Voltage Distribution of Internal Windings of Pole-Mounted Distribution Transformer by Lightning Surge and Measures for Voltage Reduction
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概要
- 論文の詳細を見る
When steep lightning surge enters a pole-mounted distribution transformer, the voltage distribution of the internal windings is unbalanced. It is known that a layer-to-layer short or a turn-to-turn short occurs where the voltage distribution of windings is high. In this paper, the voltage distribution of the windings was measured at the primary and secondary sides of the transformer using a testing transformer. The point of the windings where the highest voltage occurred was clarified. At the primary windings, large voltage occurs at the layer nearest the primary bushing, and the possibility of breakdown at this point is high. By field test using several types of surge arrestor, it is found that the lower the operating voltage of the surge arrestor installed in the primary side, the lower the voltage occurring at the primary windings. At the secondary windings, large voltage occurs at the layer closer to the neutral terminal, and the possibility of breakdown at this point is high. The lower the operating voltage of the surge arrestor installed in the primary side, the lower the voltage occurring at the secondary windings, too. Adding the surge arrestor in the secondary side, although effectively reduce line-to-line voltage, does not effectively reduce the voltage of the secondary windings.
- 社団法人 電気学会の論文
- 2005-08-01
著者
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YOKOYAMA Shigeru
Electric Power Engineering Research Lab., Central Research Institute of Electric Power Industry (CRI
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Yokoyama Shigeru
Central Res. Inst. Of Electric Power Ind.
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ASAKAWA Akira
Central Research Institute of Electric Power Industry
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ASAKAWA Akira
Electric Power Engineering Research Lab., Central Research Institute of Electric Power Industry
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HONDA Hideki
Tohoku Electric Power Co., Inc.
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HONDA Hideki
Research & Development Center Tohoku Electric Power Co., Inc.
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Honda Hideki
Tohoku Electric Power Co. Inc.
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Asakawa Akira
Electric Power Engineering Research Lab. Central Research Institute Of Electric Power Industry
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Honda H
Central Res. Inst. Electric Power Ind. (criepi) Kanagawa Jpn
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Yokoyama S
Criepi
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Yokoyama Shigeru
Electric Power Engineering Research Lab. Central Research Institute Of Electric Power Industry
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Yokoyama Shigeru
Central Research Institute Of Electric Power Industry
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Yokoyama Shigeru
Electric Power Engineering Research Lab Criepi
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