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Dielectric Spectroscopy of Very Low Loss Model Power Cables

机译:低损耗模型电力电缆的介电谱

摘要

This research study focuses on the dielectric response of XLPE model power cables that have combinations of homo- and co-polymer insulation with furnace and acetylene carbon black semicon shields. Three dielectric spectroscopy techniques, which are frequency response analyzer and transformer ratio bridge in both frequency domain, and charging/discharging current system in time domain, were jointly used to measure the low loss XLPE cables in the frequency range from 10-4Hz to 104Hz at temperatures from 20°C to 80°C. Degassing effects and thermal ageing effects have also been studied with the spectroscopy techniques. Thermal-electric behaviour and maximum voltages for thermal breakdown have been theoretically simulated for the model cables.\udThree loss origins of the XLPE cables have been found with different loss mechanisms. Conduction loss due to thermally activated electron/hole hopping dominates the lower frequency range from 10-4Hz to 1Hz; Semicon loss due to its in series resistance with the insulation layer in cable equivalent circuit dominates the higher frequency range from 102Hz to 104Hz; intrinsic polarization loss of the XLPE insulation has dominant flat loss spectra in the mid-frequency range from 1Hz to 102Hz. Degassing was found to decrease the conductivity of the model cables, while thermal ageing greatly increased the conductivity. Thermal-electric simulation results with FEMLAB have shown that the position of maximum field changes from inner to outer insulation boundary under higher applied voltages. A loss mechanism model with mathematical expression for dielectric loss spectrum calculation is finally proposed to explain the total dielectric loss of polymer power cables.
机译:这项研究的重点是XLPE型电力电缆的介电响应,该电缆具有均聚物和共聚物绝缘以及熔炉和乙炔炭黑半导体屏蔽层。三种介电谱技术,分别是频域中的频率响应分析仪和变压器比率电桥以及时域中的充电/放电电流系统,共同用于测量10-4Hz至104Hz频率范围内的低损耗XLPE电缆温度从20°C到80°C。还已经使用光谱技术研究了脱气作用和热老化作用。理论上已经对模型电缆进行了热电行为和热击穿的最大电压模拟。\ ud XLPE电缆的三个损耗根源都具有不同的损耗机理。热激活电子/空穴跳跃引起的传导损耗主导了10-4Hz至1Hz的较低频率范围;由于半导体电阻与电缆等效电路中绝缘层的串联电阻而导致的半导体损耗占主导地位,在102Hz至104Hz的较高频率范围内。 XLPE绝缘层的固有极化损耗在1Hz至102Hz的中频范围内具有占主导地位的平坦损耗谱。发现脱气会降低模型电缆的电导率,而热老化会大大提高模型的电导率。 FEMLAB的热电模拟结果表明,在较高的施加电压下,最大电场的位置从内部绝缘边界到外部绝缘边界变化。最后提出了一种具有数学表达式的损耗机理模型,用于计算介质损耗谱,以解释聚合物电力电缆的总介质损耗。

著录项

  • 作者

    Liu, Tong;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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