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AN OVERVIEW OF THE SPACE ENVIRONMENTS AND SPACECRAFT EFFECTS ORGANIZATION CONCEPT

机译:空间环境和航天器效果组织概念的概述

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The National Aeronautics and Space Administration (NASA) is embarking on a course to expand human presence beyond Low Earth Orbit (LEO) while also expanding its mission to explore our Earth, and the solar system. Destinations such as Near Earth Asteroids (NEA), Mars and its moons, and the outer planets are but a few of the mission targets. Each new destination presents an opportunity to increase our knowledge on the solar system and the unique environments for each mission target. NASA has multiple technical and science discipline areas specializing in specific space environments fields that will serve to enable these missions. To complement these existing discipline areas, a concept is presented focusing on the development of a space environment and spacecraft effects (SESE) organization. This SESE organization includes disciplines such as space climate, space weather, natural and induced space environments, effects on spacecraft materials and systems, and the transition of research information into application. This space environment and spacecraft effects organization will be composed of Technical Working Groups (TWG). These technical working groups will survey customers and users, generate products, and provide knowledge supporting four functional areas: design environments, engineering effects, operational support, and programmatic support. The four functional areas align with phases in the program mission lifecycle and are briefly described below. Design environments are used primarily in the mission concept and design phases of a program. Environment effects focuses on the material, component, sub-system, and system-level response to the space environment and include the selection and testing to verify design and operational performance. Operational support provides products based on real time or near real time space weather to mission operators to aid in real time and near-term decision-making. The programmatic support function maintains an interface with the numerous programs within NASA, other federal government agencies, and the commercial sector to ensure that communications are well established and the needs of the programs are being met. The programmatic support function also includes working in coordination with the program in anomaly resolution and generation of lessons learned documentation. The goal of this space environment and spacecraft effects organization is to develop decision-making tools and engineering products to support all mission phases from mission concept through operations by focusing on transitioning research to application. Products generated by this space environments and effects application are suitable for use in anomaly investigations. This paper will describe the scope and purpose of the space environments and spacecraft effects organization and describe the TWG’s and their relationship to the functional areas.
机译:美国国家航空航天局(NASA)正在开始将人类存在扩展到低地球轨道(LEO)的课程,同时还扩大了探索我们的地球和太阳系的使命。诸如近地球小行星(NEA),火星及其卫星以及外部行星的目的地,而是几个使命目标。每个新目的地都有机会提高我们对太阳系的知识和每个任务目标的独特环境。美国宇航局拥有多种技术和科学学科,专门从事特定的空间环境领域,该领域将有助于这些任务。为了补充这些现有的纪律领域,提出了一个概念,重点是开发空间环境和航天器效应(SESE)组织。这个SESE组织包括空间气候,空间,自然和诱导的空间环境,航天器材料和系统的影响以及研究信息转变为应用的学科。该空间环境和航天器效果组织将由技术工作组(TWG)组成。这些技术工作组将调查客户和用户,生成产品,并提供支持四个功能区域的知识:设计环境,工程效果,运营支持和程序支持。四个功能区域与程序任务生命周期中的阶段对齐,并在下面简要描述。设计环境主要用于程序的任务概念和设计阶段。环境效应侧重于对空间环境的材料,组件,子系统和系统级响应,并包括选择和测试以验证设计和操作性能。运营支持提供基于实时或附近的产品到实时空间,以便实时运营商,以实时和近期决策辅助。程序化支持职能与美国国家航空航天局,其他联邦政府机构和商业部门的众多方案保持联系,以确保通信已经成立,达到方案的需求。程序支持职能还包括与“异常分辨率”中的程序协调,并介绍了经验教训文件。这种空间环境和航天器效应组织的目标是通过专注于对应用的转换研究,制定决策工具和工程产品,以通过通过运营来支持特派团概念的所有任务阶段。由该空间环境和效果应用产生的产品适用于异常调查。本文将描述空间环境和航天器效果组织的范围和目的,并描述TWG及其与功能区域的关系。

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