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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Comparison of dynamic models based on backbone curve for rotary magneto-rheological damper
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Comparison of dynamic models based on backbone curve for rotary magneto-rheological damper

机译:基于旋转磁流变阻尼器的骨干曲线动态模型的比较

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摘要

To realize the accurate control of magneto-rheological system, the nonlinear dynamic model as the joint of damper and control strategy is worthy of being investigated. In this study, the modeling methods based on the backbone curve are proposed to portray the dynamic characteristics of magneto-rheological damper. The modeling methods contain the phase lag method and the hysteresis division method. Six novel algebraic models are deduced from the two methods and compared systematically. The parameters identification of models is conducted by the nonlinear least square method. The nonlinear least square optimization problem is solved by the Levenberg-Marquardt algorithm. The evaluation indexes including the root-mean-square error, mean deviation and computation time are calculated to evaluate the accuracy and feasibility of the novel models. Results show that the modeling methods and their models can describe the nonlinear hysteretic characteristics with feasibility and accuracy.
机译:为了实现对磁流变系统的准确控制,非线性动态模型作为阻尼器和控制策略的关节值得调查。 在本研究中,提出了基于骨干曲线的建模方法来描绘磁流变阻尼器的动态特性。 建模方法包含相滞后和滞后分裂方法。 从两种方法推断出六种新颖的代数模型,并系统地比较。 模型的参数识别由非线性最小二乘法进行。 Levenberg-Marquardt算法解决了非线性最小二乘优化问题。 计算包括根均方误差,平均偏差和计算时间的评估指标以评估新颖模型的准确性和可行性。 结果表明,建模方法及其模型可以描述具有可行性和准确性的非线性滞后特性。

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