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A Novel Load Flow Algorithm for Islanded AC/DC Hybrid Microgrids

机译:孤岛交直流混合微电网的潮流算法

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This paper proposes a novel branch-based load flow approach for isolated hybrid microgrids. This evolving network configuration involves the application of a distinctive operational philosophy that poses significant challenges with respect to conventional load flow techniques. Hybrid microgrids are characterized by small-rating, droop-based distributed generators (DGs) and by variable but coupled frequency and dc voltage levels. In particular, the absence of a slack bus that results from the small DG rating impedes the application of traditional techniques such as branch-based methods. To overcome these limitations, a modified branch-based approach provided the basis for the development of the proposed algorithm. The new algorithm solves the load flow sequentially by dividing the problem into two coupled ac and dc subproblems. The coupling criterion is established by modeling and updating the power exchange between the subgrids, hence enabling an accurate and efficient formulation of the subproblems. For each subproblem, a modified directed forward-backward sweep has been developed to perform the load flow analysis based on consideration of the individual characteristics of each subgrid. Case study results demonstrate that the algorithm is applicable and effective for the steady-state analysis of several operational factors associated with an isolated hybrid microgrid system: 1) load changing; 2) converter outages; and 3) the probabilistic nature of renewable generation and loads.
机译:本文提出了一种新的基于分支的潮流方法,用于孤立的混合微电网。这种不断发展的网络配置涉及独特操作原理的应用,这对传统的潮流技术提出了严峻的挑战。混合微电网的特点是小额定值,基于下垂的分布式发电机(DG)以及可变但耦合的频率和直流电压水平。尤其是,由于DG额定值小而导致缺少松弛总线,这妨碍了传统技术(例如基于分支的方法)的应用。为了克服这些限制,一种改进的基于分支的方法为提出的算法的开发提供了基础。新算法通过将问题分为两个耦合的ac和dc子问题来顺序解决潮流。通过对子电网之间的功率交换进行建模和更新来建立耦合标准,从而实现子问题的准确有效的表述。对于每个子问题,已开发出一种改进的有向向前-向后扫描,以在考虑到每个子网格的各个特性的基础上执行潮流分析。实例研究结果表明,该算法适用于与孤立的混合微电网系统相关的几个运行因素的稳态分析:1)负载变化; 2)转换器中断; 3)可再生能源发电和负荷的概率性质。

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