Funabashi Toshihisa | Meidensha Corp.
スポンサーリンク
概要
関連著者
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Funabashi Toshihisa
Meidensha Corporation
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Funabashi Toshihisa
Meidensha Corp.
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Funabashi T
Meidensha Corporation
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Senjyu Tomonobu
Department Of Electrical And Electronics Engineering University Of The Ryukyus
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Senjyu Tomonobu
Electrical And Electronics Engineering University Of The Ryukyus
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SENJYU Tomonobu
University of the Ryukyus
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YONA Atsushi
Department of Electrical and Electronics Engineering, University of the Ryukyus
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Yona Atsushi
Department Of Electrical And Electronics Engineering University Of The Ryukyus
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YONA Atsushi
University of the Ryukyus
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Ueda Toshiaki
Chubu Electric Power Co. Inc.
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OKUNO Yoshimichi
Meidensha Corporation
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Datta Manoj
Department Of Electrical And Electronics Engineering University Of The Ryukyus
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URASAKI Naomitsu
Faculty of Engineering, University of the Ryukyus
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Chakraborty Shantanu
Faculty Of Engineering University Of The Ryukyus
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Urasaki Naomitsu
Faculty Of Engineering University Of The Ryukyus
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Ametani Akihiro
Doshisha Univ. Kyoto
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Ametani Akihiro
Power System Analysis Lab. Doshish Univ.
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Yasuda Yoh
Kansai University
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Urasaki Naomitsu
Department Of Electrical And Electronics Engineering University Of The Ryukyus
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SUGIMOTO Toshirou
Japan AE Power Systems Corporation
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Ametani Akihiro
Doshisha Univ.
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Yasuda Yoh
Kansai Univ.
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FUJITA Goro
Shibaura Institute of technology
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CHAKRABORTY Shantanu
University of the Ryukyus
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HAYASHI Takanori
Meidensha Corporation
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Fujita Goro
Power System Lab. Shibaura Institute Of Technology
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URASAKI Naomitsu
University of the Ryukyus
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TOYAMA Hirofumi
University of the Ryukyus
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Omine Eitaro
University Of The Ryukyus
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SEKINE Hideomi
University of the Ryukyus
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SUGIMOTO Toshirou
Meidensha Corporation
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Yokoyama Ryuichi
Waseda University
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Koyanagi Kaoru
Waseda University
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Nomura Masakatsu
Meidensha Corporation
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KAEWNIYOMPANIT Songpakit
Osaka University
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SUGIHARA Hideharu
Osaka University
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TSUJI Kiichiro
Osaka University
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OTOGURO Hitomi
Meidensha Corporation
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KOYANAGI Kaoru
TEPCO Systems Corporation
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Koyanagi K
Waseda University
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DATTA Manoj
University of the Ryukyus
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KIM Chul-Hwan
Sungkyunkwan University
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Yokoyama Ryuichi
Waseda University Graduate School Of Environment And Energy Engineering
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Yokoyama Ryuichi
Graduate School Of Environment Energy Engineering Waseda University
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ITO Takamitsu
Meidensha Corporation
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HAYASHI Daisuke
University of the Ryukyus
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Yokoyama R
Waseda University
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Yokoyama Ryuichi
Waseda Univ.
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Saber Ahmed
Electrical And Computer Engineering Department Missouri University Of Science & Technology
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YOKOYAMA Shigeru
Central Research Institute of Electric Power Industry (CRIEPI)
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Tuyen Nguyen
Power System Lab., Shibaura Institute of Technology
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Fujita Goro
Power System Lab., Shibaura Institute of Technology
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TANAKA Kenichi
Department of Physics, School of Medicine, Sapporo Medical University
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AREEKUL Phatchakorn
University of the Ryukyus
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Muhando Endusa
Electrical And Electronics Engineering University Of The Ryukyus
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Uezato Katsumi
Univ. Ryukyus Okinawa Jpn
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TANABE Takayuki
Meidensha Corporation
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MARTINEZ Juan
Universitat Politecnica de Catalunya
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PUTRUS Ghanim
University of Northumbria at Newcastle
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Tuyen Nguyen
Power System Lab. Shibaura Institute Of Technology
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Uezato Katsumi
University Of The Ryukyus
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Kawasaki Shoji
Graduate School Of Electrical And Electronics Engineering University Of Fukui
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Mandal Paras
University Of The Ryukyus
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Areekul Phatchakorn
Faculty Of Engineering University Of The Ryukyus
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Senjyu Tomonobu
Faculty Of Engineering University Of The Ryukyus
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YONA Atsushi
Faculty of Engineering, University of the Ryukyus
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Yokoyama Shigeru
Central Res. Inst. Of Electric Power Ind.
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Ametani Akihiro
Doshisha University
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OMINE Eitaro
Electrical and Electronics Engineering, University of the Ryukyus
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KINJO Hiroshi
Mechanical Systems Engineering, University of the Ryukyus
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Hayashi Yasuhiro
Graduate School Of Electrical And Electronics Engineering University Of Fukui
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Watanabe Hideto
Meidensha Corporation
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MOTOYAMA Hideki
Central Research Institute of Electric Power Industry (CRIEPI)
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Motoyama Hideki
Central Research Institute Of Electric Power Industry
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Kinjo Hiroshi
Mechanical Systems Engineering University Of The Ryukyus
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Nagaoka Naoto
Doshisha University
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Koyanagi Kaoru
Waseda Univ.
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SABER Ahmed
Electrical and Computer Engineering Department, Missouri University of Science & Technology
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TOMA Shohei
Department of Electrical and Electronics Engineering, University of the Ryukyus
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URASAKI Naomitsu
Department of Electrical and Electronics Engineering, University of the Ryukyus
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HAYASHI Yasuhiro
University of Fukui
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KAWASAKI Shoji
University of Fukui
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MATSUKI Junya
University of Fukui
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SABER Ahmed
University of the Ryukyus
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MIYAGI Tsukasa
University of the Ryukyus
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KINJO Tatsuto
University of the Ryukyus
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Toma Shohei
Department Of Electrical And Electronics Engineering University Of The Ryukyus
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Kondo Yusuke
Nagoya University
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NAGATA Takeshi
Hiroshima Insitute of Technology
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Kato Takeyoshi
Nagoya University
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MATSUKI Junya
Graduate School of Electrical and Electronics Engineering, University of Fukui
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Suzuoki Yasuo
Nagoya University
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HARA Takehisa
Kansai University
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OKAMOTO Hiroshi
Shonan Institute of Technology
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SEKIOKA Shozo
Shonan Institute of Technology
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EBINUMA Yasumitsu
Shonan Institute of Technology
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YAMAMOTO Kazuo
Kobe City College of Technology
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Matsuki Junya
Graduate School Of Electrical And Electronics Engineering University Of Fukui
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Nagaoka Naoto
Doshisha Univ. Kyoto
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Tanaka Kenichi
Department Of Physics School Of Medicine Sapporo Medical University
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Nagata Takeshi
Hiroshima Institute Of Technology
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Sekioka Shozo
Faculty Of Engineering Shonan Institute Of Technology
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UTATANI Masahiro
Hiroshima Kokusai Gakuin University
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Yokoyama Shigeru
Central Res. Inst. Electric Power Ind. Kanagawa‐ken
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Tanaka Kenichi
Department Of Electronic And Bioinformatics School Of Science Technology Meiji University
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Yokoyama Shigeru
Electric Power Engineering Research Lab Criepi
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Tanaka Kenichi
Department Of Anesthesiology Emory University School Of Medicine
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Tanaka Kenichi
Department Of Electrical And Electronics Engineering University Of The Ryukyus
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Yamamoto Kazuo
Department Of Electrical Engineering Kobe City College Of Technology
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Motoyama Hideki
Central Res. Inst. Electric Power Ind.
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RIZQIAWAN Arwindra
Shibaura Institute of Technology
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千住 智信
Department of Electrical and Electronics Engineering, University of the Ryukyus
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與那 篤史
Department of Electrical and Electronics Engineering, University of the Ryukyus
著作論文
- A fuzzy based coordinated control method for isolated power utility connected multiple PV systems to reduce frequency deviations (特集 分散電源と需給運用制御技術)
- Using Simulink Simulation to Evaluate Load Following Characteristics of SOFC Generator with Heat Exchanger Considering Heat Balance
- A Study on Maximum Potential of PV Installation Considering Bus Voltage Constraints : An Impact of Pre-specified PV Installation on the Maximum Potential
- An Effect of Fault Current Limiter to Distributed Generator Shaft Torque Increase under Voltage Sag
- A Neural Network Approach to Several-Hours-Ahead Load Forecasting
- Next-Day Peak Electricity Price Forecasting Using NN Based on Rough Sets Theory
- Impact on the Power Utility with a Large Penetration of Megawatt Photovoltaic Power
- Frequency Regulations by PV Generator using Fuzzy Reasoning
- Model Development for Nonlinear Dynamic Energy Conversion System : An Advanced Intelligent Control Paradigm for Optimality and Reliability
- Activitivities of Japanese EMTP Committee (JEC) and EMTP Development Coordination Group Project (EMTP-DCG Project) : Advanced Technologies for Electric Power System Analysis
- A Study on Arrangement of Transmission Line Arresters by a Multiple Flashover Analysis
- Optimal Thermal Unit Commitment Integrated with Renewable Energy Sources Using Advanced Particle Swarm Optimization
- Optimal Control of Voltage in Distribution Systems by Voltage Reference Management
- Thermal Generation Scheduling Strategy Using Binary Advanced Particle Swarm Optimization Algorithm
- Optimal Thermal Generation Scheduling Using Hourly Decomposed Unit Commitment by Particle Swarm Optimization and Multi-stage Dynamic Programming
- Maximum Potential of PV Installation based on an Energy System Planning Model Considering a Distribution Voltage Constraint
- Very Short-Term Generating Power Forecasting for Wind Power Generator Based on Time Series Analysis
- Application of Decentralized Control for Remote Power System Stabilization by Installing Renewable Energy Power Plant
- Application of Decentralized Control for Remote Power System Stabilization by Installing Renewable Energy Power Plant
- Determination Method of Optimal Operation Schedule for Power and Heat Interchange System using Fuel Cells in Collective Housing
- Unit Commitment by Adaptive Particle Swarm Optimization (特集:平成18年〔電気学会〕電力・エネルギー部門大会)
- Adaptive Dead-Time Compensation of Voltage Source Inverter for Variable Speed Drives
- A Study on Measure for Communicationg Information on Battery State of Charge in Autonomous Distributed Control Scheme of Emergency Microgrid
- Estimation of Optimal Battery Capacity for a Wind Farm using Real Wind Condition Data
- Surge Analysis on Wind Power Generation with Grid-Interactive Inverter
- A Study on Relationship between Grounding of Wind Turbines and Surge Propagation in Wind Farm
- Energy Absorption of Distribution Line Arresters due to Lightning Back Flow Current and Ground Potential Rise for Lightning Hit to Wind Turbine Generator System
- 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
- A Study on Frequency Characteristics of a Generator Model for Transformer Transfer Voltage Simulations
- Influence of Magnetizing Resistance of the Transformer Model on the Transformer Transfer Voltage Peak
- An Autonomous Agent for Microgrid Operation
- Frequency Control of Photovoltaic-Diesel Hybrid System Connecting to Isolated Power Utility by Using Load Estimator and Energy Storage System
- Effects of Virtual Resistor in Power Electronic Converter on Subsynchronous Oscillation Damping