基于无源环形腔的微光学陀螺

Y. Filatov, A. Kukaev, V. Venediktov, E. Shalymov
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引用次数: 0

摘要

光学陀螺,如环形激光陀螺和光纤陀螺,已成为捷联惯性导航系统的支柱,由于许多优点(较大的动态范围的测量速度;比例系数稳定性高,对加速度和过载不敏感;更小的时间准备等)。尽管它们的发展取得了成功,但环形激光和光纤陀螺由于体积大和重量大,不适合用于小型便携式设备的控制系统。因此,当前的实际任务是光学陀螺的小型化,或者说微型光学陀螺的开发和研究。近十年来,微光学陀螺的主要研究工作集中在利用平面积分光学技术制造的无源环形单模腔的器件方案上。窃窃廊模谐振器也可以代替平面单模谐振器作为陀螺敏感元件。这是由于它们的以下特性:最高的光学质量因子,小特征模体积,紧凑性和相对容易制造。本文研究了窃窃廊谐振器在旋转过程中产生的效应,以及它们作为微光陀螺传感元件的可能应用方法。
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Microoptical Gyros Based on Passive Ring Cavities
Optical gyros, such as ring laser gyros and fiber optical gyros, have become a mainstay for strapdown inertial navigation systems due to a number of advantages (larger dynamic range of the measured velocities; high stability of scale factor, insensitivity to acceleration and overload; smaller time readiness and etc.). Despite success in their development, ring laser and fiber optic gyros are unsuitable for using in control systems of small portable devices because of their large size and weight. So now the actual task is miniaturization of optical gyros, or development and research of microoptical gyros.During the last decade the main activities in the area of developing the microoptical gyro were concentrated on the scheme of device, based on the use of passive ring single-mode cavities, which are usually produced with the use of planar integral optical technologies.Whispering gallery modes resonators can be also used as the gyro sensitive element instead of planar single-mode resonator. This is due to their following properties: highest optical quality factors, small eigenmodes volume, compactness and relative ease of fabrication. In this work we consider effects arising in the whispering gallery modes resonator during its rotation and possible ways of their application as sensing element of microoptical gyro.
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