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Power flow in networks modeled at substation level in two stages

机译:分两个阶段在变电站级别建模的网络中的潮流

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The importance of power flow in networks modeled at the bus section level for generalized state estimation and real-time operation has been highlighted in the literature. However, the impacts on increasing the size of the problem and hence on the computational effort required by such approach may jeopardize its application. This work proposes a new methodology, capable of significantly reducing the computational cost involved in the extended power flow. This is achieved by applying a two-stage strategy. In the first stage a conventional power flow at the bus-branch level is triggered and its results properly exploited to the next stage. The paper describes in detail the strategies and linear relationships involved in the second stage, which provides complex voltages as well as the power flow distribution inside the substations, as in the extended power flow available in literature. Results obtained with the IEEE 14-bus test system illustrate the applicability and highlight the relevance of the new approach.
机译:在文献中已经强调了在总的状态估计和实时操作中以母线段级别建模的网络中潮流的重要性。但是,这种问题对增加问题的规模以及因此对这种方法所需的计算工作量的影响可能会危害其应用。这项工作提出了一种新的方法,能够显着降低扩展功率流中涉及的计算成本。这是通过应用两阶段策略来实现的。在第一阶段,触发总线分支级别的常规功率流,并将其结果适当地用于下一阶段。本文详细描述了第二阶段涉及的策略和线性关系,该阶段提供了复杂的电压以及变电站内部的潮流分配,如文献中提供的扩展潮流一样。通过IEEE 14总线测试系统获得的结果说明了其适用性,并突出了该新方法的相关性。

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