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Analysis of Light Emitting Diode Technology for Aerospace Suitability in Human Space Flight Applications.

机译:分析发光二极管技术在人类太空飞行应用中的航空航天适应性。

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Commercial space designers are required to manage space flight designs in accordance with parts selections made from qualified parts listings approved by Department of Defense and NASA agencies for reliability and safety. The research problem was a government and private aerospace industry problem involving how LEDs cannot replace existing fluorescent lighting in manned space flight vehicles until such technology meets DOD and NASA requirements for reliability and safety, and effects on astronaut cognition and health. The purpose of this quantitative experimental study was to determine to what extent commercial LEDs can suitably meet NASA requirements for manufacturer reliability, color reliability, robustness to environmental test requirements, and degradation effects from operational power, while providing comfortable ambient light free of eyestrain to astronauts in lieu of current fluorescent lighting. A fractional factorial experiment tested white and blue LEDs for NASA required space flight environmental stress testing and applied operating current. The second phase of the study used a randomized block design, to test human factor effects of LEDs and a qualified ISS fluorescent for retinal fatigue and eye strain. Eighteen human subjects were recruited from university student members of the American Institute of Aeronautics and Astronautics. Findings for Phase 1 testing showed that commercial LEDs met all DOD and NASA requirements for manufacturer reliability, color reliability, robustness to environmental requirements, and degradation effects from operational power. Findings showed statistical significance for LED color and operational power variables but degraded light output levels did not fall below the industry recognized <70%. Findings from Phase 2 human factors testing showed no statistically significant evidence that the NASA approved ISS fluorescent lights or blue or white LEDs caused fatigue, eye strain and/or headache, when study participants perform detailed tasks of reading and assembling mechanical parts for an extended period of two uninterrupted hours. However, human subjects self-reported that blue LEDs provided the most white light and the favored light source over the white LED and the ISS fluorescent as a sole artificial light source for space travel. According to NASA standards, findings from this study indicate that LEDs meet criteria for the NASA TRL 7 rating, as study findings showed that commercial LED manufacturers passed the rigorous testing standards of suitability for space flight environments and human factor effects. Recommendations for future research include further testing for space flight using the basis of this study for replication, but reduce study limitations by 1) testing human subjects exposure to LEDs in a simulated space capsule environment over several days, and 2) installing and testing LEDs in space modules being tested for human spaceflight.
机译:商业太空设计人员必须根据国防部和NASA机构认可的合格零件清单中的零件选择来管理太空飞行设计,以确保可靠性和安全性。研究问题是政府和私人航空航天业的问题,涉及LED如何无法替代载人航天飞行器中的现有荧光灯,直到该技术满足DOD和NASA对可靠性和安全性的要求,并影响宇航员的认知和健康。这项定量实验研究的目的是确定商用LED在多大程度上可以满足NASA对制造商的可靠性,颜色可靠性,对环境测试要求的鲁棒性以及操作电源的退化影响,同时为宇航员提供不受眼睛疲劳的舒适环境光代替当前的荧光灯照明。分数阶乘实验针对NASA测试了白色和蓝色LED,要求进行太空飞行环境应力测试并施加工作电流。研究的第二阶段采用随机区组设计,以测试LED的人为因素影响以及合格的ISS荧光灯对视网膜疲劳和眼睛疲劳的影响。从美国航空航天学院的大学生成员中招募了18名人类受试者。第1阶段测试的结果表明,商用LED满足了DOD和NASA的所有要求,包括制造商的可靠性,颜色可靠性,对环境要求的鲁棒性以及工作电源的退化影响。调查结果显示出对LED颜色和工作功率变量具有统计意义,但是降级的光输出水平未低于业界公认的<70%。第二阶段人为因素测试的结果表明,当研究参与者长时间进行详细的阅读和组装机械零件的任务时,没有统计学上显着的证据表明NASA认可的ISS荧光灯或蓝色或白色LED会导致疲劳,眼睛疲劳和/或头痛。两个连续小时。然而,人类受试者自我报告说,蓝色LED提供了最多的白光,并且是优于白色LED和ISS荧光灯的首选光源,而ISS荧光灯是太空旅行的唯一人造光源。根据NASA标准,这项研究的结果表明LED符合NASA TRL 7等级的标准,因为研究结果表明商业LED制造商已通过了适用于太空飞行环境和人为因素的严格测试标准。对未来研究的建议包括:使用本研究的复制基础进一步测试太空飞行,但通过以下方式降低研究限制:1)在模拟的太空舱环境中测试人类受试者在几天内暴露于LED的时间; 2)在测试中安装和测试LED正在测试人类太空飞行的空间模块。

著录项

  • 作者

    Treichel, Todd H.;

  • 作者单位

    Northcentral University.;

  • 授予单位 Northcentral University.;
  • 学科 Aerospace engineering.;Mechanical engineering.;Systems science.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:15

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