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Effects of thermal fiber annealing on the temperature compensation of interferometric fiber-optic current sensors

机译:热光纤退火对干涉式光纤电流传感器温度补偿的影响

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In this paper, we present an experimental and theoretical study on how thermal fiber annealing influences the temperature dependence of the interferometric fiber-optic current sensor. Such sensors measure the current-induced phase shift (Faraday effect) between left and right circularly polarized light waves in a reflective fiber coil around the current conductor. The fiber-optic phase retarder at the coil entrance that generates the (nearly) circular light waves may also serve to compensate for the temperature dependence of the Faraday effect. Thermal annealing serves to remove disturbing bend-induced fiber birefringence in the sensing coil — but it can also affect the retarder parameters. We investigate, to our knowledge for the first time, how thermal annealing affects the optical phase retardation and its temperature dependence of elliptical-core fiber retarders and show how the retarder parameters must be set prior to annealing in order to achieve a temperature-independent sensor after annealing.
机译:在本文中,我们对热光纤退火如何影响干涉式光纤电流传感器的温度依赖性进行了实验和理论研究。这种传感器测量电流导体周围的反射光纤线圈中左右圆偏振光波之间的电流感应相移(法拉第效应)。产生(近)圆形光波的线圈入口处的光纤相位延迟器也可以用来补偿法拉第效应的温度依赖性。热退火可以消除传感线圈中弯曲引起的弯曲双折射,但也会影响延迟器参数。我们首次了解到,热退火如何影响椭圆芯光纤延迟器的光学相位延迟及其对温度的依赖性,并显示如何在退火之前必须设置延迟器参数以实现与温度无关的传感器退火后。

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