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

机译:结合有序优化和混合整数编程的海上风电场电气设计

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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. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:对于海上风电场(OWF)而言,电气布局设计是一个复杂的问题,对电厂成本和可靠性都有深远的影响。为了捕获所有潜在的效率,与仅选择最有利的预先建立的配置相反,需要对布局进行全面优化。但是,经典的优化方法(例如混合整数编程(MIP))可能不适用于大型OWF。本文介绍了序数优化(OO)和MIP的新颖组合,该组合能够在减少统计时间的同时以统计最优性保证来处理较大的问题。该算法已应用于从东爱尔兰海的巴罗(Barrow)海上风电场获得的实际案例研究中。版权所有(c)2014 John Wiley&Sons,Ltd.

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