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Optical Acceleration Measurement Method with Large Non-ambiguity Range and High Resolution via Synthetic Wavelength and Single Wavelength Superheterodyne Interferometry

机译:合成波长和单波长超外差干涉法测量大范围模糊度和高分辨率的光学加速度

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摘要

Interferometric optomechanical accelerometers provide superior resolution, but the application is limited due to the non-ambiguity range that is always less than half of the wavelength, which corresponds to the order of mg. This paper proposes a novel acceleration measurement method based on synthetic wavelength and single wavelength superheterodyne interferometry to address this issue. Two acousto-optical modulators and several polarizers are introduced to the two-wavelength interferometry to create four beams with different frequencies and polarization states, and two ultra-narrow bandwidth filters are used to realize the single wavelength measurement simultaneously. This technique offers the possibility to expand the non-ambiguity range without compromising the high resolution. Also, the superheterodyne phase measurement and the corresponding processing algorithm are given to enable real-time measurement. A prototype is built and the preliminary experimental results are compared with the simulation results, showing good agreement. The results prove an estimated acceleration measurement resolution of around 10 μg and a non-ambiguity range of larger than 200 mg, which is more than 100 times that of the single wavelength-based optical accelerometer.
机译:干涉式光机械加速度计可提供出色的分辨率,但由于无歧义范围始终小于波长的一半(对应于mg量级),因此应用受到限制。针对这种问题,本文提出了一种基于合成波长和单波长超外差干涉法的加速度测量方法。在两个波长干涉仪中引入了两个声光调制器和几个偏振器,以创建具有不同频率和偏振态的四个光束,并使用两个超窄带宽滤波器同时实现单波长测量。该技术提供了扩大不模糊范围而又不损害高分辨率的可能性。此外,给出了超外差相位测量和相应的处理算法以实现实时测量。建立了原型,并将初步实验结果与仿真结果进行了比较,显示出很好的一致性。结果证明,估计的加速度测量分辨率约为10μg,无歧义范围大于200 mg,这是单波长光学加速度计的100倍以上。

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