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Distributed power flow analysis for hybrid AC/HVDC grids by network decomposition

机译:通过网络分解对AC / HVDC混合电网进行分布式潮流分析

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This paper proposes a distributed method for solving power flow problems for hybrid AC/HVDC grids using network decomposition. The hybrid system is decomposed at the AC side point of common coupling (PCC) buses. The power flows of the resulting subsystems are solved separately with fixed boundary conditions. The solutions are iterated with updated boundary conditions and coordinated by a master program until convergence. The method described here has a few advantages compared to previous decomposition methods: 1) all grid specific features are encapsulated and handled in self-contained power flow modules, which allows the re-use of existing AC grid PF program with no modification; 2) all equations in a DC grid are solved simultaneously and it requires no additional DC slack bus iterations, which enables the handling of various DC grid modeling features and easy maintenance and upgrade. The proposed method is illustrated by using a test hybrid AC/DC grid consisting of two asynchronous AC systems, one interconnecting multi-terminal DC grid and one embedded multi-terminal DC grid, involving both monopolar and bipolar DC grid designs.
机译:本文提出了一种使用网络分解解决AC / HVDC混合电网潮流问题的分布式方法。混合系统在公共耦合(PCC)总线的交流侧点分解。在固定的边界条件下分别求解所得子系统的潮流。解决方案将使用更新的边界条件进行迭代,并由主程序进行协调,直到收敛为止。与以前的分解方法相比,此处描述的方法具有一些优点:1)所有电网特定功能都封装在独立的潮流模块中并进行处理,从而无需修改即可重复使用现有的交流电网PF程序; 2)同时解决DC网格中的所有方程式,并且不需要额外的DC松弛总线迭代,这使得能够处理各种DC网格建模功能,并且易于维护和升级。通过使用由两个异步AC系统组成的测试混合AC / DC网格(一个互连的多端子DC网格和一个嵌入式的多端子DC网格)说明了所提出的方法,涉及单极性和双极性DC网格设计。

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