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A Method for Improving Light Intensity Stability of a Total Reflection Prism Laser Gyro Based on Series Correction and Feedforward Compensation

机译:一种改进基于串联校正和馈电补偿的总反射棱镜激光陀螺光强度稳定性的方法

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摘要

The instability of scale factor and null shift are closely related to the change of the light intensity of a total reflection prism laser gyro (TRPLG). To improve the light intensity stability, the light intensity stabilization principle of TRPLG was analyzed, and a mathematical model of light intensity stabilization system was established. Aiming at the problem that original system has a long adjustment time, a series correction method of adding a proportional integral differential (PID) link in the forward channel was adopted. According to the third-order optimal design, the original I-type third-order overdamped system was optimized to the new II-type third-order underdamped system, which ultimately improved the system & x2019;s dynamic and steady-state performance. Feedforward compensation was used to introduce the light intensity disturbance during the longitudinal mode hopping into the closed-loop system, which realized the full compensation of the light intensity error and improved the light intensity characteristics during the longitudinal mode hopping. Combined with the above two methods, experimental results showed that the new system with feedforward compensation improved the light intensity stability by 32 & x0025; at constant temperature and by 40 & x0025; at variable temperature, with the TRPLG & x2019;s bias stability improved by more than 16 & x0025; at constant temperature and by 22 & x0025; at variable temperature.
机译:比例因子和空移的不稳定性与总反射棱镜激光陀螺(TRPLG)的光强度的变化密切相关。为了提高光强度稳定性,分析了TRPLG的光强度稳定原理,并建立了光强度稳定系统的数学模型。针对原始系统具有长调整时间的问题,采用了在前向信道中添加比例积分(PID)链路的串联校正方法。根据三阶最优设计,原始的I型三阶估计系统经过优化到新型II型三阶推出系统,最终改善了系统和X2019; S动态和稳态性能。前馈补偿用于在跳转到闭环系统中引入光强度扰动,这实现了光强度误差的完全补偿并改善了纵向模式跳跃期间的光强度特性。结合上述两种方法,实验结果表明,具有前馈补偿的新系统通过32&X0025提高了光强度稳定性;在恒定温度下,40&x0025;在可变温度下,TRPLG&X2019; S偏置稳定性提高了16&x0025;在恒定温度和22&x0025处;在可变温度下。

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