地月空间频率资源利用现状及发展态势

    Current Status and Development Trend of Frequency Resource Utilization in Cislunar Space

    • 频率资源是支撑航天行业发展的核心战略资源之一, 随着作为国际热点的月球开发利用逐渐朝着规模化方向发展, 频率资源的需求愈发迫切. 然而, 在现有国际规则框架下, 可提供给月球规模化开发利用的频率资源非常有限, 供需矛盾日益加剧. 本文围绕国际地月空间频率资源申请现状、工程任务规划与实施情况开展系统性数据分析, 研究当前地月空间频率资源与SFCG (Space Frequency Coordination Group)月球区域频率划分建议的符合度, 分析地月空间频率资源的利用态势, 同时, 利用自主开发的频率兼容性仿真平台, 对国际上的典型任务进行了定量化干扰计算分析, 提出了后续地月空间探测、开发利用等领域的用频建议, 为相关工程任务的规范有序实施提供参考.

       

      Abstract: Frequency resources, as non-renewable strategic assets, play a vital role in supporting aerospace industry development. With lunar exploration and resource utilization emerging as a global priority, demand for cislunar frequency resources has evolved significantly. Originally serving limited exploratory missions and space research, these resources now face growing demands from large-scale projects including space infrastructure construction, in-situ resource extraction, and sustained manned/unmanned lunar operations. However, current international regulations severely constrain the availability of frequency resources for extensive lunar development, resulting in an increasingly acute supply-demand imbalance. Systematic analysis of space networks (frequency application data, including advance publication information, notification information, etc.) is conducted for the planning and on-orbit cislunar exploration missions, and a correlation between space networks and cislunar exploration missions is established. It is found that far more frequency resources are declared by China and the United States than by other countries, while declared assignments concentrate within S-band and X-band ranges. By studying the conformity of the declared frequency bands with the Space Frequency Coordination Group (SFCG) recommendation for lunar region frequency allocation, we find that more than 96% of the space networks listed in this paper contain at least one SFCG-recommended assignment, and the declared link types (such as earth-lunar orbit link, lunar surface-lunar orbit link, etc.) are also included in the SFCG recommendation. Based on calculations conducted on the self-developed frequency compatibility simulation platform, the quantitative interference analysis of typical lunar missions is carried out. The simulation result reflects that the co-band interference of the lunar orbit to the lunar surface link at the south pole of the moon is serious, and it is difficult to avoid the interference through spatial isolation. Based on the current space networks of cislunar frequency resources and quantitative simulation results, the follow-up suggestions for utilization of frequency resources in the fields of cislunar exploration, development and utilization are proposed, which provide a reference for the standardized and orderly implementation of future missions.

       

    /

    返回文章
    返回