电缆结构对频域反射法故障定位的影响

Y. Ohki, N. Hirai
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引用次数: 6

摘要

作者已经证明,通过频域反射法(FDR)和快速反傅立叶变换(IFFT)的结合,可以对热老化、机械老化或伽玛射线照射的电缆中点的精确位置进行估计。本文研究了这种故障定位能力如何取决于电缆的类型和结构,使用几种聚合物绝缘电缆,如用阻燃乙丙二烯共聚物(FR-EPDM)绝缘的三芯电缆,用硅橡胶(SiR)或交联聚烯烃(XLPO)绝缘的双芯电缆,以及用低密度聚乙烯(LDPE)绝缘的同轴圆柱形电缆。因此,对于长度为16 ~ 72m的电缆,同轴电缆输入电磁波的最高频率为1.0 GHz及以上时灵敏度最高,双芯或三芯电缆输入电磁波的最高频率为600 ~ 800mhz时灵敏度最高。
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Influence of cable structure on the fault location by frequency domain reflectometry
The authors have demonstrated that the estimation of the precise locations of points in cables aged thermally or mechanically or by the irradiation of gamma rays is possible by a combination of frequency domain reflectometry (FDR) and inverse fast Fourier transform (IFFT). This paper examines how this ability of fault location depends on the type and structure of the cable, using several kinds of polymer insulated cables such as triple core cables insulated with flame-retardant ethylene propylene diene copolymer (FR-EPDM), dual core cables insulated with silicone rubber (SiR) or crosslinked polyolefin (XLPO), and coaxial cylindrical cables insulated with low density polyethylene (LDPE). As a result, for cables with lengths of 16 to 72 m, the maximum sensitivity is attained when the highest frequency of the inputted electromagnetic waves is 1.0 GHz or higher for coaxial cables, but around 600 to 800 MHz for dual or triple core cables.
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