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Applications of a dual function multi-port converter topology in DC microgrid systems

机译:双函数多端口转换器拓扑在直流微电网系统中的应用

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Climate change and Greenhouse Gas (GHG) emission reduction efforts have generated an interest in microgrid research due to its ability to integrate renewable energy sources and storage to existing grid infrastructure. Economizing microgrids through use of DC microgrids has become a major research focus. This paper proposes a novel converter topology that offers high-efficiency, reduced filter requirements and the ability to handle all DC/DC conversions within DC microgrid systems. Specifically, the paper investigates potential control schemes that integrate solar photovoltaic (PV) sources and energy storage technology to a DC microgrid system. Converter operation and control is verified using PSCAD? by simulating a realistic DC microgrid system using the proposed topology ti handle all DC/DC conversion. This paper examines system operating under normal operation (i.e. load demands, temperature and irradiance changes) and fault conditions.
机译:气候变化和温室气体(GHG)减排努力因其将可再生能源和存储提供给现有网格基础设施而产生了对微电网研究的兴趣。通过使用DC Microgrids节约微电网已成为一个主要的研究重点。本文提出了一种新型转换器拓扑,提供高效率,降低的过滤器要求以及处理直流微电网系统中的所有DC / DC转换的能力。具体地,本文研究了将太阳能光伏(PV)源和能量存储技术集成到DC微电网系统的潜在控制方案。使用PSCAD验证转换器操作和控制?通过使用所提出的拓扑TI处理所有DC / DC转换来模拟现实的DC微电网系统。本文探讨了正常操作中运行的系统(即负载需求,温度和辐照度变化)和故障条件。

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