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Active Balancing Control of AMB-Rotor Systems Using a Phase-Shift Notch Filter Connected in Parallel Mode

机译:使用并联连接的相移陷波滤波器对AMB转子系统进行主动平衡控制

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The vibration controllability is an important feature in the applications of active magnetic bearings (AMBs). This paper addresses the two key challenges on the active balancing control of AMB-rotor systems: presenting a parallel-mode scheme to enhance the notch performance at high speeds, and proposing a phase-shift notch filter to ensure stable operations over the entire speed ranges. First, both the frequency characteristics of the simplified notch filter in series and in parallel mode are discussed. The analysis shows that the closed-loop system with a parallel-mode notch filter has a deeper notch depth and faster convergence. The capacities of the synchronous current elimination are also improved at high speeds. Then, an improved phase-shift notch filter connected in parallel with the controller is modeled and analyzed. In order to understand the sensibility of the proposed solution to phase-shift variations, the stability analysis of the closed-loop system in the entire operational speed range is performed using the frequency response method. Experimental results on a high-speed centrifugal air blower test rig show the effectiveness of the proposed solution.
机译:振动可控性是有源电磁轴承(AMB)应用中的重要特征。本文针对AMB转子系统的主动平衡控制提出了两个关键挑战:提出一种并行模式以增强高速陷波性能,并提出相移陷波滤波器以确保在整个速度范围内稳定运行。首先,讨论了简化陷波滤波器的串联和并联模式的频率特性。分析表明,带有并行模式陷波滤波器的闭环系统具有更深的陷波深度和更快的收敛速度。同步电流消除的能力也在高速提高。然后,对与控制器并联连接的改进型相移陷波滤波器进行建模和分析。为了理解所提出的解决方案对相移变化的敏感性,使用频率响应方法对闭环系统在整个运行速度范围内的稳定性进行了分析。在高速离心鼓风机试验台上进行的实验结果证明了该解决方案的有效性。

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