LSTM-based remote sensing inversion of largescale sand wave topography of the Taiwan banks

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Abstract

Shallow underwater topography has important practical applications in fisheries, naviga-tion, and pipeline laying. Traditional multibeam bathymetry is limited by the high cost of largescale topographic surveys in large, shallow sand wave areas. Remote sensing inversion methods to detect shallow sand wave topography in Taiwan rely heavily on measured water depth data. To address these problems, this study proposes a largescale remote sensing inversion model of sand wave topography based on long short-term memory network machine learning. Using multi-angle sun glitter remote sensing to obtain sea surface roughness (SSR) information and by learning and training SSR and its corresponding water depth information, the sand wave topography of a largescale shallow sea sand wave region is extracted. The accuracy of the model is validated through its application to a 774 km2 area in the sand wave topography of the Taiwan Banks. The model obtains a root mean square error of 3.31–3.67 m, indicating that the method has good generalization capability and can achieve a largescale topographic understanding of shallow sand waves with some training on measured bathymetry data. Sand wave topography is widely present in tidal environments; our method has low requirements for ground data, with high application value.

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Zhao, Y., Zhao, L., Zhang, H., & Fu, B. (2021). LSTM-based remote sensing inversion of largescale sand wave topography of the Taiwan banks. Remote Sensing, 13(16). https://doi.org/10.3390/rs13163313

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