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The optical antenna system Design research on earth integrative network laser link in the future

机译:未来地球集成网络激光链路的光天线系统设计研究

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Earth integrated information network can be real-time acquisition, transmission and processing the spatial information with the carrier based on space platforms, such as geostationary satellites or in low-orbit satellites, stratospheric balloons or unmanned and manned aircraft, etc. It is an essential infrastructure for China to constructed earth integrated information network. Earth integrated information network can not only support the highly dynamic and the real-time transmission of broadband down to earth observation, but the reliable transmission of the ultra remote and the large delay up to the deep space exploration, as well as provide services for the significant application of the ocean voyage, emergency rescue, navigation and positioning, air transportation, aerospace measurement or control and other fields.Thus the earth integrated information network can expand the human science, culture and productive activities to the space, ocean and even deep space, so it is the global research focus. The network of the laser communication link is an important component and the mean of communication in the earth integrated information network. Optimize the structure and design the system of the optical antenna is considered one of the difficulty key technologies for the space laser communication link network. Therefore, this paper presents an optical antenna system that it can be used in space laser communication link network.The antenna system was consisted by the plurality mirrors stitched with the rotational paraboloid as a substrate. The optical system structure of the multi-mirror stitched was simulated and emulated by the light tools software. Cassegrain form to be used in a relay optical system. The structural parameters of the relay optical system was optimized and designed by the optical design software of zemax. The results of the optimal design and simulation or emulation indicated that the antenna system had a good optical performance and a certain reference value in engineering. It can provide effective technical support to realize interconnection of earth integrated laser link information network in the future.
机译:地球综合信息网可以通过基于空间平台的载体,例如对地静止卫星或低轨道卫星,平流层气球或无人驾驶和有人驾驶飞机等,与载体实时采集,传输和处理空间信息。这是必不可少的中国建设地球综合信息网的基础设施。地球综合信息网不仅可以支持宽带到地观测的高动态和实时传输,而且还可以支持超远程的可靠传输和直到深空探测的大延迟,并为卫星提供服务。海上航行,紧急救援,导航定位,航空运输,航天测控等领域的重要应用,因此地球综合信息网可以将人类的科学,文化和生产活动扩展到太空,海洋乃至深空,因此它是全球研究的重点。激光通信链路网络是地球综合信息网络中的重要组成部分和通信手段。优化结构和设计光天线系统被认为是空间激光通信链路网络的难点关键技术之一。因此,本文提出了一种可以在空间激光通信链路网络中使用的光学天线系统。该天线系统由多个以旋转抛物面为基底的反射镜组成。通过光学工具软件对拼接后的多镜光学系统结构进行了仿真和仿真。卡塞格伦形式用于中继光学系统。中继光学系统的结构参数是通过zemax的光学设计软件进行优化和设计的。最佳设计,仿真或仿真结果表明,该天线系统具有良好的光学性能,在工程上具有一定的参考价值。它可以为将来实现地球集成激光链路信息网络的互连提供有效的技术支持。

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