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Designing the STS-134 Re-Rendezvous: A Preparation for Future Crewed Rendezvous Missions

机译:设计STS-134重交会:为未来的机组交会做准备

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In preparation to provide the capability for the Orion spacecraft, also known as the Multi-Purpose Crew Vehicle (MPCV), to rendezvous with the International Space Station (ISS) and future spacecraft, a new suite of relative navigation sensors are in development and were tested on one of the final Space Shuttle missions to ISS. The National Aeronautics and Space Administration (NASA) commissioned a flight test of prototypes of the Orion relative navigation sensors on STS-134, in order to test their performance in the space environment during the nominal rendezvous and docking, as well as a re-rendezvous dedicated to testing the prototype sensors following the undocking of the Space Shuttle orbiter at the end of the mission. Unlike the rendezvous and docking at the beginning of the mission, the re-rendezvous profile replicates the newly designed Orion coelliptic approach trajectory, something never before attempted with the shuttle orbiter. Therefore, there were a number of new parameters that needed to be conceived of, designed, and tested for this re-rendezvous to make the flight test successful. Additionally, all of this work had to be integrated with the normal operations of the ISS and shuttle and had to conform to the constraints of the mission and vehicles. The result of this work is a separation and re-rendezvous trajectory design that would not only prove the design of the relative navigation sensors for the Orion vehicle, but also would serve as a proof of concept for the Orion rendezvous trajectory itself. This document presents the analysis and decision making process involved in attaining the final STS-134 re-rendezvous design.
机译:为了为Orion飞船(也称为多用途乘员飞行器(MPCV))提供与国际空间站(ISS)和未来飞船交会的能力,正在开发一套新的相对导航传感器,并且已经在在向国际空间站进行的最后一次航天飞机飞行任务中进行了测试。美国国家航空航天局(NASA)委托在STS-134上对猎户座相对导航传感器的原型进行了飞行测试,以测试它们在名义交会和对接以及重新交会期间在太空环境中的性能。任务结束后,航天飞机脱离轨道飞行后,专门用于测试原型传感器。与任务开始时的会合和对接不同,重新会合的轮廓复制了新设计的Orion椭圆椭圆进场轨迹,这是航天飞机从未尝试过的。因此,为了使飞行测试成功,有很多新参数需要为此重新构思而设计,设计和测试。此外,所有这些工作都必须与国际空间站和航天飞机的正常运作相结合,并且必须遵守任务和车辆的约束条件。这项工作的结果是分离和重新交会的轨迹设计,该设计不仅可以证明Orion车辆的相对导航传感器的设计,而且可以用作Orion交会轨迹本身的概念证明。本文档介绍了实现最终STS-134重交会设计所涉及的分析和决策过程。

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