考虑温度变化影响的IPM电机转矩补偿控制算法评价

Silong Li, B. Sarlioglu, S. Jurkovic, N. Patel, P. Savagian
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引用次数: 12

摘要

对于汽车应用,准确的扭矩产生能力和高效率的牵引电机是非常重要的。然而,广泛使用的内嵌式永磁(IPM)电机的性能受到温度变化的影响,并且在汽车应用中磁体的温度变化可能是深刻的。本文综述了文献中最新的IPM电机转矩补偿控制方法。对温度变化引起的扭矩误差估计方法进行了分类。此外,还概述了调整IPM机床工作点以保持扭矩生产精度和高效率运行的方法。对每种算法的优缺点进行了详细的描述和比较。本文促进了高性能和强大的IPM机器驱动系统的发展,为汽车工业。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of torque compensation control algorithm of IPM machines considering the effects of temperature variations
For automotive applications, accurate torque production capability and high efficiency of the traction motor is very important. However, the performance of widely used interior permanent magnet (IPM) machines is influenced by temperature variations, and temperature variations of the magnets in automotive applications can be profound. In this paper, the state-of-the-art torque compensation control methods of IPM machines in the literature are reviewed. The methods for torque error estimation due to temperature variation are classified. In addition, the methods for adjusting the operating points of IPM machines to maintain torque production accuracy and high-efficiency operation are also overviewed. The advantages and disadvantages of each algorithm are described and compared in detail. This paper facilitates the development of high performance and robust IPM machine drive systems for the automotive industry.
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