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A novel design of dual-channel optical system of star-tracker based on non-blind area PAL system

机译:基于非盲区PAL系统的星跟踪器双通道光学系统新颖设计

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Star-tracker plays an important role in satellite navigation. Considering the satellites on near-Earth orbit, the system usually has two optical systems: one for observing the profile of Earth and the other for capturing the positions of stars. In this paper, we demonstrate a novel kind of dual-channel optical observation system of star-tracker with non-blind area PAL imaging system based on dichroic filter, which can combine both different observation channels into an integrated structure and realize the feature of miniaturization. According to the practical usage of star-tracker and the features of dichroic filter, we set the ultraviolet band as the PAL channel to observe the Earth with the FOV ranging from 40°-60°, and set the visible band as the front imaging channel to capture the stars far away from this system with the FOV ranging from 0°-20°. Consequently, the rays of both channels are converged on the same image plane, improving the efficiency of pixels of detector and reducing the weight and size of whole star-tracker system.
机译:Star-Tracker在卫星导航中起着重要作用。考虑到近地轨道上的卫星,系统通常具有两个光学系统:一个用于观察地球的轮廓,另一个用于捕获恒星的位置。在本文中,我们展示了具有基于二向色滤波器的非盲区PAL成像系统的星形跟踪器的新型双通道光学观察系统,其可以将两个不同的观察通道与集成结构相结合并实现小型化的特征。根据星形跟踪器的实际使用和二向色滤器的特点,我们将紫外频段设置为PAL通道,以观察到地球,使FOV范围为40°-60°,并将可见频带设置为前成像通道捕捉远离该系统的恒星,FOV范围为0°-20°。因此,两个通道的光线都在相同的图像平面上融合,提高了检测器的像素效率,并减小了整个星形跟踪系统的重量和尺寸。

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