2008 IEEE/PES Transmission and Distribution Conference and Exposition: Latin America 2008
DOI: 10.1109/tdc-la.2008.4641869
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Multi-areas optimal reactive power flow

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Cited by 12 publications
(3 citation statements)
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“…Another class of solutions makes use of power flow decomposition techniques, such as Lagrangian relaxation or Lagrangian augmentation. This implies to have a unique OPF problem which is decomposed and solved separately for different areas coupled by common constraints, e.g., active and reactive power flows over connection lines, and based on the exchange of Lagrangian multipliers [32]. However, the method is not adequately performant requiring a significant amount of iterations even for simple cases.…”
Section: Coordination Procedures Between Tso and Dsomentioning
confidence: 99%
“…Another class of solutions makes use of power flow decomposition techniques, such as Lagrangian relaxation or Lagrangian augmentation. This implies to have a unique OPF problem which is decomposed and solved separately for different areas coupled by common constraints, e.g., active and reactive power flows over connection lines, and based on the exchange of Lagrangian multipliers [32]. However, the method is not adequately performant requiring a significant amount of iterations even for simple cases.…”
Section: Coordination Procedures Between Tso and Dsomentioning
confidence: 99%
“…As técnicas de decomposição matemáticas em que o problema de FP multi-áreas é resolvido possuem poucas referências na literatura especializada. A maioria delas são aplicadas ao problema de fluxo de potência ótimo (Bakirtzis e Biskas, 2003;Biskas e Bakirtzis, 2006;Conejo e Aguado, 1998;Granada et al, 2008;Kim e Baldick, 1997;Kim et al, 2001;Nogales et al, 2003) . Em Bakirtzis e Biskas (2002) é apresentado um FP-DC descentralizado usando o princípio do problema auxiliar (PPA), no qual um dos objetivos é preservar a confidencialidade dos dados de rede para cada ORS em um mercado de livre concorrência.…”
Section: Revisão Da Literaturaunclassified
“…That could be problematic when faced with a large network with many renewable generators whose power outputs depend on unpredictable nature elements like wind and sunlight that could change at any time. Moreover, the number of constraints grow exponentially when the network becomes large [29], therefore at the end it will be nearly impossible to solve an optimal dispatch problem in a centralized way using available computer. Using a decentralized approach to solve the dispatch problem address the shortcomings of centralized dispatch, namely, the exponential growth of the computational and information gathering effort which render centralized dispatch to be unsuitable for real-time application.…”
Section: Introductionmentioning
confidence: 99%