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Comparison of full-aperture interferometry of sub-aperture stitched interferometry for a large diameter fast mirror

机译:大直径快速镜子缝合干涉干涉法的全孔径干涉测量

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The Herschel Space Observatory (formerly known as FIRST) consists of a 3.5 m space telescope. Stitching sub aperture interferograms may offer considerable cost savings during testing of the flight telescope as compared to other techniques. A comparative demonstration is presented of interferogram stitching techniques that enable a composite map of a 3-D surface to be assembled from a sequence of sub-aperture measurements. This paper describes the fundamental procedures for stitching together component data sets and demonstrates such techniques with real data sets. A set of 14 sub-aperture measurements was made of a 2 m diameter all-composite mirror developed as part of the Herschel Space Observatory program and two different stitching software packages were employed to stitch together the sub-aperture surface maps. The software packages differ fundamentally in the way the sub-aperture maps are three-dimensionally stitched, one employing a local technique and the other using a global technique. The processed results from both algorithms are compared with each other and with a full-aperture reference measurement made of the same test optic. A summary of the results is presented and potential modifications and enhancements to the stitching techniques are discussed.
机译:Herschel Space天文台(以前称为第一个)包括3.5米的望远镜。缝合子光圈干涉图可能在与其他技术相比的飞行望远镜测试期间提供相当大的成本节省。对比较示范提出了干扰图缝合技术,其使得从一系列子孔径测量序列组装3-D表面的合成贴图。本文介绍了拼接组件数据集的基本程序,并演示了具有实际数据集的这种技术。一组14个子孔径测量由2米直径的全复合镜制成,作为HERSCHEL空间观测程序的一部分开发,并且采用两个不同的拼接软件包将子孔径表面图缝合在一起。软件包在根本上不同地不同,子孔径图是三维缝合的方式,其中一个采用本地技术,另一个使用全局技术。两个算法的处理后的结果彼此比较,并且具有由相同的测试光学制成的全孔径参考测量。讨论了结果的概述,并讨论了对拼接技术的潜在修改和增强。

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