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Fast digital envelope detector based on generalized harmonic wavelet transform for BOTDR performance improvement

机译:基于广义谐波小波变换的快速数字包络检波器,提高BOTDR性能

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摘要

We propose a fast digital envelope detector (DED) based on the generalized harmonic wavelet transform to improve the performance of coherent heterodyne Brillouin optical time domain reflectometry. The proposed DED can obtain undistorted envelopes due to the zero phase-shift ideal bandpass filter (BPF) characteristics of the generalized harmonic wavelet (GHW). Its envelope average ability benefits from the passband designing flexibility of the GHW, and its demodulation speed can be accelerated by using a fast algorithm that only analyses signals of interest within the passband of the GHW with reduced computational complexity. The feasibility and advantage of the proposed DED are verified by simulations and experiments. With an optimized bandwidth, Brillouin frequency shift accuracy improvements of 19.4% and 11.14%, as well as envelope demodulation speed increases of 39.1% and 24.9%, are experimentally attained by the proposed DED over Hilbert transform (HT) and Morlet wavelet transform (MWT) based DEDs, respectively. Spatial resolution by the proposed DED is undegraded, which is identical to the undegraded value by HT-DED with an allpass filter characteristic and better than the degraded value by MWT-DED with a Gaussian BPF characteristic.
机译:我们提出了一种基于广义谐波小波变换的快速数字包络检波器(DED),以提高相干外差布里渊光时域反射仪的性能。由于广义谐波小波(GHW)的零相移理想带通滤波器(BPF)特性,提出的DED可以获得不失真的包络。它的包络平均能力得益于GHW的通带设计灵活性,并且可以通过使用快速算法来加快其解调速度,该算法仅以较低的计算复杂度分析GHW的通带内的目标信号。仿真和实验验证了提出的DED的可行性和优势。通过优化带宽,布里斯班频移精度提高了19.4%和11.14%,包络解调速度提高了39.1%和24.9%,这是通过Hilbert变换(HT)和Morlet小波变换(MWT)提出的DED实验获得的)。提出的DED的空间分辨率未降级,与具有全通滤波器特性的HT-DED的降级值相同,并且优于具有高斯BPF特性的MWT-DED的降级值。

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