Position Sensorless Control of Synchronous Reluctance Machines Based on Magnetic Saturation Depending on Current Phase Angles

T. Kojima, Toshiki Suzuki, M. Hazeyama, Shinsuke Kayano
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引用次数: 10

Abstract

Position sensorless control of synchronous reluctance machines (SynRMs) is not easy due to nonlinear correlations caused by extensive magnetic saturation. This paper first investigates stability of a conventional saliency-based method and reveals it becomes unstable due to cross-coupling effect at high torque with high magnetic saturation even when the effect is low enough not to cause disappearance of the saliency nor to reverse the estimated d- and q- axes. A novel method to overcome this instability is proposed, which utilizes magnetic saturation depending on current phase angles. Verification by simulations and experiment confirmed that the proposed method achieves stable sensorless operation at high torque and increases the maximum feasible torque by 80% compared to the conventional methods.
基于磁饱和电流相位角的同步磁阻电机无位置传感器控制
由于磁饱和引起的非线性相关,同步磁阻电机的无位置传感器控制不容易实现。本文首先研究了传统的基于显著性的方法的稳定性,揭示了在高磁饱和的大转矩下,即使交叉耦合效应足够低,也不会导致显著性消失,也不会使估计的d轴和q轴反转,该方法也会由于交叉耦合效应而变得不稳定。提出了一种克服这种不稳定性的新方法,利用磁饱和依赖于电流相角。通过仿真和实验验证,该方法在大扭矩下实现了稳定的无传感器运行,最大可行扭矩比传统方法提高了80%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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