Comparison of Quasi-four-frequency and Four-frequency Zeeman Laser Gyros with Different Types of Biasing

E. Kuznetsov, Yury Golyaev, Y. Kolbas, Igor Savelev, Tatiana Soloveva
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Abstract

Among laser gyros, being the most precise inertial sensors nowadays, multi-oscillator laser gyros of a new generation are especially promising. Instead of mechanical biasing for eliminating frequency lock-in, they use physical optical methods, increasing their accuracy and resistance to external mechanical impacts. Here we consider Zeeman laser gyros, whose important advantage is the "pure optical path" (without intra-cavity elements). Two modifications of such laser gyros are considered – quasi-four-frequency and four-frequency. The results of experimental measurements of the input-output characteristics with different types of rectangular alternating frequency biasing are presented: with a single biasing (meander) and with a combined biasing (two different meanders). Comparative results confirm the advantages of the combined frequency biasing, improving the linearity of the input-output characteristic by 4 times.
准四频和四频塞曼激光陀螺不同偏置方式的比较
在激光陀螺中,作为当今精度最高的惯性传感器,新一代多振荡器激光陀螺尤其具有发展前景。他们使用物理光学方法,而不是机械偏置来消除频率锁定,从而提高了精度和对外部机械冲击的抵抗力。这里我们考虑塞曼激光陀螺,其重要优点是“纯光路”(没有腔内元件)。考虑了这种激光陀螺的两种改型——准四频和四频。给出了不同类型的矩形交变频率偏置的输入输出特性的实验测量结果:单偏置(曲线图)和组合偏置(两种不同曲线图)。对比结果证实了组合偏频的优点,将输入输出特性的线性度提高了4倍。
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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