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- W2547490451 abstract "Integration of power due to distributed renewable energy resources (DRERs) with the existing grid to supply electricity to both industrial and residential users is expected to have a significant impact on the future power system. Power electronic transformer (PET) has emerged as one amongst the promising technologies to achieve such requirement. In this paper, a multi-source fed power electronic transformer (MSF-PET) is proposed to integrate both ac and dc sources to supply the load power. The MSF-PET consists of three stages: input, isolation, and output. The input stage consists of two power electronic converters, viz. ac-dc and dc-dc converters, to integrate ac and dc sources, respectively. The outputs of these converters are connected to the inputs of two dual active bridge converters (DABs) of the isolation stage. The outputs of DABs are connected in parallel across the dc-link of the output stage inverter. In the proposed PET, the input and output ports are isolated from each other and interlinked by using different power electronic converters. Therefore, each port can be easily isolated by applying the appropriate gate signals to the associated converters. Further, the power can be supplied to the load from both sources simultaneously or independently. A detailed description of MSF-PET and its control are presented. The theoretical analysis of MSF-PET is verified using PSCAD/EMTDC simulations. The study results show that MSF-PET can be a promising topology for the modern distribution system to integrate both the conventional ac grid and DRERs generating dc power." @default.
- W2547490451 created "2016-11-11" @default.
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- W2547490451 date "2016-09-01" @default.
- W2547490451 modified "2023-09-28" @default.
- W2547490451 title "Integration of AC and DC sources using multi-source fed power electronic transformer (MSF-PET) for modern power distribution system applications" @default.
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- W2547490451 doi "https://doi.org/10.1109/epe.2016.7695500" @default.
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