Studies in Design of High Torque Three-Phase Squirrel-Cage AC Traction Motor with Aluminium Alloy Rotor Bars and Parameter Optimization using Artificial Neural Networks

R. N. Paul, L. Arya, H. Verma
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引用次数: 1

Abstract

The most vital parameter of locomotive operation is based on enhancing the kW/kg ratio of traction motor. The change over to three-phase squirrel-cage AC traction motor in electric locomotives, on inverter supply, made the traction drive most economical with high kW/kg ratio, thereby also reducing the un-sprung mass on the axle. In AC traction motor, alternative aluminium alloy rotor bars have been proposed to achieve better performance, light weight, cost reduction, and to meet the scarcity of copper to come in future. Design of rotor plays a vital role in development of torque on motor shaft. The important parameter in design of AC traction motor under inverter supply is the consideration of harmonics generated by it. In this paper, back propagation artificial neural network technique has been adopted to optimize the output design parameters of the AC traction motor rotor with aluminium alloy bars, keeping the stator design un changed. The comparison of AC traction motor with copper bars vis-vis aluminium alloy rotor bars in respect of torque developed and efficiency have been dealt in this study which present a good alternative approach in AC traction motor design.
大转矩铝合金转子棒三相鼠笼型交流牵引电动机设计及参数优化研究
提高牵引电机的kW/kg比是机车运行最重要的参数。电力机车改用三相鼠笼式交流牵引电动机,采用逆变电源供电,使牵引传动最经济,具有较高的kW/kg比,从而也减少了轴上的非簧载质量。在交流牵引电动机中,为了达到更好的性能、更轻的重量、更低的成本和满足未来铜的短缺,已经提出了替代铝合金转子棒。转子的设计对电机轴转矩的发展起着至关重要的作用。逆变电源下交流牵引电机设计的重要参数是考虑其产生的谐波。本文采用反向传播人工神经网络技术,在保持定子设计不变的情况下,对带铝合金棒的交流牵引电动机转子的输出设计参数进行优化。本文比较了铜棒与铝合金转子棒在交流牵引电动机转矩和效率方面的差异,为交流牵引电动机的设计提供了一种较好的替代方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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