首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Theoretical Design of a Depolarized Interferometric Fiber-Optic Gyroscope (IFOG) on SMF-28 Single-Mode Standard Optical Fiber Based on Closed-Loop Sinusoidal Phase Modulation with Serrodyne Feedback Phase Modulation Using Simulation Tools for Tactical and Industrial Grade Applications
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Theoretical Design of a Depolarized Interferometric Fiber-Optic Gyroscope (IFOG) on SMF-28 Single-Mode Standard Optical Fiber Based on Closed-Loop Sinusoidal Phase Modulation with Serrodyne Feedback Phase Modulation Using Simulation Tools for Tactical and Industrial Grade Applications

机译:基于闭环正弦相位调制和Serrodyne反馈相位调制的SMF-28单模标准光纤上的去偏振干涉式光纤陀螺仪(IFOG)的理论设计用于战术和工业级应用

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摘要

This article presents, by means of computational simulation tools, a full analysis and design of an Interferometric Fiber-Optic Gyroscope (IFOG) prototype based on a closed-loop configuration with sinusoidal bias phase- modulation. The complete design of the different blocks, optical and electronic, is presented, including some novelties as the sinusoidal bias phase-modulation and the use of an integrator to generate the serrodyne phase-modulation signal. The paper includes detailed calculation of most parameter values, and the plots of the resulting signals obtained from simulation tools. The design is focused in the use of a standard single-mode optical fiber, allowing a cost competitive implementation compared to commercial IFOG, at the expense of reduced sensitivity. The design contains an IFOG model that accomplishes tactical and industrial grade applications (sensitivity ≤ 0.055 °/h). This design presents two important properties: (1) an optical subsystem with advanced conception: depolarization of the optical wave by means of Lyot depolarizers, which allows to use a sensing coil made by standard optical fiber, instead by polarization maintaining fiber, which supposes consequent cost savings and (2) a novel and simple electronic design that incorporates a linear analog integrator with reset in feedback chain, this integrator generating a serrodyne voltage-wave to apply to Phase-Modulator (PM), so that it will be obtained the interferometric phase cancellation. This particular feedback design with sawtooth-wave generated signal for a closed-loop configuration with sinusoidal bias phase modulation has not been reported till now in the scientific literature and supposes a considerable simplification with regard to previous designs based on similar configurations. The sensing coil consists of an 8 cm average diameter spool that contains 300 m of standard single-mode optical-fiber (SMF-28 type) realized by quadrupolar winding. The working wavelength will be 1310 nm. The theoretical calculated values of threshold sensitivity and dynamic range for this prototype are 0.052 °/h and 101.38 dB (from ±1.164 × 10−5 °/s up to ±78.19 °/s), respectively. The Scale-Factor (SF) non-linearity for this model is 5.404% relative to full scale, this value being obtained from data simulation results.
机译:本文通过计算仿真工具介绍了基于具有正弦偏置相位调制的闭环配置的干涉式光纤陀螺仪(IFOG)原型的完整分析和设计。介绍了光学和电子不同模块的完整设计,包括一些新颖的特性,例如正弦偏置相位调制以及使用积分器生成Serrodyne相位调制信号。本文包括大多数参数值的详细计算,以及从仿真工具获得的结果信号图。该设计集中在标准单模光纤的使用上,与商用IFOG相比,它具有成本竞争力的实现方式,但以降低灵敏度为代价。该设计包含一个IFOG模型,可完成战术和工业级应用(灵敏度≤0.055°/ h)。该设计具有两个重要的特性:(1)具有高级概念的光学子系统:通过Lyot消偏器对光波进行去极化,这允许使用由标准光纤制成的感测线圈,而不是通过保持偏振的光纤,因此需要节省成本;(2)一种新颖且简单的电子设计,在反馈链中集成了带有复位功能的线性模拟积分器,该积分器产生了一个Serrodyne电压波,可应用于相调制器(PM),从而可以得到干涉测量法相位抵消。迄今为止,在科学文献中尚未报道过这种针对具有正弦偏置相位调制的闭环配置的具有锯齿波产生信号的特定反馈设计,并且假设相对于基于类似配置的先前设计有相当大的简化。感应线圈由一个直径为8 cm的线轴组成,该线轴包含300 m通过四极绕组实现的标准单模光纤(SMF-28型)。工作波长为1310 nm。该原型的阈值灵敏度和动态范围的理论计算值分别为0.052°/ h和101.38 dB(从±1.164×10 −5 °/ s至±78.19°/ s)。该模型的比例因子(SF)非线性相对于满量程为5.404%,该值是从数据模拟结果中获得的。

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