1 |
An objective-based scenario selection method for transmission network expansion planning with multivariate stochasticity in load and renewable energy sources Sun M, Teng F, Konstantelos I, Strbac G Energy, 145, 871, 2018 |
2 |
Beneficiaries of transmission expansion projects of an expansion plan: An Aumann-Shapley approach Banez-Chicharro F, Olmos L, Ramos A, Latorre JM Applied Energy, 195, 382, 2017 |
3 |
An NSGA-II based multi-objective optimization for combined gas and electricity network expansion planning Hu Y, Bie ZH, Ding T, Lin YL Applied Energy, 167, 280, 2016 |
4 |
Multistage distribution network expansion planning considering the emerging energy storage systems Saboori H, Hemmati R, Abbasi V Energy Conversion and Management, 105, 938, 2015 |
5 |
Combined gas and electricity network expansion planning Chaudry M, Jenkins N, Qadrdan M, Wu JZ Applied Energy, 113, 1171, 2014 |
6 |
A new evolutionary solution method for dynamic expansion planning of DG-integrated primary distribution networks Ahmadigorji M, Amjady N Energy Conversion and Management, 82, 61, 2014 |
7 |
Modelling generation and infrastructure requirements for transition pathways Barnacle M, Robertson E, Galloway S, Barton J, Ault G Energy Policy, 52, 60, 2013 |
8 |
DCGA based evaluating role of bundle lines in TNEP considering expansion of substations from voltage level point of view Mahdavi M, Shayeghi H, Kazemi A Energy Conversion and Management, 50(8), 2067, 2009 |
9 |
Technical and economic evaluation of voltage level in transmission network expansion planning using GA Jalilzadeh S, Kazemi A, Shayeghi H, MadaVi M Energy Conversion and Management, 49(5), 1119, 2008 |
10 |
Studying influence of two effective parameters on network losses in transmission expansion planning using DCGA Shayeghi H, Jalilzadeh S, Mahdavi M, Hadadian H Energy Conversion and Management, 49(11), 3017, 2008 |