Accurate ZVS Analysis of a Full-Bridge T-Type Resonant Converter for a 20-KW Unfolding-Based AC-DC Topology

Shubhangi Gurudiwan, Aditya Zade,Hongjie Wang,Regan Zane

IEEE Open Journal of Power Electronics(2024)

引用 0|浏览1
暂无评分
摘要
Unfolding-based single-stage ac-dc converters offer benefits in terms of efficiency and power density due to the low-frequency operation of the Unfolder, resulting in negligible switching losses. However, the operation of the Unfolder results in time-varying dc voltages at the input of the subsequent dc-dc converter, complicating its soft-switching analysis. The complication is further enhanced due to the nonlinear nature of the output capacitance ( $C_{\rm oss}$ ) of MOSFETs employed in the dc-dc converter. Furthermore, unlike two-stage topologies with a constant dc-link voltage, as seen in high-frequency grid-tied converters, grid voltage fluctuations also impact the dc input voltages of the dc-dc converter in unfolding-based systems. This work comprehensively analyzes the soft-switching phenomenon in the T -type primary bridge-based dc-dc converter used in unfolding-based topologies, considering all the aforementioned challenges. An energy-based methodology is proposed to determine the minimum zero-voltage switching (ZVS) current and ZVS time during various switching transitions of the T -type bridge. It is shown that the existing literature on the ZVS analysis of the T -type bridge-based resonant dc-dc converter, relying solely on capacitive energy considerations, substantially underestimates the required ZVS current values, with errors reaching up to 50%. The proposed analysis is verified through both simulation and hardware testing. The hardware testing is conducted on a 20-kW 3- $\phi$ unfolding-based ac-dc converter designed for high-power electric vehicle battery charging applications. The ZVS analysis is verified at various grid angles with the proposed analysis ensuring a complete ZVS operation of the ac-dc system throughout the grid cycle.
更多
查看译文
关键词
Electric vehicle (EV) charging,$C_{\rm oss}$ energy estimation,multi-level converter,nonlinear capacitance,resonant converter,T -type converter,unfolding-based,Unfolder,zero-voltage switching (ZVS)
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要