三相软开关逆变器回顾及电机驱动器面临的挑战

Haifeng Lu;Qiao Wang;Jianyun Chai;Yongdong Li
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摘要

对于电动汽车(EV)来说,有必要通过提高效率来改善续航里程。目前的趋势是提高系统电压和开关频率,从而提高充电速度和功率密度。然而,这一趋势给高压和高频电机控制器带来了巨大挑战,因为硬开关会导致开关损耗增加和开关振荡明显。软开关技术的应用为缓解这些问题提供了可行的解决方案。本文回顾了软开关技术在三相逆变器中的应用,并根据不同的特点对其进行了分类。对每种逆变器的优缺点进行了评估。然后,本文介绍了软开关逆变器(SSI)的研究进展和控制方法。此外,论文还对传统硬开关逆变器(HSI)、有源箝位谐振直流链路逆变器(ACRDCLI)和辅助谐振换向极逆变器(ARCPI)进行了比较分析。最后,提出了软开关技术应用于电动汽车电机控制器的问题和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of Three-Phase Soft Switching Inverters and Challenges for Motor Drives
For electric vehicles (EVs), it is necessary to improve endurance mileage by improving the efficiency. There exists a trend towards increasing the system voltage and switching frequency, contributing to improve charging speed and power density. However, this trend poses significant challenges for high-voltage and high-frequency motor controllers, which are plagued by increased switching losses and pronounced switching oscillations as consequences of hard switching. The deployment of soft switching technology presents a viable solution to mitigate these issues. This paper reviews the applications of soft switching technologies for three-phase inverters and classifies them based on distinct characteristics. For each type of inverter, the advantages and disadvantages are evaluated. Then, the paper introduces the research progress and control methods of soft switching inverters (SSIs). Moreover, it presents a comparative analysis among the conventional hard switching inverters (HSIs), an active clamping resonant DC link inverter (ACRDCLI) and an auxiliary resonant commuted pole inverter (ARCPI). Finally, the problems and prospects of soft switching technology applied to motor controllers for EVs are put forward.
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