Page 104 - IJOCTA-15-4
P. 104
Viet Thanh et al. / IJOCTA, Vol.15, No.4, pp.625-648 (2025)
6. Saxena A, Shankar R. Improved load frequency IEEE Access. 2023;11:23245-23259.
control considering dynamic demand regulated https://doi.org/10.1109/access.2023.3252891
power system integrating renewable sources and 17. Taghvaei M, Gilvanejad M, Sedighizade M. Co-
hybrid energy storage system. Sustain Energy operation of large-scale wind farm and bat-
Technol Assess. 2022;52:02245. tery storage in frequency control: an optimal
https://doi.org/10.1016/j.seta.2022.102245 fuzzy-logic based controller. J Energy Storage.
7. Aljarrah R, Fawaz BB, Salem Q, Karimi M, Mar- 2022;46:03834.
zooghi H, Azizipanah-Abarghooee R. Issues and https://doi.org/10.1016/j.est.2021.103834
challenges of grid-following converters interfacing 18. Mercier P, Cherkaoui R, Oudalov A. Optimiz-
renewable energy sources in low inertia systems: ing a battery energy storage system for frequency
a review. IEEE Access. 2024;12:5534-5561. control application in an isolated power system.
https://doi.org/10.1109/access.2024.3349630 IEEE Trans Power Syst. 2009;24(3):1469-1477.
8. Yu J, Liao S, Xu J. Frequency control strategy https://doi.org/10.1109/tpwrs.2009.2022997
for coordinated energy storage system and flex- 19. Gu Y, Zhuang K, Zhang J, Xie J. Adaptive
ible load in isolated power system. Energy Rep. control strategy for primary frequency regulation
2022;8:966-979. of BESS in wind farm. In: Proc. of 9th Asia
https://doi.org/10.1016/j.egyr.2022.02.133 Conference on Power and Electrical Engineering
9. Kotb KM, Elmorshedy MF, Salama HS, D´an A. (ACPEE), Shanghai, China; 2024:623-629.
Enriching the stability of solar/wind DC micro- https://doi.org/10.1109/acpee60788.2024.10532512
grids using battery and superconducting magnetic 20. Islam A, Jawad A, Masood N.-A. Optimal dis-
energy storage based fuzzy logic control. J Energy patch strategy of battery energy storage system
Storage. 2022;45:103751. in utility-scale photovoltaic integrated grid under
https://doi.org/10.1016/j.est.2021.103751 variability. J Energy Storage. 2024;95:112562.
10. Naderipour A, Ramtin AR, Abdullah A, Marzbali https://doi.org/10.1016/j.est.2024.112562
MH, Nowdeh SA, Kamyab H. Hybrid energy sys- 21. El-Bidairi KS, Nguyen HD, Mahmoud TS, Jayas-
tem optimization with battery storage for re- inghe SDG, Guerrero JM. Optimal sizing of bat-
mote area application considering loss of en- tery energy storage systems for dynamic fre-
ergy probability and economic analysis. Energy. quency control in an islanded microgrid: a
2022;239:122303. case study of flinders island, Australia. Energy.
https://doi.org/10.1016/j.energy.2021.122303 2020;195:117059.
11. Divya KC, Østergaard J. Battery energy storage https://doi.org/10.1016/j.energy.2020.117059
technology for power systems-an overview. Elec- 22. Teh J, Lai C.-M. Reliability impacts of the dy-
tric Power Syst Res. 2009;79(4):511-520. namic thermal rating and battery energy storage
https://doi.org/10.1016/j.epsr.2008.09.017 systems on wind-integrated power networks. Sus-
12. Xie X, Guo Y, Wang B, Dong Y, Mou L, Xue tain Energy Grids Netw. 2019;20:100268.
F. Improving AGC performance of coal-fueled https://doi.org/10.1016/j.segan.2019.100268
thermal generators using multi-mw scale BESS: 23. Maeyaert L, Vandevelde L, D¨oring T. Battery
a practical application. IEEE Trans Smart Grid. storage for ancillary services in smart distribution
2018;9(3):1769-1777. grids. J Energy Storage. 2020;30:01524.
https://doi.org/10.1109/tsg.2016.2599579 https://doi.org/10.1016/j.est.2020.101524
13. Kjær PC, Lærke R. Experience with primary 24. Das CK, Mahmoud TS, Bass O, et al. Optimal
reserve supplied from energy storage system. sizing of a utility-scale energy storage system in
In: Proc. of 2015 17th European Conference transmission networks to improve frequency re-
on Power Electronics and Applications (EPE’15 sponse. J Energy Storage. 2020;29:101315.
ECCE-Europe), Geneva, Switzerland; 2025:1-6. https://doi.org/10.1016/j.est.2020.101315
https://doi.org/10.1109/epe.2015.7311788 25. Alsharif H, Jalili M, Hasan KN. Power sys-
14. Kawakami N, Iijima Y. Overview of battery en- tem frequency stability using optimal siz-
ergy storage systems for stabilization of renewable ing and placement of battery energy storage
energy in Japan. In: Proc. of International Con- system under uncertainty. J Energy Storage.
ference on Renewable Energy Research and Appli- 2022;50:104610.
cations (ICRERA), Nagasaki, Japan; 2012: 1-5. https://doi.org/10.1016/j.est.2022.104610
https://doi.org/10.1109/icrera.2012.6477391 26. Van Dai L. A novel protection method to enhance
15. Killer M, Farrokhseresht M, Paterakis NG. Im- the grid-connected capability of DFIG based on
plementation of large-scale Li-ion battery energy wind turbines. IETE J Res. 2024;70(2):2047-
storage systems within the EMEA region. Appl 2063.
Energy. 2020;260:114166. https://doi.org/10.1080/03772063.2022.2163925
https://doi.org/10.1016/j.apenergy.2019.114166 27. Ibn-Mohammed T, Koh SCL, Reaney IM, et al.
16. Gulzar MM, Iqbal A, Sibtain D, Khalid M. An Perovskite solar cells: an integrated hybrid life-
innovative converterless solar PV control strat- cycle assessment and review in comparison with
egy for a grid connected hybrid PV/Wind/Fuel- other photovoltaic technologies. Renew Sustain
cell system coupled with battery energy storage.
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