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Quantification of the responsiveness of on-orbit servicing infrastructure for modularized earth-orbiting platforms

机译:模块化地球轨道平台在轨服务基础设施响应能力的量化

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摘要

This paper aims to quantify the responsiveness of two on-orbit servicing infrastructures providing services to multiple serviceable platforms in coplanar medium Earth orbit (MEO) and geostationary orbit (GEO). The platforms to be serviced are assumed to be made of elementary units (EUs). EUs are small standardized structural units capable of aggregating with each other and gathering the key functions of a typical satellite within the size of a 6U cubesat. The first servicing infrastructure considered in this paper, called "Without Depot" (WoD), includes a launch vehicle and a robotic servicer. The second servicing infrastructure, called "With Depot" (WD) includes a launch vehicle, a robotic servicer and an orbital depot of EUs. The responsiveness of these infrastructures is quantified using a queueing theory-based stochastic simulation on Simulink taking into account the launch and platform random failures. The metrics used to quantify the responsiveness are the service completion rate and the average waiting time before an EU is replaced over a 10-year period of operation. With respect to those metrics, it is demonstrated that WD is more responsive than WoD. However, WD is also shown to be likely to cost more than WoD. Finally, the sensitivity of the responsiveness of WD to the capacity of the orbital depot is analyzed to find the minimum storage capacity for which WD is the most responsive. This last result could be of interest for space designers dealing with the sizing of on-orbit servicing infrastructures. We believe that the concept introduced in this paper will be a critical milestone in the design of a responsive integrated space infrastructure dedicated to the development and prosperity of a new MEO/GEO economy.
机译:本文旨在量化为共面中地球轨道(MEO)和地球静止轨道(GEO)中的多个可服务平台提供服务的两个在轨服务基础设施的响应能力。假定要维修的平台由基本单元(EU)组成。欧盟是小型的标准化结构单元,能够相互聚集,并在6U立方体卫星的大小内收集典型卫星的关键功能。本文考虑的第一个维修基础设施称为“无仓库”(WoD),其中包括运载火箭和机器人维修人员。第二个维修基础设施称为“带仓库”(WD),包括运载火箭,机器人服务商和欧盟的轨道仓库。这些基础设施的响应能力是在Simulink上使用基于排队论的随机模拟进行量化的,其中考虑了启动和平台随机故障。用于量化响应能力的度量标准是服务完成率和10年运营期内更换欧盟之前的平均等待时间。关于这些指标,证明了WD比WoD响应更快。但是,WD的成本也可能比WoD高。最后,分析了WD响应能力对轨道仓库容量的敏感性,以找到WD响应能力最强的最小存储容量。对于处理在轨服务基础设施规模的空间设计人员而言,最后的结果可能是令人感兴趣的。我们认为,本文介绍的概念将是响应式综合空间基础设施设计中的一个重要里程碑,该基础设施致力于发展新的MEO / GEO经济并使其繁荣。

著录项

  • 来源
    《Acta astronautica》 |2017年第3期|192-203|共12页
  • 作者单位

    Univ Illinois, Dept Aerosp Engn, Urbana, IL 61801 USA;

    Univ Illinois, Dept Aerosp Engn, Urbana, IL 61801 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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