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风电变流技术 PWM控制 ★ 5.0

基于三绕组耦合电感与正弦波调制的双向软开关串联谐振变换器

Three-Winding-Coupled-Inductor-Based Bidirectional Soft-Switching Series-Resonant Converter with Sine-Wave Modulation

作者 Guo Xu · Xinyu Chen · Jingtao Xu · Guangfu Ning · Mei Su
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2025年6月
技术分类 风电变流技术
技术标签 PWM控制
相关度评分 ★★★★★ 5.0 / 5.0
关键词 三绕组耦合电感 双向串联谐振变换器 正弦波调制 零电压开关 磁集成结构
语言:

中文摘要

本文提出一种基于三绕组耦合电感的双向串联谐振变换器(TWCI BSRC),采用正弦波调制(SWM)方法,磁性元件数量少。谐振电流始终为正弦波,可降低电流谐波并简化零电压开关(ZVS)分析。在宽电压范围内,所提SWM实现负载无关的电压增益。仅需两组PWM信号,原副边开关驱动逻辑相同,且在整个负载范围内所有开关均实现ZVS。双向功率流动时的驱动逻辑一致。此外,提出一种磁集成结构,将两个升压电感、高频变压器和谐振电感集成于同一耦合电感中,减少磁性元件数量。通过1 kW样机实验验证了该变换器的工作原理与性能。

English Abstract

This article proposes a three-winding-coupled-inductor-based bidirectional series resonant converter (TWCI BSRC) with a sine-wave modulation (SWM) method and low magnetic component count. The resonant current is constantly a sine-wave, which can reduce current harmonics and simplify ZVS analysis. During a wide voltage range, load-independent voltage gain is achieved with the proposed SWM. In addition, the drive logic for primary and secondary switches is the same, only two sets of PWM signals are needed, and all switches allow zero voltage switching (ZVS) over the entire load range. The drive logic under bidirectional power directions is also identical. Besides, a magnetic integration structure is proposed, where two boost inductors, a high-frequency transformer and a resonant inductor can be integrated into a coupled inductor, and thus fewer magnetic components are required. The operational principle and performance of the presented converter are verified by experiments on a 1 kW prototype.
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SunView 深度解读

该三绕组耦合电感双向软开关技术对阳光电源储能和充电产品线具有重要应用价值。其正弦波调制方案可优化ST系列储能变流器和充电桩的双向功率流动性能,磁集成设计能有效降低产品体积和成本。ZVS软开关特性可提升系统效率,适用于PowerTitan大功率储能系统的高频隔离DC-DC模块。该方案的负载无关电压增益特性也有助于提升储能双向变流和充电设备的动态响应性能。建议在新一代双向DC-DC产品中考虑采用该技术方案,可实现产品竞争力提升。