利用伪极线分段线性实现推帚卫星图像的极重采样

Dong-Min Woo, Thanh-Danh Pham
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引用次数: 1

摘要

本文提出了一种实用有效的推送室卫星图像核极重采样方法。我们提出了一种新的基于PEL(伪极谱线)的重采样方案。PEL的主要概念来源于卫星图像传感器的投影线是一条直线的假设。在这种情况下,核线可以假设为PEL,它可以直接从RPC(有理多项式系数)模型中进行评估。推送室卫星图像传感器使用线性阵列扫描仪进行图像捕获。由于所得到的图像是通过随着传感器移动收集一维线图像而形成的,因此线假设在形成一维线图像的区域附近最佳地近似。在这方面,我们设计了PEL核极重采样方法的分段线性实现方法,以最佳地近似线性推送室图像的核极性模型。在这种新方法中,将整个卫星图像划分为小图像(片段),并使用PEL对每个单独的片段执行核极重采样。这种方法非常准确,因为每个小图像中的核线是通过与小图像相对应的地形内的共轭点来评估的。实验结果表明,当将所有图像分割成多个小块时,可以实现高精度的重采样。我们的研究证实了所提出的方法可以有效地用于极核图像的生成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epipolar Resampling of Pushbroom Satellite Images Using Piecewise Linear Implementation of Pseudo Epipolar Line
This paper presents a practical and efficient epipolar resampling method for pushbroom satellite images. We proposed a new resampling scheme based on PEL (Pseudo Epipolar Line). The main concept of PEL is derived from the assumption that the projection line from the satellite image sensor is a straight line. In this context, the epipolar line can be assumed as PEL, which can be directly evaluated directly from RPC (Rational Polynomial Coefficient) model. The pushbroom satellite image sensor uses a linear array scanner for image capture. Since the resulting images are formed by collecting the one-dimensional line images with the sensor movement, the line assumption is best approximated in the vicinity of the area forming the one dimensional line image. In this regard, we devise a piecewise linear implementation approach of the PEL epipolar resampling method to best approximate the epipolarity model of the linear pushbroom image. In this new approach, whole satellite images are divided into small images (pieces), and epipolar resampling is performed on each individual piece using the PEL. This approach is very accurate because the epipolar lines in each small image are evaluated by conjugate points within the terrain corresponding to the small image. Experimental results show that highly accurate resampling was achieved when all the whole images are divided into multiple small pieces. Our study confirmed that the suggested method can be efficiently utilized in epipolar image generation.
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来源期刊
International Journal of Grid and Distributed Computing
International Journal of Grid and Distributed Computing COMPUTER SCIENCE, SOFTWARE ENGINEERING-
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期刊介绍: IJGDC aims to facilitate and support research related to control and automation technology and its applications. Our Journal provides a chance for academic and industry professionals to discuss recent progress in the area of control and automation. To bridge the gap of users who do not have access to major databases where one should pay for every downloaded article; this online publication platform is open to all readers as part of our commitment to global scientific society. Journal Topics: -Architectures and Fabrics -Autonomic and Adaptive Systems -Cluster and Grid Integration -Creation and Management of Virtual Enterprises and Organizations -Dependable and Survivable Distributed Systems -Distributed and Large-Scale Data Access and Management -Distributed Multimedia Systems -Distributed Trust Management -eScience and eBusiness Applications -Fuzzy Algorithm -Grid Economy and Business Models -Histogram Methodology -Image or Speech Filtering -Image or Speech Recognition -Information Services -Large-Scale Group Communication -Metadata, Ontologies, and Provenance -Middleware and Toolkits -Monitoring, Management and Organization Tools -Networking and Security -Novel Distributed Applications -Performance Measurement and Modeling -Pervasive Computing -Problem Solving Environments -Programming Models, Tools and Environments -QoS and resource management -Real-time and Embedded Systems -Security and Trust in Grid and Distributed Systems -Sensor Networks -Utility Computing on Global Grids -Web Services and Service-Oriented Architecture -Wireless and Mobile Ad Hoc Networks -Workflow and Multi-agent Systems
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