首页> 外文期刊>International review of electrical engineering >Analysis of Variation of Brillouin and Rayleigh Scattering Coefficients with Thermal Strain in Landau-Placzek Ratio Based Optical Fiber Distributed Sensing for XLPE Insulated Power Cables
【24h】

Analysis of Variation of Brillouin and Rayleigh Scattering Coefficients with Thermal Strain in Landau-Placzek Ratio Based Optical Fiber Distributed Sensing for XLPE Insulated Power Cables

机译:基于Landau-Placzek比率的XLPE绝缘电力电缆光纤分布传感中布里渊和瑞利散射系数随热应变的变化分析

获取原文
获取原文并翻译 | 示例
       

摘要

The optical fiber distributed sensing method based on Landau-Placzek Ratio (LPR), where Rayleigh and Brillouin scattering coefficients are utilized, is widely used for detecting thermal strain formations in XLPE insulated power cables. In this study, using strain dependence of material characteristics in XLPE cable insulation, i.e. Young and Shear moduli and the Poisson ratio, variations of Rayleigh and Brillouin scattering coefficients with thermal strain and their thermal strain sensitivities have been analyzed. Using Matlab R2008a, behaviour of the sensing fiber integrated to a 64/110 kV power cable has been obtained with simulations for 318 °K-339 °K temperature range and 668 με - 1231 με thermal strain range. For thermal strain variations in 668 με - 1231 με range, while thermal strain sensitivity of Rayleigh scattering coefficient is changing from 1.8286 ×10~(-4) % to 1.8267 ×10~(-4) %, that of Brillouin scattering coefficient changes from - 7.9727 ×10~(-4) % to - 8.0086 ×10~(-4) % . Using simulation results, thermal strain sensitivity variations of Rayleigh and Brillouin scattering coefficients have been computed as ~- 3.27 ×10~(-10) %/με and ~- 6.38 × 10~(-9)%/με, respectively. In 668 με - 1231 με range, it has been observed that thermal strain sensitivity of LPR changes from 9.7439×10~(-4) % to 9.7068 ×10~(-4) %. Using LPR simulation results, strain-dependent LPR formula derived with the analytical method has been simplified and expressed with a linear equation.
机译:基于Landau-Placzek比率(LPR)的光纤分布式传感方法,利用瑞利和布里渊散射系数,被广泛用于检测交联聚乙烯绝缘电力电缆中的热应变形成。在这项研究中,利用XLPE电缆绝缘中材料特性的应变相关性,即杨氏和剪切模量以及泊松比,分析了瑞利和布里渊散射系数随热应变的变化及其对热应变的敏感性。使用Matlab R2008a,通过对318°K-339°K温度范围和668με-1231με热应变范围的仿真,获得了集成到64/110 kV电力电缆中的传感光纤的性能。对于668με-1231με范围内的热应变变化,瑞利散射系数的热应变敏感性从1.8286×10〜(-4)%变为1.8267×10〜(-4)%,布里渊散射系数的热应变灵敏度从-7.9727×10〜(-4)%至-8.0086×10〜(-4)%。利用模拟结果,瑞利和布里渊散射系数的热应变敏感性变化分别为〜-3.27×10〜(-10)%/με和〜-6.38×10〜(-9)%/με。在668με-1231με范围内,已观察到LPR的热应变敏感性从9.7439×10〜(-4)%变为9.7068×10〜(-4)%。使用LPR仿真结果,简化了用解析方法得出的应变相关LPR公式,并用线性方程式表示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号