概述汽车电池充电应用的双向隔离AC-DC转换器的要求和实现

Georgios E. Sfakianakis, J. Everts, E. Lomonova
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引用次数: 30

摘要

本文主要分为三个部分。在第一部分,即第二节中,给出了关于插电式电动汽车(pev)的电池充电器(电源转换器)的系统级方面的一般概述。因此,讨论了变流器的不同充电模式、相应的功率水平和基础设施。此外,还简要说明了车辆到电网(V2G)通过并网、馈网和支持并网的变换器功能运行,并总结了输入电能质量和电磁兼容性要求。第二部分,即第三节,概述了决定系统整体性能的相互耦合的指标,如功率损耗(效率)、体积(功率密度)、重量(比功率)、故障率(可靠性)和成本(相对成本)。在这种情况下,宽带隙功率半导体(例如SiC, GaN)可以发挥作用,以进一步提高系统性能。在第三部分,即第四节,提供了上述电源转换器可能的拓扑实现的简要概述。重点是导电、隔离的AC- dc转换器拓扑结构,在功率因数校正(PFC)和谐波畸变方面具有高交流输入功率质量,并具有双向潮流能力,以促进V2G运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Overview of the requirements and implementations of bidirectional isolated AC-DC converters for automotive battery charging applications
This paper is divided into three main parts. In the first part, i.e. Section II, a general outline of the system level aspects regarding battery chargers (power converters) for plug-in electric vehicles (PEVs) is given. Thereby, the different charging modes of the converters, the corresponding power levels, and the infrastructural facilities are discussed. Moreover, Vehicle-to-Grid (V2G) operation by means of grid-forming, grid-feeding, and grid-supporting converter functionality is briefly explained, and the input power quality and electromagnetic compatibility requirements are summarized. In the second part, i.e. Section III, the mutually coupled indices that determine the overall performance of the system, such as power losses (efficiency), volume (power density), weight (specific power), failure rate (reliability), and costs (relative cost), are outlined. In this context, the role that wide band-gap power semiconductors (e.g. SiC, GaN) can play in order to further improve the system performance is highlighted. In the third part, i.e. Section IV, a concise overview of the possible topological implementations for the mentioned power converters is provided. The focus is on conductive, isolated AC-DC converter topologies with high AC input power quality in terms of power factor correction (PFC) and harmonic distortion, and with bidirectional power flow capability in order to facilitate V2G operation.
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