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Off-axis surface tolerance analysis: tips and tricks

机译:离轴表面公差分析:提示和技巧

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Off-axis and eccentric pupil optical configurations are becoming more and more used in a variety of applications, in particular they are the most preferred solution for cameras devoted to study planetary surfaces, small solar system bodies (i.e. asteroids and comets) and also the atmospheres of the exoplanets. These optical designs, being devoid of central obstruction, are able to guarantee better PSF and MTF performance, and thus higher contrast imaging capabilities with respect to classical on-axis designs. In particular they are suitable for looking at extended targets with intrinsic low contrast features, or scenes where a high dynamic signal range is present. The tolerance analysis tools available in most of the commercial raytracing software packages are able to deal automatically with on-axis surfaces, but they have to be adapted for considering the off-axis cases. In particular, some tricks have to be considered in the definition of the off-axis surfaces to obtain the correct tolerance results when the way in which the surfaces are manufactured and/or mounted needs to be taken into account. For example, an off-axis section of a conic surface can be either obtained by cutting an off-axis piece from a large on-axis parent element or, as it is more common nowadays, by manufacturing it stand-alone. In this paper, a review of the tricks that the author has devised during her twenty-year experience in designing and tolerancing off-axis systems will be given. In particular the methods adopted to deal with the surface tolerance analysis of some off-axis instruments for space applications will be described in detail.
机译:偏轴和偏心瞳孔光学配置正越来越多地用于各种应用中,特别是它们是专用于研究行星表面,小型太阳系物体(即小行星和彗星)以及大气的相机的首选解决方案系外行星。这些光学设计没有中心障碍,能够保证更好的PSF和MTF性能,从而相对于经典的同轴设计具有更高的对比度成像功能。特别是,它们适用于查看具有固有的低对比度功能的扩展目标,或存在高动态信号范围的场景。大多数商业射线跟踪软件包中提供的公差分析工具能够自动处理轴上曲面,但必须进行调整以考虑轴外情况。特别地,当需要考虑制造和/或安装表面的方式时,必须在离轴表面的定义中考虑一些技巧以获得正确的公差结果。例如,圆锥形表面的离轴截面可以通过从较大的轴上父元素上切割一个离轴件来获得,也可以通过单机制造来获得,这在当今更为普遍。在本文中,将对作者在其二十年设计和容忍离轴系统的经验中所设计的技巧进行综述。特别地,将详细描述用于处理空间应用的某些离轴仪器的表面公差分析的方法。

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