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Optimized AI controller for reinforced concrete frame structures under earthquake excitation

机译:地震励磁下钢筋混凝土框架结构的优化AI控制器

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This article discusses the issue of optimizing controller design issues, in which the artificial intelligence (AI) evolutionary bat (EB) optimization algorithm is combined with the fuzzy controller in the practical application of the building. The controller of the system design includes different sub-parts such as system initial condition parameters, EB optimal algorithm, fuzzy controller, stability analysis and sensor actuator. The advantage of the design is that for continuous systems with polytypic uncertainties, the integrated H2/H infinity robust output strategy with modified criterion is derived by asymptotically adjusting design parameters. Numerical verification of the time domain and the frequency domain shows that the novel system design provides precise prediction and control of the structural displacement response, which is necessary for the active control structure in the fuzzy model. Due to genetic algorithm (GA), we use a hierarchical conditions of the Hurwitz matrix test technique and the limits of average performance, Hierarchical Fitness Function Structure (HFFS). The dynamic fuzzy controller proposed in this paper is used to find the optimal control force required for active nonlinear control of building structures. This method has achieved successful results in closed system design from the example.
机译:本文讨论了优化控制器设计问题的问题,其中人工智能(AI)进化BAT(EB)优化算法与模糊控制器在建筑物的实际应用中结合。系统设计的控制器包括不同的子部分,例如系统初始条件参数,EB最优算法,模糊控制器,稳定性分析和传感器执行器。设计的优点是,对于具有多型不确定性的连续系统,通过渐近调整设计参数导出具有修改标准的集成H2 / H无限鲁棒输出策略。时域的数值验证和频域表示新颖的系统设计提供了精确的预测和控制结构位移响应,这对于模糊模型中的主动控制结构是必要的。由于遗传算法(GA),我们使用Hurwitz Matrix测试技术的分层条件和平均性能的限制,分层健身功能结构(HFF)。本文提出的动态模糊控制器用于找到建筑物结构的主动非线性控制所需的最佳控制力。该方法从该示例中取得了成功的封闭系统设计结果。

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