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Double-Phase High-Efficiency, Wide Load Range High- Voltage/Low-Voltage LLC DC/DC Converter for Electric/Hybrid Vehicles

机译:用于电动/混合动力车辆的双相高效,宽负载范围高压/低压 LLC DC / DC转换器

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摘要

In this paper, a 2.5-kW 330–410-V/14-V, 250-kHz dc/dc converter prototype is developed targeted for electric vehicle/hybrid vehicle applications. Benefiting from numerous advantages brought by the resonant topology, this converter is able to perform high efficiency, high power density, and low EMI. To arrange high-output current, this paper proposes a parallel-connected structure with developed novel double-loop control to realize an equal current distribution and an overall efficiency improvement. Considering the cell's dimensioning, this paper establishes a more precise model by taking the secondary leakage inductance into consideration. System amelioration and design considerations of the developed are also presented in this paper. A special transformer is presented, and various types of power losses are quantified to improve its efficiency. This converter also implements synchronous rectification, power semiconductor module, and an air-cooling system. The power conversion performance of this prototype is measured and the developed prototype attains a peak efficiency of 95% and efficiency is higher than 94% from 500 W to 2 kW, with a power density of 1 W/cm. Finally, the EMC results of this prototype are also measured and presented.
机译:本文针对电动汽车/混合动力汽车应用开发了2.5kW的330-410-V / 14-V,250kHz dc / dc转换器原型。受益于谐振拓扑带来的众多优势,该转换器能够执行高效率,高功率密度和低EMI。为了布置高输出电流,本文提出了一种并联结构,并采用了新颖的双环控制技术,以实现均等的电流分配和整体效率的提高。考虑到电池的尺寸,本文通过考虑次级漏感建立了一个更精确的模型。本文还介绍了开发的系统改进和设计注意事项。提出了一种特殊的变压器,并对各种类型的功率损耗进行了量化以提高其效率。该转换器还实现了同步整流,功率半导体模块和空气冷却系统。测量了该原型的功率转换性能,并且开发的原型在500 W至2 kW的功率效率为1 W / cm时达到了95%的峰值效率,效率高于94%。最后,还测量并展示了该原型的EMC结果。

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