Robust adaptive analysis of extreme dynamic responses of wave energy converters

Yingguang Wang
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Abstract

In the current study, a new adaptive binned kernel density estimation method has been introduced. In the proposed new method, Fourier transforms have been utilized to accomplish the convolution rather than performing the convolution by hand. By utilizing the fast Fourier transform, direct and inverse Fourier transforms have been found in a relatively short amount of time when implementing the new method. Upon analyzing the computed results, it has been observed that the newly proposed adaptive binned kernel density estimation distribution curve exhibits a high level of smoothness in the tail region. Furthermore, it demonstrates a strong alignment with the histogram derived from the recorded ocean wave dataset obtained at the NDBC station 46053. These are the major advantages of the proposed new method comparing with other existing methods such as the parametric method, the ordinary KDE method, and Abramson's adaptive KDE method. The specific research gap identified in the field is that none of the existing methods can predict the sea state parameter probability distribution tails both accurately and efficiently, and the proposed new method has successfully addressed this research gap. Upon careful examination of the calculation results, it becomes evident that the projected 50-year extreme power-take-off heaving force value, derived using the newly proposed method, is 1989300N. This value significantly surpasses (by more than 9.5%) the forecasted value of 1816200N obtained through the application of the Rosenblatt-I-SORM contour method. The findings of this study suggest that the newly proposed adaptive binned kernel density estimation method exhibits robustness and demonstrates accurate forecasting capabilities for the 50-year extreme dynamic responses of wave energy converters.
波浪能转换器极端动态响应的鲁棒自适应分析
本研究引入了一种新的自适应二进制核密度估计方法。在提出的新方法中,利用傅立叶变换完成卷积,而不是手工执行卷积。通过利用快速傅立叶变换,在实施新方法时,可以在相对较短的时间内找到正傅立叶变换和反傅立叶变换。对计算结果进行分析后发现,新提出的自适应二进制核密度估计分布曲线在尾部区域表现出较高的平滑度。此外,它与从北大西洋波浪中心(NDBC)46053 站获取的海洋波浪数据集中得到的直方图非常吻合。与参数法、普通 KDE 法和 Abramson 的自适应 KDE 法等其他现有方法相比,这些都是所提出的新方法的主要优势。该领域的具体研究空白在于,现有方法都无法既准确又高效地预测海况参数概率分布尾部,而所提出的新方法成功地解决了这一研究空白。在仔细研究计算结果后可以发现,使用新提出的方法得出的 50 年极端取力翻腾力预测值为 1989300N。这一数值大大超过(超过 9.5%)采用 Rosenblatt-I-SORM 等值线方法得出的 1816200N 预测值。这项研究结果表明,新提出的自适应分档核密度估计方法具有鲁棒性,对波浪能转换器的 50 年极端动态响应具有准确的预测能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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