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A shuffled frog-leaping algorithm based mixed-sensitivity H control of a seismically excited structural building using MR dampers

机译:一种基于混合的青蛙跨越算法的混合灵敏度H使用MR Dampers的地震激发结构建筑控制

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摘要

An intelligent robust controller, which combines a shuffled frog-leaping algorithm (SFLA) and an H control strategy, is designed for a semi-active control system with magnetorheological (MR) dampers to reduce seismic responses of structures. Generally, the performance of mixed-sensitivity H (MSH) control highly depends on expert experience in selecting the parameters of the weighting functions. In this study, as a recently-developed heuristic approach, a multi-objective SFLA with constraints is adopted to search for the optimal weighting functions. In the proposed semi-active control, firstly, based on the Bouc-Wen model, the forward dynamic characteristics of the MR damper are investigated through a series of tensile and compression experiments. Secondly, the MR damper inverse model is developed with an adaptive-network-based fuzzy inference system (ANFIS) technique. Finally, the SFLA-optimized MSH control approach integrated with the ANFIS inverse model is used to suppress the structural vibration. The simulation results for a three-story building model equipped with an MR damper verify that the proposed semi-active control method outperforms fuzzy control and two passive control methods. Besides, with the proposed strategy, the changes in structural parameters and earthquake excitations can be satisfactorily dealt with.
机译:将混合蛙跳算法(SFLA)与H控制策略相结合,设计了一种智能鲁棒控制器,用于带有磁流变(MR)阻尼器的半主动控制系统,以减小结构的地震反应。一般来说,混合灵敏度H(MSH)控制的性能在很大程度上取决于专家在选择加权函数参数时的经验。在本研究中,作为最近发展起来的一种启发式方法,采用带约束的多目标SFLA来搜索最优权重函数。在所提出的半主动控制中,首先,基于Bouc-Wen模型,通过一系列拉伸和压缩实验研究了磁流变阻尼器的正向动态特性。其次,采用基于自适应网络的模糊推理系统(ANFIS)技术建立了磁流变阻尼器逆模型。最后,将SFLA优化MSH控制方法与ANFIS逆模型相结合,用于抑制结构振动。对装有磁流变阻尼器的三层建筑模型的仿真结果表明,所提出的半主动控制方法优于模糊控制和两种被动控制方法。此外,该方法还可以很好地处理结构参数和地震激励的变化。

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