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Advanced end-to-end fiber optic sensing systems for demanding environments

机译:适用于苛刻环境的高级端到端光纤传感系统

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Optical fibers are small-in-diameter, light-in-weight, electromagnetic-interference immune, electrically passive, chemically inert, flexible, embeddable into different materials, and distributed-sensing enabling, and can be temperature and radiation tolerant. With appropriate processing and/or packaging, they can be very robust and well suited to demanding environments. In this paper, we review a range of complete end-to-end fiber optic sensor systems that IFOS has developed comprising not only (1) packaged sensors and mechanisms for integration with demanding environments, but (2) ruggedized sensor interrogators, and (3) intelligent decision aid algorithms software systems. We examine the following examples:rn• Fiber Bragg Grating (FBG) optical sensors systems supporting arrays of environmentally conditioned multiplexed FBG point sensors on single or multiple optical fibers: In conjunction with advanced signal processing, decision aid algorithms and reasoners, FBG sensor based structural health monitoring (SHM) systems are expected to play an increasing role in extending the life and reducing costs of new generations of aerospace systems. Further, FBG based structural state sensing systems have the potential to considerably enhance the performance of dynamic structures interacting with their environment (including jet aircraft, unmanned aerial vehicles (UAVs), and medical or extravehicular space robots).rn• Raman based distributed temperature sensing systems: The complete length of optical fiber acts as a very long distributed sensor which may be placed down an oil well or wrapped around a cryogenic tank.
机译:光纤直径小,重量轻,抗电磁干扰,无源,化学惰性,柔韧性好,可嵌入不同材料中并具有分布式传感功能,并且可以耐温度和辐射。通过适当的处理和/或包装,它们可以非常坚固并且非常适合苛刻的环境。在本文中,我们回顾了IFOS开发的一系列完整的端到端光纤传感器系统,不仅包括(1)封装的传感器和与苛刻环境集成的机制,还包括(2)坚固的传感器询问器,以及(3 )智能决策辅助算法软件系统。我们检查以下示例:光纤布拉格光栅(FBG)光学传感器系统,支持在单根或多根光纤上的环境条件多路复用FBG点传感器阵列:结合先进的信号处理,决策辅助算法和推理器,基于FBG传感器的结构健康监测(SHM)系统有望在延长新一代航空航天系统的寿命和降低其成本方面发挥越来越大的作用。此外,基于FBG的结构状态传感系统具有极大地增强与环境相互作用的动态结构(包括喷气飞机,无人飞行器(UAV)以及医疗或舱外太空机器人)的性能的潜力。系统:完整长度的光纤用作一个很长的分布式传感器,可以将其放置在油井下或包裹在低温储罐周围。

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