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Cryogenic fluid level sensors multiplexed by frequency-shifted interferometry

机译:通过频移干涉术复用的低温液位传感器

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摘要

We present a liquid level sensing system for cryogenic fluids based on an array of aluminum-coated fiber Bragg gratings written in high-attenuation fibers (HAFs) interrogated by frequency-shifted interferometry (FSI). The sensors are heated up optically through the absorption of light at the core of the HAF sections. The distinct thermal response of sensors in the liquid from that in the gas provides an unambiguous means to detect the liquid level. FSI allows the sensors to have overlapped spectral response, and, therefore, has the potential of accommodating a larger number of sensors in the array. The measurement of liquid nitrogen level using this system was experimentally demonstrated. The successful combination of aluminum-coated HAF Bragg grating sensors and the FSI technique promises a viable solution for liquid level sensor networks at cryogenic temperatures. © 2010 Optical Society of America.
机译:我们提出了一种低温流体的液位传感系统,该系统基于以高衰减光纤(HAFs)写入的铝涂层光纤布拉格光栅阵列,并通过频移干涉法(FSI)进行了询问。传感器通过在HAF部分的核心处吸收光来光学加热。液体中的传感器与气体中的传感器截然不同的热响应为检测液位提供了明确的手段。 FSI允许传感器具有重叠的光谱响应,因此有潜力在阵列中容纳更多的传感器。实验证明了使用该系统测量液氮水平。铝涂层HAF布拉格光栅传感器和FSI技术的成功结合为低温下的液位传感器网络提供了可行的解决方案。 ©2010美国眼镜学会。

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