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Overvoltage Suppression for UHV Transmission Lines
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作者 李永丽 刘太华 +3 位作者 李仲青 景雷 龙英 范建忠 《Transactions of Tianjin University》 EI CAS 2008年第3期222-225,共4页
The overvoltage phenomena of ultra high voltage (UHV) transmission lines are analyzed and verified by EMTDC/PSCAD simulation. Referring to the theoretical analyses and operating experiences of extra high voltage (EHV)... The overvoltage phenomena of ultra high voltage (UHV) transmission lines are analyzed and verified by EMTDC/PSCAD simulation. Referring to the theoretical analyses and operating experiences of extra high voltage (EHV) transmission lines in China and UHV transmission lines in Russia and Japan, the methods to suppress the internal overvoltage in UHV transmission lines by protection and control strategies are discussed. Through the cooperation among the recloser, shunt reactor, tripping and closing resistance, and metal oxide varistor(MOV), the overvoltage can be restrained within an acceptable level. 展开更多
关键词 OVERVOLTAGE RECLOSING relay protection shunt reactors SUPPRESSION UHV transmission lines
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Effects of Un-transposed UHV Transmission Line on Fault Analysis of Power Systems
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作者 王安宁 陈青 周占平 《Transactions of Tianjin University》 EI CAS 2008年第3期231-234,共4页
The conventional fault analysis method based on symmetrical components supposes that the three-phase parameters of un-transposed transmission line are symmetrical in case of fault. The errors caused by the method with... The conventional fault analysis method based on symmetrical components supposes that the three-phase parameters of un-transposed transmission line are symmetrical in case of fault. The errors caused by the method with the symmetrical distributed parameter circuit model as the equivalent circuit of the un-transposed ultra high voltage(UHV) transmission line were studied under both normal operation and fault,and the corresponding problems arising were pointed out. By contrast with electromagnetic transient and power electronics(EMTPE) simulation results with the asymmetrical distributed parameter circuit model of un-transposed line, it is shown that the conventional method cannot show the existence of negative and zero sequences before fault happening and there are many errors on voltage and current after fault happening which are different with fault types. The error ranges of voltage and current are 2.13%-81.13% and -7.82%- -86.15%, respectively. 展开更多
关键词 EMTPE fault calculation SIMULATION un-transposed UHV transmission line
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