首页> 外文会议>IEEE Aerospace Conference >Designing for reliability and robustness in international space station exercise countermeasures systems
【24h】

Designing for reliability and robustness in international space station exercise countermeasures systems

机译:国际空间站运动对策系统的可靠性和鲁棒性设计

获取原文

摘要

Long duration spaceflight has a negative effect on the human body, and exercise countermeasures are used onboard the International Space Station (ISS) to minimize bone and muscle loss, combatting these effects. Given the importance of these hardware systems to the health of the crew, this equipment must continue to be readily available. Designing spaceflight exercise hardware to meet high reliability and availability standards has proven to be challenging throughout the time the crewmembers have been living on ISS beginning in 2000. Furthermore, restoring operational capability after a failure is clearly time-critical, but can be problematic given the challenges of troubleshooting the problem from 220 miles away. Several best-practices have been leveraged in seeking to maximize availability of these exercise systems, including designing for robustness, implementing diagnostic instrumentation, relying on user feedback, and providing ample maintenance and sparing. These factors have enhanced the reliability of hardware systems, and therefore have contributed to keeping the crewmembers healthy upon return to Earth. This paper will review the failure history for three spaceflight exercise countermeasure systems identifying lessons learned that can help improve future systems. Specifically, the Treadmill with Vibration Isolation and Stabilization System (TVIS), Cycle Ergometer with Vibration Isolation and Stabilization System (CEVIS), and the Advanced Resistive Exercise Device (ARED) will be reviewed, analyzed, and conclusions identified so as to provide guidance for improving future exercise hardware designs. These lessons learned, paired with thorough testing, offer a path towards reduced system down-time.
机译:长时间的太空飞行会对人体产生负面影响,国际空间站(ISS)上采取了运动对策,以最大程度地减少骨骼和肌肉的损失,从而消除这些影响。考虑到这些硬件系统对船员健康的重要性,该设备必须继续易于获得。从2000年开始,在整个机组一直依靠ISS生存的整个过程中,设计满足高可靠性和可用性标准的航天锻炼硬件都面临着挑战。此外,在发生故障后恢复操作能力显然是时间紧迫的,但鉴于这种情况,这可能会带来问题。解决220英里以外的问题所面临的挑战。在寻求最大程度地利用这些锻炼系统的可用性方面,已利用了几种最佳实践,包括进行健壮性设计,实施诊断工具,依靠用户反馈以及提供充足的维护和备件。这些因素提高了硬件系统的可靠性,因此有助于使乘员返回地球后保持健康。本文将回顾三个航天运动对策系统的故障历史,找出可以帮助改进未来系统的经验教训。具体来说,将对具有减震和稳定系统的跑步机(TVIS),具有减震和稳定系统的自行车测功机(CEVIS)以及高级抗阻力锻炼设备(ARED)进行分析,分析,并得出结论,以便为您提供指导。改善未来的运动硬件设计。这些经验教训与全面的测试相结合,为减少系统停机时间提供了一条途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号