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文章摘要
极性转换电路在XLPE电缆超低频耐压试验中的优化设计
The#$NBSDesign#$NBSfor#$NBSApplication#$NBSof#$NBSVoltage#$NBSPolarity#$NBSSwitch#$NBSCircuit#$NBSin#$NBS Ultralow#$NBSFrequency Withstand#$NBSVoltage#$NBSTest With#$NBSXLPE#$NBSCable
Received:July 03, 2015  Revised:September 28, 2015
DOI:
中文关键词: 反向馈电  超低频  XLPE电缆  极性转换  电荷积累
英文关键词: feedback  ultra-low frequency  XLPE cable  polarity switch  charge accumulation
基金项目:
Author NameAffiliationE-mail
ZHANG Xiaolong School of Electrical Engineering,Southwest Jiaotong University,Chengdu 6l003l,China zhangxl@home.swjtu.edu.cn 
LUO Xinyi* School of Electrical Engineering,Southwest Jiaotong University,Chengdu 6l003l,China 526545942@qq.com 
TANG Shihu School of Electrical Engineering,Southwest Jiaotong University,Chengdu 6l003l,China  
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中文摘要:
      0.1Hz超低频余弦方波耐压系统,由于与工频耐压系统有良好的等效性且具备体积小,重量轻,能有效的检测出交联聚乙烯电力电缆(简称XLPE电力电缆)的绝缘缺陷等优点,在XLPE电力电缆耐压试验的应用越来越多。但现有超低频设备的极性转换电路设计有二阶阻尼震荡,造成能量损失,使得极性转换后正负电压不一致;由于XLPE电缆的特殊空间结构,这样会增加XLPE电力电缆的空间电荷积累量,最终对电缆造成隐性伤害。针对以上问题,本文提出了采用反向可馈电的极性转换电路的设计方法来解决此问题。通过matlab/simulink仿真表明:此方法能够补充极性转换过程的能量损失,使得极性转换后正负电压一致;仿真结果与理论分析一致,验证了设计的正确性。
英文摘要:
      0.1Hz VLF cosine square-wave puncture test systems, Owing to have good equivalence with the systems of power frequency withstand voltage and have small size, light weight, etc, can effectively detect defects of XLPE insulated power cables. But now polarity switching circuit of ultra-low frequency device is designed with second order damped shocks with energy loss, resulting in inconsistent positive and negative polarity voltage. That will lead to the accumulation of space charge of XLPE power cable, making the whole performance of the system decreases. To solve the above problem, this paper proposes the use of feedback in polarity switching circuit to solve this problem. By matlab / simulink simulation showing that this method can complement the loss of polarity energy ,making positive and negative polarity of the voltage reach agreement. Simulation results and theoretical analysis of the design are the same.
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