中压电缆建模在风电场数字孪生中的应用

O. Oñederra, F. J. Asensio, P. Eguía, E. Perea, A. Pujana, L. Martinez
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引用次数: 13

摘要

风电场的数字模型为数字化和远程监测和控制风力发电机提供了一个有用的工具,允许其维护和优化,从而减少停机成本,提高干预风能到电力转换的元件的可靠性。当涉及到海上风电场等偏远地区时,这些方面的相关性就更大了。从这个意义上说,本文描述了一个中压电缆模型,旨在模拟其行为和寿命,以便进行预防性维护。该模型是基于动态中压电缆模型和基于pchip的插值算法的结合,该算法已在开源软件OpenModelica中开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MV Cable Modeling for Application in the Digital Twin of a Windfarm
The digital models of windfarms provide a useful tool when monitoring and controlling wind generators digitally and remotely, allowing its maintenance and optimization, thus reducing the costs due to downtime and increasing the reliability of the elements that intervene in the conversion of wind energy to electric power. These aspects acquire even greater relevance when it comes to remote locations such as offshore wind farms. In this sense, this paper describes a MV cable model aimed at emulating its behavior and lifetime in order to carry out a preventive maintenance. The model is based on a combination of a dynamic MV cable model and a PCHIP-based interpolation algorithm, which have been developed in open source software OpenModelica.
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