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Improved three-phase prower-flow methods using sequence components
DOI:10.1109/TPWRS.2005.851933.png)
Abstract
En 中文
The paper presents the formulation and the solution of the three-phase power-flow problem using sequence components. An improved sequence component transformer model and a decoupled sequence line model were used. As a result, the three sequence admittance matrices are decoupled with three-phase power system features in sequence components. The sequence power-flow algorithm has been formulated such that the single-phase power-flow programs can be called as routines for solving the positive sequence network. The results for the proposed sequence power-flow methods are identical to those obtained from three-phase power-flow programs developed in phase components. The computational efficiency and convergence of the proposed sequence three-phase power-flow methods show that they are as fast and as robust as conventional the Newton-Raphson method.
Keywords:
improved sequence transformer model
sequence decoupled line model
sequence power-flow methods
three-phase power flow
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7.2
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1.1W
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5.0W
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