MICHISHITA Koji | Shizuoka University
スポンサーリンク
概要
関連著者
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MICHISHITA Koji
Shizuoka University
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Hongo Yasuji
Tohoku Electric Power Co.
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HONGO Yasuji
Tohoku Electric Power Co., Inc.
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Ishii Masaru
The Univ. Of Tokyo
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Michishita K
Shizuoka University
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Ishii M
University Of Tokyo
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Ikesue Kenshi
Kyushu Electric Power Co. Inc.
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ISHII Masaru
University of Tokyo
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Ishii M
The University Of Tokyo
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Shibata Naoki
Shizuoka University
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Hongo Y
Tohoku Electric Power Co. Inc.
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Hongo Yasuji
Tohoku Electric Power Company
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Michishita Koji
Dept. Of Electrical & Electronic Eng. Shizuoka University
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YOKOYAMA Shigeru
Central Research Institute of Electric Power Industry (CRIEPI)
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IKESUE Kenshi
Kyushu Electric Power Co., Inc.
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ISHIZAKI Yoshihiro
Toshiba
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Nagai Toshiyuki
Shizuoka University
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Ishizaki Yoshihiro
Toshiba Co.
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Kawamoto Shinji
Chugoku Electric Power Company
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KOJIMA Soji
Kogakuin University
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SHIMOMURA Tetsuro
Mitsubishi Electric Co.
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Morooka Yasunari
Kyushu Electric Power Co. Inc.
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Maeda Kouji
Chugoku Electric Power Company
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Hongo Yasuji
R & D Center Tohoku Electric Power Co. Inc.
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Hongo Yasuji
Tohoku Electric Power Co. Inc.
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Yokoyama Shigeru
Central Res. Inst. Electric Power Ind. Kanagawa‐ken
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IGA Kazuhiro
Shizuoka University
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OCHIAI Takushi
Shizuoka University
著作論文
- Estimation of Lightning Current Parameters Based on Measured Electric Field
- Review And Suggestion on Modeling of Power Distribution Instrument for Estimation of Lightning Fault Ratio
- Sparkover Rate of Medium-Voltage Line Due to Indirect Lightning Hit
- Factors Influencing Lightning Failure Rate of Power distribution line by Indirect Lightning Hit
- E-field waveform influenced by distance to return strokes
- A Pole-Mounted Distribution Transformer Model for Analysis of Lightning Surge
- Estimation of Charge Transfer Based on Measurement of Vertical Electric Field
- Simultaneous Measurements of Electromagnetic Field Waveforms In Southern Kyushu
- Equivalent Circuit of Pole-Mounted Distribution Transformer for Analysis of Lightning Overvoltages
- Theoretical Comparison of Agrawal's and Rusck's Field-to-Line Coupling Models for Calculation of Lightning-Induced Voltage on An Overhead Wire
- Sparkover rate of Medium-Voltage Line Due to Indirect and Direct Lightning Hits Dependent on Correlation between Peak Value and Front Duration of Return-Stroke Current Waveform
- E-field waveform influenced by distance to return strokes