A Study on the Design and Implementation Technologies of EVA at the China Space Station

Xuedong Li, Yuan Xie, Yumo Tian, Fengjiang An
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Abstract

Extravehicular activity (EVA) is a key point and a difficult point for manned spaceflight tasks, as well as an inevitable trend in the development of the manned spaceflight industry. Equipment maintenance, load installation, and extravehicular routing inspection via EVA on the track are necessary to guarantee the safety and reliability of the long-term in-orbit operation of the China Space Station. In this paper, a comprehensive analysis was conducted on the features of multiple tasks, diverse working modes, and strong systematic coupling during the EVA of the China Space Station (CSS). On this basis, the design, implementation technologies’ development, and in-orbit performance evaluation during EVA were expounded. In the space station system, an extravehicular reliability verification and evaluation system suitable for the requirement for EVA under the conditions of China’s multi-mission, multi-module combination, and repairable spacecraft was constructed. Finally, the in-orbit EVA implementation of the China Space Station since the launch of the core module to the present was summarized, and the subsequent application of the extravehicular technologies in manned lunar landing projects and optical modules was anticipated.
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中国空间站舱外活动设计与实施技术研究
舱外活动(EVA)是载人航天任务的重点和难点,也是载人航天事业发展的必然趋势。通过轨道舱外活动进行设备维护、载荷安装和舱外路由检查,是保证中国空间站长期在轨运行安全可靠的必要手段。本文针对中国空间站舱外活动任务多、工作方式多样、系统耦合性强的特点进行了综合分析。在此基础上,阐述了 EVA 的设计、实施技术开发和在轨性能评估。在空间站系统中,构建了适合中国多任务、多模块组合、可修复航天器条件下舱外飞行可靠性验证与评估系统。最后,总结了中国空间站自核心舱发射至今的在轨 EVA 实施情况,并对后续舱外技术在载人登月工程和光学舱中的应用进行了展望。
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