TY - GEN
T1 - Evaluation of the Energy-Capacity Split for System Balance and the Competitiveness of Renewable Energy in Peru after Law 32249
AU - Loayza, Raul Enrique Perez
AU - Salazar, Liliana Fidencia Valero
AU - Aquino, Dennis Raul Garay
N1 - Publisher Copyright:
© 2026 IEEE.
PY - 2026
Y1 - 2026
N2 - This study evaluated how the energy and capacity split introduced after Law 32249 can support system balance and improve the competitiveness of renewable energy in Peru by remunerating electrical energy and firm capacity as separate products. The adequacy driver was defined using the 2025 to 2034 Efficient Generation Requirement under dry season conditions, and 2027 was selected as the focal milestone because the cumulative requirement reaches 600 megawatts beyond the committed projects window. A 2027 renewable led portfolio was designed to deliver 600 megawatts of firm capacity using hydropower support, wind with a conservative effective load carrying capability credit, solar made peak deliverable through a four hour battery energy storage system, and efficient combined cycle natural gas backup, yielding 3,662 gigawatt hours per year of net energy. Under a decoupled Regulated Market and Free Market contracting structure, the portfolio generated 154.3 million United States dollars per year from energy sales and 46.7 million United States dollars per year from capacity payments under a Basic Capacity Price cap.
AB - This study evaluated how the energy and capacity split introduced after Law 32249 can support system balance and improve the competitiveness of renewable energy in Peru by remunerating electrical energy and firm capacity as separate products. The adequacy driver was defined using the 2025 to 2034 Efficient Generation Requirement under dry season conditions, and 2027 was selected as the focal milestone because the cumulative requirement reaches 600 megawatts beyond the committed projects window. A 2027 renewable led portfolio was designed to deliver 600 megawatts of firm capacity using hydropower support, wind with a conservative effective load carrying capability credit, solar made peak deliverable through a four hour battery energy storage system, and efficient combined cycle natural gas backup, yielding 3,662 gigawatt hours per year of net energy. Under a decoupled Regulated Market and Free Market contracting structure, the portfolio generated 154.3 million United States dollars per year from energy sales and 46.7 million United States dollars per year from capacity payments under a Basic Capacity Price cap.
KW - Adequacy requirement
KW - Energy and capacity split
KW - Law 32249
KW - Peak Shaving
KW - Renewable energy competitiveness
UR - https://www.scopus.com/pages/publications/105037327359
U2 - 10.1109/EEICAI68535.2026.11441921
DO - 10.1109/EEICAI68535.2026.11441921
M3 - Contribución a la conferencia
AN - SCOPUS:105037327359
T3 - Proceedings of 2026 International Conference on Electrical Engineering, Intelligent Control and Artificial Intelligence, EEICAI 2026
SP - 142
EP - 148
BT - Proceedings of 2026 International Conference on Electrical Engineering, Intelligent Control and Artificial Intelligence, EEICAI 2026
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2026 International Conference on Electrical Engineering, Intelligent Control and Artificial Intelligence, EEICAI 2026
Y2 - 9 January 2026 through 11 January 2026
ER -