首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Large-aperture double-focus laser collimator for PAT performance testing of inter-satellite laser communication terminal
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Large-aperture double-focus laser collimator for PAT performance testing of inter-satellite laser communication terminal

机译:大孔径双焦点激光准直仪,用于星际激光通信终端的PAT性能测试

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摘要

A laser collimator is necessary for testing and verification of the pointing, acquisition and tracking (PAT) performance of inter-satellite laser communication terminals on the ground. The laser collimator must have a large clear aperture to fit the PAT performance testing system. The PAT subsystem has a large field of view for the acquisition and a high angular accuracy for the fine tracking. To resolve the conflict between large field of view and fine angular resolution, a large-aperture double-focus laser collimator is proposed and its optical design and mechanical structure are described. The collimator mainly consists of a primary lens, a reflector, a beam-splitting plate, a secondary lens, two compensating lenses, two imaging sensors and a laser. The primary lens directly forms the long focal length arm of the collimator. The combination of the primary lens and the secondary lens form the short focal length arm of the collimator. The collimator has an angular resolution <0.75 μrad and a 10 mrad field of view. For the collimator, the incident beam is focused on the two imaging sensors by its two arms, and the beam emitted from the laser is collimated and transmitted. The collimator is combined with an optical scanner and a fine beam deflector to test and verify the PAT performance of the inter-satellite laser communication terminal in a full physical manner.
机译:为了测试和验证地面上的卫星间激光通信终端的指向,获取和跟踪(PAT)性能,必须使用激光准直仪。激光准直仪必须具有较大的通光孔径以适合PAT性能测试系统。 PAT子系统具有较大的采集视野,并且具有良好的角度精确跟踪功能。为了解决大视场与精细角分辨率之间的矛盾,提出了一种大口径双焦点激光准直仪,并对其光学设计和机械结构进行了描述。准直仪主要由一个主透镜,一个反射镜,一个分束板,一个辅助透镜,两个补偿透镜,两个成像传感器和一个激光器组成。主透镜直接形成准直仪的长焦距臂。主透镜和副透镜的组合形成准直仪的短焦距臂。准直仪的角分辨率<0.75μrad,视野为10 mrad。对于准直仪,入射光束的两个臂将其聚焦在两个成像传感器上,然后将从激光发射的光束准直并透射。准直仪与光学扫描仪和细光束偏转器结合在一起,以完全物理的方式测试和验证卫星间激光通信终端的PAT性能。

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