Yang Hongxing, Yin Ziqi, Yang Ruitao, Hu Pengcheng, Li Jing, Tan Jiubin
Key Lab of Ultra-precision Intelligent Instrumentation (Harbin Institute of Technology), Ministry of Industry and Information Technology, Harbin 150001, China.
Sensors (Basel). 2020 Feb 17;20(4):1083. doi: 10.3390/s20041083.
Heterodyne interferometers with two opposite Doppler shift interference signals have been proposed for high-resolution measurement with high measurement speed, which can be used in the background of high-speed high-resolution measurement. However, a measurement error model for high-speed high-resolution heterodyne interferometers (HSHR-HIs) has not yet been proposed. We established a HSHR-HI measurement error model, analyzed the influence of beat frequency stability with a simplified optical structure, and then designed an offset-locked dual-frequency laser source with a digital control system to reduce the impact of beat frequency drift. Experiments were used to verify the correction of the measurement error model and the validity of the laser source. The results show that the new laser source has a maximum beat frequency range of 45 MHz, which shows the improvements in the measuring speed and resolution.
具有两个相反多普勒频移干涉信号的外差干涉仪已被提出用于高测量速度的高分辨率测量,可用于高速高分辨率测量背景。然而,高速高分辨率外差干涉仪(HSHR-HIs)的测量误差模型尚未被提出。我们建立了一个HSHR-HI测量误差模型,用简化的光学结构分析了拍频稳定性的影响,然后设计了一种带有数字控制系统的偏置锁定双频激光源,以减少拍频漂移的影响。通过实验验证了测量误差模型的正确性和激光源的有效性。结果表明,新的激光源具有45 MHz的最大拍频范围,这表明测量速度和分辨率有所提高。