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Numerical investigation of an MR damper-based smart passive control system for mitigating vibration of stay cables

机译:基于MR阻尼器的智能被动控制系统用于减轻斜拉索振动的数值研究

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An extensive numerical investigation on the magnetorheological (MR) damper-based smart passive control system for mitigating vibration of stay cables under wind loads has been conducted. The smart passive system is incorporated with an electromagnetic induction (EMI) device for reducing complexity of the conventional MR damper based semi-active control system by eliminating an external power supply part and a feedback control part (i.e., sensors and controller). In this study, the control performance of the smart passive system has been evaluated by using a cable structure model extracted from a full-scale long stay cable with high tension. Numerical simulation results of the proposed smart damping system are compared with those of the passive and semi-active control systems employing MR dampers. It is demonstrated from the results that the control performance of the smart passive control system is better than those of the passive control cases and comparable to those of the semi-active control systems in the forced vibration analysis as well as the free vibration analysis, even though there is no external power source in the smart passive system.
机译:对基于磁流变(MR)阻尼器的智能无源控制系统进行了广泛的数值研究,该系统可减轻风荷载下斜拉索的振动。智能无源系统装有电磁感应(EMI)设备,通过消除外部电源部分和反馈控制部分(即传感器和控制器)来降低基于MR阻尼器的传统半主动控制系统的复杂性。在这项研究中,智能被动系统的控制性能已通过使用从高张力全尺寸长距离电缆中提取的电缆结构模型进行了评估。将所提出的智能阻尼系统的数值模拟结果与采用MR阻尼器的被动和半主动控制系统的数值模拟结果进行了比较。结果表明,在被动振动分析和自由振动分析中,智能被动控制系统的控制性能均优于被动控制情况,可与半主动控制系统相媲美。尽管智能无源系统中没有外部电源。

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