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A broadband Faraday fiber-optic current sensor with excess noise compensation

机译:宽带法拉第光纤电流传感器,具有多余的噪音补偿

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A Faraday fiber-optic current sensor with suppression of excess noise produced by a low-coherent light source is presented. The sensor is designed to detect short current pulses and represents an in-line interferometer with a sensing element based on a spun highly birefringent fiber. To suppress the excess noise, a two-channel light detection scheme without an additional delay line is applied. It is established that bending birefringence induced in the spun fiber wound on a coil limits the noise suppression. To minimize this effect, a new geometry of the sensing coil is used. The proposed sensor exhibits a 5-fold improvement of the signal-to-noise ratio and the same enhancement of the sensitivity to a value of 0.8A in the 3.5?MHz bandwidth. The minimum duration of the measured current pulse is 200?ns.
机译:提出了一种具有抑制由低相干光源产生的过量噪声的法拉第光纤电流传感器。该传感器设计用于检测短电流脉冲,并且表示基于纺丝高度双折射纤维的传感元件的在线干涉仪。为了抑制过量的噪声,应用没有额外延迟线的双通道光检测方案。建立在缠绕在线圈上的纺丝纤维中诱导的弯曲双折射限制了噪声抑制。为了最小化这种效果,使用感测线圈的新几何形状。所提出的传感器的发射噪声比率提高了5倍,并且在3.5?MHz带宽中的值为0.8a的敏感性相同的增强。测量电流脉冲的最小持续时间为200?ns。

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