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Impact of Saturation, Current Command Selection, and Leakage Flux on the Performance of Sensorless-Controlled Three-Pole Active Magnetic Bearings

机译:饱和度,电流指令选择和漏磁通对无传感器控制的三极点有源电磁轴承性能的影响

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摘要

This paper analyzes two types of effects caused by the fundamental current in saliency-tracking-based techniques for sensorless control of three-pole active magnetic bearings, i.e., saturation and insufficient spectral separation of the fundamental current command during transients. Injection of a high-frequency signal superimposed to the fundamental excitation providing active control allows the measurement of changes in the air gap, from which an estimation of the rotor position can be obtained. Interference of the fundamental current, which is needed to operate the magnetic bearing, with the high-frequency current can occur through two mechanisms: 1) saturation; and 2) high-frequency harmonics caused by fast transients of the fundamental current. Both phenomena can interfere with the sensorless control resulting in a decrease in its performance. The effects caused by the fundamental current on the negative-sequence high-frequency current, used as a position estimation signal, are studied, and a decoupling mechanism is proposed. An analysis of high-frequency leakage flux is presented. and a simple analytical model is developed for describing the aforementioned phenomena. Finite-element analysis of the magnetic bearing under fundamental excitation, as well as experimental verification, is used to validate the analytical findings.
机译:本文分析了基于显着性跟踪的三极主动磁轴承无传感器控制技术中由基波电流引起的两种类型的影响,即瞬态期间基波电流指令的饱和和频谱分离不足。通过注入叠加在基本激励上的高频信号,可以提供主动控制,从而可以测量气隙的变化,从而可以估算出转子位置。运行电磁轴承所需的基本电流对高频电流的干扰可通过两种机制发生:1)饱和; 2)饱和。 2)由基波电流的快速瞬变引起的高频谐波。两种现象都会干扰无传感器控制,从而导致其性能下降。研究了基波电流对用作位置估计信号的负序高频电流的影响,并提出了一种去耦机制。给出了高频漏磁通的分析。建立了一个简单的分析模型来描述上述现象。在基本激励下对磁性轴承进行有限元分析,并进行实验验证,以验证分析结果。

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