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A New method of aging assessment for XLPE cable insulation based on dielectric response

机译:基于介电响应的交联聚乙烯电缆绝缘老化评估的新方法

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In order to solve the problem of permanent damage caused by the traditional tensile strength test in insulation ageing assessment of XLPE (extrude low-density polyethylene) cables, this paper presents a new method of aging assessment for XLPE cables insulation based on ultra-low-frequency dielectric response measurements. On the basis of equivalent circuit, the measurement algorithm of dielectric response is analyzed, where after, the calculating formulas of dielectric parameters are obtained. In addition, XLPE cables samples were carried on accelerated thermal ageing under laboratory conditions. It is shown from the results that dielectric dissipation factor increases obviously at lower frequency range with the increasing aging time. The total FDS (frequency domain spectroscopy) curves shift towards the high frequency regions with the increase of test temperature. The minimum value of dielectric dissipation factor for XLPE cable samples is almost the same at different test temperatures and certain ageing time. Therefore, the minimum value of dielectric dissipation factor in frequency domain can be used as the reference criterion of insulation ageing status. The new dielectric response assessment method presented in this paper could be used as non-destructive ageing evaluation criterion of XLPE cables.
机译:为了解决传统的抗拉强度测试在XLPE电缆绝缘老化评估中造成的永久性损坏的问题,本文提出了一种基于超低密度的XLPE电缆绝缘老化评估的新方法。频率介电响应测量。在等效电路的基础上,分析了介电响应的测量算法,然后得出了介电参数的计算公式。另外,XLPE电缆样品在实验室条件下进行了加速的热老化。从结果可以看出,随着老化时间的增加,介电损耗因子在较低的频率范围内明显增加。随着测试温度的升高,总的FDS(频域光谱)曲线向高频区域移动。 XLPE电缆样品的介电损耗因子的最小值在不同的测试温度和一定的老化时间下几乎相同。因此,可以将频域中介电损耗因子的最小值作为绝缘老化状态的参考标准。本文提出的新的介电响应评估方法可作为XLPE电缆的无损老化评估标准。

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