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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Modeling and reduction of thermally induced non-reciprocal error in differential interference fiber optic gyroscope sensing coil
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Modeling and reduction of thermally induced non-reciprocal error in differential interference fiber optic gyroscope sensing coil

机译:差分干涉光纤陀螺仪传感线圈中热引起的不可逆误差的建模和减小

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摘要

In this paper, thermally induced non-reciprocity in differential interference fiber optic gyroscope (DIFOG) sensing coil is investigated. Model of thermally induced error is developed with an integral, which is similar to that used by Shupe and others. Thermal error in DIFOG is a sum of Shupe error and inherent error. The Shupe error is caused by temporary phase imbalance in the counter-propagating optical paths and the inherent error is caused by thermal induced inherent non-reciprocity phase variation. In magnitude, the Shupe error is four orders smaller than the inherent error and therefore can be negligible in practice. Theory analysis shows that inherent error is a function of birefringence temperature sensitivity and position of 900 splice in fiber coil. It can be reduced significantly by using a mid-point 900 spliced photonic crystal fiber (PCF) coil which has lower birefringence temperature sensitivity than that of conventional polarization maintained fiber. An experiment setup was built and experimental results verified the theoretical analysis. By using a PCF coil, a total of 6400 times reduction in thermal error is realized which makes DIFOG possible for application. (C) 2015 Elsevier GmbH. All rights reserved.
机译:本文研究了差分干涉光纤陀螺(DIFOG)感应线圈中的热感应非互易性。利用积分建立了热致误差模型,该模型类似于Shupe等人使用的模型。 DIFOG中的热误差是Shupe误差和固有误差之和。 Shupe误差是由反向传播的光路中的临时相位不平衡引起的,而固有误差是由热引起的固有非互易相位变化引起的。在数量上,舒珀误差比固有误差小四个数量级,因此在实践中可以忽略不计。理论分析表明,固有误差是双折射温度敏感性和900个接头在光纤线圈中的位置的函数。通过使用中点900拼接光子晶体光纤(PCF)线圈,可以大大降低这种损耗,该线圈的双折射温度灵敏度比传统的偏振保持光纤低。建立了实验装置,实验结果验证了理论分析。通过使用PCF线圈,热误差总共减少了6400倍,这使DIFOG成为可能。 (C)2015 Elsevier GmbH。版权所有。

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