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Method of enhancing spatial resolution for distributed temperature measurement

机译:分布式温度测量中提高空间分辨率的方法

摘要

A method that utilizes a short sampling interval and a long-pulsewidth laser source to obtain the long sensing range and employs a signal processing technique of decomposing Brillouin spectrum to achieve high spatial resolution, high temperature resolution of the distributed temperature measurement is disclosed. The present method includes the steps of measuring the Brillouin spectra of an optical pulse applying to a sensing fiber and a overlapped area thereof, determining the length that the pulse enters according to the measured Brillouin spectra and a weighting factor and then determining a real Brillouin spectrum profile and a temperature distribution according to Brillouin frequency shifts thereof. For a 9500-m sensing range of standard single-mode fiber and a 100-ns pulsewidth laser source, spatial and positon resolutions of 20 cm and a temperature resolution of 1° C. are simultaneously achieved by using this signal processing method.
机译:公开了一种利用短的采样间隔和长脉冲宽度的激光源来获得长的感测范围并且采用分解布里渊光谱的信号处理技术以获得高空间分辨率,分布式温度测量的高温分辨率的方法。本方法包括以下步骤:测量施加到传感光纤的光脉冲的布里渊光谱及其重叠区域,根据测得的布里渊光谱和加权因子确定脉冲进入的长度,然后确定真实布里渊光谱分布及其根据布里渊频移的温度分布。对于9500 m的标准单模光纤和100 ns脉冲宽度激光源的感应范围,空间和正电子分辨率为20 cm,温度分辨率为1°。通过使用这种信号处理方法,可以同时实现C.。

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