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Semi-active magnetorheological dampers for reducing response of high-speed railway bridges

机译:半主动磁流变阻尼器,用于降低高速铁路桥梁的响应

摘要

To reduce the resonant response of high-speed railway bridges, semi-active magnetorheological dampers are proposed in this study. The elements are connected to the structure in a double beam configuration. An H∞H∞ control algorithm to drive magnetorheological damping forces of MR dampers is derived. Feasible solutions for an uncertain time-delay model are obtained by using standard linear matrix inequality techniques. Weight functions as a loop shaping procedure are also introduced in the feedback controllers to improve the tracking ability of magnetorheological damping forces. To this end, the effectiveness of magnetorheological dampers controlled by the proposed scheme, along with the effects of the uncertain and the time-delay parameters on the models, are evaluated and compared with the performance of fluid viscous dampers in similar applications reported in previous research through numerical simulations.
机译:为了减少高速铁路桥梁的共振响应,本研究提出了半主动磁流变阻尼器。元件以双梁配置连接到结构。推导了驱动磁阻阻尼器磁流变阻尼力的H∞H∞控制算法。通过使用标准线性矩阵不等式技术,可以获得不确定时滞模型的可行解。在反馈控制器中还引入了作为环路整形程序的权重函数,以提高磁流变阻尼力的跟踪能力。为此,对所提出的方案控制的磁流变阻尼器的有效性以及不确定性和时延参数对模型的影响进行了评估,并与先前研究中报道的类似应用中的流体粘性阻尼器的性能进行了比较。通过数值模拟。

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