低温电力电子技术综述——现状与应用

K. Rajashekara, B. Akin
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引用次数: 48

摘要

对功率密度的需求增加,以及与超导电机/发电机、消磁线圈、储能模块和电缆相关的电力子系统的紧密集成,导致人们考虑将电力电子设备制冷到低温的优点。高温超导元件与低温功率变换器的结合将对交通运输电气化和高功率密度功率转换系统产生重要影响。低温功率转换器模块在尺寸和重量减小(功率密度增加)方面比室温转换器提供了其他有希望的优势;提高了效率、交换速度和可靠性。这样的集成可以大大节省整个系统的重量和空间。本文综述了低温电力电子技术的研究现状及其应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review of cryogenic power electronics - status and applications
Increased need for power density and close integration of power subsystems associated with superconductive motors/generators, degaussing coils, energy storage modules and cables leads one to consider the merits of refrigerating the power electronics down to cryogenic temperatures. High-temperature superconducting components combined with cryogenic power converters will have a significant effect on electrification of transportation and high power density power conversion systems. Cryogenic power converter modules provide other promising benefits over their room temperature counterparts in terms of reduced size and weight (increased power density); improved efficiency, switching speed, and reliability. Such integration could result in significant weight and space savings for the overall system. In this paper, a review of the status of research in cryogenic power electronics and their potential applications is presented.
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