Effect of stator leakage inductance in field weakening region of a vector controlled induction machine drive for traction application

H. P, J. Titus, K. Hatua, S. E. Rao
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引用次数: 3

Abstract

The vector controlled induction machine drive with field weakening capability is a preferred choice for traction applications. The parameters of the machine have a significant influence on the performance of the drive. The maximum torque output in the field weakening region is limited by the leakage inductances of the machine. Therefore, while selecting a machine for a traction application, it must be ensured that the leakages are such that the required torque speed characteristics are well satisfied in the field weakening region up to the maximum speed. This paper analyses the effect of leakage inductance on the performance of the induction machine drive in the field weakening region. The critical value of leakage inductance which ensures operation up to the highest application speed with specified load demand is derived. The effect of leakage inductance in field weakening region is studied using Matlab/Simulink. The field weakening algorithm is experimentally validated on a 30 kW induction machine, up to five times the base speed.
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牵引用矢量控制感应电机弱磁场区定子漏感的影响
具有弱磁场能力的矢量控制感应电机驱动器是牵引应用的首选。机器的参数对驱动器的性能有很大的影响。弱磁场区域的最大转矩输出受电机漏感的限制。因此,在选择用于牵引应用的机器时,必须确保泄漏能够很好地满足弱磁场区域所需的转矩速度特性,直至最大速度。本文分析了感应电机在弱磁区漏感对电机传动性能的影响。在给定的负载要求下,导出了保证运行达到最高应用速度的漏感临界值。利用Matlab/Simulink对弱磁场区漏感的影响进行了研究。磁场减弱算法在30kw感应电机上进行了实验验证,实验速度是基本速度的5倍。
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