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Design of a novel integrated motor-compressor machine with GaN-based inverters

机译:具有GaN基逆变器的新型集成式电动压缩机一体机的设计

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The objective of this paper is to analyze a novel high-speed integrated motor-compressor drive system and investigate the opportunities by using gallium nitride (GaN)-based inverters. The proposed integrated motor-compressor is a combination of electric machine and axial-flow compressor by shaping the rotor pole of the electric machine into airfoils. Hence, the proposed integrated motor-compressor can provide electromagnetic torque and compression function at the same time. As the integrated machine needs to rotate at high speed to achieve high compression ratio, the challenges of high fundamental frequency are addressed. By leveraging GaN-based inverters, the current harmonics distortion is reduced, and high efficiency is maintained at the high-speed operating condition. In this design, a GaN-based inverter is proposed for driving an integrated motor-compressor rotating at 35000 rpm. The electromagnetic performance of the proposed integrated machine is investigated by analytical equations and finite element analysis (FEA). The characteristic parameters, current total harmonic distortion, and the efficiency of the GaN-based inverter are compared with the Si-based inverter.
机译:本文的目的是分析一种新型的高速集成式电动压缩机驱动系统,并通过使用基于氮化镓(GaN)的逆变器来研究机会。所提出的集成式电动压缩机是电机和轴流式压缩机的组合,通过将电机的转子磁极成型为翼型来实现。因此,提出的集成式电动压缩机可以同时提供电磁转矩和压缩功能。由于集成机需要高速旋转以实现高压缩比,因此解决了高基频的挑战。通过利用基于GaN的逆变器,可以减少电流谐波失真,并在高速工作条件下保持高效率。在此设计中,提出了一种基于GaN的逆变器,用于驱动以35000 rpm旋转的集成式电动压缩机。通过解析方程和有限元分析(FEA)研究了所提出的集成机的电磁性能。将GaN基逆变器的特性参数,电流总谐波失真和效率与Si基逆变器进行了比较。

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