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Baffle Design for a Cassegrain Telescope

机译:卡塞格林望远镜的挡板设计

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The baffle design and analysis of a panchromatic push-broom camera were investigated for a Cassegrain telescope in this paper. A specially designed flower-look baffle is surrounded by the hole of the primary mirror and secondary mirror. With this design, the flower-look baffle can block the direct-hit stray light and reduce the off-axis field of view (FOV) vignetting. The modulation transfer function (MTF) of this design is increased 10 % as compared to the performance of the traditional baffles. This camera is equipped with a large field of view (FOV) which can get a wide swath and can provide high-resolution image for observation and monitoring of environmental pollution and disaster. The optical system assembly (OSA) of the camera is a kind of Cassegrain telescope which contains two reflection mirrors and five corrected lenses. Compared with other off-axis telescopes, this traditional optical configuration can be manufactured and aligned much easily. In a large FOV Cassegrain design, the central hole of the primary mirror is larger than that in a traditional Cassegrain design. The rays out from FOV pass though the central hole easily and reach the focal plan assembly (FPA) directly. This kind of stray light carries strong energy flux which significantly reduces the image performance. A baffle subsystem is needed in order to avoid the direct stray light exposure. The performance evaluation of the baffle system and the MTF comparison results from two kinds of baffle shapes are included in this study. It indicates that the flower-look shape is more efficient in keeping the relative illumination and MTF than traditional tube shape. The maximum benefit of the flower-look baffle is found for increasing off-axis tangential MTF.
机译:本文对卡塞格伦望远镜的全色推扫式相机的挡板设计和分析进行了研究。主反射镜和辅助反射镜的孔围绕着经过特殊设计的花朵状挡板。通过这种设计,花朵状的挡板可以阻挡直射的杂散光并减少离轴视场(FOV)渐晕。与传统挡板的性能相比,该设计的调制传递函数(MTF)提高了10%。这款摄像机配备了大视野(FOV),可以实现广阔的视野,并且可以提供高分辨率图像,用于观察和监视环境污染和灾难。相机的光学系统组件(OSA)是一种Cassegrain望远镜,它包含两个反射镜和五个校正透镜。与其他离轴望远镜相比,这种传统的光学配置可以很容易地制造和对准。在大型FOV卡塞格林设计中,主镜的中心孔比传统卡塞格林设计的大。从FOV射出的光线很容易穿过中心孔,并直接到达焦平面组件(FPA)。这种杂散光会携带很强的能量通量,从而大大降低图像性能。为了避免直接杂散光暴露,需要一个挡板子系统。本研究包括挡板系统的性能评估以及两种挡板形状的MTF比较结果。这表明花形形状在保持相对照度和MTF方面比传统的管状形状更有效。花形挡板的最大好处是增加离轴切向MTF。

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