一种用于恶劣环境的干涉度多传感器绝对距离测量系统
Mateusz Sosin1,2, Juan David Gonzalez Cobas1, Mohammed Isa2
1CERN European Organization for Nuclear Research, 1211 Geneva, Switzerland.
Sensors (Basel, Switzerland)
|September 13, 2025
概括
基于里叶变换的频率扫描干扰度 (FT-FSI) 提供了对多个目标的准确,同时的距离测量,即使是低反射率. 这种强大的技术对于在像粒子加速器这样的苛刻环境中精确对齐至关重要.
科学领域:
- 光学计量学 在光学计量学
- 干涉测量是干涉测量的方法.
- 粒子加速器技术 粒子加速器技术
背景情况:
- 粒子加速器中的恶劣环境对远程测量和监测系统构成重大挑战.
- 传统的计量系统与电磁干扰,辐射和冷温度作斗争.
- 加速器组件的精确对齐对于高亮度大强子对撞机 (HL-LHC) 操作至关重要.
研究的目的:
- 对恶劣环境的远程测量系统的挑战进行审查.
- 详细介绍基于FT-FSI的测量系统的开发和验证.
- 要突出系统在实现微米对齐精度方面的作用.
主要方法:
- 基于里叶变换的频率扫描干扰计 (FT-FSI) 用于绝对距离测量.
- 将FT-FSI集成到加速器组件的完全远程调整系统 (FRAS) 中.
- 使用专门的干扰仪和传感器 (倾斜计,距离,平面传感器).
主要成果:
- 通过FT-FSI,可以同时对多个目标进行可靠的距离测量.
- 尽管光信号强度和低反射率的变化,该技术仍然保持了准确性.
- 使用FT-FSI的FRAS系统在实现微米对齐精度方面发挥了关键作用.
结论:
- FT-FSI是一种高精度和强大的干扰测量技术,适用于苛刻的计量学.
- 开发的基于FT-FSI的系统有效地应对恶劣加速器环境中的挑战.
- 研究结果可应用于其他在不利条件下需要高精度的计量应用.
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