as a finite sum of unknown sinusoidal signals is proposed for an internally stable discrete-time plant. The compensator is formed as a weighted sum of stable filters. An identification-based procedure for adaptive tuning of the coefficients is proposed for the case of unknown disturbance. We also propose a time-invariant compensator that provides perfect attenuation of a disturbance for the case when a model identification error is sufficiently small and disturbance frequencies are known. The technique is applied to a case study on a challenging benchmark example in the field of active vibration control. Attenuation of a disturbance formed as a sum of up to three sinusoidal signals with unknown/time-varying frequencies is demonstrated via simulation and experimental studies. (C) 2013 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:对于内部稳定的离散时间设备,提出了一种针对作为未知正弦信号的有限总和而形成的干扰的自适应衰减问题的直观解决方案。补偿器形成为稳定滤波器的加权和。针对未知干扰的情况,提出了一种基于识别的系数自适应调整程序。我们还提出了一种时不变补偿器,在模型识别误差足够小且已知干扰频率的情况下,它可以提供对干扰的完美衰减。该技术应用于主动振动控制领域中具有挑战性的基准示例的案例研究。通过仿真和实验研究证明了由多达三个正弦波信号之和形成的扰动的衰减,这些正弦信号具有未知/随时间变化的频率。 (C)2013欧洲控制协会。由Elsevier Ltd.出版。保留所有权利。

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