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Time-delayed positive velocity feedback control design for active control of structures

机译:主动控制结构的时滞正速度反馈控制设计

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摘要

In this paper we present and propose a design methodology that uses intentional time delays for the active control of structures. We use here positive velocity-feedback, time-delayed control and show that its performance is, in general, superior to the previously developed methodology of using time delayed, negative velocity-feedback control. A detailed study carried out in this paper of the nonsystem poles and their interaction with the system poles reveals the reasons for this. Analytical results related to performance and stability of the new method are presented. We apply the time delayed positive velocity feedback active control methodology to a multidegree-of-freedom system subjected to the S00E component of ground acceleration recorded during the El Centro 1940 earthquake. The excellent behavior in terms of stability, performance, and control efficiency that is demonstrated by our time-delayed control design as well as its facile implementation makes it attractive for earthquake hazard mitigation in a practical sense.
机译:在本文中,我们提出并提出一种设计方法,该方法使用故意的时间延迟来主动控制结构。我们在这里使用正速度反馈,时间延迟控制,并表明其性能总体上优于以前开发的使用时间延迟,负速度反馈控制的方法。本文对非系统极点及其与系统极点的相互作用进行了详细研究,揭示了造成这种情况的原因。提出了与新方法的性能和稳定性有关的分析结果。我们将时滞正速度反馈主动控制方法应用于多自由度系统,该系统受到El Centro 1940地震记录的地面加速度的S00E分量的影响。我们的延时控制设计及其便捷的实施方式在稳定性,性能和控制效率方面均表现出出色的性能,因此从实际意义上讲,它对于减轻地震灾害具有吸引力。

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