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Analysis of the steady-state components in a balanced single-phase synchronous reluctance motor with a running capacitor

机译:具有运行电容器的平衡单相同步磁阻电动机的稳态分量分析

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摘要

Torque pulsations arising from rotor saliency and stator winding imbalance degrade the performance of single-phase reluctance motors. This paper examines different components of torque produced by such a motor and studies their individual dependencies on machine operational indices in the steady state. The torque expressions are derived in component parts by d-q harmonic balance as functions of load angle and auxiliary winding capacitor value from which performance is assessed. By adjusting the capacitor value using established conditions for balance, improved drive performance as a 2-phase motor is realized. Simple test results were used to assess the validity of the harmonic balance model and a good agreement is observed. Torque pulsations due to stator winding imbalance were reduced while that due to rotor saliency remained unaffected as expected. The improvement in efficiency under balanced conditions, permit the motor to support a higher load torque than rated.
机译:转子凸极和定子绕组不平衡引起的转矩脉动会降低单相磁阻电机的性能。本文研究了这种电动机产生的扭矩的不同分量,并研究了它们在稳态下对机器运行指标的个体依赖性。转矩表达式通过d-q谐波平衡在部件中得出,作为负载角和辅助绕组电容器值的函数,从中可以评估性能。通过使用已建立的平衡条件来调节电容器值,可以实现作为2相电动机的改善的驱动性能。简单的测试结果用于评估谐波平衡模型的有效性,并观察到良好的一致性。定子绕组不平衡引起的转矩脉动减少了,而转子凸极引起的转矩脉动却未如预期那样受到影响。平衡条件下效率的提高允许电动机支持比额定值更高的负载转矩。

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