磁流变阻尼器支承转子-轴承系统不平衡响应的半主动滑模控制

G. Silva‐Navarro, A. Cabrera-Amado
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引用次数: 7

摘要

研究了两个径向磁流变阻尼器支承一个滑动轴承的转子-轴承系统的半主动平衡控制问题。转子-轴承系统的数学模型来自于jeffcott -类模型和与磁流变阻尼器相关的动力学,磁流变阻尼器的流变特性取决于电流输入。为了控制的目的,我们使用Choi- Lee-Park多项式模型的磁流变阻尼器,这是非常符合非线性和复杂的迟滞行为,也简化了物理实现的实验设置。采用滑模控制技术综合了转子-轴承系统不平衡响应的半主动控制方案。数值和实验结果说明了整个系统的动态性能和鲁棒性。
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Semiactive sliding-mode control of the unbalance response in a rotor-bearing system supported on MR dampers
This paper deals with the problem of semiactive balancing control of a rotor-bearing system, where one journal bearings is supported on two radial Magneto-Rheological (MR) dampers. The mathematical model of the rotor-bearing system results from a Jeffcott-like model and the dynamics associated to the MR dampers, whose rheological properties depend on the current inputs. For control purposes we use the Choi- Lee-Park polynomial model for the MR dampers, which is quite consistent with the nonlinear and complex hysteresis behavior and also simplifies the physical implementation on an experimental setup. The semiactive control scheme for the unbalance response of the rotor-bearing system is synthesized using sliding-mode control techniques. Some numerical and experimental results are included to illustrate the dynamic performance and robustness of the overall system.
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