Optimization of the signal processing in frequency modulated continuous wave laser ranging system

Xiang-Fu Meng, Fumin Zhang, Xinghua Qu
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Abstract

Based on a dual interferometry frequency modulated wave laser (FMCW) laser ranging system, three steps to optimize the signal processing is proposed in this paper. The first step is signal re-sampling, by which the sampling signal is turned to be equal optical frequency intervals. The second step is splicing the re-sampled signal, by which can break though the tuning range of the laser source limitation. The last step is the all-phase pretreatment of the signal, its means that the all-phase Fast Fourier Transformation (apFFT) is used to handle the re-sampled signal, which could reduce the phase error of the signal. The experiments shows that the noise effect due to the tuning nonlinearity of laser can be reduced by re-sampling the signal, 50μm range resolution can be easily obtained by this method, the apFFT is more reliable and effective than FFT in the processing to reduce the phase error and improve the speed of operation.
调频连续波激光测距系统信号处理的优化
基于双干涉调频波激光(FMCW)激光测距系统,提出了信号处理优化的三个步骤。第一步是信号重采样,将采样信号转换为等光频间隔。第二步是对重采样信号进行拼接,突破了激光源调谐范围的限制。最后一步是信号的全相位预处理,即采用全相位快速傅立叶变换(apFFT)对重采样信号进行处理,减小信号的相位误差。实验表明,通过对信号进行重采样,可以有效地降低激光调谐非线性引起的噪声影响,可轻松获得50μm的距离分辨率,在减小相位误差和提高运算速度方面,apFFT比FFT更可靠有效。
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