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Automated Co-registration Of Images From Multiple Bands Of Liss-4 Camera

机译:Liss-4相机多波段图像的自动共配准

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Three multi-spectral bands of the Liss-4 camera of IRS-P6 satellite are physically separated in the focal plane in the along-track direction. The time separation of 2.1 s between the acquisition of first and last bands causes scan lines acquired by different bands to lie along different lines on the ground which are not parallel. Therefore, the raw images of multi-spectral bands need to be registered prior to any simple application like data visualization. This paper describes a method for co-registration of multiple bands of Liss-4 camera through photogrammetric means using the collinearity equations. A trajectory fit using the given ephemeris and attitude data, followed by direct georeferencing is being employed in this model. It is also augmented with a public domain DEM for the terrain dependent input to the model. Finer offsets after the application of this parametric technique are addressed by matching a small subsection of the bands (100 × 100 pixels) using an image-based method. Resampling is done by going back to original raw data when creating the product after refining image coordinates with the offsets. Two types of aligned products are defined in this paper and their operational flow is described. Datasets covering different types of terrain and also viewed with different geometries are studied with extensive number of points. The band-to-band registration (BBR) accuracies are reported. The algorithm described in this paper for co-registration of Liss-4 bands is an integral part of the software package Value Added Products generation System (VAPS) for operational generation of IRS-P6 data products.
机译:IRS-P6卫星的Liss-4相机的三个多光谱带在焦平面中沿轨道方向物理分离。采集第一个和最后一个频段之间的时间间隔为2.1 s,导致由不同频段采集的扫描线沿着地面上不平行的不同线分布。因此,在任何简单的应用程序(如数据可视化)之前,都需要注册多光谱带的原始图像。本文介绍了一种使用共线性方程通过摄影测量手段对Liss-4相机的多个波段进行共配准的方法。使用给定的星历表和姿态数据进行轨迹拟合,然后进行直接地理配准,该模型已被采用。它还使用公共领域DEM进行了扩充,以用于模型的与地形相关的输入。应用基于图像的方法,通过匹配频带的一小部分(100×100像素),可以解决应用此参数技术后的细微偏移。通过使用偏移量细化图像坐标后,在创建产品时,通过返回原始原始数据来进行重采样。本文定义了两种对齐的产品,并描述了它们的操作流程。研究了涵盖不同类型地形并以不同几何形状查看的数据集,涉及的点数很多。报告了频带间注册(BBR)的准确性。本文描述的用于Liss-4波段共注册的算法是用于IRS-P6数据产品可操作生成的增值产品生成系统(VAPS)软件包的组成部分。

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