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Voltage Control Scheme with Distributed Generation and Grid Connected Converter in a DC Microgrid

机译:直流微电网中分布式发电与并网变流器的电压控制方案

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Direct Current (DC) microgrids are expected to become larger due to the rapid growth of DC energy sources and power loads. As the scale of the system expends, the importance of voltage control will be increased to operate power systems stably. Many studies have been performed on voltage control methods in a DC microgrid, but most of them focused only on a small scale microgrid, such as a building microgrid. Therefore, a new control method is needed for a middle or large scale DC microgrid. This paper analyzes voltage drop problems in a large DC microgrid and proposes a cooperative voltage control scheme with a distributed generator (DG) and a grid connected converter (GCC). For the voltage control with DGs, their location and capacity should be considered for economic operation in the systems. Accordingly, an optimal DG allocation algorithm is proposed to minimize the capacity of a DG for voltage control in DC microgrids. The proposed methods are verified with typical load types by a simulation using MATLAB and PSCAD/EMTDC.
机译:由于直流能源和电力负载的快速增长,预计直流(DC)微电网将变得更大。随着系统规模的扩大,电压控制的重要性将增加,以稳定地运行电力系统。已经对直流微电网中的电压控制方法进行了许多研究,但大多数研究仅集中于小型微电网,例如建筑微电网。因此,中大型直流微电网需要一种新的控制方法。本文分析了大型直流微电网中的电压降问题,并提出了一种具有分布式发电机(DG)和并网转换器(GCC)的协作电压控制方案。对于使用DG的电压控制,应考虑其位置和容量,以便在系统中经济运行。因此,提出了一种最佳的DG分配算法,以最小化DG在直流微电网中进行电压控制的能力。通过使用MATLAB和PSCAD / EMTDC进行仿真,以典型载荷类型验证了所提出的方法。

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