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首页> 外文期刊>Journal of Lightwave Technology >Phi-OTDR Based On-Line Monitoring of Overhead Power Transmission Line
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Phi-OTDR Based On-Line Monitoring of Overhead Power Transmission Line

机译:PHI-OTDR基于架空输电线路的线路监控

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摘要

The overhead power transmission line, as an important component of equipment for long-distance power transmission, is threatened by icing and galloping, which will lead to equipment troubles and cause huge economic loss. Thus, there is a great need for on-line monitoring for transmission lines. Because the photoelectric composite cable, such as optical fiber composite overhead ground wire(OPGW) is widely used, it is possible to introduce distributed optical fiber sensors (DOFS) into transmission line status monitoring. Common schemes based on DOFS usually offer low sensing density and are hard to realize global awareness, while phase sensitive optical time domain reflectometry (Phi-OTDR), as a DOFS that has the characteristic of distributed sensing, is hoping to address the limitation. In this paper, by establishing mathematical models, proposing analytical method, and building demonstration devices to analyze the dynamic strain characteristics of overhead power transmission line, an Phi-OTDR based on-line monitoring scheme of transmission line status is presented and experimentally proved for the first time. The estimation error of sag is less than 5.8% on centimeter scale, and the estimation error of ice thickness is no more than 10.84% on sub-millimeter scale, which gives an accurate description of transmission line status and provides strong support for early warning of transmission line failures.
机译:作为长距离电力传输设备的一个重要组成部分的架空电力传输线受到冰雪和疾驰的威胁,这将导致设备的麻烦并导致巨大的经济损失。因此,对于传输线,很有需要在线监测。由于光电复合电缆,例如光纤复合架空接地线(OPGW)被广泛使用,因此可以将分布式光纤传感器(DOF)引入传输线状态监控。基于DOF的常见方案通常提供低的感测密度,并且很难实现全局意识,而相敏光学时域反射测量仪(PHI-OTDR)作为具有分布式传感的特征的DOF,希望能够解决限制。在本文中,通过建立数学模型,提出分析方法和建筑演示装置来分析架空电力传输线的动态应变特性,提出了基于PHI-OTDR的传输线路状态的直线监测方案,并实验证明了第一次。 SAG的估计误差小于厘米刻度的5.8%,冰厚度的估计误差在亚毫米刻度上不超过10.84%,这对传输线路状态提供了准确的描述,并为预警提供了强大的支持传输线故障。

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