1 |
Why reducing socio-environmental externalities of electricity system expansions can boost the development of solar power generation: The case of Chile Matamala C, Moreno R, Sauma E, Calabrese J, Osses P Solar Energy, 217, 58, 2021 |
2 |
A generic framework for power system flexibility analysis using cooperative game theory Kristiansen M, Korpas M, Svendsen HG Applied Energy, 212, 223, 2018 |
3 |
State-of-the-art generation expansion planning: A review Koltsaklis NE, Dagoumas AS Applied Energy, 230, 563, 2018 |
4 |
A novel data-driven scenario generation framework for transmission expansion planning with high renewable energy penetration Sun MY, Cremer J, Strbac G Applied Energy, 228, 546, 2018 |
5 |
The multi-scale generation and transmission expansion model Sarid A, Tzurt M Energy, 148, 977, 2018 |
6 |
Bilevel transmission expansion planning using second-order cone programming considering wind investment Zolfaghari S, Akbari T Energy, 154, 455, 2018 |
7 |
Impact of introducing flexibility in the Colombian transmission expansion planning Henao A, Sauma E, Gonzalez A Energy, 157, 131, 2018 |
8 |
Transition and Integration of the ERCOT Market with the Competitive Renewable Energy Zones Project Du XD, Rubin OD Energy Journal, 39(4), 235, 2018 |
9 |
A Mechanism for Allocating Benefits and Costs from Transmission Interconnections under Cooperation: A Case Study of the North Sea Offshore Grid Kristiansen M, Munoz FD, Oren S, Korpas M Energy Journal, 39(6), 209, 2018 |
10 |
Solar energy's potential to mitigate political risks: The case of an optimised Africa-wide network Trotter PA, Maconachie R, McManus MC Energy Policy, 117, 108, 2018 |