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Addressing Fiber Optic Sensors Limitations for Aircraft Applications

机译:解决飞机应用中的光纤传感器限制

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摘要

Advances in sensors and sensors networks have significantly shaped the fundamental approach to dealing with traditional health monitoring problems within the aerospace community. Sensors with increased networking capability are seen to constitute the nervous system for any envisaged aircraft diagnostics, prognostics and health management (DPHM) system. Highly multiplexed fiber Bragg grating optical fibers immerged as one of the leading technologies for potential development of an integrated global airframe DPHM system. In this paper, we identify key limitations of this technology and propose an approach to address two of these limitations; namely, temperature compensated measurement and miniaturized demodulation system. Our experimental development illustrated the potential of the approach taken to deal with temperature compensation and suggest proper selection of gratings wavelength. Moreover, it demonstrates the suitability of the developed demodulation system for interrogating highly multiplexed gratings.
机译:传感器和传感器网络的进步显着影响了解决航空航天界传统健康监测问题的基本方法。对于任何设想的飞机诊断,预测和健康管理(DPHM)系统,具有增强的联网能力的传感器被视为神经系统。高度复用的光纤布拉格光栅光纤作为潜在的集成全球机体DPHM系统开发的领先技术之一。在本文中,我们确定了该技术的主要局限性,并提出了解决其中两个局限性的方法。即温度补偿测量和小型化解调系统。我们的实验开发表明了该方法用于处理温度补偿的潜力,并建议适当选择光栅波长。此外,它证明了开发的解调系统适合询问高度多路复用的光栅。

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