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Design considerations in an indirectly coupled multilevel motor controller

机译:间接耦合多级电机控制器中的设计注意事项

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摘要

Permanent magnet (PM) motors utilising ironless stator structures have been incorporated into a wide variety of applications where high efficiency and stringent torque control are required. With recent developments in magnetic materials, improved design strategies, and power outputs of up to 40kW, PM motors have become an attractive candidate for traction drives in electric and hybrid electric vehicles. However, due to their large air gaps and ironless stators these motors can have inductances as low as 2μH, imposing increased requirements on the converter to minimise current ripple. Multilevel converters with n cells can effectively increase the motor inductance by a factor of n2 and are an excellent approach to minimise the motor ripple current. Furthermore by indirectly coupling the outputs of each cell, improvements in converter input and cell ripple current can also be realised. This paper examines the issues in designing a high current indirectly coupled multilevel motor controller for an ironless BLDC traction drive and highlights the limitations of the common ladder core structure.
机译:利用无铁定子结构的永磁(PM)电动机已被集成到需要高效率和严格转矩控制的各种应用中。随着磁性材料的最新发展,改进的设计策略以及高达40kW的功率输出,永磁电动机已成为电动和混合动力汽车牵引驱动的有吸引力的候选者。但是,由于其较大的气隙和无铁定子,这些电机的电感可低至2μH,对转换器提出了更高的要求,以最大程度地减小电流纹波。具有n个单元的多电平转换器可以有效地将电动机电感增加n2倍,并且是一种最小化电动机纹波电流的出色方法。此外,通过间接耦合每个单元的输出,还可以实现转换器输入和单元纹波电流的改善。本文研究了为无铁BLDC牵引驱动器设计大电流间接耦合多级电动机控制器时遇到的问题,并重点介绍了常见梯形铁心结构的局限性。

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