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High Frequency Alternating Current (AC) Tangent Delta Measurement Technique for Underground Power Cable System

机译:地下电力电缆系统的高频交流(AC)切线增量测量技术

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The aim of this paper is to show that Tan delta HFAC technique is applicable for longer cables. As underground cables are in service for years, it is necessary to carry out diagnostic test to rectify the possible problem that may occur in a cable so that precautionary action can be taken to avoid unnecessary in-service failure of the cable. One of the diagnostic testing techniques, known as Tangent Delta, is a method of testing cables to define the insulation condition of the underground cable. The phase shifts caused by the lossy current due to the existence of impurities in cable insulation is measured in this method. As most of distribution cables are long lengths, it becomes necessary to measure the tangent delta for these longer cables. In this paper, HFAC technique on longer length of good condition 11 KV power cables were used as samples to determine the tangent delta. Higher frequencies (>100Hz) were used to determine the tangent delta of cables at voltage of 1kV. The current (I) and phase (θ) were obtained in this experiment using HFAC measurement technique. CST Cable Suite software was used for simulating the experiment to verify the HFAC experimental setup by attaining sufficient dielectric current obtained through simulation and compare the leakage current values with the experimental values. The tangent delta results were attained for good cable with the length of 40 m, 70 m and 140 m and compared with 20 m length of good condition cable. The tangent delta results show that the HFAC technique is also applicable for the longer cable as well.
机译:本文的目的是表明Tan delta HFAC技术适用于更长的电缆。由于地下电缆已经使用多年,因此有必要进行诊断测试以纠正电缆中可能出现的问题,以便可以采取预防措施以避免电缆不必要的使用中故障。诊断测试技术之一称为Tangent Delta,是一种测试电缆以定义地下电缆绝缘状况的方法。用这种方法测量由于电缆绝缘中存在杂质而由有损耗电流引起的相移。由于大多数配电电缆很长,因此有必要测量这些较长电缆的切线增量。本文以较长状态良好的11 KV电力电缆上的HFAC技术为样本,确定正切增量。较高的频率(> 100Hz)用于确定电压为1kV时电缆的切线增量。在本实验中,使用HFAC测量技术获得了电流(I)和相位(θ)。使用CST Cable Suite软件进行模拟实验,以通过获得足够的介电电流来验证HFAC实验设置,并将泄漏电流值与实验值进行比较。对于长度为40 m,70 m和140 m的优质电缆,可得到切线增量结果,而与状况良好的电缆为20 m的长度相比,可得到正切增量结果。切线增量结果表明,HFAC技术也适用于更长的电缆。

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