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Influence of Conduction Angles on Single Layer Switched Reluctance Machines

机译:传导角对单层开关磁阻电机的影响

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摘要

This paper investigates the influence of conduction angles on the performances of two 3-phase 12-slot/8-pole short pitched switched reluctance machines (SRMs): single layer SRM with conventional winding (SL-CSRM), and single layer SRM with mutually coupled winding (SL-MCSRM). Both unipolar and bipolar excitations are employed for the SRMs with different conduction angles such as unipolar 120° elec., unipolar 180° elec., bipolar 180° elec., bipolar 240° elec., and bipolar 360° elec. Their flux distributions, self- and mutual-flux linkages and inductances are analyzed, and followed by a performance comparison in terms of on-load torque, average torque, torque ripple, using two-dimensional finite element method (2D FEM). Copper loss, iron loss and machine efficiency have also been investigated with different phase currents and rotor speeds. The predicted results show that the conduction angle of unipolar 120° elec. is the best excitation approach for SL-CSRM at low current and also modest speed, as its double layer counterpart. However, at high current, the higher average torque is achieved by a conduction angle of unipolar 180° elec. For SL-MCSRM, bipolar 180° elec. conduction is the most appropriate excitation method to generate a higher average torque but lower torque ripple than others. The lower iron loss is achieved by unipolar excitation, and the SLCSRM with unipolar 120° elec. conduction produces the highest efficiency than others at 〖10A〗_rms. In addition, the performances of single layer machines have been compared with the established double layer SRMs with conventional and mutually-coupled windings. The prototype SRMs, for both SL-CSRM and SL-MCSRM, have been built and tested to validate the predictions.
机译:本文研究了导通角对两台三相12槽/ 8极短节距开关磁阻电机(SRM)性能的影响:传统绕组的单层SRM(SL-CSRM)和相互绕组的单层SRM耦合绕组(SL-MCSRM)。单极性和双极性激励均用于具有不同传导角的SRM,例如单极性120°电,单极性180°电,双极性180°电,双极性240°电和双极性360°电。分析了它们的磁通分布,自磁通和互通磁链以及电感,然后使用二维有限元方法(2D FEM)对负载转矩,平均转矩,转矩脉动进行了性能比较。还已经研究了在不同相电流和转子速度下的铜损,铁损和机器效率。预测结果表明,单极性120°电子的传导角。作为双层电流互感器,SL-CSRM在低电流且速度适中时是最佳激励方法。但是,在大电流下,单极性180°电子角的导通角可实现更高的平均转矩。对于SL-MCSRM,双极性180°电子。传导是最合适的励磁方法,以产生较高的平均转矩,但产生的转矩纹波比其他转矩低。较低的铁损是通过单极激励实现的,而SLCSRM具有120°单极性的激励。在〖10A〗_rms时,传导产生的效率最高。此外,已经将单层电机的性能与已建立的具有常规且相互耦合的绕组的双层SRM进行了比较。针对SL-CSRM和SL-MCSRM的原型SRM已被构建和测试以验证预测。

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