中国空间科学技术 ›› 2026, Vol. 46 ›› Issue (2): 90-98.doi: 10.16708/j.cnki.1000-758X.2026.0027

• 载人月球探测专刊 • 上一篇    下一篇

着陆起飞综合验证器通信系统设计与应用

刘彦伟1,*,黄震1,许健1,孙兴亮1,慕春辉2   

  1. 1.北京空间飞行器总体设计部,北京100094
    2.山东航天电子技术研究所,烟台264670
  • 收稿日期:2025-10-14 修回日期:2025-11-10 录用日期:2025-11-21 发布日期:2026-03-20 出版日期:2026-03-31

Design and application of communication system for landing and ascending integrated validation spacecraft

LIU Yanwei1,*,HUANG Zhen1,XU Jian1,SUN Xingliang1,MU Chunhui2   

  1. 1.Beijing Institute of Spacecraft System Engineering, Beijing 100094, China
    2.Shandong Institute of Aerospace Electronics Technology, Yan’tai 264670, China
  • Received:2025-10-14 Revision received:2025-11-10 Accepted:2025-11-21 Online:2026-03-20 Published:2026-03-31

摘要: 针对揽月着陆器地面着陆起飞试验的指令遥测传输可靠性要求高、未配置射频测控链路设备、地面总控系统状态无法更改等条件约束,为了在试验中实现综合验证器与地面之间高可靠、低延迟的数据通信,提出一种基于时间触发以太网(Time-Triggered Ethernet,TTE)和同步串口的有线通信系统设计方法。分别在器上、地面配置通用化的光电转换设备,对TTE、串口信号分类识别并转换成光信号,通过光缆实现综合验证器平台与地面总控系统的远距离有线互连互通,构建高速率、低延迟、多冗余的器地通信链路,为控制指令、遥测状态、各类图像提供高可靠的传输通道。经过地面多次点火飞行试验,器地通信速率最高支持100Mbit/s、数据延迟小于6ms,验证了方法的合理性、正确性,既节省了研制经费、又为揽月着陆器圆满完成地面着陆起飞试验提供了有力保证,相关内容也可为后续探月、探火航天器研制试验设计提供借鉴。

关键词: 着陆起飞, 综合验证器, 通信系统, 时间触发以太网, 光电转换

Abstract: In response to the stringent requirements for reliable command and telemetry transmission during ground landing and ascending experiments of the LY Lunar Lander, alongside constraints including the absence of RF telemetry and tracking link equipment and the inability to modify the ground control system's status, a wired communication system design methodology based on Time-Triggered Ethernet (TTE) and synchronous serial interfaces was proposed, aiming to high-reliability, low-latency data communication between the integrated validator and the ground during the experiment. Generalized optoelectronic conversion devices were deployed both on the spacecraft and on the ground, classifying and recognizing TTE and serial port signals, and converting them into optical signals. These signals were transmitted via fiber optic cables to establish long-distance, wired interconnection between the integrated validator platform and the ground control system. A high-speed, low-latency, multi-redundant spacecraft-to-ground communication link was established, which providing a highly reliable transmission channel for control commands, telemetry status, and various image data. After multiple ground firing tests, the spacecraft-to-ground communication system achieves a maximum rate of 100Mbit/s and data latency below 6 milliseconds. The results validate the rationality and correctness of the proposed methodology, significantly reducing development costs while ensuring the successful completion of the LY Lunar Lander's ground landing and ascending experiments. The method also offers valuable reference for the design of future lunar and Martian exploration spacecraft.

Key words: landing and ascending, integrated validator, communication system, TTE, optoelectronic conversion