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A 2.5 V 600 A MOSFET-Based DC Traction Motor

机译:2.5 V 600基于MOSFET的直流牵引电动机

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A high copper fill factor allows reducing the resistive losses responsible for more than 50 % of the losses in today's most commonly used electrical motors. Single-turn windings achieve a copper fill factor close to one. Furthermore, they do not suffer from turn to turn faults and provide a low thermal resistance between winding and stator. The reduced EMF of single-turn winding configurations promotes the use of extra-low voltage high current MOSFETs. Rapid development of these MOSFETs allows reversing common design principles to explore new applications, such as battery electric traction drives. This paper presents a 2.5 V 1 kW MOSFET driven 13-phase permanent magnet DC motor with a single-turn winding configuration. The motor prototype with a copper fill factor of 0.84 was tested with continuous drive currents up to 600 A. The measured torque-efficiency map shows that such a high-current concept with voltages below 60 V is feasible using today's extremely low-voltage high current semiconductors. Due to the rapid development of such switches, there is great potential in this concept for further improvements. This work presents a small-scale version of the high-current drive, which is part of the development of an extra-low voltage traction drive concept.
机译:高铜填充因子允许减少当今最常用的电动机中超过50%的损失的电阻损失。单匝绕组实现靠近一个的铜填充因子。此外,它们不会损失转动故障并提供绕组和定子之间的低热电阻。单匝绕组配置的减少的EMF促进了使用超低电压高电流MOSFET。这些MOSFET的快速发展允许扭转共同的设计原则来探索新的应用,例如电池电动牵引驱动器。本文介绍了2.5 V 1 KW MOSFET驱动的13相永磁直流电直流电机,具有单匝绕组配置。具有0.84的铜填充因子的电动机原型与连续的驱动电流高达600A。测量的扭矩效率图表明,使用当今的极低电压高电流的电压以下的电压以下的这种高电流概念是可行的半导体。由于这种开关的快速发展,这一概念存在很大的潜力,以进一步改进。这项工作介绍了一个小型版本的高电流驱动器,这是开发超低电压牵引驱动器概念的一部分。

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