TY - JOUR
T1 - Analysis of pumped hydroelectric energy storage for large-scale wind energy integration
AU - Carew, Nick
AU - Warnock, William
AU - Bayindir, Ramazan
AU - Hossain, Eklas
AU - Rakin, Adnan Siraj
N1 - Publisher Copyright:
© The Author(s) 2020.
PY - 2023/10
Y1 - 2023/10
N2 - Renewable energy sources are becoming a popular choice of energy, due to their sundry advantages and more convenient environmental impacts. Wind certainly emerges as one of the most plausible energy sources in modern power generation. However, large-scale wind energy is associated with fluctuations in voltage and power due to its intermittent nature. The proposed pumped hydroelectric energy storage system offers one of the best solutions in solving this problem. It is shown that large-scale integration of wind energy becomes more feasible and efficient when a proper energy storage system is added to achieve appropriate energy charging or discharging. Upon comparing the potential of different storage systems, pumped hydroelectric energy storage is found to be highly promising for wind integration. In order to demonstrate the behavior of the integrated system with respect to time constant and to verify the feasibility of the energy storage in different case studies, simulations are performed in Matlab/Simulink. This work would open new doors toward the investigation of large-scale wind power integration. It is also expected that pumped hydroelectric energy storage would become a possible alternative for energy reserves for large-scale wind power applications.
AB - Renewable energy sources are becoming a popular choice of energy, due to their sundry advantages and more convenient environmental impacts. Wind certainly emerges as one of the most plausible energy sources in modern power generation. However, large-scale wind energy is associated with fluctuations in voltage and power due to its intermittent nature. The proposed pumped hydroelectric energy storage system offers one of the best solutions in solving this problem. It is shown that large-scale integration of wind energy becomes more feasible and efficient when a proper energy storage system is added to achieve appropriate energy charging or discharging. Upon comparing the potential of different storage systems, pumped hydroelectric energy storage is found to be highly promising for wind integration. In order to demonstrate the behavior of the integrated system with respect to time constant and to verify the feasibility of the energy storage in different case studies, simulations are performed in Matlab/Simulink. This work would open new doors toward the investigation of large-scale wind power integration. It is also expected that pumped hydroelectric energy storage would become a possible alternative for energy reserves for large-scale wind power applications.
KW - Wind energy
KW - energy storage
KW - hydroelectric pump storage
KW - microgrid
KW - wind power
UR - http://www.scopus.com/inward/record.url?scp=85085886031&partnerID=8YFLogxK
U2 - 10.1177/0020720920928456
DO - 10.1177/0020720920928456
M3 - Article
AN - SCOPUS:85085886031
SN - 0020-7209
VL - 60
SP - 130
EP - 143
JO - International Journal of Electrical Engineering and Education
JF - International Journal of Electrical Engineering and Education
IS - 2_suppl
ER -