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In an experiment conducted during a Mars mission, a rover propels a projectile with an initial velocity, and the projectile rebounds after colliding with the Martian surface. To ascertain the maximum height attained by the projectile after this collision, the known restitution coefficient and acceleration due to gravity are employed.
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相关实验视频

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Design and Analysis for Fall Detection System Simplification
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基于加速计阵列的爆炸撞击碎片防护服的定位报警系统

Jianing Hu1, Chaoran Liu1, Xucong Wang1

  • 1Ministry of Education Engineering Research Center of Smart Microsensors and Microsystems, College of Electronics and Information, Hangzhou Dianzi University, Hangzhou 310018, China.

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概括

本研究介绍了用于消防员防护服的可穿戴撞击碎片定位系统. 该系统使用加速度计阵列来准确定位受伤,使消防员能够更快地救援.

关键词:
加速计阵列是一个加速计阵列.碎片定位报警系统的报警系统防护服是一种防护服.实时监控实时监控

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科学领域:

  • 工程 工程师 工程师 工程师
  • 可穿戴技术可穿戴技术
  • 安全系统 安全系统

背景情况:

  • 消防员防护服主要提供对烧伤的身体保护.
  • 目前的服装没有能力确切地确定撞击碎片造成的身体伤害.
  • 及时评估和定位伤害对于有效的消防员救援行动至关重要.

研究的目的:

  • 开发一种可穿戴系统,用于准确地定位消防员受到撞击碎片伤害的位置.
  • 通过快速识别受伤的身体部位来提高消防员的安全性.
  • 为消防指挥官提供实时伤害位置数据,以进行高效的救援.

主要方法:

  • 在消防员防护服中集成可穿戴的压电加速度计阵列.
  • 加速度计的分布,以检测身体不同部位的振动.
  • 开发一种智能信号处理方法,用于快速数据分析和伤害定位.

主要成果:

  • 该系统在受伤的身体部位实现了高定位精度,为4厘米.
  • 证明了定位报警系统的快速响应时间为0.11ms.
  • 通过上部计算机接口,成功地在体模型上显示了受伤位置.

结论:

  • 开发的系统提供了一个可靠和智能解决方案,用于定位消防员在撞击碎片受伤的位置.
  • 这项技术显著提高了实时评估和响应消防员受伤的能力.
  • 通过精确识别现场受伤人员,使指挥官能够加快救援工作.