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ISS truss attached payload accoummodations overview

机译:ISS桁架附带的有效载荷整合概述

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摘要

One of the defining features of the International Space Station (ISS) is its capacity to accommodate long-term science in the external environment of space. The large truss structure spanning the vehicle is designed to support core system equipment such as solar arrays, thermal radiators, and the pressurized module structures. In addition to supporting core systems, the truss structure also accommodates four attached payload facilities and two logistics carriers. This paper foucses on the cpabilities of the ISS in accommodating externally attached science payloads, defines the locations where experiments can be conducted, explains the environment wherein typical experiments will be performed, and identified the payload interfaces and access to resources such as power and data. The paper will also summarize the robotic accommodations which will support attached payloads and describes tpyical procedures for installation of the payloas onto the sites. Finally, the paper will provide a summary description of the attach sites on the NASDA Exposed facility and the potential for sue of alternative attach sites on the ISS.
机译:国际空间站(ISS)的主要特征之一是其在空间外部环境中适应长期科学的能力。横跨车辆的大型桁架结构旨在支持核心系统设备,例如太阳能电池板,散热器和加压模块结构。除了支持核心系统外,桁架结构还可以容纳四个附加的有效载荷设施和两个物流载体。本文着重介绍了ISS在容纳外部附着的科学有效载荷方面的能力,定义了可以进行实验的位置,解释了将进行典型实验的环境,并确定了有效载荷接口以及对资源(例如电源和数据)的访问权限。该论文还将总结将支持附加有效载荷的机器人设备,并描述将Payloas安装到现场的典型程序。最后,本文将简要介绍NASDA暴露设施上的附着点,以及在ISS上起诉其他附着点的可能性。

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