Novel MTPA Approach for IPMSM with Non-Sinusoidal Back-EMF

A. G. de Castro, P. Guazzelli, M. M. Lumertz, C. D. de Oliveira, G. T. de Paula, J. Monteiro
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引用次数: 2

Abstract

Interior permanent magnet synchronous machines (IPMSMs) are widely used due to features like high efficiency and high power density. For high performance drives, maximum torque per Ampère (MTPA) is employed to optimally balance the contribution of mutual and reluctance torque. However, conventionally the MTPA algorithm considers IPMSM with sinusoidal back-electromotive forces (back-EMFs). In practice, IPMSM often presents back-EMF waveforms that deviate from ideal sinusoid, exhibiting harmonic components. Thus, this paper presents a new algorithm for MTPA operation of IPMSM with non-sinusoidal back-EMF that includes the contribution of harmonic back-EMF components in average torque production. For the test machine the proposed optimal stator current provides approximately 2% higher average torque per Ampère ratio compared to the conventional MTPA. Due to the increase of torque undulations, this method is more suitable for applications non sensitive to torque ripple.
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非正弦反电动势IPMSM的新MTPA方法
内嵌式永磁同步电机以其高效率、高功率密度等特点得到了广泛的应用。对于高性能驱动器,最大扭矩每安培(MTPA)被用来最佳地平衡相互和磁阻扭矩的贡献。然而,传统的MTPA算法考虑具有正弦反电动势(back-EMFs)的IPMSM。在实际应用中,IPMSM往往呈现出偏离理想正弦波的反电动势波形,表现出谐波成分。因此,本文提出了一种包含谐波反电动势分量在平均转矩产生中的贡献的非正弦反电动势永磁同步电动机MTPA运行新算法。对于测试机器,与传统的MTPA相比,所提出的最佳定子电流提供的平均转矩每安培比高出约2%。由于转矩波动增大,该方法更适用于对转矩波动不敏感的应用。
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