论文标题

校准的车辆涂料签名,用于模拟高光谱图像

Calibrated Vehicle Paint Signatures for Simulating Hyperspectral Imagery

论文作者

Mulhollan, Zachary, Rangnekar, Aneesh, Bauch, Timothy, Hoffman, Matthew J., Vodacek, Anthony

论文摘要

我们研究了一种快速添加校准的车辆可见型红外红外(VNIR)涂料签名的程序,以在现有的高光谱模拟器 - 数字成像和遥感图像产生(DIRSIG)模型中 - 在模拟城市场景中创造更多多样性。 DIRSIG模型可以通过用户指定的几何形状,大气条件和地面目标光谱产生合成的高光谱图像。为了渲染对象像素的光谱签名,Dirsig使用大型反射曲线数据库为相应的对象材料和双向反射模型,以引入由于方向和表面结构而引入S。但是,该数据库仅包含一些用于车辆涂料的光谱曲线,并通过内部组合这些曲线来生成新的油漆特征。在本文中,我们演示了一种快速产生多个油漆光谱的方法,载有推动室高光谱摄像头的无人机来对大学停车场进行图像。然后,我们对图像进行处理,将它们从数字计数空间转换为光谱反射率,而无需在场景中校准面板,然后将油漆签名移植到Dirsig中,以成功地集成到新渲染的合成VNIR高光谱场景中。

We investigate a procedure for rapidly adding calibrated vehicle visible-near infrared (VNIR) paint signatures to an existing hyperspectral simulator - The Digital Imaging and Remote Sensing Image Generation (DIRSIG) model - to create more diversity in simulated urban scenes. The DIRSIG model can produce synthetic hyperspectral imagery with user-specified geometry, atmospheric conditions, and ground target spectra. To render an object pixel's spectral signature, DIRSIG uses a large database of reflectance curves for the corresponding object material and a bidirectional reflectance model to introduce s due to orientation and surface structure. However, this database contains only a few spectral curves for vehicle paints and generates new paint signatures by combining these curves internally. In this paper we demonstrate a method to rapidly generate multiple paint spectra, flying a drone carrying a pushbroom hyperspectral camera to image a university parking lot. We then process the images to convert them from the digital count space to spectral reflectance without the need of calibration panels in the scene, and port the paint signatures into DIRSIG for successful integration into the newly rendered sets of synthetic VNIR hyperspectral scenes.

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