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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Comparison of Linear, Nonlinear, Hysteretic, and Probabilistic Models for Magnetorheological Fluid Dampers
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Comparison of Linear, Nonlinear, Hysteretic, and Probabilistic Models for Magnetorheological Fluid Dampers

机译:磁流变阻尼器线性,非线性,滞后和概率模型的比较

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摘要

Magnetorheological (MR) fluid dampers have a semicontrollable damping force output that is dependent on the current input to the damper, as well as the relative velocity. The mechanical construction, fluid properties, and embedded electromagnet result in a dynamic damper response. This study evaluates four modeling approaches with respect to predicting the multi-input single-output behavior of an experimental MR damper when the inputs are band-limited random signals typically encountered in primary suspension applications. The first two models in this study are static in the sense that there is a unique output for any given set of inputs and no dynamics is present in either model. The third model incorporates a dynamic filter with the nonlinear model to exhibit hysteretic effects, which are known to exist in actual MR dampers. The fourth model is probabilistic and illustrates the dynamic nature of an actual MR damper. The results of this study clearly show the importance of nonlinear and dynamic effects in magnetorheological damper response. This study also highlights the importance of characterizing magnetorheological dampers using excitation signals that are representative of an actual implementation.
机译:磁流变(MR)流体阻尼器具有半控阻尼力输出,该阻尼力取决于阻尼器的电流输入以及相对速度。机械结构,流体特性和嵌入式电磁体会产生动态阻尼器响应。这项研究评估了四种模拟方法,以预测当输入是通常在主悬挂系统中遇到的带限随机信号时,实验MR阻尼器的多输入单输出行为。这项研究的前两个模型是静态的,因为对于任何给定的输入集都有唯一的输出,并且在任何一个模型中都没有动力学。第三种模型将动态滤波器与非线性模型结合在一起,以表现出磁滞效应,这在实际的MR阻尼器中是已知的。第四个模型是概率模型,说明了实际MR阻尼器的动态特性。这项研究的结果清楚地表明了非线性和动态效应在磁流变阻尼器响应中的重要性。这项研究还强调了使用代表实际实现的激励信号表征磁流变阻尼器的重要性。

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