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A hysteresis model for dynamic behaviour of magnetorheological elastomer base isolator

机译:磁流变弹性体基础隔离器动力特性的磁滞模型

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摘要

In recent years, an adaptively tuned magnetorheological elastomer ( MRE) isolator for a base isolation system has been designed and tested with the benefits of low power cost, fail safe manner and fast responses. To make full use of this striking device for design of smart structures, a highly precise model should be developed to effectively and accurately forecast the shear force of the device in real-time so as to adopt a proper control strategy to improve the responses of the protected structures. In this work, a novel mechanical model is presented to characterize this nonlinear hysteresis for its implementation in structural vibration control. This model employs the displacement and velocity of the device as well as the applied current as the inputs and just has the limited constant parameters to be identified compared with some classical hysteretic models such as Bouc-Wen, improved Dahl and LuGre models. Performance evaluation of this novel hysteresis model has been conducted based on the testing data from an MRE base isolator. The results show that the proposed model has high modelling accuracy and is able to perfectly portray the unique and complicated behaviours of the device with various excitations.
机译:近年来,已经设计和测试了用于基础隔离系统的自适应调谐磁流变弹性体(MRE)隔离器,其优点是功耗低,故障安全且响应速度快。为了充分利用此打击装置进行智能结构设计,应开发一个高度精确的模型,以实时有效,准确地预测该装置的剪切力,从而采用适当的控制策略来改善结构的响应。受保护的结构。在这项工作中,提出了一种新颖的机械模型来表征这种非线性磁滞,以实现其在结构振动控制中的实施。与一些经典的磁滞模型(例如Bouc-Wen,改进的Dahl和LuGre模型)相比,该模型采用了设备的位移和速度以及所施加的电流作为输入,并且仅具有有限的常数参数可供识别。已经基于MRE基础隔离器的测试数据对这种新型磁滞模型进行了性能评估。结果表明,所提出的模型具有较高的建模精度,并且能够完美地描绘出设备在各种激励下的独特而复杂的行为。

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