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Experimental Comparison of Synchronous Reluctance Motors with and without Ferrite Magnet Assistance

机译:带有和不带有铁氧体磁铁辅助的同步磁阻电动机的实验比较

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Both, the synchronous reluctance motor (SynRM) and the permanent magnet assisted synchronous reluctance motor (PMaSynRM), are high-efficient inverter-fed motors in variable-speed drive applications. Here, both machines are designed for the same stator of an 11 kW totally-enclosed, fan-cooled standard cage induction motor. The experimental comparison between both motors confirms that the PMaSynRM using ferrite magnets has a 20% higher nominal output torque for the same rated current, an increased power factor of 0.88 instead of 0.81 and a higher efficiency by 1.2%-points in the base speed range at 1500 rpm as well as a 27% higher steady-state output power in the field-weakening range at 3000 rpm. On the contrary, the performance of the PMaSynRM decreases with increasing ferrite magnet temperature. Further, the ferrite magnets demagnetize partially at a three-phase sudden short-circuit.
机译:同步磁阻电动机(SynRM)和永磁辅助同步磁阻电动机(PMaSynRM)都是变速驱动应用中的高效逆变器馈电电动机。在此,两台电机都是为11 kW全封闭,风扇冷却的标准笼式感应电动机的同一定子设计的。两种电动机之间的实验比较证实,使用铁氧体磁体的PMaSynRM在相同的额定电流下具有20%的标称输出转矩,增加的0.88功率因数(而不是0.81)和更高的1.2效率。 在1500 rpm时的基本速度范围内达到最高点,并且在3000 rpm的弱磁场范围内的稳态输出功率提高了27%。相反,PMaSynRM的性能会随着铁氧体磁体温度的升高而降低。此外,铁氧体磁体在三相突然短路时部分消磁。

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