从电热角度优化现有MRE电网的使用

C. Bonnard, A. Blavette, S. Bourguet, F. Rongère, T. Kovaltchouk, T. Soulard
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引用次数: 2

摘要

海洋可再生能源(MRE)是一种有趣的可持续能源。然而,在能源结构中规划MRE的成本效益整合,特别是波浪能,仍然是一个挑战,因为它的平准化能源成本(LCOE)仍然高于这些更传统的能源。本文描述了一个基于点吸收器的模拟波浪能转换器(WEC)农场的能源生产管理的初步研究,该农场可以安装在SEM-REV站点附近,即法国多技术公海试验场。提出的方法是基于SEM-REV出口电缆的电热行为的时间分析。在Matlab-Simulink®下开发的模型是通用的,可以很容易地扩展到其他WEC类型和更复杂的模型和控制策略,以及其他能源(例如海上风能)。在这项工作中证明,有最大限度地利用出口电缆的空间,它允许在预定的海况序列中增加波浪电力生产,限制或不削减。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards the optimal use of an existing MRE electrical network from an electrothermal perspective
Marine renewable energy (MRE) is an interesting sustainable source of power. However, planning the cost-effective integration of MRE, and in particular of wave energy, in the energy mix remains a challenge as its levelized cost of energy (LCOE) is still greater than these of more conventional energy sources. This paper describes a preliminary study about the energy production management of a simulated wave energy converter (WEC) farm based on point absorbers that could be installed in the vicinity of the SEM-REV site, i.e. the French multi-technology open sea test site. The proposed approach is based on the temporal analysis of the electrothermal behavior of the export cable of the SEM-REV. The models developed under Matlab-Simulink®, are generic and can be easily extended to other WEC types and more sophisticated models and control strategies, as well as to other energy sources (e.g. offshore wind). It is demonstrated in this work that there is room to maximize the utilization of the export cable, which allows to increase wave electricity production during a predetermined sea-state sequence with limited to no curtailment.
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