A generalized nash equilibrium analysis of electric power transmission-distribution coordination

Mezghani, Ilyes;Papavasiliou, Anthony;Le Cadre, Hélène
(2018) e-Energy ’18 : proceedings of the ninth international conference on future energy systems — ISBN: [9781450357678], p. 526–531, published

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Authors
  • Mezghani, IlyesUCLouvain
    Author
  • Papavasiliou, Anthonyorcid-logoUCLouvain
    Author
  • Le Cadre, HélèneEnergyVille Research Center
    Author
Abstract
The integration of renewable energy resources leads to an important change in the way electricity markets are operated and organized. The common approach to the optimization of electric power system operations has focused on the high-voltage Transmission Network (TN), while the Distribution Network (DN) is typically not accounted for in detail. Nevertheless, the proliferation of distributed renewable resources (for example, solar panels and electric vehicles) in the DN, coupled with the presence of a substantial amount of load flexibility in the residential and commercial sector, implies that a considerable amount of intelligence will have to be integrated at the distribution level of electric power systems. Consequently, Distribution System Operators (DSOs) will have a more active role in the operation of electric power systems and electricity markets in the future.
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Citations

Mezghani, I., Papavasiliou, A., & Le Cadre, H. (2018). A generalized nash equilibrium analysis of electric power transmission-distribution coordination. In SIGCOMM (Special Interest Group on Data Communication) (ed.), e-Energy ’18 : proceedings of the ninth international conference on future energy systems (p. p. 526–531). ACM Press. https://doi.org/10.1145/3208903.3214346