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Acquisition performance analysis for intersatellite optical communications with vibration influence

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【作者】 马晶陆高原于思源谭立英付玉龙黎发军

【Author】 Jing Ma;Gaoyuan Lu;Siyuan Yu;Liying Tan;Yulong Fu;Fajun Li;National Key Laboratory of Tunable Laser Technology,Harbin Institute of Technology;

【通讯作者】 陆高原;

【机构】 National Key Laboratory of Tunable Laser Technology,Harbin Institute of Technology

【摘要】 A stable and accurate pointing, acquisition system is an important part of initially building intersatellite optical communication links. Satellite platform vibration can cause the system instability and reduce the system precision in building and maintenance of a satellite optical communication system. In this paper, vibration influence is consciously discussed by acquisition time for intersatellite optical communications. Analytical expression of acquisition possibility is derived, taking the scan parameters and platform vibration into account, and vibration influence on the multi-scan acquisition time is also presented. The theoretical result calculated by the proposed analytical expression is approximate to the result by the Monte Carlo simulation.

【Abstract】 A stable and accurate pointing, acquisition system is an important part of initially building intersatellite optical communication links. Satellite platform vibration can cause the system instability and reduce the system precision in building and maintenance of a satellite optical communication system. In this paper, vibration influence is consciously discussed by acquisition time for intersatellite optical communications. Analytical expression of acquisition possibility is derived, taking the scan parameters and platform vibration into account, and vibration influence on the multi-scan acquisition time is also presented. The theoretical result calculated by the proposed analytical expression is approximate to the result by the Monte Carlo simulation.

【基金】 Project supported by the Program of Excellent Team in Harbin Institute of Technology,China
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2020年01期
  • 【分类号】TN929.1
  • 【被引频次】3
  • 【下载频次】55
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