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Upgraded Whale Optimization Algorithm for fuzzy logic based vibration control of nonlinear steel structure

机译:基于非线性钢结构的模糊逻辑振动控制升级的鲸鲸优化算法

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摘要

In the case of controlling the seismic vibration of a structure, reliance on human knowledge and expert in the formulation of a fuzzy logic controller leads to non-optimal solutions, which makes the use of control devices and algorithm unreasonable. In most cases, the calculated control force for high-rise buildings is very large and the controlled response of the structure is not significantly decreased. To overcome these drawbacks, the parameter tuning of fuzzy systems with optimization algorithms are necessary. This paper focuses on the optimization of a fuzzy controller applied to a seismically excited nonlinear steel building. In the majority of cases, this problem is formulated based on the structural responses in linear range, however in this paper, objective functions and the performance criteria are considered with respect to the nonlinear responses of the structure. An Upgraded Whale Optimization Algorithm is proposed and utilized as the optimization technique for parameter tuning of the fuzzy controller. The performance of the presented upgraded algorithm is compared with the standard Whale Optimization Algorithm and eight different metaheuristic algorithms. The obtained results prove that the upgraded method is capable of providing competitive results.
机译:在控制结构的地震振动的情况下,依赖于人类知识和专家在模糊逻辑控制器的配方中导致非最佳解决方案,这使得控制装置和算法不合理地使用。在大多数情况下,高层建筑的计算控制力非常大,结构的受控响应不会显着降低。为了克服这些缺点,需要具有优化算法的模糊系统的参数调整。本文侧重于应用于地震兴奋的非线性钢大厦的模糊控制器的优化。在大多数情况下,该问题基于线性范围内的结构响应配制,然而,在本文中,对结构的非线性反应考虑了客观功能和性能标准。提出了一种升级的鲸鱼优化算法,并用作模糊控制器参数调谐的优化技术。将呈现的升级算法的性能与标准鲸级优化算法和八种不同的成群质算法进行了比较。所获得的结果证明了升级的方法能够提供竞争结果。

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