Hybrid sensorless control for SPMSM With multiple saliencies

Zhe Chen, Zhenbin Zhang, R. Kennel, Guangzhao Luo
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引用次数: 6

Abstract

Surface-mounted permanent magnet synchronous machine with concentrated windings (cwSPMSM) is widely adopted in many industry applications. However, strong multiple saliencies is a main drawback impeding applying sensorless control over this type of machine. This work proposes a hybrid sensorless control scheme which integrates a novel Secondary Saliency Tracking (SST) algorithm and an improved Active Flux Observer (AFO) for cwSPMSMs. The saliency signals of a typical cwPMSM under consideration are experimentally investigated. Instead of processing the primary saliency signal, secondary saliency signal which has a better signal to noise ratio and more precise resolution, is processed by a special designed band pass filter for speed and rotor position estimation reaching a very low speed range with full-load. An improved AFO method with robust structure but effective performance is adopted for higher speed range estimation. The transient phase (switching between the SST and AFO) performance is guaranteed by a smooth transition region design, reaching a Hybrid Sensorless Control with wide speed range. Finally the effectiveness and accuracy of the newly proposed Hybrid Sensorless Control method are both verified by experimental results.
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多凸点SPMSM混合无传感器控制
表面贴装式集中绕组永磁同步电机(cwSPMSM)在许多工业应用中被广泛采用。然而,强多重显着性是阻碍在这种类型的机器上应用无传感器控制的主要缺点。本文提出了一种混合无传感器控制方案,该方案集成了一种新的二次显著性跟踪(SST)算法和一种改进的主动通量观测器(AFO)。实验研究了一种典型的cwPMSM的显著性信号。在满载情况下达到极低转速范围时,采用特殊设计的带通滤波器对具有更好信噪比和更精确分辨率的次显著信号进行转速和转子位置估计,而不是对主显著信号进行处理。采用一种结构鲁棒但性能有效的改进的AFO方法进行高速范围估计。瞬态相位(在SST和AFO之间切换)性能由平滑过渡区设计保证,达到宽速度范围的混合无传感器控制。最后,通过实验验证了所提出的混合无传感器控制方法的有效性和准确性。
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