Wang Kunbo, Feng Lishuang, Wang Junjie, Lei Ming
Key Laboratory on Inertial Science and Technology, Beihang University, Beijing, China.
Appl Opt. 2013 Mar 1;52(7):1481-6. doi: 10.1364/AO.52.001481.
The ring resonator is one of the key elements in the micro-optic gyro system, but there is not a uniform method for designing the parameters of a ring resonator, especially for its size. In this paper, an alternative method is presented for designing the ring resonator used in micro-optic gyro. Maximization of the resonator output is proposed to be the principle in design and optimization for the first time to our knowledge. The scale factor accuracy and the full range of the gyro system are taken into account to obtain the optimum diameter of the ring. A theoretical optimal diameter of 0.25 m is achieved for SiO(2) waveguide resonator with a dynamic range of ±500°/s by analyzing the influence of resonator parameters on the output in detail, and the corresponding sensitivity of the gyro is less than 1.28°/h, which can meet the demands of a tactical inertia system.
环形谐振器是微光陀螺系统中的关键元件之一,但目前尚无统一的环形谐振器参数设计方法,尤其是其尺寸设计方法。本文提出了一种用于设计微光陀螺中环形谐振器的替代方法。据我们所知,首次提出将谐振器输出最大化作为设计和优化的原则。在设计过程中考虑了比例因子精度和陀螺系统的全量程,以获得环形的最佳直径。通过详细分析谐振器参数对输出的影响,对于动态范围为±500°/s的SiO₂波导谐振器,获得了0.25 m的理论最佳直径,且陀螺的相应灵敏度小于1.28°/h,能够满足战术惯性系统的要求。