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太阳热流抑制在地球同步轨道卫星的光学天线上的激光传感器
Ming Liu1,2, Hongwei Zhao1, Chengwei Zhu2
1School of Mechanical and Aerospace Engineering, Jilin University, Changchun 130025, China.
Sensors (Basel, Switzerland)
|August 10, 2024
概括
本研究提出了一种组合的被动和主动热控制解决方案,用于在地球同步轨道 (GEO) 上的激光通信传感器上管理太阳能热量. 该策略确保光学天线温度稳定,每天可进行14小时以上的通信.
科学领域:
- 太空工程 太空工程
- 热管理 热管理
- 光学系统 光学系统
背景情况:
- 地质同步地球轨道 (GEO) 呈现了一个恶劣的太空辐射环境.
- 激光通信传感器需要精确的热控制以获得最佳性能.
- 太阳能热流是光学天线温度稳定的重大挑战.
研究的目的:
- 研究用于抑制激光通信传感器光学天线上的太阳热流的技术.
- 在GEO中分析太空辐射环境.
- 开发和验证光学天线的热控制解决方案.
主要方法:
- 对GEO空间辐射环境特征的分析.
- 开发一种组合的被动和主动热控制解决方案.
- 使用IDEAS-TMG软件与蒙特卡洛和辐射传热方法进行温度分布模拟.
- 关于避免阳光直接照射的策略的建议.
主要成果:
- 提出的热控制解决方案有效地管理了光学天线的温度场.
- 避免太阳能的策略有助于稳定的热性能.
- 模拟证实了长期的微稳定温度控制.
- 该系统实现了允许的通讯时间每天超过14小时.
结论:
- 综合的热控制和避阳策略有效地保持了光天线在GEO的温度稳定性.
- 这种方法可确保激光通信传感器在极端空间条件下可靠运行.
- 该研究提供了一个可行的解决方案,以提高基于太空的光通信系统的运行正常时间.
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