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The Design of a 10 000 Ampere Impulse Current Generator Using Low Voltage Components

The Design of a 10 000 Ampere Impulse Current Generator Using Low Voltage Components
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摘要 More and more applications of ZnO arrester in electrical system experienced more problems.One thing,that is still under some investigation,is the effect of multiple lightning strike to the performance of ZnO arrester.As we know,the design of ZnO arrester for transmission system and for distribution system differs in the point of view of the number of ZnO blocks.Transmission system,due to its higher nominal voltage than distribution system,has more numbers of ZnO blocks inside an arrester tube.In term of the current rating of an arrester,it is found that there is some different value of the current rating.The current rating of an arrester installed closer to electrical substation is higher than that of some further away from the substation.To the respond of a lightning impulse strike,the arrester will let a high value of impulse current flowing.It tends to heat the ZnO material of the arrester.If the number of impulse strike is quite high then it may give the effect to the change of the arrester performance.This condition will endanger the equipment that is protected by the arrester from lightning strikes.During this research,the scope of work is limited to making an impulse current generator toward to one having 8/20 μs wave-shape.This kind of impulse current wave-shape is the one that is used for studying the performance of ZnO block.The effect of the inductance and capacitance of the impulse current generator were also studied.A 10 fused cut out was blown by an impulse having 10321 A of 17.8/37.8 μs.A ZnO arrester block brokendown/allowed large value of current :10982 A flowing under the voltage of 10.5 More and more applications of ZnO arrester in electrical system experienced more problems.One thing,that is still under some investigation,is the effect of multiple lightning strike to the performance of ZnO arrester.As we know,the design of ZnO arrester for transmission system and for distribution system differs in the point of view of the number of ZnO blocks.Transmission system,due to its higher nominal voltage than distribution system,has more numbers of ZnO blocks inside an arrester tube.In term of the current rating of an arrester,it is found that there is some different value of the current rating.The current rating of an arrester installed closer to electrical substation is higher than that of some further away from the substation.To the respond of a lightning impulse strike,the arrester will let a high value of impulse current flowing.It tends to heat the ZnO material of the arrester.If the number of impulse strike is quite high then it may give the effect to the change of the arrester performance.This condition will endanger the equipment that is protected by the arrester from lightning strikes.During this research,the scope of work is limited to making an impulse current generator toward to one having 8/20 μs wave-shape.This kind of impulse current wave-shape is the one that is used for studying the performance of ZnO block.The effect of the inductance and capacitance of the impulse current generator were also studied.A 10 fused cut out was blown by an impulse having 10321 A of 17.8/37.8 μs.A ZnO arrester block brokendown/allowed large value of current :10982 A flowing under the voltage of 10.5 kV
出处 《高电压技术》 EI CAS CSCD 北大核心 2008年第12期2726-2731,共6页 High Voltage Engineering
关键词 低压元件 电流发生器 高压冲击 设计 氧化锌 current shunt front time high current multiple lightining impulse tail time zing oxide
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参考文献6

  • 1Hinrichsen V. Metal oxide surge arrester fundamental [M]. Berlin, Germany: Siemens AG, 2001.
  • 2Haddath H, Warne D. Advances in high voltage engineering[C] //IEE Power and Energy Series 40, the Institutionof Electrical Engineering. Bormin, Cornwall: MPBooks Limited, 2004: 229.
  • 3IEC 99-4 International standard, surge arresters part 4 : metal oxide surge arresters without gaps for A. C. Systems' [S], 1991.
  • 4IEC 60099 4 Surge arresters, part 4: metal oxide surgte arresters without gaps for A. C. Systems[S], 2006.
  • 5Naidu M S. High voltage engineering[M]. New Delhi: Tara McGraw Hill Publishing Company Limited, 1995;
  • 6Sen P C. Principles of electric machines and power electronic [M]. America: John Wiley & Sons, 1996.

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