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Simulation Analysis on Intelligent Structures with Magnetorheological Dampers

机译:磁流变阻尼器智能结构的仿真分析。

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The magnetorheological (MR) damper, a shock absorption device, can be used to reduce vibration or dynamic response of controlled systems. Its parameters can be adjusted in real-time by updating its control current, therefore, it is critical to determine the control current of the MR damper accurately and quickly. This study proposes a fuzzy control strategy based on a neural network forecasting model of the building structure with MR dampers, in which a neural network forecasting model is developed to predict dynamic responses of the system with MR dampers and a fuzzy controller is then designed to determine control currents of MR dampers. A five-floor steel structure with MR dampers using the proposed fuzzy control strategy is simulated by using Simulink. Simulation results of the fuzzy control system are compared with those of the bi-state control system, the passive-on control system, the passive-off control system, and the uncontrolled system. Analysis results demonstrate that the fuzzy control strategy can determine control currents of MR dampers accurately and quickly; furthermore, the fuzzy control strategy reduces seismic responses of structures more effectively than the passive-on control strategy, the passive-off control strategy, and the bi-state control strategy.
机译:磁流变(MR)阻尼器是一种减震装置,可用于减少受控系统的振动或动态响应。可以通过更新其控制电流来实时调整其参数,因此,准确,快速地确定MR阻尼器的控制电流至关重要。这项研究提出了一种基于带有MR阻尼器的建筑结构的神经网络预测模型的模糊控制策略,其中开发了一个神经网络预测模型来预测带有MR阻尼器的系统的动态响应,然后设计了一个模糊控制器来确定MR阻尼器的控制电流。使用Simulink模拟了采用建议的模糊控制策略的带有MR阻尼器的五层钢结构。将模糊控制系统的仿真结果与双状态控制系统,被动开启控制系统,被动关闭控制系统和非受控系统的仿真结果进行比较。分析结果表明,模糊控制策略可以准确,快速地确定MR阻尼器的控制电流。此外,与被动开启控制策略,被动关闭控制策略和双向控制策略相比,模糊控制策略更有效地降低了结构的地震响应。

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