Chen Junbao, Zhu Hongbin, Xia Wei, Guo Dongmei, Hao Hui, Wang Ming
Opt Express. 2017 Jan 23;25(2):560-572. doi: 10.1364/OE.25.000560.
A self-mixing birefringent dual-frequency laser Doppler velocimeter (SBD-LDV) for high-resolution velocity measurements is presented in this paper. The velocity information of the object can be accurately extracted from the self-mixing Doppler frequency shift of the birefringent light-carried microwave signal. We generate a virtual stable light-carried microwave by using a birefringent dual-frequency He-Ne laser which further simplifies the structure of the light source. Moreover, the optical configuration based on the laser self-mixing interference brings benefits of compact optical setup, self-alignment, and direction discriminability. Experimentally, we extracted the Doppler beat frequency signal by the low-frequency (millihertz) phase lock-in amplifier, measured the beat frequency precisely in time-domain with a low sampling rate and calculated the magnitude of velocity. Compared with the previous self-mixing LDV, the average velocity resolution of SBD-LDV is improved to 0.030 mm/s for a target with longitudinal velocity, benefiting from the high stability of light-carried microwave. It is of great meaning and necessity because it helps to provide an available velocimeter with high stability and an extremely compact configuration, making a potential contribution to the velocimetry in practical engineering application.
本文提出了一种用于高分辨率速度测量的自混合双折射双频激光多普勒测速仪(SBD-LDV)。物体的速度信息可以从携带微波信号的双折射光的自混合多普勒频移中准确提取。我们使用双折射双频氦氖激光器产生虚拟稳定的携带微波的光,这进一步简化了光源结构。此外,基于激光自混合干涉的光学配置具有光学装置紧凑、自对准和方向可分辨性等优点。实验中,我们通过低频(毫赫兹)锁相放大器提取多普勒拍频信号,以低采样率在时域精确测量拍频并计算速度大小。与先前的自混合LDV相比,得益于携带微波的高稳定性,SBD-LDV对于具有纵向速度的目标的平均速度分辨率提高到了0.030 mm/s。这具有重要意义和必要性,因为它有助于提供一种具有高稳定性和极其紧凑配置的可用测速仪,为实际工程应用中的测速做出潜在贡献。