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Performance comparison of Raman/erbium-doped-fiber hybrid-amplification-based long-distance fiber Bragg grating sensor systems

机译:拉曼/掺do光纤混合放大的长距离光纤布拉格光栅传感器系统性能比较

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摘要

A study regarding the performance comparison of three different types of long-distance fiber Bragg grating (FBG) sensors based on bidirectional Raman and erbium-doped fiber (EDF) amplification has been carried out to determine the most power-efficient and accurate configuration. The three sensor system configurations studied were a bidirectional hybrid Raman amplifier with (Type I) an EDF located after the distributed Raman amplification section, (Type II) an EDF located before the distributed Raman amplification section, and (Type III) without an EDF. The FBG sensor systems are based on a demodulation scheme employing radio frequency power measurements of a beat signal, in which a sine-modulated amplified spontaneous emission from a directly modulated reflective semiconductor optical amplifier is employed as a broadband light source. The results of our experimentation showed that the sensor system with the EDF located prior to the Raman amplification section provided the best performance in regards to its pump power efficiency, electrical signal-to-noise ratio, and measurement accuracy.
机译:进行了有关基于双向拉曼和掺-光纤(EDF)放大的三种不同类型的长距离光纤布拉格光栅(FBG)传感器性能比较的研究,以确定最省电且最准确的配置。所研究的三种传感器系统配置是双向混合拉曼放大器,其中(I型)EDF位于分布式拉曼放大部分之后,(II型)EDF位于分布式拉曼放大部分之前,而(III型)没有EDF。 FBG传感器系统基于采用拍频信号的射频功率测量的解调方案,其中将来自直接调制的反射型半导体光放大器的正弦调制的放大自发发射用作宽带光源。我们的实验结果表明,EDF位于拉曼放大部分之前的传感器系统在泵浦功率效率,电信噪比和测量精度方面提供了最佳性能。

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