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Performance Assessment of Coreless Permanent Magnet Synchronous Motors for Position holding Mechanism for Spacecraft Applications

机译:航天器位置保持机构用无芯永磁同步电动机的性能评估

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This paper investigates the performances of 3-phase and 2-phase coreless Permanent Magnet Synchronous Motor (PMSM) for a position holding mechanism used in spacecraft. Configuration study of coreless PMSM was carried out to select the stator-rotor configuration and it is found that enclosed rotor has higher torque density than outside rotor configuration. Detailed design and analysis of 3-phase and 2-phase PMSM were carried out. Rotor is designed to generate sinusoidal flux in the airgap. Three different winding pattern for 3-phase PMSM were studied and the Sine distributed winding generates higher torque. 3-phase and 2-phase PMSM are realized and characterized. Ripple free torque is achieved in both motors. 3-Phase PMSM has better performance indices than 2-Phase PMSM. Torque density of 2-phase PMSM is 33% lesser than 3-phase PMSM. If torque density is the driving factor, 3-phase PMSM is the ideal choice. With resolver as the angle sensor, for position holding application, 2-phase PMSM is a better option.
机译:本文研究了用于航天器中的位置保持机构的三相和两相无芯永磁同步电动机(PMSM)的性能。进行了无芯永磁同步电动机的结构研究,以选择定子-转子结构,发现封闭式转子的转矩密度高于外部转子的转矩密度。进行了三相和两相永磁同步电动机的详细设计和分析。转子设计为在气隙中产生正弦通量。研究了三相PMSM的三种不同绕组模式,正弦分布绕组产生更高的转矩。实现了三相和两相永磁同步电动机。两台电动机均实现了无纹波转矩。三相PMSM具有比2相PMSM更好的性能指标。 2相PMSM的转矩密度比3相PMSM小33%。如果扭矩密度是驱动因素,则三相PMSM是理想选择。将旋转变压器用作角度传感器,对于位置保持应用,两相PMSM是更好的选择。

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