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Performance evaluation of axially-laminated anisotropic (ALA) rotor reluctance synchronous motors

机译:轴向叠片各向异性转子磁阻同步电动机的性能评估

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摘要

Axially laminated anisotropic (ALA) rotor reluctance synchronous motors (RSMs) for use in variable speed drives, have a very high ratio of L/sub d//L/sub q/ and high L/sub d/-L/sub q/ values, and do not carry rotor current. Consequently, an ALA rotor RSM has a high torque density, power factor, and efficiency, and its vector control is fairly simple. This paper presents an approach to the performance analysis of RSM and the test results on a prototype ALA-rotor RSM. The theory is based on the machine parameter determination by field computation via analytical and finite element methods. Design criteria derived from theoretical analysis and the nature of the magnetic field obtained from finite element analysis for the ALA-rotor RSM are presented. Test results on a prototype are presented to validate the theoretical calculations and to demonstrate the high performance of the ALA-rotor RSM. The high L/sub d//L/sub q/ ratio of 16 under rated magnetic saturation conditions, high power factor of 0.91, and above 84% efficiency are obtained for a 2-pole, 2 HP laboratory ALA-rotor RSM.
机译:用于变速驱动器的轴向叠层各向异性(ALA)转子磁阻同步电动机(RSM)具有很高的L / sub d // L / sub q /和高L / sub d / -L / sub q /值,并且不携带转子电流。因此,ALA转子RSM具有高转矩密度,功率因数和效率,并且其矢量控制相当简单。本文提出了一种对RSM性能进行分析的方法,以及在原型ALA转子RSM上的测试结果。该理论基于通过分析和有限元方法的现场计算确定的机器参数。提出了从理论分析得出的设计标准以及从ALA转子RSM的有限元分析获得的磁场的性质。提出了在原型上的测试结果,以验证理论计算并证明ALA转子RSM的高性能。对于2极2 HP实验室ALA转子RSM,在额定磁饱和条件下的高L / sub d // L / sub q /比为16,高功率因数为0.91,效率高于84%。

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