Coalition of distributed generation units to Virtual Power Players - a game theory approach


Autoria(s): Morais, Hugo; Sousa, Tiago M.; Santos, Gabriel; Pinto, Tiago; Praça, Isabel; Vale, Zita
Data(s)

07/01/2016

07/01/2016

01/06/2015

Resumo

Smart Grids (SGs) have emerged as the new paradigm for power system operation and management, being designed to include large amounts of distributed energy resources. This new paradigm requires new Energy Resource Management (ERM) methodologies considering different operation strategies and the existence of new management players such as several types of aggregators. This paper proposes a methodology to facilitate the coalition between distributed generation units originating Virtual Power Players (VPP) considering a game theory approach. The proposed approach consists in the analysis of the classifications that were attributed by each VPP to the distributed generation units, as well as in the analysis of the previous established contracts by each player. The proposed classification model is based in fourteen parameters including technical, economical and behavioural ones. Depending of the VPP strategies, size and goals, each parameter has different importance. VPP can also manage other type of energy resources, like storage units, electric vehicles, demand response programs or even parts of the MV and LV distribution network. A case study with twelve VPPs with different characteristics and one hundred and fifty real distributed generation units is included in the paper.

Identificador

http://hdl.handle.net/10400.22/7329

10.3233/ICA-150490

Idioma(s)

eng

Publicador

IOS Press

Relação

Integrated Computer-Aided Engineering;vol. 22, nº 3

Direitos

openAccess

Palavras-Chave #Decision-making #Distributed generation #Electricity markets #Game theory #Intelligent agents coalitions #Virtual Power Players
Tipo

article