中国空间科学技术 ›› 2025, Vol. 45 ›› Issue (4): 12-22.doi: 10.16708/j.cnki.1000-758X.2025.0054

• 冰巨星探测专题 • 上一篇    下一篇

冰巨星环绕探测任务分析及实施建议

杨孟飞1,高峰2,*,孟文沁2,李晖3,王宇贤3,白梵露2,王彤2   

  1. 1.中国空间技术研究院,北京100094
    2.北京空间飞行器总体设计部,北京100094
    3.中国科学院 国家空间科学中心,北京100190
  • 收稿日期:2025-03-18 修回日期:2025-04-11 录用日期:2025-04-21 发布日期:2025-07-22 出版日期:2025-08-01

Analysis and implementation recommendations for ice giant orbital exploration missions

YANG Mengfei1,GAO Feng2,*,MENG Wenqin2,LI Hui3,WANG Yuxian3,BAI Fanlu2,WANG Tong2   

  1. 1.China Academy of Space Technology,Beijing 100094,China
    2.Beijing Institute of Spacecraft System Engineering,Beijing 100094,China
    3.National Space Science Center,Beijing 100190,China
  • Received:2025-03-18 Revision received:2025-04-11 Accepted:2025-04-21 Online:2025-07-22 Published:2025-08-01

摘要: 冰巨星作为最接近太阳系边缘的行星,保存了大量太阳系形成初期的原始气体,包含了原恒星云的状态条件和行星形成的位置信息,是研究太阳系和系外行星的蓝本。针对冰巨星环绕探测任务,对国外相关探测方案进行了系统调研分析,梳理了冰巨星环绕探测的主要技术难点,并结合冰巨星及其卫星系统的科学问题,提出了中国实施冰巨星环绕探测的发展建议。针对冰巨星的探测任务,其科学价值集中体现在揭示冰巨星内部结构和形成演化,研究冰巨星的奇异磁场和复杂多变的空间环境以及探寻海卫一冰下海洋及生命信号。研究发现,冰巨星环绕探测主要面临远距离能源供给、测控通信、智能自主、高精度轨道设计等技术挑战。相关研究成果可为中国后续冰巨星环绕探测任务的规划与论证提供理论支持和决策参考。

关键词: 冰巨星, 天王星, 海王星, 行星探测, 太阳系

Abstract: As the planets situated closest to the edge of the solar system, the ice giants preserve a significant amount of primordial gases from the early stages of the solar system's formation, which contains valuable information about the conditions of the original protoplanetary nebula and the locations of planetary formation. Ice giants serve as a key reference for the study of both the solar system and exoplanets. This study systematically reviews and analyzes foreign exploration proposals for ice giant orbiting missions, identifies the main technical challenges associated with these missions; and based on the scientific questions about the ice giants and their satellite systems, offers development recommendations for China's implementation of ice giant orbiting exploration. The scientific value of ice giant exploration lies in its potential to reveal their internal structure and formation history, their unusual magnetic fields and complex, variable space environments, as well as the investigation of Triton's subsurface ocean and potential biosignatures. Key technical challenges are identified in the study, including long-distance energy supply, tracking and communication, autonomous intelligence, and high-precision orbital design. The theoretical support and decision-making guidance for China's future planning and implementation of ice giant orbiting exploration missions are provided by the findings of this research.

Key words: ice giants, Uranus, Neptune, planetary exploration, the solar system