铁氧体和钕铁硼永磁电机在机器性能和无传感器启动控制方面的比较

F. Demmelmayr, B. Weiss, M. Troyer, M. Schroedl
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引用次数: 10

摘要

稀土永磁体(如钕铁硼)的成本在过去几年中迅速增长。因此,替代磁体材料的研究备受关注。本文比较了两种使用不同磁铁材料的外转子的永磁同步电机——一种是钕铁硼,另一种是便宜得多的铁氧体磁铁。第一部分考察了铁氧体磁铁在不适当的工作点发生不可逆退磁的风险。此外,测量和一些数值模拟结果对比了机器在空载电压、短路行为、扭矩输出和效率方面的特性。不同的磁体材料会影响基于各向异性效应的位置传感器技术,特别是在启动控制方面。最后比较了两种估计静止状态下电机转子绝对位置的方法。可靠性方面的考虑表明了它们在各自机器上的质量。
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Comparison of PM-machines with ferrite and NdFeB magnets in terms of machine performance and sensorless start-up control
The costs of rare-earth permanent magnets such as NdFeB increased rapidly in the last few years. Therefore, great attention is paid for alternative magnet materials. This paper compares two permanent magnet synchronous machines using external rotors with different magnet materials - one with NdFeB and the other with much cheaper ferrite magnets. The first section examines the risk of irreversible demagnetization of the ferrite magnets at inappropriate operating points. Furthermore, measurements and some numerical-simulation results contrast characteristics of the machines in terms of no-load voltage, short-circuit behavior, torque output and efficiency. Different magnet materials influence position-sensorless techniques based on anisotropic effects especially for start-up control. The last part of this study compares two methods to estimate the absolute electrical rotor position at standstill. Reliability considerations show their quality at the respective machine.
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