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A 2.5 V 600 A MOSFET-Based DC Traction Motor

机译:基于2.5 V 600 A MOSFET的直流牵引电机

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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:高的铜填充系数可以减少电阻损耗,而电阻损耗占当今最常用电动机的损耗的50%以上。单匝绕组的铜填充系数接近于1。此外,它们不存在匝间故障,并且在绕组和定子之间提供低热阻。单匝绕组配置的降低的EMF促进了超低电压大电流MOSFET的使用。这些MOSFET的快速发展使得可以颠倒通用的设计原理,以探索新的应用,例如电池电力牵引驱动器。本文提出了一种采用单匝绕组配置的2.5 V 1 kW MOSFET驱动的13相永磁直流电动机。在高达600 A的连续驱动电流下测试了铜填充系数为0.84的电机原型。测得的转矩效率图表明,采用当今极低电压的大电流,电压低于60 V的这种高电流概念是可行的半导体。由于这种开关的迅速发展,该概念具有进一步改进的巨大潜力。这项工作提出了大电流驱动器的小型版本,这是超低压牵引驱动器概念发展的一部分。

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