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Power flow analysis for interconnected TD networks with meshed topology

机译:具有网状拓扑的互连输配电网络的潮流分析

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This paper proposes an extension for the conventional power flow formulation in order to enable it to process interconnected transmission and distribution (T&D) networks with meshed topologies. The proposed extension applies a complex per unit normalization to adequate X/R ratios of Distribution Feeders (DF) to the same levels of Transmission Systems (TS). Additionally, active and reactive power compensations are included at each T&D boundary bus and treated as new state variables, so that the power flow solution of the normalized system is the same as in the original network. Appropriate equivalence between power flows through branches connected to boundary buses are included as new equations, resulting in a solvable non-redundant set of algebraic equations. The impact of these modifications on the power flow solution via Newton-Raphson's method is also discussed. The proposed approach provides an efficient tool to perform power flow analysis on T&D systems, where DFs are explicitly represented, allowing an accurate determination of their impact onto the transmission operation. In addition, meshed topologies can be easily handled by means of the proposed approach, and simulation results conducted on an illustrative test-system are shown in the paper. Distinct operational conditions between T&D parts of the test-system allow both the evaluation of the features and the performance of the proposed approach.
机译:本文提出了对常规潮流公式的扩展,以使其能够处理具有网状拓扑的互连传输和配电(T&D)网络。拟议的扩展将复杂的每单位归一化应用于适当的配电馈线(DF)的X / R比到相同级别的传输系统(TS)。另外,有功和无功功率补偿包括在每个T&D边界总线上,并被视为新的状态变量,因此标准化系统的功率流解与原始网络中的功率流解相同。通过连接到边界母线的分支的功率流之间的适当等价作为新方程式被包括在内,从而产生了可解的非冗余代数方程式。还讨论了这些修改对通过牛顿-拉夫森方法的潮流解决方案的影响。所提出的方法提供了一种在T&D系统上执行潮流分析的有效工具,其中明确表示了DF,从而可以准确确定其对传输操作的影响。此外,网状拓扑可以通过所提出的方法轻松处理,并且在示例性测试系统上进行的仿真结果显示在本文中。测试系统的T&D部分之间的不同操作条件允许对所提出方法的功能和性能进行评估。

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