1 |
Allocation and sizing of battery energy storage system for primary frequency control based on bio-inspired methods: A case study Yuan Z, Wang WQ, Wang HY, Yildizbasi A International Journal of Hydrogen Energy, 45(38), 19455, 2020 |
2 |
Dynamic regulation characteristics of pumped-storage plants with two generating units sharing common conduits and busbar for balancing variable renewable energy Tang RB, Yang JD, Yang WJ, Zou J, Lai X Renewable Energy, 135, 1064, 2019 |
3 |
Strategy for wind power plant contribution to frequency control under variable wind speed Li PF, Hu WH, Hu R, Huang Q, Yao J, Chen Z Renewable Energy, 130, 1226, 2019 |
4 |
Frequency dependent strategy for mitigating wind power fluctuations of a doubly-fed induction generator wind turbine based on virtual inertia control and blade pitch angle regulation Ochoa D, Martinez S Renewable Energy, 128, 108, 2018 |
5 |
Design/test of a hybrid energy storage system for primary frequency control using a dynamic droop method in an isolated microgrid power system Li JW, Xiong R, Yang QQ, Liang F, Zhang M, Yuan WJ Applied Energy, 201, 257, 2017 |
6 |
Challenges on primary frequency control and potential solution from EVs in the future GB electricity system Teng F, Mu YF, Jia HJ, Wu JZ, Zeng PL, Strbac G Applied Energy, 194, 353, 2017 |
7 |
Coordinated Microgrid Frequency Regulation Based on DFIG Variable Coefficient Using Virtual Inertia and Primary Frequency Control Zhao JJ, Lyu X, Fu Y, Hu XG, Li FX IEEE Transactions on Energy Conversion, 31(3), 833, 2016 |
8 |
Wear and tear on hydro power turbines - Influence from primary frequency control Yang WJ, Norrlund P, Saarinen L, Yang JD, Guo WC, Zeng W Renewable Energy, 87, 88, 2016 |
9 |
Control of wind turbines for fatigue loads reduction and contribution to the grid primary frequency regulation Camblong H, Nourdine S, Vechiu I, Tapia G Energy, 48(1), 284, 2012 |
10 |
Review of contribution to frequency control through variable speed wind turbine Xue YC, Tai NL Renewable Energy, 36(6), 1671, 2011 |