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Reducing the permanent magnet content in fractional-slot concentrated-windings permanent magnet synchronous machines

机译:减少分数槽集中绕组永磁同步机的永磁体含量

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The efficiency of permanent magnet synchronous machines is investigated as a function of the mass of magnets used, keeping the power and volume constant. A comparison is made between rare earth (NdFeB) magnets and ferrite magnets. For a given type and amount of magnets, the geometry of the machine is optimized and the efficiency map is computed, taken into account iron loss, copper loss, magnet loss and pulse width modulation loss. The amount of permanent magnet material can be reduced significantly with a minor influence on the efficiency and power density. Furthermore, the machine is optimized for several soft magnetic materials. It is observed that the optimal number of poles is higher for low loss materials, and that the efficiency is up to 5% higher than for the highest loss material. For a motor optimized for ferrite magnets, the minimal magnet thickness for high efficiency is about double compared to NdFeB.
机译:作为所用磁铁质量的函数研究了永磁同步机的效率,保持电源和体积恒定。在稀土(NDFEB)磁体和铁氧体磁铁之间进行了比较。对于给定类型和数量的磁体,优化机器的几何形状,计算效率图,考虑了铁损,铜损,磁损和脉冲宽度调制损耗。永磁材料的量可以显着降低对效率和功率密度的微小影响。此外,该机器针对几种软磁材料进行了优化。观察到,低损耗材料的最佳极值较高,并且效率高于最高损耗材料的5%高达5%。对于针对铁氧体磁铁进行优化的电机,与NDFEB相比,高效率的最小磁体厚度约为双倍。

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