Impacts of wind farms with multi-terminal HVDC system in frequency regulation using quasi-opposition pathfinder algorithm
Author:
Publisher
Springer Science and Business Media LLC
Subject
Strategy and Management,Safety, Risk, Reliability and Quality
Link
https://link.springer.com/content/pdf/10.1007/s13198-021-01365-8.pdf
Reference40 articles.
1. Ablay G (2013) A modeling and control approach to advanced nuclear power plants with gas turbines. Energy Convers Manag 76:899–909
2. Arya Y (2019) AGC of restructured multi-area multi-source hydrothermal power systems incorporating energy storage units via optimal fractional-order fuzzy PID controller. Neural Comput Appl 31(3):851–872
3. Arya Y, Kumar N, Gupta SK (2017) Optimal automatic generation control of two-area power systems with energy storage units under deregulated environment. J Renew Sustain Energy 9(6):064105
4. Balamurugan S, Janarthanan N, Vijaya Chandrakala KRM (2016) Small and large signal modeling of heavy duty gas turbine plant for load frequency control. Int J Electr Power Energy Syst 79:84–88
5. Bevrani H (2009) Intelligent automatic generation control. Springer, New York
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