非线性建筑物-磁流变阻尼器系统的多目标模糊最优控制

M. Askari, A. Davaie‐Markazi
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引用次数: 9

摘要

本文研究了地震激励非线性建筑的基准控制问题,并报道了一种采用磁流变阻尼技术的半主动控制方案在20层基准建筑中的应用。由于模糊逻辑控制系统在各个领域得到了有效的应用,本文提出了一种多目标最优模糊控制系统来管理磁流变阻尼器所需的电压。将建筑物响应类别的无量纲化峰值加速度指标和建筑物损伤类别的延性指标作为最小化的两个目标函数。通过使用Pareto最优解(即NSGAII)的递归优化算法,可以很好地调整所有规则库、mf和缩放因子。优化过程考虑了10种不同的地震,以提供一个更鲁棒的控制器。所提出的半主动智能控制方案满足控制约束,并根据基准问题提供的评价准则制表,与其他方案进行比较。最后,该控制系统的性能优于其他方案。
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Multi-objective optimal fuzzy logic controller for nonlinear building-MR damper system
This paper focuses on the benchmark control problem for seismically excited nonlinear buildings and reports the application of a semi-active control scheme to the 20-story benchmark building using magnetorheological (MR) damping technology. As the fuzzy logic control systems have been applied effectively in various fields, a multi-objective optimal fuzzy logic control system has been proposed in this paper to manage the required voltage of MR dampers. Nondimensionalized peak floor acceleration index from building response category, and ductility index from building damage category, have been considered as the two objective functions to be minimized. All the rule-bases, MFs and scaling factors are tuned well through a recursive optimization algorithm using a Pareto optimal solution, namely NSGAII. The optimization procedure has been done by consideration of 10 various earthquakes in order to provide a more robust controller. The proposed semi active intelligent control scheme satisfies the control constraints and is tabulated according to the evaluation criteria provided by the benchmark problems for comparison with other schemes. Finally, performance of the proposed control system has been found to be better than the other schemes.
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