Research on Sampling Technology and Signal Conditioning for FOG Based on SHF

Pan Xiong, Z. Chunsheng
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Abstract

Accuracy and dynamic response were the main characteristics of FOG, which largely depended on signal conditioning of light path and circuits. For analyzing the relationship between the two characteristics and signal conditioning, impacts on accuracy and dynamic response by sampling parameters were analyzed. To some extent, the two characteristics restrict each other, and for harmonizing the relationship between the two characteristics, the analog filter was put to use for sharing responsibility for digital signal processing, with a novel scheme, named sample-hold analog low-pass filter (SHF), proposed on the premise that the traditional scheme had its shortages. Then, mechanism for SHF was illustrated by the portions given in the text, and simulated for analyzing the additional error with large disturbance. Finally, the accuracy and dynamic characteristics of closed-loop were analyzed with different depth of SHF filtering in the experiment. The simulation and experiment verify the theory, and also give a reference for the closed-loop measurement system design of FOG.
基于SHF的光纤陀螺采样技术及信号调理研究
精度和动态响应是光纤陀螺的主要特性,这在很大程度上取决于光路和电路的信号调理。为了分析这两个特性与信号调理之间的关系,分析了采样参数对精度和动态响应的影响。在一定程度上,两种特性相互制约,为了协调两种特性之间的关系,利用模拟滤波器分担数字信号处理的责任,在传统方案存在不足的前提下,提出了一种新的方案——采样保持模拟低通滤波器(SHF)。然后,通过文中给出的部分说明了SHF的机理,并进行了仿真,分析了大扰动下的附加误差。最后,在实验中分析了不同SHF滤波深度下闭环的精度和动态特性。仿真和实验验证了理论的正确性,也为光纤陀螺闭环测量系统的设计提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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