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首页> 外文期刊>EURASIP journal on advances in signal processing >Estimate of significant wave height from non-coherent marine radar images by multilayer perceptrons
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Estimate of significant wave height from non-coherent marine radar images by multilayer perceptrons

机译:多层感知器从非相干海洋雷达图像估计有效波高

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One of the most relevant parameters to characterize the severity of ocean waves is the significant wave height (H s ). The estimate of H s from remotely sensed data acquired by non-coherent X-band marine radars is a problem not completely solved nowadays. A method commonly used in the literature (standard method) uses the square root of the signal-to-noise ratio (SNR) to linearly estimate H s . This method has been widely used during the last decade, but it presents some limitations, especially when swell-dominated sea states are present. To overcome these limitations, a new non-linear method incorporating additional sea state information is proposed in this article. This method is based on artificial neural networks (ANNs), specifically on multilayer perceptrons (MLPs). The information incorporated in the proposed MLP-based method is given by the wave monitoring system (WaMoS II) and concerns not only to the square root of the SNR, as in the standard method, but also to the peak wave length and mean wave period. Results for two different platforms (Ekofisk and FINO 1) placed in different locations of the North Sea are presented to analyze whether the proposed method works regardless of the sea states observed in each location or not. The obtained results empirically demonstrate how the proposed non-linear solution outperforms the standard method regardless of the environmental conditions (platform), maintaining real-time properties.
机译:表征海浪严重性的最相关参数之一是有效海浪高度(H s)。从非相干X波段船用雷达获取的遥感数据估算H s是一个当今尚未完全解决的问题。文献中常用的一种方法(标准方法)使用信噪比(SNR)的平方根来线性估计H s。在过去的十年中,此方法已被广泛使用,但是它存在一些局限性,尤其是在存在以膨胀为主的海洋状态时。为了克服这些限制,本文提出了一种新的非线性方法,该方法结合了附加的海况信息。此方法基于人工神经网络(ANN),特别是基于多层感知器(MLP)。拟议的基于MLP的方法中包含的信息由电波监测系统(WaMoS II)提供,不仅像标准方法一样涉及SNR的平方根,而且还涉及峰值波长和平均波周期。给出了放置在北海不同位置的两个不同平台(Ekofisk和FINO 1)的结果,以分析所提出的方法是否有效,而与在每个位置观察到的海况无关。获得的结果从经验上证明了所提出的非线性解决方案如何在不考虑环境条件(平台)的情况下优于标准方法,并保持了实时性能。

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