Research on the Predictive Optimal PID Plus Second Order Derivative Method for AGC of Power System with High Penetration of Photovoltaic and Wind Power
Author:
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering
Link
http://link.springer.com/content/pdf/10.1007/s42835-019-00113-0.pdf
Reference30 articles.
1. Noruzi A, Banki T, Abedinia O et al (2015) A new method for probabilistic assessments in power systems, combining monte carlo and stochastic-algebraic methods. Complexity 21(2):100–110
2. Altıntas E, Salor O, Buyukdagli U (2016) Correlation between multiple electric arc furnace operations and unscheduled power flows in the interconnection lines at the eastern cross border of ENTSO-E. IEEE Trans Ind Appl 52(4):3508–3517
3. Ghadimi N, Akbarimajd A, Shayeghi H et al (2018) A new prediction model based on multi-block forecast engine in smart grid. J Ambient Intell Human Comput 9(6):1873–1888
4. Abedinia O, Bekravi M, Ghadimi N (2017) Intelligent controller based wide-area control in power system. Int J Uncertain Fuzziness Knowl Based Syst 25(01):1–30
5. Arya Y, Kumar N (2017) Optimal control strategy-based AGC of electrical power systems: a comparative performance analysis. Optim Control Appl Methods 38(6):982–992
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