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SPATIAL RESOLUTION OF A CABLE FAULT LOCATION ATTEMPT BY FREQUENCY DOMAIN REFLECTOMETRY

机译:电缆故障定位的空间分辨率通过频域反射测量仪尝试

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We have demonstrated that frequency domainreflectometry (FDR) can locate the position ofdegradation or abnormality in a cable with theassistance of inverse fast-Fourier transform (IFFT).Although it is easily understandable that this FDRIFFTmethod can be applied for a location attempt of acable with more than one abnormality, we have notdemonstrated this so well experimentally. Therefore, weheated two different positions on a coaxial cable of 31.5m insulated with low-density polyethylene using twoheating chambers with an effective chamber width ofaround 45 cm set at positions 19.7 and 24.7 m from thecable end connected to the analyzer. As a result, it isclearly indicated that the two positions can be located ifwe heated there only by 10°C.In addition, the two positions at which the cableenters and goes out of the heating chamber can berecognized clearly. This means that the FDR-IFFTmethod we are developing exhibits a good spatialresolution in a way that the two positions with a mutualdistance of 45 cm are clearly recognizable.
机译:我们已经展示了频域反射仪(FDR)可以定位位置电缆中的降解或异常逆快速傅里叶变换(IFFT)的帮助。虽然这很容易理解这种fdrifft方法可以应用于一个位置尝试电缆具有多种异常,我们没有这么熟练地证明了这一点。因此,我们在31.5的同轴电缆上加热两种不同的位置M使用两个用低密度聚乙烯绝缘具有有效腔室宽度的加热室大约45厘米设置在19.7和24.7米处电缆端连接到分析仪。结果,它是清楚地表明,如果两个位置可以定位我们只加热10°C。此外,电缆的两个位置进入并离开加热室可以清楚地认识到。这意味着fdr-ifft我们正在开发的方法展示一个良好的空间解决两个职位与相互的两个职位45厘米的距离明显可识别。

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