A Robust Power Flow Algorithm Based on Bulirsch–Stoer Method
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Fecha
2019-07
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Editor
IEEE
Resumen
In this paper, we address the load-flow (LF) problem of very large scale systems. These types of systems show a very narrow region of attraction, and most of LF solvers tend to fail when a flat initial guess point is used. On the other hand, the solution of these systems frequently involves very large matrices and vectors. Consequently, a robust LF method must be used to find the correct solution of these systems. This paper proposes a robust and efficient LF solver based on the Bulirsch-Stoer algorithm. Moreover, a simple modification is proposed in order to improve its computational performance. The proposed methods are tested using various very large scale systems (i.e., more than 3000 buses) and compared with several standard and robust LF techniques. The obtained results show that the proposed methods are more suitable for solving the LF problem of very large scale systems.
Descripción
Palabras clave
Robust power flow, Initial guess point, Bulirsch-Stoer, Large-scale power systems
Citación
M. Tostado-Véliz, S. Kamel and F. Jurado, "A Robust Power Flow Algorithm Based on Bulirsch–Stoer Method," in IEEE Transactions on Power Systems, vol. 34, no. 4, pp. 3081-3089, July 2019, doi: 10.1109/TPWRS.2019.2900513.