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Structural active vibration control using active mass damper by block pulse functions

机译:使用主动质量阻尼器通过块脉冲功能进行结构主动振动控制

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摘要

Active vibration control is one of the most efficient systems to mitigate excessive vibrations by providing significantly superior supplemental damping in civil engineering structures. One of the most challenging components of active control is development of an accurate analytical approach with minor computational expenses. Active mass damper (AMD) is one of the most commonly used active control devices, including a mass-spring-damper system with an actuator to increase the amount of damping in structures. Block pulse functions have been studied and applied frequently in recent years as a basic set of functions for signal characterizations in systems science and control. The purpose of this study is to establish an innovative method by using block pulse functions to minimize expenses of computations. Numerical simulations of earthquake-excited 10-story shear buildings equipped with an active mass damper are provided to verify the validity and feasibility of the proposed method. The proposed method's uncontrolled and controlled responses of structural system are compared with linear quadratic regulator method's results. The results reveal the proposed method can be beneficial in reducing seismic responses of structures with less computational expenses and high accuracy.
机译:主动振动控制是通过在土木工程结构中提供明显优越的补充阻尼来减轻过度振动的最有效系统之一。主动控制最具挑战性的组成部分之一是开发一种精确的分析方法,而所需的计算费用却很少。主动质量阻尼器(AMD)是最常用的主动控制装置之一,包括带有致动器的质量弹簧阻尼器系统,以增加结构的阻尼量。近年来,作为系统科学和控制中信号表征的基本功能集,块脉冲功能已经得到了广泛的研究和应用。这项研究的目的是通过使用块脉冲函数来建立一种创新方法,以最大程度地减少计算费用。通过对地震激励的装有主动质量阻尼器的10层剪力建筑物进行数值模拟,验证了该方法的有效性和可行性。将所提出的方法对结构系统的非受控和受控响应与线性二次调节器方法的结果进行了比较。结果表明,该方法可以降低结构的地震响应,且计算量少,精度高。

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