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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Simultaneous optimization of electrical interconnection configuration and cable sizing in offshore wind farms
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Simultaneous optimization of electrical interconnection configuration and cable sizing in offshore wind farms

机译:海上风电场上电互连配置和电缆尺寸的同时优化

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摘要

Offshore wind farm (OWF) is the largest renewable energy resource. The electrical interconnection cost of OWFs is a considerable fraction of the overall design cost of the farm. In order to minimize the investment and operational costs, this paper proposes an optimization formulation to find the optimal electrical interconnection configuration of wind turbines (WTs), and the optimal cable sizing simultaneously. This simultaneous minimization of total trenching length and cable dimensions creates a complex optimization problem that is solved by the harmony search (HS) algorithm. In this paper, two distinct methods of full and partial optimal cable sizing are considered to comprehensively assess the optimal interconnection layout of OWFs. Furthermore, various shipping and burying costs as well as various WTs power ratings are considered in order to investigate their impact on the optimal electrical interconnection system. The optimal electrical interconnection design obtained by the HS algorithm corresponds to a lower cost that together with the technological developments can help policy makers increase the use of offshore wind energy as a feasible unlimited renewable resource in their energy production portfolios.
机译:海上风电场(OWF)是最大的可再生能源资源。 OWF的电互连成本是农场整体设计成本的相当大。为了最大限度地减少投资和运营成本,本文提出了优化配方,以查找风力涡轮机(WTS)的最佳电互连配置,以及同时最佳电缆尺寸。总沟槽长度和电缆尺寸的同时最小化创造了由和声搜索(HS)算法解决的复杂优化问题。本文认为,两种不同和部分最佳电缆尺寸的不同方法被认为全面评估OWF的最佳互连布局。此外,考虑各种运输和掩埋成本以及各种WTS电力额定值,以便研究它们对最佳电互连系统的影响。 HS算法获得的最佳电互连设计对应于与技术发展一起的较低成本,可以帮助政策制定者增加海上风能的使用,作为其能源生产组合中可行的无限可再生资源。

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