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Selective frequency synchronization technique for fast grid connection of islanded microgrid using prediction method

机译:利用预测方法的孤岛微电网快速并网的选择性频率同步技术

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摘要

In this paper, a novel frequency synchronization method is proposed for fast connection the islanded microgrid to the existing grid. In the conventional frequency synchronization method, the output of the synchronization controller is limited to maintain the voltage quality of the islanded microgrid. Due to this limitation of the output, the micro grid voltage has a nonlinear characteristic during the synchronization process. Conventional methods that do not consider the nonlinear characteristic have a drawback in that the synchronization speed can be slowed depending on the convergence direction of the frequency. To overcome the drawback, the nonlinear characteristic of the conventional method is analysed during the synchronization process. Based on the analysis, the synchronization speed is predicted according to the synchronization direction of the microgrid voltage. Using this prediction, a novel synchronization technique that finds a relatively fast synchronization direction is proposed. A 2MVA microgrid system is constructed using a real-time hardware-in-loop system and experimental results are presented to verify the validity of the proposed method. From experimental results, it is confirmed that the proposed method guarantees a faster synchronization speed than the conventional method.
机译:本文提出了一种新颖的频率同步方法,用于将孤岛微电网快速连接到现有电网。在常规的频率同步方法中,同步控制器的输出被限制以维持孤岛微电网的电压质量。由于输出的这种限制,微电网电压在同步过程中具有非线性特性。不考虑非线性特性的传统方法的缺点在于,根据频率的会聚方向,同步速度会变慢。为了克服该缺点,在同步过程中分析了传统方法的非线性特性。在分析的基础上,根据微电网电压的同步方向预测同步速度。利用该预测,提出了一种发现相对快速的同步方向的新颖的同步技术。利用实时硬件在环系统构建了2MVA微电网系统,并通过实验结果验证了该方法的有效性。从实验结果可以证实,所提出的方法保证了比常规方法更快的同步速度。

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