Design and Analysis of a Vernier Motor Considering Series Compensation

Abdur Rehman, Byungtaek Kim, Y. Joo
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引用次数: 1

Abstract

This paper demonstrates that the problem in design of vernier motors that their high torque capability needs to be compromised due to extremely low power factor is improved by using the series compensation method and torque performance in the field of weakened driving is also strengthen. In order to quantitatively analyze the advantages obtained from vernier motors by the series compensation, first the vernier motors with various gear ratios are designed under a constraint of the given air gap radius. From the comparison of the back electromotive force (EMF), reactance and speed versus torque characteristics for the designed models, it is shown that the model with the largest back EMF, on the contrary, has the worst torque characteristic at high speed. To improve the torque characteristics in the high-speed operation area, the winding of the vernier motor with the largest counter electromotive force is configured as the open ended, and the series compensation is performed by connecting the secondary inverter and the floating capacitance. The characteristics of the vernier motor with the series compensation are first analyzed using electrical circuit simulation and then the time step finite element (FE) method is also performed. Especially, in the FE simulations, the equivalent capacitances reflecting series compensation are used to reduce the enormous calculation time of the FE analysis considering the actual inverter operations. From the analysis results, the improvement of the torque and power factor characteristics of the motor is confirmed.
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考虑串联补偿的游标电机设计与分析
本文论证了采用串联补偿的方法,改善了游标电机设计中由于功率因数极低而需要牺牲其高转矩能力的问题,增强了弱驱动领域的转矩性能。为了定量分析串联补偿游标电机的优点,首先在给定气隙半径的约束下,设计了不同传动比的游标电机。通过对所设计模型的反电动势(EMF)、电抗和转速与转矩特性的比较,发现反电动势最大的模型在高速时转矩特性最差。为改善高速运行区域的转矩特性,将反电动势最大的游标电机绕组配置为开路端,通过连接二次逆变器和浮电容进行串联补偿。首先用电路仿真的方法分析了采用串联补偿的游标电机的特性,然后用时间步长有限元法对其进行了分析。特别是在有限元仿真中,考虑到逆变器的实际运行情况,采用反映串联补偿的等效电容,减少了大量的有限元分析计算时间。从分析结果来看,电机的转矩和功率因数特性得到了改善。
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