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A resonant current regulator based microgrid control strategy with smooth transition between islanded and grid-connected modes

机译:基于谐振电流稳压器的微电网控制策略,具有岛和网格连接模式的平滑过渡

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Microgrids consisting of distributed generators (DGs) have the ability to operate connected to the utility grid and also in stand-alone (island) mode. In both cases, frequency and voltage regulation across the microgrid must be ensured, and the DGs should share their generation equally. The transition of the microgrid between the two operating modes also needs to be seamless, which is conventionally achieved by switching between current or voltage based control, depending on the system context. This paper presents a new microgrid control strategy that exploits the intrinsic droop characteristics of a PR current regulator to achieve these objectives for both modes of microgrid operation. The strategy incorporates a predictive regulator to achieve dynamic voltage control within one fundamental cycle, a frequency adaptation strategy for islanded mode, and ensures DG power sharing. Simulation and experimental results obtained for a microgrid transitioning between both modes are used to verify the performance of the proposed strategy.
机译:由分布式发电机(DGS)组成的微电网具有能够操作连接到公用电网以及在独立(岛)模式下。在这两种情况下,必须确保微电网的频率和电压调节,并且DGS应同样共享它们的生成。微电网在两个操作模式之间的转换也需要是无缝的,这通过在基于电流或基于电压的控制之间切换的传统上实现,这取决于系统上下文。本文介绍了一种新的微电网控制策略,利用PR电流调节器的内在下垂特性来实现微电网操作模式的这些目标。该策略包括预测调节器,以实现一个基本循环内的动态电压控制,孤岛模式的频率适应策略,并确保DG电力共享。在两种模式之间进行微电网转换的模拟和实验结果用于验证所提出的策略的性能。

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