Opposition-Based Competitive Swarm Optimizer for Optimal Sizing and Siting of DG Units in Radial System
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-7472-3_21
Reference19 articles.
1. Barik AK, Das DC (2018) Expeditious frequency control of solar photovoltaic/biogas/biodiesel generator based isolated renewable microgrid using grasshopper optimisation algorithm. IET Renew Power Gener 12(14):1659–1667
2. Barik AK, Das DC (2019) Proficient load-frequency regulation of demand response supported bio-renewable cogeneration based hybrid Microgrids with quasi-oppositional selfishherd optimisation. IET Gener Trans Distrib 13(13):2889–2898
3. Sultana U et al (2016) A review of optimum DG placement based on minimization of power losses and voltage stability enhancement of distribution system. Renew Sustain Energy Rev 63:363–378
4. Wang C, Nehrir MH (2004) Analytical approaches for optimal placement of distributed generation sources in power systems. IEEE Trans Power Syst 19(4):2068–2076
5. Borghetti A (2012) A mixed-integer linear programming approach for the computation of the minimum-losses radial configuration. IEEE Trans Power Syst 27(3):1264–1273
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