MR DAMPER INVERSE MODELING DEPENDENT ON OPERATING CONDITIONS

Q3 Engineering
M. Wolnica
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引用次数: 2

Abstract

For semi-active control of vehicle suspension magnetoreological (MR) dampers are usually used. Construction of such dampers suggests that their properties should be dependent on fluid temperature, current of the coil and the relative velocity of the rod, which all change during operation. Then, an inverse model used to work out the current based on the required damping force may not be adequate, and performance of the overall semi-active control system can be significantly degraded. MR damper reaches its operating temperature in a short period of time, and thus it should be modelled, and the obtained inverse model should reflect such state. However, it has been observed that the hysteric behavior of the MR damper significantly differs depending on the current. The paper presents results of such analysis and recommends using a set of simple models appropriate for different ranges of this parameter. During control the models should be switched to guarantee the best operating conditions. Experiments for this research have been performed using MTS system.
磁流变阻尼器逆建模依赖于操作条件
对于车辆悬架的半主动控制,通常采用磁流变阻尼器。这种阻尼器的结构表明,它们的性能应该取决于流体温度、线圈电流和杆的相对速度,这些都在运行过程中发生变化。然后,基于所需阻尼力计算电流的逆模型可能不足够,并且会显着降低整个半主动控制系统的性能。磁流变阻尼器在短时间内达到其工作温度,因此需要对其进行建模,得到的逆模型应反映这一状态。然而,它已经观察到磁流变阻尼器的滞回行为显着不同取决于电流。本文提出了这种分析的结果,并建议使用一套简单的模型,适用于该参数的不同范围。在控制过程中,应进行模型切换,以保证最佳运行条件。本研究在MTS系统上进行了实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Mechanics and Control
International Journal of Mechanics and Control Engineering-Computational Mechanics
CiteScore
2.10
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0.00%
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