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Smart Transformer-based Hybrid LVAC and LVDC Interconnected Microgrid

机译:基于智能变压器的混合LVAC和LVDC互连微电网

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Increasing integration of renewable energy sources into the electric grid makes it necessary to develop new efficient solutions for interfacing such sources in the grid. The smart transformer (ST) is a promising solution for such a changing grid scenario. This paper proposes an ST-based hybrid low voltage AC (LVAC) and low voltage DC (LVDC) interconnected microgrid system. The available LVDC link of ST is extended in the distribution grid to realize an LVDC distribution line and the grid connected converters are connected to this proposed LVDC line. The power flow in the proposed system is investigated and a detailed performance comparison between conventional and proposed system is carried out. The proposed restructuring in the distribution grid ensures reduction in ST LV converter size, distribution losses, converter losses and control complexity of the DG converters. This scheme also helps in achieving improved voltage regulation in the LVAC line. Simulation and experimental results verify the proposed scheme.
机译:可再生能源越来越多地集成到电网中,因此有必要开发新的有效解决方案以将这些能源连接到电网中。对于这种不断变化的电网情况,智能变压器(ST)是一种很有前途的解决方案。本文提出了一种基于ST的混合低压AC(LVAC)和低压DC(LVDC)互连微电网系统。 ST的可用LVDC链路在配电网中得到扩展,以实现LVDC配电线,并且将与电网相连的转换器连接到此提议的LVDC线。研究了所提出系统中的功率流,并进行了常规系统和所提出系统之间的详细性能比较。提议的配电网重组可确保降低ST LV转换器的尺寸,分配损耗,转换器损耗以及DG转换器的控制复杂性。该方案还有助于实现LVAC线路中改进的电压调节。仿真和实验结果验证了该方案的有效性。

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