...
首页> 外文期刊>Journal of biomechanical engineering. >Walking in Simulated Martian Gravity: Influence of the Portable Life Support System's Design on Dynamic Stability
【24h】

Walking in Simulated Martian Gravity: Influence of the Portable Life Support System's Design on Dynamic Stability

机译:行走在模拟的火星重力中:便携式生命支持系统的设计对动态稳定性的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

With human exploration of the moon and Mars on the horizon, research considerations for space suit redesign have surfaced. The portable life support system (PLSS) used in conjunction with the space suit during the Apollo missions may have influenced the dynamic balance of the gait pattern. This investigation explored potential issues with the PLSS design that may arise during the Mars exploration. A better understanding of how the location of the PLSS load influences the dynamic stability of the gait pattern may provide insight, such that space missions may have more productive missions with a smaller risk of injury and damaging equipment while falling. We explored the influence the PLSS load position had on the dynamic stability of the walking pattern. While walking, participants wore a device built to simulate possible PLSS load configurations. Floquet and Lyapunov analysis techniques were used to quantify the dynamic stability of the gait pattern. The dynamic stability of the gait pattern was influenced by the position of load. PLSS loads that are placed high and forward on the torso resulted in less dynamically stable walking patterns than loads placed evenly and low on the torso. Furthermore, the kinematic results demonstrated that all joints of the lower extremity may be important for adjusting to different load placements and maintaining dynamic stability. Space scientists and engineers may want to consider PLSS designs that distribute loads evenly and low, and space suit designs that will not limit the sagittal plane range of motion at the lower extremity joints.
机译:随着人类对月球和火星的探索即将到来,重新设计太空服的研究考虑已经浮出水面。在阿波罗飞行任务中与太空服配合使用的便携式生命支持系统(PLSS)可能会影响步态模式的动态平衡。这项调查探索了在火星探索期间可能出现的PLSS设计潜在问题。更好地了解PLSS负载的位置如何影响步态模式的动态稳定性可能会提供洞察力,从而使太空飞行任务的生产力更高,跌倒时受伤和损坏设备的风险较小。我们探索了PLSS负载位置对行走模式动态稳定性的影响。行走时,参与者戴着专门模拟可能的PLSS负载配置的设备。 Floquet和Lyapunov分析技术用于量化步态模式的动态稳定性。步态的动态稳定性受载荷位置的影响。与在躯干上均匀且低位放置的负载相比,在躯干上较高且向前放置的PLSS负载产生的动态稳定行走模式较差。此外,运动学结果表明,下肢的所有关节对于调整不同的负荷位置和保持动态稳定性可能很重要。太空科学家和工程师可能希望考虑PLSS设计,该设计可以均匀且低地分配载荷,而太空服设计则不会限制下肢关节的矢状面运动范围。

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