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A Modified Newton-Raphson Method for Hybrid AC/DC Microgrids Power Flow Analysis

机译:用于混合AC / DC微电网电流分析的改进的牛顿 - Raphson方法

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A hybrid ac/dc microgrid combines advantages of both subgrids. This paper proposes a sequence component based power flow algorithm for a hybrid ac/dc microgrid. In the modeling section, sequence component models of the system components are established considering their unbalanced features. Droop control is applied to distributed generation units to maintain frequency and voltage of an islanded microgrid. In the algorithm section, our proposed approach decomposes the power flow problem into two subproblems which are easy to solve sequentially. First, ac subgrid power flow is solved through a modified Newton-Raphson method. Next, dc subgrid power flow is calculated considering the interlinking converter. The process repeats until the mismatches are smaller than the thresholds of accuracy. Lastly, the result is transformed back to phase coordinates for the final power flow result. The accuracy of the proposed approach is validated by comparing its results with MATLAB/Simulink, and advantage is confirmed compared with a practical equivalencing approach. Finally, the influence of system loading is studied.
机译:混合AC / DC MicroGrid将两个子耕地的优点组合。本文提出了一种用于混合AC / DC微电网的序列分量基于电力流量算法。在建模部分中,考虑其不平衡功能,建立系统组件的序列组件模型。 DROOP控制应用于分布式发电单元,以维持岛状微电网的频率和电压。在算法部分中,我们所提出的方法将电力流问题分解为两个易于解决的子问题。首先,通过修改的牛顿-Raphson方法解决了AC Subrift Power Flow。接下来,考虑互连转换器计算DC子级电流。该过程重复,直到不匹配小于精度的阈值。最后,将结果转换回最终电源结果的相位坐标。通过将其与Matlab / Simulink的结果进行比较来验证所提出的方法的准确性,并通过实际的等价方法确认了优势。最后,研究了系统装载的影响。

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