基于自适应栅格结构滤波器的表面贴装永磁同步驱动器鲁棒磁链弱化方案

D. Marić, Silva Hiti, C. Stancu, J. Nagashima, D. Rutledge
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引用次数: 5

摘要

一种用于表面贴装永磁同步(SMPMS)驱动器的先进控制结构,利用空间矢量调制(SVM)的过调制和六步模式,在磁通减弱区提供稳定,高性能的操作。通过控制参考电压的大小,实现了自动过渡到磁链减弱。在过调制和六步模式下产生的基频的第五次和第七次定子电流谐波通过电流控制环传播,导致参考电压中的第六次谐波,导致驱动性能恶化。为了滤波六次谐波,采用自适应栅格结构全通陷波滤波器,提供最小的相位延迟和完全衰减六次谐波。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust flux weakening scheme for surface-mounted permanent-magnet synchronous drives employing an adaptive lattice-structure filter
An advanced control structure for surface-mounted permanent-magnet synchronous (SMPMS) drives provides a stable, high performance operation in the flux weakening region, utilizing the over-modulation and six-step modes of the space vector modulation (SVM). An automatic transition into flux weakening is achieved by controlling the reference voltage magnitude. The fifth and seventh stator current harmonics of the fundamental frequency, generated in the over-modulation and six-step modes, propagate through the current control loops, resulting in the sixth harmonic in the reference voltage and deteriorating drive performance. To filter the sixth harmonic, an adaptive lattice-structure allpass-based notch filter is employed, providing minimal phase delay and complete attenuation of the sixth harmonic.
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