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A fibre optic system for distributed temperature sensing based on raman scattering.

机译:基于拉曼散射的分布式温度传感光纤系统。

摘要

This thesis is based on a research project to monitor the temperature profile along a power cable using the fibre optic Distributed Temperature Sensing (DTS) technology. Based on the temperature measured by a DTS system, real time condition monitoring of power cables can be achieved.udIn this thesis, there are three main research themes.ud1. Develop a DTS system for industrial applications. The entire hardware system and measuring software are developed to be an industrial product. Multiple functions are provided for the convenience of users to conduct temperature monitoring, temperature history logging and off-line simulation.ud2. Enhance the robustness of the DTS system. An algorithm for signal compensation is developed to eliminate the signal fluctuation due to disturbance from the hardware and its working environment. It ensures robustness of the system in industrial environments and applicability to different system configurations.ud3. Improve the accuracy of the DTS system. A calibration algorithm based on cubic spline fitting is developed to cope with non-uniform fibre loss in the system, which greatly improved the accuracy of the temperature decoding in real applications with unavoidable nonlinearudcharacteristics.udThe developed DTS system and the algorithms have been verified by continuous experiments for about one year and achieved a temperature resolution of 0.1 degree Celsius, a spatial resolution of 1 meter, and a maximum error of 2 degree Celsius in an optic fibre with the length of 2910 metres.
机译:本论文基于一个研究项目,该研究项目使用光纤分布式温度传感(DTS)技术来监测电缆沿电缆的温度分布。基于DTS系统测得的温度,可以实现电力电缆的实时状态监测。 ud本文主要研究三个主题。 ud1。开发用于工业应用的DTS系统。整个硬件系统和测量软件被开发为工业产品。提供多种功能,方便用户进行温度监控,温度历史记录和离线模拟。 ud2。增强DTS系统的稳定性。开发了一种信号补偿算法,以消除由于硬件及其工作环境的干扰而引起的信号波动。它可确保系统在工业环境中的稳定性以及对不同系统配置的适用性。提高DTS系统的准确性。开发了基于三次样条拟合的标定算法,以解决系统中光纤的不均匀损耗,在不可避免的非线性,非特征的情况下,极大地提高了实际应用中温度解码的精度。经过大约一年的连续实验验证,在长度为2910米的光纤中,温度分辨率为0.1摄氏度,空间分辨率为1米,最大误差为2摄氏度。

著录项

  • 作者

    Wang Haichao;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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