Universal branch model for the solution of optimal power flows in hybrid AC/DC grids

Author:

Alvarez-Bustos Abraham,Kazemtabrizi Behzad,Shahbazi Mahmoud,Acha-Daza Enrique

Funder

Consejo Nacional de Ciencia y Tecnología

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference53 articles.

1. U. Nations, “Report of the Conference of the Parties on its 21st session”, Framework Convention on Climate Change, Conference of the Parties; Dec. 2015.

2. N. Grid, ”Future energy scenareos, system operator,” National Grid Reports; July 2018.

3. M.E. Economics, ”EEnergy informer, the international energy newsletter,” EEnergy Informer; Jan. 2019.

4. ENTSO-e. (2020) Ten-year network development plan (tyndp); 2020. [Online]. Available: https://tyndp.entsoe.eu/documents/.

5. Pinto RT, Leon-Ramirez AC, Aragues-Penalba M, Sumper A, Sorrentino E. A fast methodology for solving power flows in hybrid AC/DC networks: The european north sea supergrid case study. In: PCIM Europe 2016, Nuremberg, Germany; May 2016.

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