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Maximum Efficiency per Torque Control of Permanent-Magnet Synchronous Machines

机译:永磁同步电机的最大转矩控制效率

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High-efficiency permanent-magnet synchronous machine (PMSM) drive systems need not only optimally designed motors but also efficiency-oriented control strategies. However, the existing control strategies only focus on partial loss optimization. This paper proposes a novel analytic loss model of PMSM in either sine-wave pulse-width modulation (SPWM) or space vector pulse width modulation (SVPWM) which can take into account both the fundamental loss and harmonic loss. The fundamental loss is divided into fundamental copper loss and fundamental iron loss which is estimated by the average flux density in the stator tooth and yoke. In addition, the harmonic loss is obtained from the Bertotti iron loss formula by the harmonic voltages of the three-phase inverter in either SPWM or SVPWM which are calculated by double Fourier integral analysis. Based on the analytic loss model, this paper proposes a maximum efficiency per torque (MEPT) control strategy which can minimize the electromagnetic loss of PMSM in the whole operation range. As the loss model of PMSM is too complicated to obtain the analytical solution of optimal loss, a golden section method is applied to achieve the optimal operation point accurately, which can make PMSM work at maximum efficiency. The optimized results between SPWM and SVPWM show that the MEPT in SVPWM has a better effect on the optimization performance. Both the theory analysis and experiment results show that the MEPT control can significantly improve the efficiency performance of the PMSM in each operation condition with a satisfied dynamic performance.
机译:高效永磁同步电机(PMSM)驱动系统不仅需要优化设计的电机,而且还需要以效率为导向的控制策略。但是,现有的控制策略仅专注于部分损耗优化。本文提出了一种新颖的PMSM分析损耗模型,该模型既可以考虑基本损耗又可以考虑谐波损耗,既可以采用正弦波脉冲宽度调制(SPWM),也可以采用空间矢量脉冲宽度调制(SVPWM)。基本损耗分为基本铜损耗和基本铁损耗,基本损耗由定子齿和磁轭中的平均磁通密度估算。此外,谐波损耗是根据Bertotti铁损公式通过SPWM或SVPWM中三相逆变器的谐波电压得出的,该谐波电压是通过双傅立叶积分分析计算的。基于分析损耗模型,提出了一种最大转矩效率控制策略,该策略可以在整个工作范围内将PMSM的电磁损耗降至最低。由于永磁同步电机的损耗模型过于复杂,无法获得最优损耗的解析解,因此采用了黄金分割法来精确地达到最优工作点,从而使永磁同步电机以最大效率工作。 SPWM和SVPWM之间的优化结果表明,SVPWM中的MEPT对优化性能有更好的影响。理论分析和实验结果均表明,MEPT控制可在各种运行条件下以令人满意的动态性能显着提高PMSM的效率性能。

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