首页> 外文OA文献 >Automated system design for the efficient processing of solar satellite images. Developing novel techniques and software platform for the robust feature detection and the creation of 3D anaglyphs and super-resolution images for solar satellite images.
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Automated system design for the efficient processing of solar satellite images. Developing novel techniques and software platform for the robust feature detection and the creation of 3D anaglyphs and super-resolution images for solar satellite images.

机译:自动化系统设计,可高效处理太阳卫星图像。开发新颖的技术和软件平台,以进行可靠的特征检测以及为太阳卫星图像创建3D立体图和超分辨率图像。

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摘要

The Sun is of fundamental importance to life on earth and is studied by scientists from many disciplines. It exhibits phenomena on a wide range of observable scales, timescales and wavelengths and due to technological developments there is a continuing increase in the rate at which solar data is becoming available for study which presents both opportunities and challenges. Two satellites recently launched to observe the sun are STEREO (Solar TErrestrial RElations Observatory), providing simultaneous views of the SUN from two different viewpoints and SDO (Solar Dynamics Observatory) which aims to study the solar atmosphere on small scales and times and in many wavelengths. The STEREO and SDO missions are providing huge volumes of data at rates of about 15 GB per day (initially it was 30 GB per day) and 1.5 terabytes per day respectively. Accessing these huge data volumes efficiently at both high spatial and high time resolutions is important to support scientific discovery but requires increasingly efficient tools to browse, locate and process specific data sets.udThis thesis investigates the development of new technologies for processing information contained in multiple and overlapping images of the same scene to produce images of improved quality. This area in general is titled Super Resolution (SR), and offers a technique for reducing artefacts and increasing the spatial resolution. Another challenge is to generate 3D images such as Anaglyphs from uncalibrated pairs of SR images. An automated method to generate SR images is presented here. The SR technique consists of three stages: image registration, interpolation and filtration. Then a method to produce enhanced, near real-time, 3D solar images from uncalibrated pairs of images is introduced.udImage registration is an essential enabling step in SR and Anaglyph processing. An accurate point-to-point mapping between views is estimated, with multiple images registered using only information contained within the images themselves. The performances of the proposed methods are evaluated using benchmark evaluation techniques. A software application called the SOLARSTUDIO has been developed to integrate and run all the methods introduced in this thesis. SOLARSTUDIO offers a number of useful image processing tools associated with activities highly focused on solar images including: Active Region (AR) segmentation, anaglyph creation, solar limb extraction, solar events tracking and video creation.
机译:太阳对地球上的生命至关重要,并且被许多学科的科学家研究过。它在各种可观测的尺度,时间尺度和波长上展现出各种现象,并且由于技术的发展,太阳数据可用于研究的速率不断提高,这既带来了机遇,也带来了挑战。最近发射的用于观测太阳的两颗卫星是STEREO(太阳地球关系天文台),可从两个不同的角度提供SUN的同时观测;还有SDO(太阳动力天文台),其目的是研究小尺度,小时间和多波长的太阳大气。 。 STEREO和SDO任务以每天约15 GB(最初是每天30 GB)和每天1.5 TB的速率提供大量数据。在高空间和高时间分辨率下有效访问这些庞大的数据量对于支持科学发现很重要,但需要越来越高效的工具来浏览,定位和处理特定数据集。 ud本文研究了用于处理多个信息的新技术的发展。和相同场景的重叠图像以产生质量更高的图像。该区域通常称为“超分辨率(SR)”,它提供了一种减少伪影并提高空间分辨率的技术。另一个挑战是从未校准的SR图像对生成3D图像,例如浮雕。这里介绍了一种自动生成SR图像的方法。 SR技术包括三个阶段:图像配准,内插和滤波。然后介绍了一种从未经校准的图像对中生成增强的,接近实时的3D太阳图像的方法。 ud图像配准是SR和浮雕处理中必不可少的步骤。估计了视图之间的准确点对点映射,其中仅使用图像自身包含的信息注册了多个图像。使用基准评估技术对提出的方法的性能进行评估。开发了一个名为SOLARSTUDIO的软件应用程序,以集成和运行本文介绍的所有方法。 SOLARSTUDIO提供了许多有用的图像处理工具,这些工具与高度关注太阳图像的活动有关,包括:活动区域(AR)分割,浮雕创建,太阳肢提取,太阳事件跟踪和视频创建。

著录项

  • 作者

    Zraqou Jamal Sami;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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