Hybrid Harris hawks optimization with sequential quadratic programming for optimal coordination of directional overcurrent relays incorporating distributed generation
Author:
Funder
Taif University
Publisher
Elsevier BV
Subject
General Engineering
Reference40 articles.
1. A novel and simpler way to include transient configurations in optimal coordination of directional overcurrent protections;Sorrentino;Electric Power Syst. Res.,2020
2. An improved simulated annealing linear programming hybrid algorithm applied to the optimal coordination of directional overcurrent relays;Kida;Electric Power Syst. Res.,2020
3. Optimal coordination of over-current relays using modified differential evolution algorithms;Thangaraj;Eng. Appl. Artif. Intell.,2010
4. Optimal coordination of directional overcurrent relays using NSGA-II;Moravej;Electric Power Syst. Res.,2015
5. A novel approach to increase FCL application in preservation of over-current relays coordination in presence of asynchronous DGs;Hamid;Elec. Power Energy Syst.,2013
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