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Zero assignment in a time delayed continuous system for active vibration control

机译:零延迟连续系统中的零分配,用于主动振动控制

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Active control of undesirable vibrations in structures, such as automobiles, rotors, air/space crafts, buildings, bridges etc., can be realized by pole and/or zero assignment. The Pole assignment problems in active control deals with reassigning a small set of unwanted eigenvalues and/or eigenvectors by using feedback control force to suitably chosen desired location, whereas the suppression of the amplitude of vibration at the desired location in the structure is known as zero assignment. Real time implementation of an active control strategy requires incorporation of the inherent time delay in the feedback loop for control gain computations. In this paper, methods for obtaining closed form solution of control gains for active zero assignment in a non-uniform distributed parameter system is presented while considering a small time delay in a feedback loop. The absorption strategy is demonstrated with examples. Effect of the time delay in control gains is studied and issues related to system stability are briefly discussed.
机译:可以通过极点和/或零位分配实现主动控制结构(例如汽车,转子,航空航天器,建筑物,桥梁等)中的不良振动。在主动控制交易的极点配置的问题通过使用反馈控制的力以适当地选择所希望的位置,重新分配一小组不想要的特征值和/或特征向量的,而振动的振幅的在该结构中的期望位置处抑制被称为零任务。主动控制策略的实时实施需要在反馈环路中纳入固有时间延迟,以进行控制增益计算。本文提出了一种在非均匀分布参数系统中考虑主动回路零延迟的同时,获得用于主动零分配的控制增益的闭式解的方法。实例演示了吸收策略。研究了时间延​​迟对控制增益的影响,并简要讨论了与系统稳定性有关的问题。

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