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Decoupled and Unified Approaches for Solving Transmission and Distribution Co-Simulations

机译:解耦和统一的方法来解决输配共同仿真

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Increased penetration of flexible loads and distributed resources on power distribution circuits will lead to possibility of aggregating such small distributed resources for several grid services both at the distribution and transmission levels. This will lead to increased interaction of transmission and distribution system operators, as well as the control actions at LV/MV grid in aggregation will have significant impact on the operations of bulk transmission systems. Therefore, lately, there has been some advancements to developing co-simulation platform for solving transmission and distribution (T&D) systems simultaneously for dynamic and power flow type of studies. However, the existing co-simulation platforms base mainly on decoupled approaches. Therefore, a unified approach of solving T&D (for solution benchmarking purpose) is largely missing in the literature. In this context, this paper shows initial results of a decoupled method applied for solving T&D power flow co-simulation and is benchmarked against a unified solution. The case studies based on augmented 14+33 bus T&D systems show that the decoupled approach is fairly accurate.
机译:增加柔性负载和分布式资源在配电电路上的渗透率将导致在分布和传输电平下聚合多个网格服务的这种小型分布式资源的可能性。这将导致传输和分配系统运营商的相互作用,并且聚集在聚合中的LV / MV网格中的控制动作将对批量传输系统的操作产生重大影响。因此,最近,开发用于求解传输和分配(T&D)系统的共仿真平台,以用于动态和电流研究的研究。然而,现有的共仿平台主要基于去耦方法。因此,求解T&D(用于解决方案基准目的)的统一方法在很大程度上在文献中缺失。在这种情况下,本文示出了用于解决T&D电流共模的解耦方法的初始结果,并与统一解决方案为基准测试。基于增强14 + 33总线T&D系统的案例研究表明,去耦方法是相当准确的。

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