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Oil spill characterization thanks to optical airborne imagery during the NOFO campaign 2015

机译:在2015年NOFO运动中,借助光学机载图像对漏油进行了表征

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One of the objectives of the NAOMI (New Advanced Observation Method Integration) research project, fruit of a partnership between Total and ONERA, is to work on the detection, the quantification and the characterization of offshore hydrocarbon at the sea surface using airborne remote sensing. In this framework, work has been done to characterize the spectral signature of hydrocarbons in lab in order to build a database of oil spectral signatures. The main objective of this database is to provide spectral libraries for data processing algorithms to be applied to airborne VNIR-SWTR hyperspectral images. A campaign run by the NOFO institute (Norwegian Clean Seas Association for Operating Companies) took place in 2015 to test anti-pollution equipment. During this campaign, several hydrocarbon products, including an oil emulsion, were released into the sea, off the Norwegian coast. The NOFO team allowed the NAOMI project to acquire data over the resulting oil slicks using the SETHI system, which is an airborne remote sensing imaging system developed by ONERA. SETHI integrates a new generation of optoelectronic and radar payloads and can operate over a wide range of frequency bands. SETHI is a pod-based system operating onboard a Falcon 20 Dassault aircraft, which is owned by AvDEF. For these experiments, imaging sensors were constituted by 2 synthetic aperture radar (SAR), working at X and L bands in a full polarimetric mode (HH, HV, VH, VV) and 2 HySpex hyperspectral cameras working in the VNIR (0,4 to 1 um) and SWIR (1 to 2,5 um) spectral ranges. A sample of the oil emulsion that was used during the campaign was sent to our laboratory for analysis. Measurements of its transmission and of its reflectance in the VNIR and SWIR spectral domains have been performed at ONERA with a Perkin Elmer spectroradiometer and a spectrogoniometer. Several samples of the oil emulsion were prepared in order to measure spectral variations according to oil thickness, illumination angle and aging. These measurements have been used to build spectral libraries. Spectral matching techniques, relying on these libraries have been applied to the airborne hyperspectral acquisitions. These data processing approaches enable to characterize the oil emulsion by estimating the properties taken into account to build the spectral library, thus going further than unsupervised spectral indices that are able to detect the presence of oil. The paper will describe the airborne hyperspectral data, the measurements performed in the laboratory, and the processing of the optical images with spectral indices for oil detection and with spectral matching techniques for oil characterization. Furthermore, the issue of mixed oil-water pixels in the hyperspectral images due to limited spatial resolution will be addressed by estimating the areal fraction of each.
机译:道达尔与ONERA合作的结果是NAOMI(新的高级观测方法集成)研究项目的目标之一是致力于通过机载遥感技术进行海面近海油气的检测,定量和表征。在此框架中,已进行工作以表征实验室中碳氢化合物的光谱特征,以建立油光谱特征的数据库。该数据库的主要目的是为数据处理算法提供光谱库,以将其应用于机载VNIR-SWTR高光谱图像。 2015年,由NOFO研究所(挪威清洁海洋运营公司协会)发起了一项运动,以测试抗污染设备。在这次运动中,包括油乳剂在内的几种碳氢化合物产品被释放到挪威海岸外的海中。 NOFO团队允许NAOMI项目使用SETHI系统获取由此产生的浮油数据,SETHI系统是ONERA开发的机载遥感成像系统。 SETHI集成了新一代的光电和雷达有效载荷,可以在很宽的频带范围内运行。 SETHI是基于吊舱的系统,可在AvDEF拥有的Falcon 20 Dassault飞机上运行。对于这些实验,成像传感器由2个合成孔径雷达(SAR)组成,它们在X和L波段以全偏振模式工作(HH,HV,VH,VV),以及2个在VNIR中工作的HySpex高光谱相机(0,4到1 um)和SWIR(1到2.5 um)光谱范围。活动期间使用的油乳液样品已发送到我们的实验室进行分析。它的透射率和反射率在VNIR和SWIR光谱域中的测量已经在ONERA用Perkin Elmer分光辐射计和分光光度计进行了。为了测量根据油的厚度,照射角度和老化的光谱变化,制备了几种油乳液样品。这些测量已用于构建光谱库。依靠这些库的光谱匹配技术已应用于机载高光谱采集。这些数据处理方法能够通过估计构建光谱库时所考虑的属性来表征油乳剂,因此比能够检测油的无监督光谱指数走得更远。本文将描述机载高光谱数据,在实验室中进行的测量以及光学图像的处理,这些图像具有用于油类检测的光谱指数和用于油类表征的光谱匹配技术。此外,由于空间分辨率有限而在高光谱图像中混合了油水像素的问题将通过估计每个像素的面积分数来解决。

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