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Analysis of Improved Buck-Boost Converter Based on Graph Theory

机译:基于图论的改进型Buck-Boost变换器分析

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The energy market is becoming more and more complex, and various harmonics and distributed energy have impacted the large power grid. Various factors have led to the need for more scientific and rational allocation of energy, so as to achieve continuous and reliable operation of the system. Realizing the control of energy storage systems to make them reliable and efficient has gradually become a huge challenge for modern power systems. Large-scale advanced battery energy storage technology faces the limitations caused by battery cell inconsistency, and the highly integrated and intelligent control of the equalization circuit is the solution to this problem. In this paper, by improving the structure of the traditional buck-boost circuit, a multi-input and multi-output converter which is easy to expand is proposed to realize the energy transfer between the individual cells of the battery pack. At the same time, the graph theory model of the equalization circuit is established. The efficiency of the related circuit is compared and analyzed through simulation and experiment. Finally, the superiority of the novel circuit topology proposed in this paper is verified. Simplify the practical problems of complex engineering into simple graphs in graph theory, so that comparisons under the same dimension can be easily obtained to obtain the merits and demerits of each method.
机译:能源市场变得越来越复杂,各种谐波和分布式能源已经影响了大型电网。各种因素导致需要更科学,合理地分配能量,以实现系统的连续和可靠运行。实现对能量存储系统的控制以使其可靠和高效已逐渐成为现代电力系统的巨大挑战。大规模的先进电池储能技术面临着由电池单元不一致引起的局限性,均衡电路的高度集成和智能控制是解决该问题的方法。在本文中,通过改进传统的降压-升压电路的结构,提出了一种易于扩展的多输入多输出转换器,以实现电池组各个单元之间的能量传递。同时建立了均衡电路的图论模型。通过仿真和实验对相关电路的效率进行了比较和分析。最后,验证了本文提出的新型电路拓扑的优越性。在图论中将复杂工程的实际问题简化为简单图,以便可以轻松地在相同维数下进行比较,从而获得每种方法的优缺点。

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