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The Design of Space Optical Communications Terminal with High Efficient

机译:高效空间光通信终端的设计

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In order to improve high-speed laser space optical communications terminal receive energy and emission energy, meet the demand of mini-type and light-type for space-based bear platform, based on multiple-reflect coaxial optical receiving antenna structure, while considering the installation difficulty, a high-efficient optical system had been designed, which aperture is off-axial, both signal-receiving sub-optical system and emission sub-optical system share a same primary optical path. By the separating light lens behind the primary optical path, the received light with little energy will be filtered and shaped and then transmitted to each detector, at the same time, by the coupling element, the high-power laser will be coupling into optical antenna, and then emitted to outside. Applied the power-detected optical system evaluate principle, the optimized off-axial optical system's efficiency had been compared with the coaxial optical system. While, analyzed the Gauss beam energy distribution by numerical theory, discussed that whether off-axis optical system can be an emission terminal, verify the feasibility of the theory of the design of the system.
机译:为了改善高速激光空间光通信终端接收能量和发射能量,满足迷你型和光型对空间的熊平台的需求,基于多反射同轴光接收天线结构,同时考虑到安装难度,设计了一种高效的光学系统,孔径偏离轴向,两个信号接收子光学系统和发射子光学系统共享相同的主光路。通过分离的光透镜在主光路后面,电能很小的接收光将被过滤并形状,然后通过耦合元件发送到每个检测器,然后通过耦合元件将高功率激光器耦合到光学天线中,然后在外面发射。应用了电力检测的光学系统评估原理,与同轴光学系统进行了比较优化的离轴光学系统的效率。虽然,通过数值理论分析了高斯光束能量分布,讨论了轴外光学系统是否可以是发射终端,验证系统设计理论的可行性。

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