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Frequency stabilization in deregulated energy system using coordinated operation of fuzzy controller and redox flow battery Sharma M, Dhundhara S, Arya Y, Prakash S International Journal of Energy Research, 45(5), 7457, 2021 |
2 |
Enhancing stability region oftime-delayedsmart power grids bynon-integercontrollers Yildirim B, Khooban MH International Journal of Energy Research, 45(1), 541, 2021 |
3 |
Nash-based robust distributed model predictive control for large-scale systems Shalmani RA, Rahmani M, Bigdeli N Journal of Process Control, 88, 43, 2020 |
4 |
Model predictive control for load frequency of hybrid power system with wind power and thermal power Liu JZ, Yao Q, Hu Y Energy, 172, 555, 2019 |
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Coordinated control for EV aggregators and power plants in frequency regulation considering time-varying delays Jia HJ, Li XM, Mu YF, Xu C, Jiang YL, Yu XD, Wu JZ, Dong CY Applied Energy, 210, 1363, 2018 |
6 |
Ensemble learning for optimal active power control of distributed energy resources and thermostatically controlled loads in an islanded microgrid Zhang XS, Wang DZ, Yu T, Xu Z, Fan Z International Journal of Hydrogen Energy, 43(49), 22474, 2018 |
7 |
Numerical definitions of wind power output fluctuations for power system operations Ikegami T, Urabe CT, Saitou T, Ogimoto K Renewable Energy, 115, 6, 2018 |
8 |
Impact of energy storage units on load frequency control of deregulated power systems Selvaraju RK, Somaskandan G Energy, 97, 214, 2016 |
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An adaptive neuro-fuzzy inertia controller for variable-speed wind turbines Hafiz F, Abdennour A Renewable Energy, 92, 136, 2016 |
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Design of fuzzy sliding mode controller for hydraulic turbine regulating system via input state feedback linearization method Yuan XH, Chen ZH, Yuan YB, Huang YH Energy, 93, 173, 2015 |