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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:一个智能鲁棒控制器,它结合了播放的青蛙跳跃算法(SFLA)和H控制策略,专为具有磁流变(MR)阻尼器的半主动控制系统而设计,以减少结构的地震响应。通常,混合灵敏度H(MSH)控制的性能高度取决于选择加权函数参数时的专家体验。在本研究中,作为最近开发的启发式方法,采用了一种具有约束的多目标SFLA来搜索最佳加权函数。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MR阻尼器的前向动态特性。其次,利用基于自适应网络的模糊推理系统(ANFIS)技术开发了MR DAMPER逆模型。最后,使用与ANFIS逆模型集成的SFLA优化的MSH控制方法来抑制结构振动。配备有MR DAMPER的三层建筑模型的仿真结果证实了所提出的半主动控制方法优于模糊控制和两个被动控制方法。此外,通过拟议的策略,结构参数和地震激发的变化可以令人满意地处理。

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