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Control Performance Improvement of Excitation System with Active Magnetic Bearing for Measurement of Rotordynamic Forces

机译:具有主动磁轴承激励系统的控制性能改进,用于测量旋转力力

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摘要

In electrical plants, rotating machines have to maintain power supply for our life. Rotating machines such as turbines are main component of the electrical plants. Stability performance of the rotating machines is important design point. Rotordynamic force influences the stability performance, and the rotordynamic forces should be evaluated in the development. Theoretical analysis is difficult to evaluate the rotordynamic forces accurately, because the characteristic is complex due to coupling with mechanical and fluid dynamics. On the other hand, direct measurement of rotordynamic forces has a problem, because the measurement condition, namely the rotating speed, the whirling orbit of a rotor is difficult to realize in a test bench. This study proposes a control system to improve the performance of a active magnetic bearing in the test bench. The control system can realize the measurement condition accurately, and the rotordynamic forces can be measured at various frequencies simultaneously. In the feasibility study, the measured rotordynamic forces by using the proposed control system were matched to the simulation data.
机译:在电厂,旋转机器必须为我们的生活保持电源。诸如涡轮机的旋转机器是电厂的主要部件。旋转机器的稳定性性能是重要的设计点。旋转动力影响稳定性性能,应在开发中进行竞争力。理论分析难以准确地评估旋转动力,因为由于与机械和流体动力学耦合,特性是复杂的。另一方面,旋转力力的直接测量存在问题,因为测量条件,即旋转速度,转子的旋转轨道难以在测试台中实现。本研究提出了一种控制系统,以改善测试台中的主动磁轴承的性能。控制系统可以精确地实现测量条件,并且可以同时以各种频率测量旋转力。在可行性研究中,使用所提出的控制系统测量的旋转动力与模拟数据相匹配。

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