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Interconnected Autonomous AC Microgrids via Back-to-Back Converters & x2014;Part I: Small-Signal Modeling

机译:通过背对背转换器和X2014互连自主AC微电网;第一部分:小信号建模

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In this article, a set of autonomous ac microgrids, interconnected by back-to-back converters, is taken into account, where they are supplied fully using voltage source converter-based distributed energy resources. A comprehensive and generalized small-signal model of the interconnected autonomous microgrids as a large-scale system is proposed using the interconnection method. The modeling is based on detailed module models to show the impact of each module on the dynamic modes, especially the dominant critical modes. It is generalized and scalable due to separate modeling of modules as well as using unlimited and expandable interconnecting. The proposed interconnection method deals with all electrical and control connections between individual modules including feedback, feed-forward, augmentation, and the order of module inputs and outputs. The model is validated employing Prony analysis method and using output results of an OPAL-RT real-time simulator. Using the proposed modeling method, the small-signal stability analysis and controller design can be realized simply for interconnected microgrids with any number of microgrids and different structures. Typically, for two interconnected microgrids, all dynamic modes and participant state variables in different frequency ranges are identified using the eigenvalue analysis and participation matrix in MATLAB.
机译:在本文中,考虑了一系列由背对背转换器互连的自主AC微电网,其中通过基于电压源转换器的分布能量资源充分提供它们。用互连方法提出了作为大规模系统的互连自主微电网的全面和广义小信号模型。该建模基于详细的模块模型,以显示每个模块对动态模式的影响,尤其是主导临界模式。由于模块的单独建模以及使用无限和可扩展的互连,它是广义和可扩展的。所提出的互连方法涉及各个模块之间的所有电气和控制连接,包括反馈,前馈,增强和模块输入和输出的顺序。该模型被验证采用Proy分析方法,并使用Opal-RT实时模拟器的输出结果。使用所提出的建模方法,可以简单地实现小信号稳定性分析和控制器设计,即用于互连的微电网和不同的微电网和不同的结构。通常,对于两个互连的微电网,使用Matlab中的特征值分析和参与矩阵来识别不同频率范围中的所有动态模式和参与状态变量。

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