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Application of Diagnostic Analysis Tools to the Ares I Thrust Vector Control System

机译:诊断分析工具在Ares I推力矢量控制系统中的应用

摘要

The NASA Ares I Crew Launch Vehicle is being designed to support missions to the International Space Station (ISS), to the Moon, and beyond. The Ares I is undergoing design and development utilizing commercial-off-the-shelf tools and hardware when applicable, along with cutting edge launch technologies and state-of-the-art design and development. In support of the vehicle s design and development, the Ares Functional Fault Analysis group was tasked to develop an Ares Vehicle Diagnostic Model (AVDM) and to demonstrate the capability of that model to support failure-related analyses and design integration. One important component of the AVDM is the Upper Stage (US) Thrust Vector Control (TVC) diagnostic model-a representation of the failure space of the US TVC subsystem. This paper first presents an overview of the AVDM, its development approach, and the software used to implement the model and conduct diagnostic analysis. It then uses the US TVC diagnostic model to illustrate details of the development, implementation, analysis, and verification processes. Finally, the paper describes how the AVDM model can impact both design and ground operations, and how some of these impacts are being realized during discussions of US TVC diagnostic analyses with US TVC designers.
机译:NASA Ares I Crew运载火箭的设计目的是支持对国际空间站(ISS),月球及其他地区的飞行任务。 Ares I正在使用适用的商用工具和硬件以及最先进的发射技术和最新的设计与开发进行设计和开发。为了支持车辆的设计和开发,Ares功能故障分析小组的任务是开发一个Ares车辆诊断模型(AVDM),并演示该模型支持与故障相关的分析和设计集成的能力。 AVDM的一个重要组成部分是上级(US)推力矢量控制(TVC)诊断模型-美国TVC子系统故障空间的表示。本文首先概述了AVDM,其开发方法以及用于实现模型和进行诊断分析的软件。然后,它使用美国TVC诊断模型来说明开发,实施,分析和验证过程的详细信息。最后,本文描述了AVDM模型如何影响设计和地面运营,以及在与美国TVC设计人员讨论美国TVC诊断分析期间如何实现其中一些影响。

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