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The Potential for Health Monitoring in Expandable Space Modules: The Bigelow Expandable Activity Module on the ISS

机译:可扩展空间模块中的健康监视潜力:国际空间站上的Bigelow可扩展活动模块

摘要

Expandable modules for use in space and on the Moon or Mars offer a great opportunity for volume and mass savings in future space exploration missions. This type of module can be compressed into a relatively small shape on the ground, allowing them to fit into space vehicles with a smaller cargo/fairing size than a traditional solid, metallic structure based module would allow. In April 2016, the Bigelow Expandable Activity Module (BEAM) was berthed to the International Space Station (ISS). BEAM is the first human-rated expandable habitat/module to be deployed and crewed in space. BEAM is a NASA managed ISS payload project in partnership with Bigelow Aerospace. BEAM is intended to stay attached to ISS for an operational period of 2 years to help advance the technology readiness for future expandable modules. BEAM has been instrumented with a suite of space flight certified sensors systems which will help characterize the module's performance for thermal, radiation shielding and impact monitoring against potential Micro Meteoroid/Orbital Debris (MM/OD) providing fundamental information on the BEAM environment for potential health monitoring requirements and capabilities. This paper will provide an overview of how the sensors/instrumentation systems were developed, tested, installed and an overview of the current sensor system operations. It will also discuss how the MM/OD impact detection system referred to as the Distributed Impact Detection System (DIDS) data is being processed and reviewed on the ground by the principle investigators.
机译:用于太空以及在月球或火星上使用的可扩展模块为将来的太空探索任务提供了大量节省体积和质量的机会。这种类型的模块可以在地面上压缩为相对较小的形状,从而使其能够以比传统的基于固体,金属结构的模块更小的货运/整流罩尺寸安装到太空飞行器中。 2016年4月,比奇洛可扩展活动模块(BEAM)停靠到国际空间站(ISS)。 BEAM是第一个在太空中部署和配备人员的人类可扩展的栖息地/模块。 BEAM是与Bigelow Aerospace合作的由NASA管理的ISS有效载荷项目。 BEAM打算与ISS保持2年的运营期,以帮助推动技术为未来的可扩展模块做好准备。 BEAM已配备一套经太空飞行认证的传感器系统,可帮助表征模块的性能,以针对潜在的微流星体/轨道碎片(MM / OD)进行热,辐射屏蔽和撞击监控,从而提供有关BEAM环境以潜在健康的基本信息监视需求和功能。本文将概述传感器/仪器系统的开发,测试,安装方式以及当前传感器系统操作的概述。还将讨论主要调查员如何在地面上处理和审查称为“分布式影响检测系统(DIDS)”的MM / OD影响检测系统。

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