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Spatial Resolution Improvement of Distributed Raman Temperature Measurement System

机译:分布式拉曼测温系统空间分辨率的提高

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Ensuring the synchronization of backscattered Raman light and improving the sampling rate are of great importance to improve the spatial resolution of a distributed Raman temperature measurement system. To keep the synchronization of the Anti-Stokes and Stokes light and improve the sampling rate, four effective methods are proposed in this paper. First, the asynchrony caused by the difference in the hardware is eliminated by attaching a fiber to the pigtail of APD, which detects the earlier arriving signal. Next, the data acquisition card chooses different sampling rates for the Anti-Stokes and Stokes light according to the velocity of propagation. Then, a new algorithm is adopted to decrease the difference in the fiber position between the Anti-Stokes and Stokes signals. Finally, the optical switch with different length of pigtails is applied to improve the sampling rate without upgrading the hardware of data acquisition card. By theoretical analysis and experimental simulation, the proposed measures in this paper can improve the spatial resolution effectively.
机译:确保反向散射拉曼光的同步并提高采样率对于提高分布式拉曼温度测量系统的空间分辨率至关重要。为了保持反斯托克斯和斯托克斯光的同步并提高采样率,本文提出了四种有效的方法。首先,通过在APD的尾纤上连接光纤来消除硬件差异引起的异步,该光纤可检测较早到达的信号。接下来,数据采集卡根据传播速度为反斯托克斯和斯托克斯光选择不同的采样率。然后,采用一种新的算法来减小反斯托克斯信号与斯托克斯信号之间的光纤位置差异。最后,在不升级数据采集卡硬件的情况下,采用不同尾纤长度的光开关来提高采样率。通过理论分析和实验仿真,本文提出的措施可以有效地提高空间分辨率。

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