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首页> 外文期刊>Applied optics >Injected current reshaping in distance measurement by laser self-mixing interferometry
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Injected current reshaping in distance measurement by laser self-mixing interferometry

机译:激光自混合干涉术在距离测量中注入电流整形

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摘要

Self-mixing interferometry (SMI), as an extremely simple and compact laser range finding technique, is especially appropriate to develop minitype sensors for narrow space and small precision parts. In order to enhance the distance resolution performance of this technique, we described the mechanism of nonlinearity in laser frequency under injected current tuning, and proposed a current reshaping method to linearize the laser frequency to attain higher resolution in the scheme of SMI. The proof of nonlinearity was obtained through numerical simulation by considering the change of temperature and carrier concentration and experiment by complex wavelet analysis. The current reshaping method, based on the experimental data of wavelength versus injected current, was proposed to suppress the nonlinearity and improve the distance resolution to better than 20 μm over the range of 2.4-20.4 cm. The influence of tuning parameters and other sources of error was discussed additionally.
机译:自混合干涉术(SMI)作为一种极其简单且紧凑的激光测距技术,特别适合开发用于狭窄空间和小型精密零件的小型传感器。为了提高该技术的距离分辨率性能,我们描述了在注入电流调谐下激光频率非线性的机理,并提出了一种电流整形方法,以SMI方案线性化激光频率以获得更高的分辨率。通过考虑温度和载流子浓度的变化通过数值模拟获得非线性,并通过复杂小波分析进行实验。提出了一种基于波长与注入电流的实验数据的电流整形方法,以抑制非线性并在2.4-20.4 cm的范围内将距离分辨率提高到20μm以上。此外,还讨论了调整参数和其他误差源的影响。

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