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Efficient Modulation and Processing Method for Closed-Loop Fiber Optic Gyroscope with Piezoelectric Modulator

机译:用压电调制器闭环光纤陀螺仪的高效调制和处理方法

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摘要

This paper presents a simple method for compensating the Sagnac phase shift in an interferometric fiber-optic gyroscope (I-FOG) with a piezoelectric modulator. The common advantages of I-FOGs with closed-loop compensation are linearized output characteristics and insensitivity to the light source power, including its time and thermal-induced fluctuations. Whereas closed-loop operation is normally achieved via ramp modulation requiring an electro-optic modulator, all-fiber architectures with a piezoelectric modulator are mostly limited to open loop. Nevertheless, such setups can more conveniently utilize a less expensive single-mode fiber with depolarized light and do not require any custom-made components. The proposed method allows us to combine the advantages of both approaches. Closed-loop compensation is ensured by adding further sinusoidal modulation to the common biasing modulation, such that the Sagnac phase shift is compensated solely at the sampling instants. We describe and experimentally demonstrate the proposed approach, utilizing a test setup to compare our closed-loop solution with open-loop operation. The results denote that the method provides a cost-efficient manner of performance improvement compared to the open-loop I-FOGs based on a piezoelectric modulator.
机译:本文介绍了一种用压电调制器补偿干涉纤维陀螺仪(I-FOG)中的SAGNAC相移的简单方法。 I-FOGS具有闭环补偿的常见优势是线性化输出特性和对光源功率的不敏感,包括其时间和热诱导的波动。虽然通常通过需要电光调制器的斜坡调制来实现闭环操作,但是具有压电调制器的全光纤架构主要限于开环。然而,这种设置可以更方便地利用具有去极光的较便宜的单模光纤,并且不需要任何定制的组件。该方法允许我们将两种方法的优点结合在一起。通过向共同的偏置调制添加进一步的正弦调制来确保闭环补偿,使得SAGNAC相移仅在采样速度下补偿。我们描述并实验地演示了所提出的方法,利用测试设置将我们的闭环解决方案与开环操作进行比较。结果表示该方法提供了与基于压电调制器的开环I-FOGS相比的成本有效的性能改进方式。

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