行星漫游车出口过程的现场验证

Z. Dang, Jirong Zhang, Baichao Chen
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引用次数: 0

摘要

在行星飞船降落在行星表面后,飞船上携带的漫游车将在经过复杂的自测程序后通电并到达行星表面。为了验证这些程序,应该在试验场建立测试条件。介绍了行星漫游车出口过程现场验证的技术体系。首先,介绍了中国月球车的出口流程。典型的程序包括:解锁漫游车本体固定机构、通过着陆器给漫游车通电、解锁漫游车典型机构(桅杆、机械手)、与地球或中继轨道器通信等几个步骤。在对漫游车性能进行评估后,漫游车可以被控制并行走到行星表面。其次,给出了低重力系统、综合测试系统、月球车模型及其辅助设备、模拟着陆器等现场验证系统。第三,介绍了现场试验条件,包括地形坡度、障碍物分布、模拟着陆器位置等。展示了中国月球车和火星月球车的测试结果。最后,介绍了中国月球车和火星月球车的退出过程。中国月球车“嫦娥三号”玉兔首次建立了现场验证磨损技术体系,并对“朱戎”火星车进行了改进。该技术系统运行良好,可为今后行星探测车的研制提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field Validation of Egress Process for Planetary Rover
After the planetary spacecraft landed on the surface, the rovers carried on the spacecraft will be powered up and arrived to the planetary surface after complex self-testing procedures. In order to validation of these procedures, the test conditions should be built in the proving ground. The technical systems of field validation for egress process of planetary rover are shown in this paper. Firstly, the Chinese rover egress procedures are described. The typical procedures include several steps such as the unlocked the fixed mechanisms of the rover body, powered up the rover through the lander, unlocked the rover typical mechanism (mast, manipulator), communicated with the earth or relay orbiter, etc. After the rover performance were reviewed, the rover can be controlled and walked to the planetary surface. Secondly, the field validation systems are given including such as the low gravity system, the integrated testing system, the rover model with its assistant equipment, the simulated lander, etc. Thirdly, the conditions of field tests are described including the slope of terrain surface, the obstacle distribution, the position of simulated lander, etc. The test results of Chinese lunar and Martian rover were shown. Finally, the egress process of Chinese rovers on Moon and Mars are described. The technical systems of field validation wear built firstly for Chinese lunar rover Chang’e-3 Yutu and improved for Chinese Martian rover Zhurong. The technical systems work well and can be used for the development of planetary rover in the future.
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