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EVA Design, Verification, and On-Orbit Operations Support Using Worksite Analysis

机译:使用工地分析的EVA设计,验证和在轨操作支持

摘要

The International Space Station (ISS) design is a very large and complex orbiting structure with thousands of Extravehicular Activity (EVA) worksites. These worksites are used to assemble and maintain the ISS. The challenge facing EVA designers was how to design, verify, and operationally support such a large number of worksites within cost and schedule. This has been solved through the practical use of computer aided design (CAD) graphical techniques that have been developed and used with a high degree of success over the past decade. The EVA design process allows analysts to work concurrently with hardware designers so that EVA equipment can be incorporated and structures configured to allow for EVA access and manipulation. Compliance with EVA requirements is strictly enforced during the design process. These techniques and procedures, coupled with neutral buoyancy underwater testing, have proven most valuable in the development, verification, and on-orbit support of planned or contingency EVA worksites.
机译:国际空间站(ISS)的设计是一个非常大且复杂的轨道结构,有成千上万的舱外活动(EVA)工作场所。这些工地用于组装和维护国际空间站。 EVA设计师面临的挑战是如何在成本和进度范围内设计,验证和操作支持如此众多的工地。通过在过去十年中成功开发和使用的计算机辅助设计(CAD)图形​​技术的实际使用,解决了这一问题。 EVA设计过程允许分析人员与硬件设计人员同时工作,以便可以合并EVA设备并对其结构进行配置以允许EVA访问和操纵。在设计过程中,必须严格遵守EVA要求。这些技术和程序,再加上中性浮力水下测试,已被证明对计划或应急EVA工地的开发,验证和在轨支持最有价值。

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