基于双向升压变换器的交/直流微电网固态变压器

Dipesh D. Atkar, P. Chaturvedi, H. Suryawanshi, P. Nachankar, Dharmendra Yadeo, Sai Krishna Saketi
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引用次数: 0

摘要

在现有的配电网中,大量的交直流微电网正在独立发挥作用,为所有用户提供所需的电力。然而,在短时间停电、自然灾害或系统参数突然变化的情况下,该交直流微电网需要与现有电网或相互接口,或相互断开,以帮助向配电网中所有用户无缝供电。传统的低频变压器存在着功率密度低、稳压差、对潮流无控制、电能质量差等缺点。稳态变压器(SST)是此类应用的可行解决方案。本文提出了一种交直流微电网变换器(MGC)的SST结构。交流/直流微电网变换器集成了双向升压变换器和堆叠半桥逆变器。所设计的6kw微网变流器具有双向潮流可控性和软开关特性,提高了变流器的整体效率。在PSIM/Simulink环境下对所设计的交/直流MGC进行了仿真,验证了其在不同工况下的性能指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bidirectional Boost Converter based Solid State Transformer for AC/DC Micro-Grid Application
In the existing electric power distribution network, a large number of AC/DC Micro-Grids are playing their role independently to provide the desired power supply to all the consumers. However, under short time outages, natural disasters, or sudden changes in system parameters, this AC/DC Micro-grid needs to interface with the existing power grid or with each other or to be disconnected from each other to help out for seamless power supply to all the consumers in the distribution network. Conventional, low-frequency transformer used in such network, is having so many drawbacks such as low power density, poor voltage regulation, and no control over power flow with poor power quality. Sold State Transformer (SST) is a viable solution for such applications. This paper presents a structure of SST for AC/DC Micro-Grid converter (MGC). A bidirectional boost converter and a stacked half -bridge inverter are integrated with the AC/DC Micro-Grid converter. The designed 6 KW Micro-Grid Converter has a bidirectional power flow controllability with a soft switching feature to improve the overall efficiency of the converter. The designed AC/DC MGC is simulated in PSIM/Simulink co-environment to verify it's performance indices under different operating conditions.
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