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Construction and characterization of interferometric fiber optic gyroscope (IFOG) with erbium doped fiber amplifier (EDFA)

机译:掺光纤放大器(EDFA)的干涉式光纤陀螺仪(IFOG)的构造和表征

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摘要

Gyroscopes, which sense changes on absolute angular rate and are classified into Interferometric Fiber Optic Gyroscopes (IFOG), Ring Laser Gyroscopes (RLG) and Micro-Electro-Mechanical Systems (MEMS) Gyroscopes, are critical components of the navigation systems together with accelerometers. Being dominant over other types of gyroscopes in terms of performance and cost, IFOGs have widely been used in metrology and in particular defense/aerospace industry. This paper covers the design details of both optical and electronic components of IFOG prototype, the sensing mechanism of which is based on Sagnac Phase Shift, constructed in Optics Laboratory of National Metrology Institute of TURKEY as absolute angular rate sensor. In the prototype IFOG, open-loop configuration was applied, a single mode telecommunication optical fiber and an EDFA pumped by DFB laser emitting at 1549.0 nm were used as sensing coil and broadband source, respectively. The voltage data carrying Sagnac Phase Shift was extracted by a phase tracking circuit consisting of an active RC band pass filter, an amplifier with adjustable gain and an AD630 balanced modulator chip which was operated as lock-in. For the prototype IFOG, peak to peak noise of 8 (°/h) and bias stability of 1.57 (°/h) were attained respectively. Moreover the scale factor of 13.83 (°/h)/mV was derived with deviation of 0.73%.
机译:陀螺仪可感测绝对角速度的变化,分为干涉式光纤陀螺仪(IFOG),环形激光陀螺仪(RLG)和微机电系统(MEMS)陀螺仪,是导航系统和加速度计的重要组成部分。就性能和成本而言,IFOG在其他类型的陀螺仪上占主导地位,已被广泛用于计量学,尤其是国防/航空航天行业。本文涵盖了IFOG原型的光学和电子组件的设计细节,该模型的传感机制基于Sagnac相移,该相移是在土耳其国家计量学院光学实验室中构建的绝对角速度传感器。在原型IFOG中,采用开环配置,将单模电信光纤和由DFB激光器泵浦的EDFA发射的1549.0 nm波长分别用作传感线圈和宽带光源。带有Sagnac相移的电压数据是通过一个相位跟踪电路提取的,该电路由一个有源RC带通滤波器,一个增益可调的放大器和一个锁相工作的AD630平衡调制器芯片组成。对于原型IFOG,分别实现了峰峰值噪声为8(°/ h)和偏置稳定性为1.57(°/ h)。此外,得出的比例因子为13.83(°/ h)/ mV,偏差为0.73%。

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