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一种零电压过渡H5型无变压器光伏并网逆变器
A Zero-Voltage-Transition H5-Type Transformerless Photovoltaic Grid-Connected Inverter
| 作者 | Jicheng Fang · Mingming Shi · Huafeng Xiao · Ruibin Wang |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 并网逆变器 储能系统 SiC器件 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 无变压器并网逆变器 软开关技术 ZVT - H5逆变器 转换效率 辅助谐振网络 |
语言:
中文摘要
效率与漏电流是无变压器并网逆变器(TLI)的两个关键问题。软开关技术可有效降低开关损耗,适用于高频TLI。本文提出一种基于基本谐振单元的零电压过渡H5型(ZVT-H5)逆变器,实现主开关的软开通与软关断。辅助谐振网络缓解了续流二极管的反向恢复问题,显著提升转换效率。同时,采用二极管钳位支路使系统共模特性保持恒定。文中阐述了拓扑构建过程,分析了辅助谐振网络工作原理,并详细讨论了谐振参数设计及电路性能。最后通过3 kW、100 kHz实验样机验证了ZVT-H5的有效性。
English Abstract
Efficiency and leakage current are two major issues for transformerless grid-connected inverters (TLI). Soft-switching technology can reduce switching losses, and is a good choice for high-frequency TLIs. Herein, a zero-voltage-transition H5 type (ZVT-H5) inverter with soft turn-on and turn-off transitions for high-frequency main switches is derived from basic resonant tanks in this paper. Meanwhile, the reverse recovery problem of freewheeling diodes is alleviated under the operation of the auxiliary resonant network. As a result, the conversion efficiency of ZVT-H5 can be significantly improved comparing with hard-switching H5 (HS-H5) inverter. Moreover, a diode clamping branch is employed to achieve constant common-mode characteristic for the ZVT-H5. The construction process of the proposed topology is described, and the operation principle of the auxiliary resonant network is analyzed. In addition, the resonant parameter design of ZVT-H5 and its circuit performance are discussed in detail. Finally, the experimental results of a 3-kW prototype at 100 kHz switching frequency are provided to verify the effectiveness of the ZVT-H5.
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SunView 深度解读
该ZVT-H5软开关技术对阳光电源SG系列光伏逆变器和ST储能变流器具有重要应用价值。文中提出的零电压过渡方案可实现100kHz高频化运行,结合SiC器件应用可显著降低开关损耗,提升系统效率至98%以上。辅助谐振网络解决二极管反向恢复问题,适用于阳光电源1500V高压系统的功率模块设计。二极管钳位支路抑制共模电流的方案可直接应用于SG系列无变压器逆变器,满足VDE-AR-N 4105漏电流标准。该拓扑的高频化特性有助于减小磁性元件体积,提升功率密度,为PowerTitan储能系统的小型化设计提供技术路径。建议在三电平拓扑基础上融合该软开关技术,进一步优化阳光电源高端产品线的转换效率与EMI性能。