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Performance Degradation of Typical 1550 nm Optical Intersatellite Communication Systems in Space Ionizing Radiation Environment

机译:空间电离辐射环境中典型的1550 nm卫星间光通信系统的性能下降

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摘要

Space ionizing radiation impact on the on-orbit performance of 1550 nm on off keying, differential phase shift keying, and homodyne binary phase shift keying (BPSK) based optical intersatellite communication systems is studied in this paper. Essential optoelectronic devices involved in optical communication systems were irradiated by Co gamma ray to a total dose of 30 krad and the related ionizing radiation damage factors are obtained according to theoretical analyses. On this basis, ionizing radiation induced communication terminal degradation and system performance degradation are simulated. Subsequently, the ionizing radiation environment of four typical orbits is analyzed and the on-orbit performances of different intersatellite communication links are further obtained and discussed. The result shows the necessity of enhancing radiation protection of EDFAs, optical transmitters, and terminals located on GEO and HEO satellites, and it also shows the superiority of homodyne BPSK scheme against space ionizing radiation environment.
机译:本文研究了空间电离辐射对基于键控,差分相移键控和基于零差二进制相移键控(BPSK)的卫星间光通信系统的1550 nm轨道性能的影响。用Coγ射线辐照光通信系统中涉及的基本光电器件,总剂量为30 krad,并根据理论分析获得相关的电离辐射损伤因子。在此基础上,模拟了电离辐射引起的通信终端性能下降和系统性能下降。随后,分析了四个典型轨道的电离辐射环境,并进一步获得并讨论了不同卫星间通信链路的在轨性能。结果表明,增强对GEO和HEO卫星上的EDFA,光发射机和终端的辐射防护的必要性,也表明零差BPSK方案对空间电离辐射环境的优越性。

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