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Juan M. Lujano-Rojas,Ghassan Zubi,Rodolfo Dufo-López,José L. Bernal-Agustín,José L. Atencio-Guerra,João P. S. Catalão 한국CDE학회 2020 Journal of computational design and engineering Vol.7 No.2
This paper presents a methodology for the optimal placement and sizing of reactive power compensation devices in a distribution system (DS) with distributed generation. Quasi-static time series is embedded in an optimization method based on a genetic algorithm to adequately represent the uncertainty introduced by solar photovoltaic generation and electricity demand and its effect on DS operation. From the analysis of a typical DS, the reactive power compensation rating power results in an increment of 24.9% when compared to the classical genetic algorithm model. However, the incorporation of quasi-static time series analysis entails an increase of 26.8% on the computational time required.