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On-Orbit Upgrade and Repair: The Hubble Space Telescope Example

机译:在轨升级和维修:哈勃太空望远镜示例

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摘要

From the Hubble Space Telescope (HST) example, a model of a serviceable scientific mission is developed to study on-orbit repair and upgrading, including spacecraft repair, payload instrument upgrading, and bus subsystems upgrading. Mission utility is measured by the onboard payload instrument discovery efficiency. A Monte Carlo simulation is used to model uncertainty in the arrival of new technologies, random spacecraft failures, and catastrophic failures of a servicing operation. The value of the option to repair and upgrade, as well as the impact of different design choices, is investigated using actual data from the HST manned servicing missions. The main differences between manned and unmanned servicing missions are then analyzed in an attempt to derive conclusions for robotic on-orbit servicing of scientific missions. In light of the cases examined, designing for serviceability exclusively for satellite repair does not seem very valuable. In contrast, upgrading can significantly increase mission utility especially if the technology embedded in the serviceable modules is evolving rapidly. Technology upgrades via on-orbit servicing have been identified as a very promising concept. Large increases in mission utility can be realized for a cost significantly lower than the cost of replacing the whole satellite.
机译:以哈勃太空望远镜(HST)为例,开发了一种可服务的科学飞行任务模型,用于研究在轨修复和升级,包括航天器修复,有效载荷仪器升级和总线子系统升级。任务效用由机载有效载荷仪器发现效率来衡量。蒙特卡洛模拟用于对新技术的到来,不确定的航天器故障以及维修操作的灾难性故障进行建模。维修和升级选项的价值以及不同设计选择的影响,是使用来自HST有人值守服务任务的实际数据进行调查的。然后,分析了有人值守和无人值守任务之间的主要区别,以期得出科学任务的机器人在轨服务结论。根据所审查的情况,专门为卫星维修设计可维修性似乎没有什么价值。相比之下,升级可以显着提高任务的实用性,尤其是当可维护模块中嵌入的技术发展迅速时。通过在轨维修进行技术升级已被确认为非常有前途的概念。可以以大大低于更换整个卫星的成本来实现任务效用的大幅增加。

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