高精度光纤陀螺仪线圈的全参数数学模型及自动成形技术

Zhisheng Zheng, Yueze Wang, Jie Yu, Bo-han Liu, Mao-chun Li, Guihong Chen
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引用次数: 1

摘要

本文建立了光纤线圈温度误差的全参数数学模型。该模型可用于优化不同绕线方案(四极、多极)、光纤、胶体等线圈中组分的物理化学性能以及装配结构,研究不同绕线条件下绕线层数、绕线方案等工艺参数对光纤线圈温度性能的影响。设计并实现了高精度光纤线圈芯参数在线测量与补偿系统。针对高精度光纤线圈实际绕制过程中长度长、尺寸大、绕制难度高的特点,基于自主研制的高精度线圈绕制机,研究了绕制过程中引入的应力、极化串扰、对称性等误差的机理,设计并构建了芯参数实时在线检测系统,用于实时在线检测和在线补偿。从而进一步开发,逐步提高高精度光纤线圈的绕线成功率。研究了一套完整的高精度光纤线圈成形工艺。本文对高精度光纤线圈成形过程中的各个环节进行了研究。从光纤和胶体材料的选择、自动缠绕、脱粘、成卷到光纤线圈的检测技术,进行了一体化设计,最终利用整套技术制备出满足高精度光纤陀螺仪应用的高精度光纤线圈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full-parameters mathematical model of high precision fiber optic gyroscope coil and automatic forming technology
In this paper, a full parameter mathematical model of temperature error of optical fiber coil is established. The new model can be used to optimize the physical and chemical properties of different winding schemes (quadrupole, multipole), fiber, colloid and other components in the coil, as well as the assembly structure, and to study the influence of the technological parameters such as the number of winding layers and winding schemes on the temperature performance of the optical fiber coil under different winding conditions. An on-line measurement and compensation system for core parameters of high-precision optical fiber coil is designed and built. In view of the characteristics of long length, large size and high winding difficulty in the actual winding process of high-precision optical fiber coil, based on the self-developed high-precision coil winding machine, the mechanism of errors such as stress, polarization crosstalk and symmetry introduced in the winding process is studied, and the real-time online detection system of core parameters is designed and built, which is used for realtime online detection and online compensation, so as to further develop Step by step to improve the winding success rate of high-precision optical fiber coil. A complete set of high- precision fiber coil forming technology is studied. In this paper, every link of the high-precision fiber coil forming process is studied. From the selection of optical fiber and colloid materials, automatic winding, debonding and coil forming to the detection technology of optical fiber coil, the integrated design is carried out, and the high-precision optical fiber coil meeting the application of high-precision optical fiber gyroscope is finally prepared by using the whole set of technology.
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