2014 International Conference on Electrical Machines (ICEM) 2014
DOI: 10.1109/icelmach.2014.6960494
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A novel approach to multi-objective efficiency optimisation for a distribution transformer based on the Taguchi method

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Cited by 7 publications
(7 citation statements)
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“…Numerous FE simulations were performed with commercial software . A transient analysis permits the use of magnetization curves so that the adequate saturation of the electrical steels is duly taken into account . A transient voltage V m = 13.8 kV at 60 Hz was applied to the low voltage coil .…”
Section: Finite Element Simulationsmentioning
confidence: 99%
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“…Numerous FE simulations were performed with commercial software . A transient analysis permits the use of magnetization curves so that the adequate saturation of the electrical steels is duly taken into account . A transient voltage V m = 13.8 kV at 60 Hz was applied to the low voltage coil .…”
Section: Finite Element Simulationsmentioning
confidence: 99%
“…A transient analysis permits the use of magnetization curves so that the adequate saturation of the electrical steels is duly taken into account . A transient voltage V m = 13.8 kV at 60 Hz was applied to the low voltage coil . The transient analyses were performed from an initial time of 0 second to a final time of 166.667 ms with a time step of 166.667 µs .…”
Section: Finite Element Simulationsmentioning
confidence: 99%
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“…DoE is sometimes combined with other optimization methods. Transformers are optimized in [34] with regard to the iron and copper mass thanks to a multiobjective design which associates a pattern search optimization technique and the Taguchi methodology. Design of Experiments (DOE) is combined with Differential Evolution (DE) algorithm objective design optimization of ferrite with fractional-slot concentrated windings the sequential subspace optimization met in [36] to improve the optimization permanent-magnet transverse flux mac magnetic composite core.…”
Section: B Organized Experimentsmentioning
confidence: 99%
“…Los resultados muestran cómo el diseño del experimento ayuda a encontrar la mejor combinación de factores y sus niveles en la pérdida de vida de los transformadores de distribución para mejorar la eficiencia de la red. Petkovska et al (2014), proponen un enfoque para la optimización del diseño multiobjetivo de un transformador de distribución con el fin de aumentar la eficiencia al reducir la pérdida total y minimizar la masa de hierro y cobre y, por lo tanto, lograr un producto nuevo, más eficiente y de menor costo. Emplearon el método Taguchi y DOE, sus resultados, tanto El transformador eléctrico es una máquina estática compuesta en esencia por al menos dos bobinas o devanadas denominadas bobina primaria y bobina secundaria (ver Fig.…”
Section: Introductionunclassified