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首页> 外文期刊>Journal of Sound and Vibration >Robust vibration isolation via frequency-shaped sliding control and modal decomposition
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Robust vibration isolation via frequency-shaped sliding control and modal decomposition

机译:通过频率形滑动控制和模态分解实现可靠的隔振

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摘要

A robust controller design is proposed for multi-degree-of-freedom active vibration isolation, which accounts for plant uncertainties and payload disturbances using frequency-shaped sliding control. First, modal decomposition is employed to rewrite the MIMO vibration control problem as a combination of individual SISO control problems in modal coordinates. The modal parameters for decomposition and modelling can be extracted from theoretical or experimental modal analysis. Next, the target frequency-domain performance of isolation, in this case a skyhook model, is recast as a frequency-shaped sliding surface. The practical effects of boundary layer approximation in the resulting controller design are examined. Simulations illustrate that the ideal skyhook effect can indeed be robustly achieved. The frequency-shaped manifold is also extended to adaptive vibration isolation without using model reference. This algorithm has been recently verified by experiments (IEEE Transactions on Control Systems Technology (2005), in press), and has been demonstrated very effective for vibration isolation. The paper also shows, more generally, that the design of a frequency-shaped sliding surface is formally equivalent to a feedback-feedforward compensation problem. Nonlinear target dynamics of the same order as the nominal plant can also be attained. (c) 2004 Elsevier Ltd. All rights reserved.
机译:针对多自由度主动隔振,提出了一种鲁棒的控制器设计,该控制器设计利用频率形状的滑动控制解决了设备的不确定性和有效载荷干扰。首先,采用模态分解来重写MIMO振动控制问题,作为模态坐标中各个SISO控制问题的组合。可以从理论或实验模态分析中提取用于分解和建模的模态参数。接下来,将隔离的目标频域性能(在这种情况下为“天钩”模型)重铸为频率形状的滑动表面。研究了边界层逼近在所得控制器设计中的实际效果。仿真表明,确实可以牢固地实现理想的“空中钩挂”效果。频率形歧管也扩展为自适应振动隔离,而无需使用模型参考。最近,该算法已通过实验验证(IEEE出版的《控制系统技术》(2005年出版)),并已证明对隔振非常有效。本文还更普遍地表明,频率形滑动表面的设计在形式上等效于反馈前馈补偿问题。还可以实现与标称设备相同数量级的非线性目标动力学。 (c)2004 Elsevier Ltd.保留所有权利。

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