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Discrete direct adaptive ELM controller for active vibration control of nonlinear base isolation buildings

机译:离散直接自适应ELM控制器,用于非线性基础隔震建筑物的主动振动控制

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Hybridization of base isolation and active control is a promising alternative to suppress the seismic vibrations in civil structures. The base-isolation system introduces hysteretic/frictional nonlinearity into the structure and hence there is a need to develop a nonlinear adaptive control approach to subdue the vibrations. In this paper, the authors propose discrete direct adaptive ELM controller for active control of nonlinear base isolated building, subjected to a set of near-fault earthquakes. A single hidden layer neural controller with random selection of input weights compensates the nonlinearity and provides desired vibration suppression. The neural controller is based on the extreme learning machine algorithm with random input weight selection and output weights are updated using Lyapunov like adaptation rule. The proposed discrete adaptive control law provides necessary stability and vibration suppression in nonlinear base isolated building. Simulation studies have been carried out using the full-scale three dimensional benchmark eight-storey building comprising hysteretic lead-rubber base-isolation. One earthquake record and perturbed model is used to train the controller offline. The offline trained controller is adapted online using the actual full-scale model for a wide range of near-fault earthquakes. The results clearly show that the proposed controller suppresses the vibration significantly without j increasing superstructure responses. The comprehensive performance measures are compared with existing results reported in the literature.
机译:基础隔离和主动控制的混合是抑制民用建筑中地震振动的有前途的替代方法。基础隔离系统将滞后/摩擦非线性引入到结构中,因此需要开发一种非线性自适应控制方法来抑制振动。在本文中,作者提出了离散直接自适应ELM控制器,用于非线性基础隔震建筑的主动控制,该系统遭受了一组近断层地震的影响。具有输入权重随机选择的单个隐藏层神经控制器可以补偿非线性并提供所需的振动抑制。神经控制器基于具有随机输入权重选择的极限学习机算法,并使用Lyapunov之类的自适应规则更新输出权重。所提出的离散自适应控制律为非线性基础隔震建筑提供了必要的稳定性和振动抑制。已经使用包括磁滞铅橡胶基础隔离的全尺寸三维基准八层建筑进行了模拟研究。使用一个地震记录和扰动模型来离线训练控制器。离线训练有素的控制器可使用实际的满量程模型在线进行调整,以适用于广泛的近断层地震。结果清楚地表明,所提出的控制器在不增加上部结构响应的情况下显着抑制了振动。将综合性能指标与文献中报道的现有结果进行比较。

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