Hikihara Takashi | Kyoto Univ.
スポンサーリンク
概要
関連著者
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Hikihara Takashi
Kyoto Univ.
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Hikihara Takashi
Kyoto Univ. Kyoto Jpn
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Hikihara Takashi
Department of Electrical Engineering, Kyoto University
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Hikihara Takashi
Departmer Of Electrical Engineering Kyoto University:photonics And Electronics Science And Engineeri
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Hikihara Takashi
Kyoto Univ. Kyoto‐shi Jpn
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Susuki Yoshihiko
Kyoto University Department Of Electrical Engineering
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Susuki Yoshihiko
Departmer Of Electrical Engineering Kyoto University
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Funaki Tsuyoshi
Osaka Univ.
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Phankong Nathabhat
Kyoto Univ.
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YOKOI Yuuichi
Kyoto University, Department of Electrical Engineering
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YOKOI Yuuichi
Departmer of Electrical Engineering, Kyoto University
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Yokoi Yuuichi
Departmer Of Electrical Engineering Kyoto University
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Yokoi Yuuichi
Kyoto Univ. Kyoto Jpn
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Hikihara Takashi
Kyoto University, Dept. of Electrical Eng., Graduate School of Engineering
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Hikihara Takashi
Kyoto University Department Of Electrical Engineering
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Funaki Tsuyoshi
Kyoto University, Department of Electrical Engineering
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Hikihara Takashi
Kyoto University
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HIKIHARA Takashi
Kyoto University, Department of Electrical Engineering
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Li Hongmei
Hefei University Of Technology
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Yamasue Kohei
Department Of Electrical Engineering Kyoto University
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南 政孝
京都大学
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Minami Masataka
Kyoto University Department Of Electrical Engineering
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SUSUKI Yoshihiko
Kyoto University, Department of Electrical Engineering
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Hikihara Takashi
Department Of Electrical Engineering Kyoto University
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Hikihara Takashi
Kyoto University Department Of Electrical Engineering:kyoto University Photonics And Electronics Sci
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Suzuki Yoshihiko
Kyoto University Graduate School Of Electrical Engineering
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TAKATSUJI Yu
Department of Electrical Engineering, Kyoto University
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TAKATSUJI Yu
Kyoto University, Department of Electrical Engineering
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Igor Mezic
University of California, Santa Barbara, Department of Mechanical Engineering
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Igor Mezic
University Of California Santa Barbara Department Of Mechanical Engineering
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Takatsuji Yu
Department Of Electrical Engineering Kyoto University
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Hikihara Takashi
Kyoto University Graduate School Of Electrical Engineering
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YAO Atsushi
Kyoto University, Department of Electrical Engineering
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CHAMORRO Harold
Royal Institute of Technology (KTH), Department of Electric Power
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RAAK Fredrik
Kyoto University, Department of Electrical Engineering
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ZHOU Yanzi
Kyoto University, Department of Electrical Engineering
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TAKAHASHI Ryo
Kyoto University, Department of Electrical Engineering
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SUSUKI Yoshihiko
Kyoto University, Department of Electrical Engineering:JST-CREST
著作論文
- Limit Cycle of Induction Motor Drive and Its Control(Nonlinear Theory and its Applications)
- A-2-9 Response Curves for Dissipated Power in Frequency Entrainment : A study on van der Pol and PLL equations
- Energy-based analysis of frequency entrainment described by van der Pol and PLL equations
- A-2-10 Improved Transient Response in non-contact Atomic Force Microscopy under Time Delayed Feedback Control(A-2. 非線形問題, 基礎・境界)
- C-10-7 EVALUATION OF BASE REGION PARAMETERS IN IGBT BASED ON CAPACITANCE-VOLTAGE CHARACTERISTICS
- A Discussion on the High Level Excess Carrier Lifetime Effect of IGBT Model
- A-2-15 Analysis of Recurrence in Dynamical System Based on Power Spectra of Finite-Time Trajectories
- A-2-12 A Study on Swing Phenomena in Electric Power System with DC Transmission
- Predicting voltage instability of power system based on hybrid system reachability analysis
- A-2-10 A Study on Response Curves of Phase-Locked System via Energy Balance Relation
- A hybrid model of cascading transient dynamics in multi-area power network (非線形問題)
- AS-3-4 A MECHANISM OF GLOBAL SWING INSTABILITY IN POWER NETWORK
- Experimental Study on Dynamic Behavior of Power MOSFET Based on Capacitance-Voltage Characteristics
- Experimental study on dynamic behavior of power MOSFET based on capacitance-voltage characteristics (電子デバイス)
- Special Issue on LDIA2005
- Special Section on nonlinear vibration in mechanical system and its control — from nano to macro —
- An Approach to Logical Behavior of Memory Devices in Coupled MEMS Resonators
- Investigation of Power Grid Islanding Based on Nonlinear Koopman Modes
- A Method of Clock Synchronization for Power Packet Dispatching : Parameters Optimization in Clock Synchronization