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Effects and Compensations of Time Delay on the Dynamic Stiffness and Damping Coefficients of Active Magnetic Bearings

机译:动态磁轴承动态刚度和阻尼系数的时间延迟的影响及补偿

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Aiming at the problem of small time delay in the control system of an active magnetic bearing (AMB), the direct approach is applied to study the effects and compensation of time delay on the dynamic stiffness and damping coefficients of active magnetic bearings. Second-derivative feedback is used to compensate time delay effects, and performance of the controller has been verified. The results indicate that the time delay mainly affects the dynamic performance of AMB system in the upper frequency band, and results in the increasing of bearing dynamic stiffness coefficient and the decreasing of bearing dynamic damping coefficient with the high-speed AMB, respectively. The relationship between second-derivative and bearing performance is investigated, and it is shown that the time delay effects on the bearing properties may be effectively compensated by using the second-derivative feedback.
机译:针对有源磁轴承(AMB)的控制系统中较小的时间延迟问题,应用了直接方法来研究动态刚度和减震系数的效果和补偿主动磁轴承的阻尼系数。第二衍生反馈用于补偿时间延迟效应,并验证了控制器的性能。结果表明,时间延迟主要影响上频带中的AMB系统的动态性能,并导致轴承动态刚度系数的增加和轴承动态阻尼系数与高速伏轴的延伸。研究了第二衍生物和轴承性能之间的关系,并显示了通过使用第二衍生反馈可以有效地补偿对轴承性能的时间延迟效应。

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