2021
DOI: 10.3390/electronics10212573
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A Comparative Study on Power Flow Methods Applied to AC Distribution Networks with Single-Phase Representation

Abstract: This paper presents a comparative analysis of six different iterative power flow methods applied to AC distribution networks, which have been recently reported in the scientific literature. These power flow methods are (i) successive approximations, (ii) matricial backward/forward method, (iii) triangular-based approach, (iv) product linearization method, (v) hyperbolic linearization method, and (vi) diagonal approximation method. The first three methods and the last one are formulated without recurring deriva… Show more

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Cited by 9 publications
(9 citation statements)
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“…where ε corresponds to the maximum convergence error, which was assigned, as recommended in Reference [44], as 1 × 10 −10 .…”
Section: Recursive Solution and Digsilent Validationmentioning
confidence: 99%
“…where ε corresponds to the maximum convergence error, which was assigned, as recommended in Reference [44], as 1 × 10 −10 .…”
Section: Recursive Solution and Digsilent Validationmentioning
confidence: 99%
“…Para la etapa esclavo se propone el método de flujo de potencia de aproximaciones sucesivas, el cual utiliza la información de ubicación y dimensionamiento de los sistemas PV proporcionada por la etapa maestro para evaluar la función objetivo propuesta en (1). El planteamiento del método de aproximaciones sucesivas para solucionar problemas de flujo de potencia se encuentra completamente desarrollado en [29]. A continuación, se describe detalladamente cada una de las etapas de la metodología propuesta.…”
Section: Metodología De Solución Propuestaunclassified
“…Viven en la red madre durante varios días a una semana, tiempo durante el cual se observa que se comen a los hermanos más débiles [28], [29], [30].…”
Section: Etapa Maestra: Bwoaunclassified
“…The recursive power flow formula to solve power flow problems in AC distribution networks takes the structure presented in Equation ( 26) [25]:…”
Section: Slave Stagementioning
confidence: 99%
“…The IEEE 34-node test feeder is an electrical distribution network comprising 34 nodes and 33 lines with radial structure, where the substation is operated at 11 kV. The interconnection among nodes for this test feeder is depicted in Figure 2 [25]. The peak power consumption in this system is 4636.50 + j2873.50 kVA, which generates 221.75 kW and 65.12 kvar of power losses at the peak hour, respectively.…”
Section: Ieee 34-node Test Feedermentioning
confidence: 99%