基于隔离功率因数校正的高增益交直流降压-升压转换器的单级LEV电池充电器

Alakshyender Singh, J. Gupta, Bhim Singh
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引用次数: 0

摘要

本研究提出了一种基于高降压增益AC-DC buck-boost转换器的轻型电动汽车(lev)隔离单级高质量电池充电器。与传统的两级充电器相比,所提出的充电器具有几个优点,其中一些优点是减少了总体组件数量,降低了成本和尺寸,消除了大型DC Link电容器,减少了控制工作量,并且更好地动态调节电压。通过将变换器设计成不连续传导模式(DCM),进一步减小了充电器的尺寸和成本。与连续传导模式(CCM)相比,这也允许减少单级充电器所需的控制工作量和传感器数量,并导致更简单的恒流(CC)和恒压(CV)电池充电方法的实现。此外,该充电器还具有高电压转换率和高功率因数运行等特点。该充电器采用无桥形式的变换器,大大降低了全桥二极管整流器(DBR)的导通损耗,提高了充电器的包容性效率。本研究通过450 W充电器的仿真验证了该充电器的可行性及其在稳态和动态状态下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolated Power Factor Corrected High-Gain AC-DC Buck-Boost Converter Based Single Stage LEV Battery Charger
This study presents an isolated single-stage high power quality battery charger for light electric vehicles (LEVs) based on a high step-down gain AC-DC buck-boost converter. The presented charger offers several advantages over the conventional two-stage charger, some of which are reduction in overall component count, reduced cost and size, elimination of large DC Link capacitor, reduction in control effort, and better dynamic voltage regulation. The size and cost of the charger are further diminished by designing the converter in discontinuous conduction mode (DCM). This also allows to reduce the control effort and the number of sensors required for the single-stage charger when compared to continuous conduction mode (CCM) and leads to simpler implementation of constant current (CC) and constant voltage (CV) methodologies of battery charging. Additionally, the charger also exhibits features like high voltage conversion ratio and high power factor operation. The inclusive efficiency of the presented charger is improved by using the converter in its bridgeless form, which significantly reduces the conduction losses accompanying the full bridge diode rectifier (DBR). This study validates feasibility of the charger and its performance during both steady and dynamic states by simulations for a 450 W charger.
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