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Brillouin optical time-domain analyzer for extended sensing range using probe dithering and cyclic coding

机译:Brillouin光学时域分析器,用于使用探头抖动和循环编码的扩展传感范围

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摘要

We present an enhanced performance Brillouin optical time-domain analysis sensor that uses dual probes waves with optical frequency modulation and cyclic coding. The frequency modulation serves to increase the probe power that can be injected in the fiber before the onset of non-local effects and noise generated by spontaneous Brillouin scattering. This leads to higher detected signal-to-noise ratio (SNR), which is further increased by the coding gain. The enhanced SNR translates to extended range for the sensor, with experiments demonstrating 1-m spatial resolution over a 164 km fiber loop with a 3-MHz Brillouin frequency shift measurement precision at the worst contrast position. In addition, we introduce a study of the power limits that can be injected in the fiber with cyclic coding before the appearance of distortions in the decoded signal.
机译:我们介绍了一种增强的性能布里渊光学时域分析传感器,它使用具有光学频率调制和循环编码的双探针波。频率调制用于增加可以在非本地E FF EFES和噪声发出之前在FIER中注入的探针功率和由自发布里渊散射产生的噪声。这导致更高的检测到的信噪比(SNR),其通过编码增益进一步增加。增强的SNR转化为传感器的扩展范围,实验,通过164公里的FIER循环展示了1米的空间分辨率,具有3MHz布里渊频率移位测量精度,处于最差的对比位置。此外,我们介绍了对电源限制的研究,该电源限制可以在解码信号中的扭曲外观之前通过循环编码注入。

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