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首页> 外文期刊>Journal of Mechanical Science and Technology >Identification of dynamic stiffness and damping in active magnetic bearings using transfer functions of electrical control system
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Identification of dynamic stiffness and damping in active magnetic bearings using transfer functions of electrical control system

机译:电气控制系统传递函数识别动态刚度和损伤主动磁轴承

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摘要

The dynamic rotor behavior is significantly affected by the stiffness and damping characteristics of the bearings. Therefore, it is important to identify these bearing parameters. For active magnetic bearings (AMBs), these bearing parameters not only could be identified from rotor dynamic response, but also from electrical control system transfer function. Some identification works from rotor dynamic response have been reported, but identification from electrical control system transfer function is relatively few. In this paper, we deduced the equivalent stiffness and damping expressions with electrical control system transfer function for rotor AMBs and identified these values from electrical control system model. To evaluate the identified results, previous reported results from rotor dynamic response is employed for comparison. We found that for the stiffness, a complete and precise electrical control model will obtain relatively consistent values; however, for the damping, the accurate electrical control model is still not enough and the eddy current loss should be included.
机译:动态转子行为受到轴承的刚度和阻尼特性的显着影响。因此,识别这些轴承参数非常重要。对于主动磁轴承(AMB),这些轴承参数不仅可以从转子动态响应中识别,而且来自电气控制系统传递函数。已经报道了来自转子动态响应的一些识别工作,但从电气控制系统传递函数的识别相对较少。在本文中,我们推导了对转子AMB的电控制系统传递函数的等效刚度和阻尼表达,并从电控制系统模型中识别这些值。为了评估所识别的结果,使用转子动态响应的先前报告的结果进行比较。我们发现,对于刚度,完整和精确的电气控制模型将获得相对一致的值;然而,对于阻尼,精确的电气控制模型仍然不够,并且应包括涡流损耗。

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