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非隔离型双向DC-DC变换器设计准则综述
Design Criteria of Non-Isolated Bidirectional DC-DC Converters: A Review
| 作者 | Sobhan Sarani · Xiaodong Liang |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2025年6月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 DC-DC变换器 双向DC-DC |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 非隔离双向DC - DC转换器 软开关 电流纹波降低 高电压增益 弹性技术 |
语言:
中文摘要
电池储能系统广泛应用于可再生能源发电和电动交通系统。双向直流 - 直流变换器(BDC)是此类系统中的关键组件,可在电池充电和放电模式下实现双向功率流动。BDC可分为隔离型和非隔离型。非隔离型BDC具有更低的体积、重量和功率损耗,适用于不需要电气隔离的紧凑结构。本文对非隔离型BDC进行了全面的文献综述,涵盖了软开关、电流纹波降低、高电压增益和弹性技术。软开关旨在降低开关损耗并提高效率,包括辅助电路和非辅助方法,如交错结构、移相调制和同步整流。电流纹波降低主要关注电容回路配置、交错结构和基于耦合电感的方法。电池是低压电源,BDC可通过适当的电压增益将输出电压提升至应用所需的水平,高电压增益技术包括基于电容、基于磁路的网络以及组合网络和混合结构。本文还探讨了弹性技术,以确保在不利条件下可靠运行。这篇综述为开发更高效、可靠和高性能的BDC提供了有价值的见解,满足了现代能源系统不断变化的需求。本文还对非隔离型BDC的未来研究方向提出了建议。
English Abstract
Battery energy storage systems are widely used for renewable power generation and electric transportation systems. Bidirectional DC-DC converters (BDCs) are key components in such systems, enabling bidirectional power flow in battery charging and discharging modes. BDCs can be categorized into isolated and non-isolated. Non-isolated BDCs have lower volume, weight, and power losses, suitable for compact structures without needing galvanic isolation. In this paper, a comprehensive literature review is conducted for non-isolated BDCs, covering soft switching, current ripple reduction, high voltage gain and resiliency techniques. Soft switching aims to reduce switching losses and improve efficiency, including auxiliary circuits and non-auxiliary methods, such as interleaved structures, phase-shift modulation, and synchronous rectification. Current ripple reduction focuses on capacitive loop configurations, interleaved structures, and coupled inductor-based methods. Batteries are low-voltage power sources, BDCs can increase the output voltage to a level required by the applications through an appropriate voltage gain, and high voltage gain techniques include capacitor-based, magnetic-based, and combined networks, and mixed structures. Resiliency is explored to ensure reliable operations under adverse conditions. This review provides valuable insights into developing more efficient, reliable, and high-performance BDCs, addressing the evolving demands of modern energy systems. Future research directions in non-isolated BDCs are recommended in this paper.
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SunView 深度解读
该综述对阳光电源ST系列储能变流器和PowerTitan储能系统的DC-DC变换器设计具有直接指导价值。非隔离型BDC的软开关技术与效率优化方法可应用于电池侧DC-DC模块设计,提升系统转换效率和功率密度。拓扑结构与控制策略的系统梳理为SiC/GaN器件在储能系统中的应用提供理论支撑,有助于优化三电平拓扑设计。此外,双向能量管理技术可直接应用于车载OBC充电机和充电桩产品,提升充放电效率和动态响应性能。该研究的设计准则与性能权衡分析为阳光电源新一代高效储能变流器和电动汽车充电产品的开发提供重要技术参考。