Study on the Control Strategy of Multi-port Power Router

Zihua Yu, Wengen Gao, Yuanrong Hu, Mingxing Hu
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Abstract

In recent years, there has been increasing interests in energy Internet. This paper mainly contributes to the energy router, the core device in the energy Internet. This article adopts AC/DC/AC three-stage structure, which is composed of modular multilevel converter (MMC), dual active bridge (DAB) converter, and three-phase full bridge inverter through the public DC bus to form the main topology of the energy router. And it contains multiple ports of high-voltage DC, low-voltage DC, and low-voltage AC, which is convenient for various forms of load access and realizes plug-and-play function. Research and design a hierarchical decoupling control scheme to simplify the control architecture while achieving independent and flexible control at all stages. In addition, for the input stage MMC structure, the capacitor voltage balance control of each sub-module, the bridge arm energy balance control strategy and the circulating current suppression strategy are designed to achieve the stability of the MMC output DC voltage and suppress the circulating current to a certain extent. Aiming at the topological structure in which multiple DAB units adopted input in series and output in parallel to the intermediate isolation stage, a parallel current sharing control strategy is designed to reduce the impact of parameter differences. Finally, the simulation results are verified by Matlab/Simulink.
多端口电源路由器控制策略研究
近年来,人们对能源互联网的兴趣日益浓厚。本文主要研究的是能源互联网的核心设备——能源路由器。本文采用AC/DC/AC三级结构,由模块化多电平变换器(MMC)、双有源桥转换器(DAB)、三相全桥逆变器通过公共直流母线组成能量路由器的主拓扑结构。并且包含高压直流、低压直流、低压交流多个接口,方便各种形式的负载接入,实现即插即用功能。研究设计了一种分层解耦控制方案,简化了控制体系结构,实现了各阶段的独立灵活控制。此外,对于输入级MMC结构,设计了各子模块的电容电压平衡控制、桥臂能量平衡控制策略和循环电流抑制策略,实现了MMC输出直流电压的稳定,并在一定程度上抑制了循环电流。针对中间隔离阶段多个DAB单元采用串联输出并联的拓扑结构,设计了一种并联共流控制策略,以减小参数差异的影响。最后,通过Matlab/Simulink对仿真结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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