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Design and Analysis of an Integrated Modular Motor Drive for More Electric Aircraft

机译:更多电气飞机集成模块化电机驱动的设计与分析

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摘要

Although many permanent magnet synchronous motors (PMSMs) are used as the driving source for aerospace applications, the motor and converter are not integrated. This leads to large volume and low power density of the system. This article proposes an SiC-based integrated modular motor drive (IMMD) as a potential solution, in which the SiC converter is placed at the end of the stator core of the motor. The converter is directly connected to the end-turn windings of the motor so as to reduce the wiring cable losses, with the motor and converter being cooled by an integrated water-cooled housing, significantly reducing the weight of the system and improving the power density. First, the topology of a five-phase IMMD is briefly introduced. Then, the influence of the number of slots on the output performance of the motor is analyzed with the aim of improving the power density of the system. Because the system integration will cause the loss density of the motor to sharply increase, this will thereby cause the local temperature of the IMMD to be higher. A detailed analysis and calculation of the thermal design will be required to improve the reliability of the system in high-temperature environments. The skewed rotor method is adopted so that the torque ripple of the fractional-slot motor is suppressed in the high-speed region. The results show that these methods can increase the power density of the IMMD and expand the speed range of the motor so as to meet the needs of different stages during the whole flight of more electric aircraft.
机译:尽管许多永磁同步电动机(PMSMS)用作航空航天应用的驱动源,但电动机和转换器未集成。这导致系统的大容量和低功率密度。本文提出了一种基于SiC的集成模块化电动机驱动器(IMMD)作为潜在的解决方案,其中SiC转换器放置在电动机的定子芯的末端。转换器直接连接到电机的端部绕组,以减少布线电缆损耗,电机和转换器通过集成的水冷壳体冷却,显着降低了系统的重量并提高了功率密度的重量。首先,简要介绍了五相IMMD的拓扑。然后,通过提高系统的功率密度,分析了对电动机的输出性能的槽数对电动机的输出性能的影响。因为系统集成将导致电机的损耗密度急剧增加,从而使IMMD的局部温度更高。将需要详细分析和计算热设计,以提高高温环境中系统的可靠性。采用偏斜转子方法,使得在高速区域中抑制了分数槽电动机的扭矩脉动。结果表明,这些方法可以提高IMMD的功率密度,并扩大电机的速度范围,以满足在更多电气飞机的整个飞行中不同阶段的需求。

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