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Single-Phase Microgrid With Seamless Transition Capabilities Between Modes of Operation

机译:在运行模式之间具有无缝转换能力的单相微电网

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Microgrids are an effective way to increase the penetration of distributed generation into the grid. They are capable of operating either in grid-connected or in islanded mode, thereby increasing the supply reliability for the end user. This paper focuses on achieving seamless transitions from islanded to grid-connected and vice versa for a single phase microgrid made up from voltage controlled voltage source inverters (VC-VSIs) and current controlled voltage source inverters (CC-VSIs) working together in both modes of operation. The primary control structures for the VC-VSIs and CC-VSIs is considered together with the secondary control loops that are used to synchronize the microgrid as a single unit to the grid. Simulation results are given that show the seamless transitions between the two modes without any disconnection times for the CC-VSIs and VC-VSIs connected to the microgrid.
机译:微电网是增加分布式发电渗透到电网中的有效方法。它们能够以并网或孤岛模式运行,从而提高了最终用户的供电可靠性。本文着重于实现由压控电压源逆变器(VC-VSI)和电流控制电压源逆变器(CC-VSI)一起工作的单相微电网从孤岛到并网的无缝过渡,反之亦然操作。将VC-VSI和CC-VSI的主要控制结构与次要控制回路一起考虑,该次要控制回路用于将微电网作为单个单元同步到电网。给出的仿真结果表明,在连接到微电网的CC-VSI和VC-VSI之间,两种模式之间的无缝过渡没有断开时间。

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