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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Development of a Measurement System for Analyzing Periodic External Forces Acting on Rotating Machineries
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Development of a Measurement System for Analyzing Periodic External Forces Acting on Rotating Machineries

机译:用于分析在旋转机械的周期性外力的测量系统的研制

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摘要

In this study, a measurement system is developed to analyze periodic external forces acting on a rotating machinery. The dynamics of a rotating machineries are influenced by various periodic external forces such as unbalanced forces, oil film forces at a journal bearing, and seal contact forces. The characteristics of periodic external forces are dependent on the rotating conditions, rotational speed, and rotating orbit of the rotating shaft. The proposed system employs an active magnetic bearing (AMB), which is implemented using an adaptive feed-forward cancellation (AFC). The use of AFC ensures that the proposed system can realize the desired harmonic orbit assuming actual operations under the periodic external forces. Moreover, AFC can measure the periodic external forces in real-time using an adaptive algorithm. The effectiveness of the proposed system is verified experimentally. Experimental results show that the control system can control the rotating shaft to an accuracy of micrometer order using the implemented AFC. The measurement error of the periodic external forces acting on the rotating system is less than 2%.
机译:在该研究中,开发了一种测量系统以分析在旋转机械上作用的周期性外力。旋转机械的动态受到各种周期性的外力的影响,例如不平衡的力,轴颈轴承的油膜力,以及密封接触力。周期性外力的特性取决于旋转条件,转速和旋转轴的旋转轨道。所提出的系统采用有源磁轴承(AMB),其使用自适应前馈取消(AFC)来实现。 AFC的使用确保所提出的系统可以实现所需的谐波轨道,假设在周期性外力下的实际操作。此外,AFC可以使用自适应算法实时测量周期性的外力。所提出的系统的有效性是通过实验验证的。实验结果表明,使用实施的AFC,控制系统可以将旋转轴控制到微米顺序的精度。作用在旋转系统上的周期性外力的测量误差小于2%。

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