首页> 外文OA文献 >Stability Limits of a PD Controller for a Flywheel Supported on Rigid Rotor and Magnetic Bearings
【2h】

Stability Limits of a PD Controller for a Flywheel Supported on Rigid Rotor and Magnetic Bearings

机译:刚性转子和电磁轴承支撑的飞轮PD控制器的稳定性极限

摘要

Active magnetic bearings are used to provide a long-life, low-loss suspension of a high-speed flywheel rotor. This paper describes a modeling effort used to understand the stability boundaries of the PD controller used to control the active magnetic bearings on a high speed test rig. Limits of stability are described in terms of allowable stiffness and damping values which result in stable levitation of the nonrotating rig. Small signal stability limits for the system is defined as a nongrowth in vibration amplitude of a small disturbance. A simple mass-force model was analyzed. The force resulting from the magnetic bearing was linearized to include negative displacement stiffness and a current stiffness. The current stiffness was then used in a PD controller. The phase lag of the control loop was modeled by a simple time delay. The stability limits and the associated vibration frequencies were measured and compared to the theoretical values. The results show a region on stiffness versus damping plot that have the same qualitative tendencies as experimental measurements. The resulting stability model was then extended to a flywheel system. The rotor dynamics of the flywheel was modeled using a rigid rotor supported on magnetic bearings. The equations of motion were written for the center of mass and a small angle linearization of the rotations about the center of mass. The stability limits and the associated vibration frequencies were found as a function of nondimensional magnetic bearing stiffness and damping and nondimensional parameters of flywheel speed and time delay.
机译:主动磁性轴承用于提供高速飞轮转子的长寿命,低损耗的悬架。本文介绍了一种建模工作,该模型工作用于了解PD控制器的稳定性边界,该PD控制器用于控制高速测试台上的有源电磁轴承。根据允许的刚度和阻尼值来描述稳定性的极限,这会导致非旋转设备的稳定悬浮。系统的小信号稳定性极限被定义为小扰动的振动幅度的非增长。分析了一个简单的质量力模型。由磁性轴承产生的力被线性化,以包括负位移刚度和电流刚度。然后,将当前的刚度用于PD控制器中。控制回路的相位滞后通过简单的时间延迟进行建模。测量了稳定性极限和相关的振动频率,并将其与理论值进行比较。结果表明,刚度与阻尼曲线图上的区域具有与实验测量相同的定性趋势。然后将得到的稳定性模型扩展到飞轮系统。飞轮的转子动力学是使用支撑在磁性轴承上的刚性转子建模的。运动方程是针对质心以及围绕质心的旋转的小角度线性化而编写的。发现稳定性极限和相关的振动频率是无量纲磁性轴承刚度,阻尼和飞轮速度和时延的无量纲参数的函数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号