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A GBMO-based PI~λD~μ controller for vibration mitigation of seismic-excited structures

机译:基于GBMO的PI〜λD〜μ控制器,用于减震结构

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摘要

The advantages of fractional-order proportional-integral-derivative (FOPID) controllers in terms of flexibility, robustness against model uncertainties and good disturbance rejection, are good motivations to use them for vibration mitigation of seismic-excited structures. The application of the FOPID controller for adjusting the control force of an active tuned mass damper (ATMD) for seismic control a building is studied in this paper. Gases Brownian motion optimization (GBMO) algorithm is employed for optimal tuning of parameters of the FOPID and PID controllers. Evaluation of the frequency responses of the structure for uncontrolled and controlled cases shows that PID and FOPID controllers are very effective for the seismic control of structures. For further investigation, the performance of the FOPID controller in the reduction of seismic responses of the building in four well-known earthquake excitations is compared with those provided by the PID, linear-quadratic regulator (LQR) and fuzzy logic control (FLC). Simulation results show that the PID and LQR controllers provide the same performance in reducing the maximum top floor displacement of the structure. Moreover, the FLC and FOPID controllers demonstrate a superior performance in seismic control of the structure. The FLC is able to reduce the maximum displacements of all stories for all studied earthquakes. However, the proposed FOPID controller is able to provide a better performance in comparison with the FLC. In average, the FOPID controller mitigates the seismic responses of the structure as much as 29%, 27% and 15% better than the LQR, PID controller and FLC.
机译:分数阶比例积分微分(FOPID)控制器在灵活性,针对模型不确定性的鲁棒性和良好的抗扰性方面的优势,是将其用于减震结构的良好动机。本文研究了FOPID控制器在调节主动阻尼质量阻尼器(ATMD)的地震控制中的应用。采用Gases Brownian运动优化(GBMO)算法来优化FOPID和PID控制器的参数。对不受控制和受控制情况的结构频率响应的评估表明,PID和FOPID控制器对于结构的地震控制非常有效。为了进一步研究,将FOPID控制器在降低四种已知地震激励中建筑物的地震响应方面的性能与PID,线性二次调节器(LQR)和模糊逻辑控制(FLC)提供的性能进行了比较。仿真结果表明,PID和LQR控制器在减少结构的最大顶层位移方面具有相同的性能。此外,FLC和FOPID控制器在结构的地震控制中显示出优异的性能。对于所有研究的地震,FLC都能减少所有楼层的最大位移。但是,与FLC相比,建议的FOPID控制器能够提供更好的性能。平均而言,与LQR,PID控制器和FLC相比,FOPID控制器可减轻结构的地震响应分别高出29%,27%和15%。

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