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首页> 外文期刊>IEE Proceedings. Part J >Spun linear birefringence fibres and their sensing mechanism in current sensors with temperature compensation
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Spun linear birefringence fibres and their sensing mechanism in current sensors with temperature compensation

机译:具有温度补偿的电流传感器中的纺丝线性双折射光纤及其传感机制

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A single-mode spun linear birefringence fibre is investigated as a periodic structure. By using coupled-mode theory, the modal fields and the propagation coefficients of the two eigenmodes in this fibre are given theoretically for the first time. A spun highly linear birefringence (SHB) fibre is capable of acting as a sensing coil of relatively high sensitivity and temperature stability in current sensors. The mechanism of compensation and the sensitivities of current with SHB fibres and temperature compensation are studied extensively with the above eigenmode theory. The relations of sensitivity and temperature stability to parameters of SHB fibres and light sources are derived. The averaging effect caused by the broadband spectrum of the light source, which effectively eliminate the temperature instability, is investigated quantitatively with the partial-coherent-light theory.
机译:研究了一种单模旋转线性双折射光纤的周期性结构。利用耦合模理论,首次从理论上给出了该光纤中两个本征模的模态场和传播系数。旋转的高度线性双折射(SHB)光纤能够用作电流传感器中灵敏度和温度稳定性相对较高的感应线圈。利用以上本征模理论对SHB光纤的补偿机理,电流敏感性和温度补偿进行了深入研究。推导了灵敏度和温度稳定性与SHB光纤和光源参数的关系。利用部分相干光理论定量研究了由光源的宽带光谱引起的平均效应,该效应有效地消除了温度的不稳定性。

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