Journal article

Time-series-based maximization of distributed wind power generation integration

LF Ochoa, A Padilha-Feltrin, GP Harrison

IEEE Transactions on Energy Conversion | IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC | Published : 2008

Abstract

Energy policies and technological progress in the development of wind turbines have made wind power the fastest growing renewable power source worldwide. The inherent variability of this resource requires special attention when analyzing the impacts of high penetration on the distribution network. A time-series steady-state analysis is proposed that assesses technical issues such as energy export, losses, and short-circuit levels. A multiobjective programming approach based on the nondominated sorting genetic algorithm (NSGA) is applied in order to find configurations that maximize the integration of distributed wind power generation (DWPG) while satisfying voltage and thermal limits. The ap..

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University of Melbourne Researchers