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Sun glint Imagery of Landsat 8 for ocean surface waves  id статьи: 433
Тип публикации
материалы конференции
Язык
En
Журнал
Proceedings of SPIE - the International Society for Optical Engineering

ISSN:0277-786X
eSSN:1996-756X
Год
2018
Выходные данные
том 10778
выпуск
страницы UNSP 107780L
Авторы
Misra, A.1
Chapron, B.2
Nouguier, F.1
Ramakrishnan, B.1
EDN
Абстракт
Local changes in specular reflections of visible sunlight on the ocean surfaces can be captured effectively by satellite sensors operating in the visible range of the electromagnetic spectrum. This causes the sun-glint imagery to closely resemble the oceanic images obtained using Synthetic Aperture Radar (SAR) further allowing the identification of the various fine scale structures and patterns of the ocean. Moreover, at relevant spatial resolutions, cloud-free conditions as well as optimum relative positions of the sensor, sun and the wave front it is possible to image ocean waves, wave transformations and refraction patterns using Satellite Sun-glint imagery (SSGI). In the present study, Landsat OLI imagery captured along the coast of Brest, France is used to derive ocean wave characteristics such as wavelength, direction, amplitude and then mapped to better understand the process of wave transformation. The 2D fast Fourier transform technique has been used on Band 5 (NIR, 0.851 - 0.879 mu m) to derive the wavelength of swell waves in near-shore regions as well as to analyze the wavelength change. Furthermore, owing to the detector configuration of Landsat 8 OLI there is a small time lag between the channel acquisitions. This effectively helps to infer the space-time characteristics of the surface waves using the cross channel correlation between Band 5 and Band 6 subsequently enabling removal of the directional ambiguity associated with the wave spectra obtained from the analysis. The main purpose of this study is to demonstrate the importance of SSGI in deriving relevant coastal information which can be further utilized for bathymetry, surface current and wave motion determinations.
Ключевые слова
SUN-GLINT IMAGERY, WAVE TRANSFORMATION, LANDSAT 8 OLI, FAST FOURIER TRANSFORM(FFT), CROSS-SPECTRAL ANALYSIS
Дата занесения
2018-12-12 15:49:00
Scopus
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