Ametani Akihiro | Power System Analysis Lab. Doshish Univ.
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概要
関連著者
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Ametani Akihiro
Power System Analysis Lab. Doshish Univ.
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Ametani Akihiro
Doshisha Univ. Kyoto
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Ametani Akihiro
Doshisha Univ.
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Nagaoka Naoto
Tokyo Electric Power Co. Kanagawa
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NAGAOKA Naoto
Faculty of Engineering, Doshisha University
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Ametani A
Faculty Of Engineering Doshisha University
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BABA Yoshihiro
Doshisha University
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Nagaoka N
Doshisha University
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Baba Y
Faculty Of Engineering Doshisha University
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Nagaoka Naoto
Tokyo Electric Power Company
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Nagaoka Naoto
Doshisha Univ. Kyoto
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Sekioka S
Kansai Tech Corp.
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Funabashi Toshihisa
Meidensha Corporation
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Okabe Shigemitu
Tokyo Electric Power Co.
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Ametani Akihiro
Doshisha University
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Ametani Akihiro
Department Of Electrical Engineering Doshisha University
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Ueda Toshiaki
Chubu Electric Power Co. Inc.
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Funabashi T
Meidensha Corporation
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SEKIOKA Shozo
Kansai Tech Corp.
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Ametani Akihiro
Faculty Of Engineering Doshisha University
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Nayel M
Doshisha University
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Nagaoka Naoto
Department Of Electrical Engineering Doshisha University
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Nagaoka Naoto
Faculty Of Engineering Doshisha University
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Funabashi Toshihisa
Meidensha Corp.
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Nagaoka Naoto
Doshisha University
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Sonoda Toshio
General R&d Center The Kansai Electric Power Co. Inc.
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YUTTHAGOWITH Peerawut
Faculty of Engineering, Doshisha University
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SUGIMOTO Toshirou
Japan AE Power Systems Corporation
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Takeuchi Yasuo
General R&d Center The Kansai Electric Power Co. Inc.
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Yutthagowith Peerawut
Faculty Of Engineering Doshisha University
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Miyazaki Daisuke
Faculty Of Engineering Doshisha University
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Baba Yoshihiro
Department Of Molecular Microbiology Graduate School Of Pharmaceutical Sciences And Graduate School
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SONODA Toshio
Kansai Electric Power, Co.
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Nakanishi Tomohiro
Sumitomo Electric Co.
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KOIDE Ryuji
Doshisha University
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ITO Takamitsu
Meidensha Corporation
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TAKI Norikazu
Faculty of Engineering, Doshisha University
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Okabe Shigemitsu
Tokyo Electric Power Co. Ltd. Yokohama
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Taki Norikazu
Faculty Of Engineering Doshisha University
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Matsui Shinsaku
Doshisha University
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BABA Yoshihiro
Faculty of Engineering, Doshisha University
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NAGAO Mitsuhiro
Doshisha University
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TANIGUCHI Yohei
Doshisha University
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MORITA Hiroshi
Kinden Corporation, Kyoto Institute
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NAYEL Mohamed
Doshisha University
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TAKEUCHI Yasuo
Kansai Electric Power
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Okabe Shigemitsu
Tokyo Electric Power Co.
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Morita Hiroshi
Kinden Corporation Kyoto Institute
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Baba Yoshihiro
Department of Electrical Engineering, Doshisha University
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Hashmi G.
Power Systems and High Voltage Engineering, Helsinki University of Technology (TKK)
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Lehtonen Matti
Power Systems and High Voltage Engineering, Helsinki University of Technology (TKK)
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Ametani Akihiro
Power System Analysis Laboratory, Doshish University
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OTOGURO Hitomi
Meidensha Corporation
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Lehtonen Matti
Power Systems And High Voltage Engineering Helsinki University Of Technology (tkk)
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Ametani Akihiro
Power System Analysis Laboratory Doshish University
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Hashmi G.
Power Systems And High Voltage Engineering Helsinki University Of Technology (tkk)
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Mishra Arbind
Department Of Electrical Engineering Doshisha University
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Watanabe Hideto
Meidensha Corporation
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OKABE Shigemitsu
Tokyo Electric Power Company
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Itamoto Naoki
Hokuriku Electric Power Co.
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CHIKARA Tomohiro
Doshisha university
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Kaneko Eiji
Faculty Of Engineering University Of The Ryukyus
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SOYAMA Daigo
Tokyo Electric Power Company
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ISHIBASHI Yu
Doshisha University
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GONI Md.
Faculty of Electrical & Electronic Engineering, Khulna University of Engineering & Technology
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Goni Md.
Faculty Of Electrical & Electronic Engineering Khulna University Of Engineering & Technology
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YUDA Shinsuke
Doshisha University
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HASHIMOTO Soh
Doshisha University
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MIYAGAWA Kohta
Doshisha University
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MATSUMOTO Shinya
Doshisha University
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TAKAMI Jun
Tokyo Electric Power Company
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YUTTHAGOWITH Peerawut
Department of Electrical Engineering, Faculty of Engineering, Doshisha University
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KUSUDA Takaaki
Doshisha University
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YAMAMOTO Hiroyuki
Doshisha University
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FUNABASHI Toshihisa
Power System Sales Engineering Division, Meidensha Corporation
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SUGIMOTO Toshirou
Meidensha Corporation
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NAYEL Mohamed
Department of Electrical Engineering, Doshisha University
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TSUCHIYA Yusuke
Ohbayashi Constructor Co.
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MIYAMOTO Yoshiharu
Kansai Tech Corp.
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KOSUMI Takeshi
Wakayama Prefectural Gov.
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Ametani Akihiro
同志社大学工学部
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Nagaoka Naoto
同志社大学工学部
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TAKI Norikazu
Ricoh Company
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TAKEUCHI Yasuo
General R&D Center, The Kansai Electric Power Co., Inc.
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SEKIOKA Shozo
R&D Group, Kansai Tech Corp.
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YUTTAGOWITH Peerawut
Faculty of Engineering, Doshisha University
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MISHRA Arbind
Department of Electrical Engineering, Doshisha University
著作論文
- Modeling and Experimental Verification of Covered-Conductor for PD Detection in Overhead Distribution Networks : Modeling Covered-Conductor Overhead Distribution Networks for PD Detection
- Wave Propagation Characteristics of Iron Conductors in an Intelligent Building
- Wave Propagation Characteristics of Iron Conductors in an Intelligent Building
- A Study on Arrangement of Transmission Line Arresters by a Multiple Flashover Analysis
- A Characteristic of a Grounding Electrode on the Earth Surface
- A Study on Frequency-Dependent Parameters and Sunde's Formulas of a Counterpoise (特集:平成18年〔電気学会〕電力・エネルギー部門大会)
- Lightning Surges on a Control Cable Incoming through a Grounding Lead (特集:平成18年〔電気学会〕電力・エネルギー部門大会)
- Modeling of a Buried Conductor for an Electromagnetic Transient Simulation
- Transient characteristics of grounding electrodes and the modeling for EMTP simulations
- Effects of Lightning Electromagnetic Pulse on a Nearby Overhead Horizontal Conductor
- Surge Analysis of Thin Wire Structures Using the TLM method
- An EMTP Model of a Transmission Tower Struck by Lightning
- Numerical Analysis of Lightning Electromagnetic Pulses Using the Constrained Interpolation Profile Method
- Effect of a Covered Conductor on Induced Voltage and Wave Propagation Characteristics
- Influence of a Measuring System to a Transient Voltage on a Vertical Conductor
- Influence of a Voltage Reference Wire and a Current Lead Wire to a Transient Voltage on a Vertical Conductor
- FDTD Electromagnetic Analysis of a Wind Turbine Generator Tower Struck by Lightning
- EMTP simulations of lightning surges on a wind farm
- An Arbitrary-Radius-Wire Representation for FDTD Computations in the 2D Cylindrical Coordinate System
- Simulations of Surge Voltages on Grounding Wire Installed within Building Caused by Direct Lightning Strike
- FDTD Electromagnetic Analysis of a Wind Turbine Generator Tower Struck by Lightning
- Numerical Simulations of Lightning Surge Responses in a Seismic Isolated Building by FDTD and EMTP
- Numerical Simulation on Lightning Surge Response of Seismic Isolated Building by FDTD and EMTP
- Modeling of Thin Wires for FDTD Simulations Implemented in Non-square Grids
- FDTD Analysis of Voltages Induced on an Overhead Wire Due to Surges Propagating Along a Grounding Mesh Conductor
- A Transfer Voltage Simulation Method for Generator Step Up Transformers
- A Study on Overvoltages at Generator Terminals
- A Transfer Voltage Simulation Method for Generator Step Up Transformers
- A Study on Countermeasure against Transformer Transfer Voltage at a Hydroelectric Power Plant
- Numerical Analysis of Wave Propagation Characteristics on a Buried Horizontal Conductor by an FDTD Method
- An Experimental Investigation of Transient Voltages in an Intelligent Building due to Lightning with Special Reference to Grounding
- Numerical Analysis of Wave Propagation Characteristics on a Buried Horizontal Conductor by an FDTD Method
- Calculation of an Induced Voltage to an Overhead Loop from a Grounding System
- Electromagnetic transients on an underground cable due to a lightning current flowing into the metallic sheath (特集 IWHV 2007 (5th International Workshop on High Voltage Engineering))
- Induced Surge Characteristics from a Counterpoise to an Overhead Loop Circuit
- Induced Surge Characteristics from a Counterpoise to an Overhead Loop Circuit
- Experimental Study on an Influence of Soil Resistivity on Current-Dependent Grounding Resistance of Buried Conductor
- Application of the Partial Element Equivalent Circuit Method to Tower Surge Response Calculations