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Offshore wind farm electrical design using a hybrid of ordinal optimization and mixed-integer programming

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Date
2015-12-01
Author
Lumbreras Sancho, Sara
Ramos Galán, Andrés
Sánchez Martín, Pedro
Estado
info:eu-repo/semantics/publishedVersion
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Abstract
Electrical layout design is, for offshore wind farms (OWF), a complex problem that has a far-reaching impact on both plant cost and reliability. A full optimization of the layout, as opposed to just selecting the most favorable pre-established configuration, is required in order to capture all the potential efficiencies. However, classical optimization methods such as mixed-integer programming (MIP) might not be applicable to large OWFs. This paper describes a novel combination of ordinal optimization (OO) and MIP that is able to deal with large problems in reduced computation times with a statistical optimality guarantee. The algorithm is applied to a real case study taken from Barrow Offshore Wind Farm in the East Irish Sea.
 
Electrical layout design is, for offshore wind farms (OWF), a complex problem that has a far-reaching impact on both plant cost and reliability. A full optimization of the layout, as opposed to just selecting the most favorable pre-established configuration, is required in order to capture all the potential efficiencies. However, classical optimization methods such as mixed-integer programming (MIP) might not be applicable to large OWFs. This paper describes a novel combination of ordinal optimization (OO) and MIP that is able to deal with large problems in reduced computation times with a statistical optimality guarantee. The algorithm is applied to a real case study taken from Barrow Offshore Wind Farm in the East Irish Sea.
 
URI
https://doi.org/10.1002/we.1807
Offshore wind farm electrical design using a hybrid of ordinal optimization and mixed-integer programming
Tipo de Actividad
Artículos en revistas
ISSN
1095-4244
Materias/ categorías / ODS
Instituto de Investigación Tecnológica (IIT)
Palabras Clave
offshore wind farms; collector system; transmission system; electrical layout; circuit optimization
offshore wind farms; collector system; transmission system; electrical layout; circuit optimization
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