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Three-phase unbalanced transient dynamics and powerflow for modeling distribution systems with synchronous machines

机译:用于使用同步机建模分配系统的三相不平衡瞬态动力学和动力流

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Unlike transmission systems, distribution feeders in North America operate under unbalanced conditions at all times, and generally have a single strong voltage source. When a distribution feeder is connected to a strong substation source, the system is dynamically very stable, even for large transients. However if a distribution feeder, or part of the feeder, is separated from the substation and begins to operate as an islanded microgrid, transient dynamics become more of an issue. To assess the impact of transient dynamics at the distribution level, it is not appropriate to use traditional transmission solvers, which generally assume transposed lines and balanced loads. Full electromagnetic solvers capture a high level of detail, but it is difficult to model large systems because of the required detail. This paper proposes an electromechanical transient model of synchronous machines for distribution-level modeling and microgrids. This approach includes not only the machine model, but also its interface with an unbalanced network solver, and a powerflow method to solve unbalanced conditions without a strong reference bus. The presented method is validated against a full electromagnetic transient simulation.
机译:与传输系统不同,北美的配电馈线始终在不平衡的条件下运行,并且通常具有单个强电压源。当分配馈线连接到强变电站源时,系统即使对于大型瞬态,系统也是动态的稳定性。然而,如果分配馈线或进料器的一部分与变电站分开并开始作为孤岛微电网运行,则瞬态动力学变得更加问题。为了评估瞬态动力学在分配水平上的影响,使用传统的传动求解器是不合适的,这通常假设转置线和平衡负载。全电磁溶剂捕获高水平的细节,但由于所需的细节,难以模拟大型系统。本文提出了一种用于分配级模型和微普林的同步机电瞬态模型。这种方法不仅包括机器模型,还包括其与不平衡网络求解器的接口,以及用于解决不平衡条件而无需强大的参考总线的动力流程方法。通过全电磁瞬态模拟验证所提出的方法。

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