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首页> 外文期刊>Proceedings of the Institution of Civil Engineers >Intelligent active control of a benchmark cable-stayed bridge
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Intelligent active control of a benchmark cable-stayed bridge

机译:基准斜拉桥的智能主动控制

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摘要

A neural-fuzzy control strategy for cable-stayed bridge structures subjected to earthquake excitation is presented by employing electromagnet-driven active mass dampers (EMDs). The active EMD is an innovative control device for the earthquake response mitigation of structures. Ensuring fast selection of the control voltage in accordance with the characteristics of seismically excited bridge structures is one of the most important problems for EMD systems. In the proposed control strategy, a neural-network technique is used to solve the time-delay problem, and fuzzy logic algorithms are used to determine the control voltage from the response of the EMD. The control performance of the proposed neural-fuzzy control strategy was analysed for the benchmark control problem of a seismically excited cable-stayed bridge with an EMD system. The simulated results show that the proposed active neural-fuzzy control strategy can quickly determine an accurate voltage for the EMD system, and mitigate the seismic response of cable-stayed bridges.
机译:通过采用电磁驱动的主动质量阻尼器(EMD),提出了斜拉桥结构地震激励的神经模糊控制策略。有源EMD是用于减轻结构地震响应的创新控制设备。确保根据地震激励的桥梁结构的特性快速选择控制电压是EMD系统最重要的问题之一。在所提出的控制策略中,使用神经网络技术来解决时间延迟问题,并使用模糊逻辑算法根据EMD的响应确定控制电压。针对带有EMD系统的地震激励斜拉桥的基准控制问题,分析了所提出的神经模糊控制策略的控制性能。仿真结果表明,所提出的主动神经模糊控制策略可以快速为EMD系统确定准确的电压,并减轻斜拉桥的地震响应。

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