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Semi-active fuzzy control of cable-stayed bridges using magneto-rheological dampers

机译:磁流变阻尼器对斜拉桥的半主动模糊控制

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摘要

A semi-active fuzzy control technique to enhance the seismic performance of cable-stayed bridges using magneto-rheological (MR) dampers is presented. Conventional semi-active control techniques require a primary controller as a reference to determine the desired control force, and modulate the input voltage of the MR damper by comparing the desired control force and the actual damper force in a secondary controller. The proposed method, however, adopts fuzzy logic instead of primary and secondary controllers. The fuzzy logic directly determines the input voltage of an MR damper from the response of the MR damper. Thus, it provides a simple design procedure and can be easily implemented on a physical structure. The control performance of the proposed fuzzy control technique for the MR damper was evaluated for the benchmark control problem of a seismically-excited cable-stayed bridge. The simulated results show that the proposed semi-active fuzzy control technique can effectively mitigate the seismic response of cable-stayed bridges and successfully enhance the robust performance of the MR damper system.
机译:提出了一种利用磁流变(MR)阻尼器提高斜拉桥抗震性能的半主动模糊控制技术。常规的半主动控制技术需要主控制器作为确定所需控制力的参考,并通过在辅助控制器中比较所需控制力和实际阻尼器力来调制MR阻尼器的输入电压。然而,所提出的方法采用模糊逻辑而不是初级和次级控制器。模糊逻辑根据MR阻尼器的响应直接确定MR阻尼器的输入电压。因此,它提供了简单的设计过程,并且可以容易地在物理结构上实现。针对地震激励斜拉桥的基准控制问题,评估了所提出的用于MR阻尼器的模糊控制技术的控制性能。仿真结果表明,所提出的半主动模糊控制技术可以有效地减轻斜拉桥的地震反应,并成功地提高了MR阻尼器系统的鲁棒性能。

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