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首页> 外文期刊>IEEE Transactions on Power Systems >A Sequential Power Flow Algorithm for Islanded Hybrid AC/DC Microgrids
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A Sequential Power Flow Algorithm for Islanded Hybrid AC/DC Microgrids

机译:孤岛式交/直流微电网的顺序潮流算法

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摘要

This paper proposes a sequential power flow algorithm for hybrid ac/dc microgrids operating in the islanded mode. Unlike in grid-connected systems, variable, rather than fixed, frequency and voltage are utilized for power coordination between the ac and dc microgrids, respectively. The main challenge is to solve the power flow problem in hybrid microgrids while considering the absence of a slack bus and the coupling between the frequency and dc voltage. In the proposed algorithm, the ac power flow is solved using the Newton-Raphson (NR) method, thereby updating the ac variables and accordingly utilizing these variables in a proposed interlinking converter model for the dc problem. This sequential algorithm is iterated until convergence. The proposed algorithm is generic and can include different operational modes not only for the distributed generation units (DGs), but also for the interlinking converters. Detailed time-domain simulations using PSCAD/EMTDC have validated the algorithm's accuracy. Its robustness and computational cost are contrasted to those of conventional algorithms.
机译:本文针对孤岛模式下的混合交流/直流微电网提出了一种顺序潮流算法。与并网系统不同,可变和非固定频率和电压分别用于交流和直流微电网之间的功率协调。主要挑战是解决混合微电网中的功率流问题,同时考虑到不存在松弛总线以及频率和直流电压之间的耦合问题。在提出的算法中,使用牛顿-拉夫森(Newton-Raphson,NR)方法解决了交流功率流,从而更新了交流变量,并因此在提出的直流问题互连转换器模型中利用了这些变量。迭代此顺序算法,直到收敛为止。所提出的算法是通用的,不仅可以为分布式发电单元(DG),而且可以为互连转换器包括不同的操作模式。使用PSCAD / EMTDC进行的详细时域仿真已验证了算法的准确性。它的鲁棒性和计算成本与常规算法相反。

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