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Damage detection of catenary mooring line based on recurrent neural networks

机译:基于经常性神经网络的绕线系泊线损伤检测

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摘要

The damage detection of mooring lines is critical to safe operations because the stability of offshore floating platforms depends on the integrity of such lines. However, existing mooring line damage detection techniques are considerably limited because they cannot be implemented constantly. To resolve this inadequacy, this paper proposes a deep-learning-based approach that can detect underwater mooring line damage based on the realtime monitored response data of floating structures. Catenary mooring lines, one of the most widely applied types for floating offshore structures, are selected for the study. In the proposed approach, the detection model of catenary mooring line damage uses both the response data generated through the simulation of the floating structure and the corresponding environmental condition data. In particular, a recurrent neural network (RNN) that can effectively analyze the time-series continuity of the response data is employed for damage detection. The results of the RNN-based catenary mooring line damage detection approach proposed in this study confirm that the RNN model exhibits minimum and maximum detection accuracies of 99.59% and 99.99%, respectively, regardless of whether the measurement data include errors. These detection accuracies indicate that the proposed approach can be used to determine mooring line damage under actual field conditions.
机译:系泊线的损坏检测对于安全操作至关重要,因为海上浮动平台的稳定性取决于这种线的完整性。然而,现有的系泊线损坏检测技术显着受到限制,因为它们不能不断地实现。为了解决这种不足,本文提出了一种基于深度学习的方法,可以基于浮动结构的实时监测响应数据来检测水下的系泊线损伤。在研究中选择了触发的系泊线,其中一个用于浮动海上结构的最广泛应用的类型之一。在所提出的方法中,绕线系泊线损坏的检测模型使用通过浮动结构的模拟和相应的环境条件数据来产生的响应数据。特别地,可以有效地分析响应数据的时间序列连续性的经常性神经网络(RNN)用于损坏检测。本研究提出的基于RNN的脉冲系泊线损伤检测方法的结果证实,无论测量数据是否包括误差,RNN模型分别表现出99.59%和99.99%的最小和最大检测准确性。这些检测精度表明所提出的方法可用于确定在实际现场条件下的系泊线损伤。

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    《Oceanographic Literature Review》 |2021年第5期|1164-1164|共1页
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