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快速图解法推导双向多端口DC-DC变换器拓扑
Fast Graphical Analysis for Deriving Bidirectional Multi-Port DC-DC Converter Topologies
| 作者 | Liping Mo · Guipeng Chen · C. Q. Jiang · Xiaosheng Wang · Yuan Cheng · Shumei Cui |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2025年8月 |
| 技术分类 | 电动汽车驱动 |
| 技术标签 | DC-DC变换器 双向DC-DC |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 多端口双向DC-DC转换器 拓扑推导 快速图形分析 单电感多端口双向DC-DC转换器 新拓扑 |
语言:
中文摘要
在可再生能源系统和电动汽车等应用中,对多端口双向直流 - 直流转换器(MP - BDC)的需求日益增长。然而,目前的拓扑推导方法严重依赖手动分析,导致新拓扑的推导速度缓慢,且现有的 MP - BDC 数量有限。为应对这些挑战,本文提出了一种基于图论的快速图形分析(FGA)方法来替代手动分析,引入了一种用于推导单电感多端口双向直流 - 直流转换器(SIMP - BDC)拓扑的快速且系统的方法。该方法包括两个步骤:对 SIMP - BDC 的组件进行穷举组合,并使用 FGA 对这些组合进行分析,以自动识别可行的拓扑。与现有方法相比,该方法通过考虑每一种可能的组件组合,可以找到更多的 SIMP - BDC 拓扑,并借助 FGA 显著减少推导时间。该方法成功推导了具有不同开关和端口数量的 SIMP - BDC 拓扑。从推导结果来看,我们已探寻到了大部分现有的 SIMP - BDC 拓扑,并发现了 200 多种新拓扑。这表明所提出的方法具有全面性和高效性,为实际应用提供了大量新的拓扑解决方案。
English Abstract
The demand for muti-port bidirectional DC-DC converters (MP-BDC) is increasing in applications like renewable energy systems and electric vehicles. However, the current topology derivation methods rely heavily on manual analysis, resulting in the slow derivation of new topologies and a limited number of existing MP-BDCs. To address these challenges, this paper proposes a fast graphical analysis (FGA) based on graph theory to replace manual analysis, introducing a rapid and systematic method for deriving topologies of single-inductor multi-port bidirectional DC-DC converters (SIMP-BDCs). The method involves two steps: exhaustively combining SIMP-BDC components and using FGA to analyze these combinations to identify feasible topologies automatically. Compared with existing methods, this method can find more SIMP -BDC topologies by considering every possible component combination and significantly reducing deriving time with the help of FGA. This method successfully derives SIMP-BDC topologies with different switch and port counts. From the derivation results, we have explored most of the existing SIMP-BDC topologies and discovered over 200 new topologies. This demonstrates that the proposed method is comprehensive and productive, offering a plethora of new topological solutions for practical applications.
S
SunView 深度解读
该图论化拓扑推导方法对阳光电源多端口应用场景具有重要价值。在ST储能系统中,可系统化设计光伏-储能-电网三端口变流器,优化PowerTitan的多能源接入架构;在车载OBC产品线,可推导高压电池-低压电池-充电口多端口拓扑,提升集成度;在光储充一体化充电桩中,可构建光伏-储能-车辆多向能量流动的高效变换器。该方法的系统性特征能够加速阳光电源新型多端口拓扑的研发迭代,通过图解法快速验证双向传输能力,缩短从概念到产品的开发周期,特别适用于混合储能、V2G等新兴应用的拓扑创新需求。