A Finite Control Set Model Predictive Current Control Scheme for Five-phase PMSMs Based on Optimized Duty Ratio

Bin Yu, Wensheng Song, T. Tang, Song Wang, Ping Yang
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引用次数: 5

Abstract

Finite control set model predictive current control (FCS-MPCC) scheme is easy to realize and has fast dynamic response, so it’s widely employed in machine drive applications. However, the low-order harmonics in stator currents, heavy computation burden and the utilization improvement of dc-link voltage are the key issues of FCS-MPCC schemes for multiphase machine drives. Thus, this paper proposes a FCS-MPCC scheme with the optimized duty ratio (MPCC-ODR) for five-phase machine drives. Simulations and experimental results have verified that the proposed MPCC-ODR scheme can suppress low-order harmonics, improve the utilization of dc-link voltage and reduce computation complexity.
基于最优占空比的五相永磁同步电机有限控制集模型预测电流控制方案
有限控制集模型预测电流控制(FCS-MPCC)方案具有实现简单、动态响应快等优点,在机械传动中得到了广泛的应用。然而,定子电流的低次谐波、繁重的计算负担和直流电压的利用率提高是FCS-MPCC多相电机驱动方案的关键问题。因此,本文提出了一种具有优化占空比(MPCC-ODR)的五相电机驱动FCS-MPCC方案。仿真和实验结果验证了所提出的MPCC-ODR方案能够抑制低阶谐波,提高直流链路电压利用率,降低计算复杂度。
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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