首页> 外文会议>Space Telescopes and Instrumentation I: Optical, Infrared, and Millimeter pt.2 >A novel optical design for planetary surface stereo-imaging: preliminary design of the Stereoscopic Imaging Channel of SIMBIOSYS for the BepiColombo ESA mission
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A novel optical design for planetary surface stereo-imaging: preliminary design of the Stereoscopic Imaging Channel of SIMBIOSYS for the BepiColombo ESA mission

机译:用于行星表面立体成像的新颖光学设计:用于BepiColombo ESA任务的SIMBIOSYS立体成像通道的初步设计

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摘要

The optical design of the STereoscopic imaging Channel (STC) of the imaging/spectroscopic system SIMBIOSYS for the ESA BepiColombo mission is presented. The main aim of this system is the global stereo mapping of planet Mercury surface during the BepiColombo mission lifetime. The instrument consists of two identical cameras looking at ±20° from nadir which are sharing some optical components and the detector. The instrument has a 23"/pixel scale factor, corresponding to 50 m/px at 400 km from the surface, on a 4° x 4° FoV; imaging in four different spectral bands, between 540 nm and 890 nm, is foreseen. The STC optical characteristics guarantee global stereo mapping of the whole Mercury surface with all the filters. The coupling of an achromatic air-spaced doublet with a relay lens system allows good aberration balancing over all the field of view: the diffraction Ensquared Energy inside one pixel of the detector is of the order of 80%. In addition, an intermediate field stop gives the possibility of designing an efficient baffling system for straylight rejection. To cope with the hazardous radiation environment in which the spacecraft will be immersed in during the mission, all the glasses selected for the design are rad-hard type. A preliminary tolerance analysis has also been undertaken showing a low criticality level for manufacturing, alignment and stability of the system.
机译:介绍了用于ESA BepiColombo任务的成像/光谱系统SIMBIOSYS的立体成像通道(STC)的光学设计。该系统的主要目的是在BepiColombo任务寿命期间对水星表面进行全球立体映射。该仪器由两个相同的摄像头组成,它们与最低点成±20°角,它们共享一些光学组件和检测器。该仪器在4°x 4°FoV上具有23英寸/像素的比例因子,对应于距表面400 km处的50 m / px,在4°x 4°FoV上;可预见在540 nm至890 nm之间的四个不同光谱带中成像。 STC的光学特性保证了整个水银表面与所有滤镜的立体映射,消色差空双透镜与中继透镜系统的耦合可以在所有视场上实现良好的像差平衡:一个像素内的衍射平方能量探测器的高度大约为80%,此外,中间的场停止装置还可以设计一种有效的挡板系统来抑制杂散光,以应对航天飞机在执行任务时将其浸入其中的危险辐射环境,设计中选择的所有玻璃都是抗辐射型,还进行了初步的公差分析,显示出对于制造,对准和系统稳定性的低临界水平。

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