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Advanced Processing of Images Obtained from Wide-field Astronomical Optical Systems

机译:从广角天文光学系统获得的图像的高级处理

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摘要

The principal aim of this paper is to present a general view of the special optical systems used for acquiring astronomical image data, commonly referred to as WFC or UWFC (Ultra Wide Field Camera), and of their transfer characteristics. UWFC image data analysis is very difficult in general, not only because the systems have so-called space variant (SV) properties. Images obtained from UWFC systems are usually incorrectly presented due to a wide range of optical aberrations and distortions. The influence of the optical aberrations increases towards the margins of the field of view. These aberrations distort the point spread function of the optical system and rapidly cut the accuracy of the measurements. This paper deals with simulation and modelling of the UWFC optical systems used in astronomy and their transfer characteristics.
机译:本文的主要目的是提供用于获取天文图像数据的特殊光学系统(通常称为WFC或UWFC(超广角摄像机))的一般视图及其传输特性。通常,UWFC图像数据分析非常困难,不仅因为系统具有所谓的空间变异(SV)属性。由于宽范围的光学像差和畸变,从UWFC系统获得的图像通常显示不正确。光学像差的影响朝着视场的边缘增加。这些像差使光学系统的点扩展功能失真,并迅速降低了测量精度。本文讨论了用于天文学的UWFC光学系统的模拟和建模及其传输特性。

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  • 来源
    《Acta Polytechnica》 |2011年第2期|p.90-96|共7页
  • 作者

    M. Rerabek; P. Pata;

  • 作者单位

    Czech Technical University in Prague Faculty of Electrical Engineering Department of Radio Engineering Technicka 2, 166 27 Prague 6, Czech Republic;

    Czech Technical University in Prague Faculty of Electrical Engineering Department of Radio Engineering Technicka 2, 166 27 Prague 6, Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    psf; uwfc; zernike polynomial; aberration; space variant; deconvolution algorithm;

    机译:psf;uwfc;泽尼克多项式像差空间变体反卷积算法;

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