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Reciprocating Connection of Dual Active Bridge DC/DC Converter with PV Integration

机译:具有光伏集成功能的双有源桥DC / DC转换器的往复连接

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Due to the renewable energy integration in the electric power network, interest of utilities towards using medium voltage DC in the utility network is increasing gradually, so this paper proposes interconnection between the main AC grid and the PV power plant based on dual active bridge (DAB) DC/DC converters with reciprocating connection. The dual active full-bridge (DAB) has many advantages such as electrical isolation, high-ratio buck-boost, easy soft-switching control, and multiple modularization through series-parallel combination. This paper focuses input series output parallel (ISOP) dual active bridge (DAB) DC/DC converters, and the reciprocating connection can provide different medium voltage levels at the output, facilitating the connection of main grid and PV power plant. Considering the modular parallel operation of the DAB converter in high-power applications, the power balance problem of the parallel output DAB converter is discussed in a more detailed way. For the validation of the feasibility of model proposed in this paper, it is simulated and analyzed in Power System Computer Aided Design (PSCAD).
机译:由于电力网络中的可再生能源集成,公用事业对在公用电网中使用中压直流的兴趣逐渐增加,因此,本文提出了基于双有源桥(DAB)的主交流电网与光伏电站之间的互连)带有往复连接的DC / DC转换器。双路有源全桥(DAB)具有许多优点,例如电隔离,高比率降压-升压,易于软开关控制以及通过串并联组合进行的多个模块化。本文重点介绍输入串联输出并联(ISOP)双有源桥(DAB)DC / DC转换器,往复连接可在输出端提供不同的中压电平,从而简化了主电网和光伏电站的连接。考虑到DAB转换器在大功率应用中的模块化并行操作,将更详细地讨论并行输出DAB转换器的功率平衡问题。为了验证本文提出的模型的可行性,在电力系统计算机辅助设计(PSCAD)中对该模型进行了仿真和分析。

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