■ 研究室情報
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1.
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エネルギー変換研究室 再生可能エネルギーと、それを基盤とする次世代電力システムは、カーボンニュートラル社会の実現に不可欠である。本研究では、波力、潮流、潮汐、洋上風力などの海洋再生可能エネルギーを中心に、自然エネルギーを活用した発電装置の開発を行う。さらに、これらを電力ネットワークに接続・運用するための集電・送電・受電技術について検討し、次世代電力システムの構築に貢献する。
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■ 現在の専門分野
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電力工学 (キーワード:波力発電、ウィンドファーム、直流送電、制御装置、再生可能エネルギー、発電装置)
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■ 著書・論文歴
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■ 受賞学術賞
| 1. |
2015 |
The 18th International Conference on Electrical Machines and Systems Best Paper Award
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| 2. |
2015 |
電気学会 産業応用部門活動功労賞
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| 3. |
2018 |
The 21st International Conference on Electrical Machines and Systems Best Paper Award
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| 4. |
2020 |
The 23rd International Conference on Electrical Machines and Systems Excellent Paper Award
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| 5. |
2025/11 |
The 28th International Conference on Electrical Machines and Systems Best Presentation Award
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■ 学会発表
| 1. |
2020/11/24 |
Basic Studies on Power Fluctuation Smoothing of Series-connected Wind Power Plant(2020 23rd International Conference on Electrical Machines and Systems)
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| 2. |
2020/11/24 |
Improvement of Dynamic Performances of a Current-source Converter-based Wind Power Plant Composed of Series-connected Wind Turbine Generators(2020 23rd International Conference on Electrical Machines and Systems)
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| 3. |
2020/11/24 |
Performance Improvement of a Wind Turbine Generator Based on Self-excited Synchronous Generator for Series-connected Wind Power Plants(2020 23rd International Conference on Electrical Machines and Systems)
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| 4. |
2021/10/31 |
A Synchronous Condenser System Capable of Eliminating Harmonic Distortion for Grid-Connected Inverters(2021 24th International Conference on Electrical Machines and Systems)
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| 5. |
2021/10/31 |
Effects of System Parameters on the Steady-State Characteristics of a Wind Turbine Generator Based on Self-Excited Synchronous Generator for HVDC-Connected Wind Power Plants(2021 24th International Conference on Electrical Machines and System)
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| 6. |
2021/10/31 |
Steady-State Characteristics of a Loop-Type Multi-Terminal HVDC Transmission System for Series-Connected Wind Power Plants(2021 24th International Conference on Electrical Machines and System)
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| 7. |
2021/10/31 |
Studies on LVRT Characteristics of Wind Power Plants Composed of Series-connected Wind Generators and Synchronous-compensator-commutated Thyristor Inverter(2021 24th International Conference on Electrical Machines and Systems)
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| 8. |
2022/11/29 |
Development of a Point Absorber Wave Energy Converter with Magnus Effect-Based Turbine Generator(2022 25th International Conference on Electrical Machines and Systems)
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| 9. |
2022/11/29 |
Study on Output Fluctuation of Hybrid Wind Power Plant Consisting of Dozens of Wind Generators Connected in Series(2022 25th International Conference on Electrical Machines and Systems)
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| 10. |
2023/02 |
New Concept of Smart Hybrid Savonius-Darrieus Wind Turbine(17th South East Asian Technical University Consortium)
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| 11. |
2023/08/06 |
Computational Fluid Dynamics Analysis on the Improvement of Hybrid Savonius-Darrieus NREL S809 at Various Fluid Flows(2023 4th International Conference on High Voltage Engineering and Power Systems)
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| 12. |
2023/11/05 |
Resonance Control Method for a Point Absorber Wave Energy Converter with Magnus Effect-Based Turbine Generator(2023 26th International Conference on Electrical Machines and Systems)
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| 13. |
2024/03/14 |
Enhancing Vertical Axis Wind Turbine Performance Investigation at Low Wind Speed Using Electrical Approach(2024 8th International Conference on Green Energy and Applications)
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| 14. |
2024/04/17 |
Solidity Effects on Small Hybrid Savonius-Darrieus Wind Turbine Performance: Experimental Analysis with NREL S809 Airfoil(2024 10th International Conference on Applied System Innovation)
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| 15. |
2024/07/25 |
A Novel Rotor Switching Theory for Optimizing Small Vertical Axis Wind Turbine Performance: Insights from Experimental Study(2024 International Conference on Electrical, Computer and Energy Technologies)
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| 16. |
2024/11/05 |
Estimating Wind Energy Potential: Advanced Smart Hybrid VAWT Analysis in Banjarmasin, Indonesia(2024 6th International Conference on Power Engineering and Renewable Energy)
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| 17. |
2024/11/26 |
Performance Improvement of a Magnus Effect-Based Turbine Generator for a Point Absorber Wave Energy Converter(2024 27th International Conference on Electrical Machines and Systems)
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| 18. |
2025/09 |
Adaptive Maximum Power Point Tracking for Optimizing Power Extraction in Small-Scale Wind Energy Systems(2025 60th International Universities Power Engineering Conference (UPEC))
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| 19. |
2025/11 |
Adapting Wind Energy Solutions for Low Wind Speed Regions: A Case Study of Banjarmasin with Vertical Axis Wind Turbine Integration(2025 5th International Conference on High Voltage Engineering and Power Systems (ICHVEPS))
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| 20. |
2025/11 |
Development of a Magnus Effect-Based Point Absorber Wave Energy Converter with an Adjustable Natural Frequency(2025 28th International Conference on Electrical Machines and Systems (ICEMS))
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| 21. |
2026/03/14 |
固有周波数を調整できるポイントアブソーバ型マグナス波力発電装置の共振制御に関する検討(電気学会 全国大会)
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5件表示
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全件表示(21件)
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■ 学歴
| 1. |
1995/04~1999/03
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東京電機大学 工学部 電気工学科 卒業 学士
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| 2. |
1999/04~2001/03
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東京電機大学 工学研究科 電気工学専攻 修士課程修了 修士
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| 3. |
2001/04~2004/03
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東京電機大学 工学研究科 電気工学専攻 博士課程修了 博士(工学)
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■ 職歴
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1.
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2005/04~2012/03
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サレジオ工業高等専門学校 電気工学科 専任講師
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2.
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2012/04~2018/03
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サレジオ工業高等専門学校 電気工学科 助教授・准教授
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3.
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2018/04~2025/03
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サレジオ工業高等専門学校 電気工学科 教授
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4.
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2025/04~
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明星大学 理工学部 総合理工学科 教授
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■ 教育上の能力
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■ 授業科目
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ゼミナール
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| 2. |
ゼミナール1
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| 3. |
ゼミナール2
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| 4. |
卒業研究
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| 5. |
応用回路学
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| 6. |
理工学概論
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| 7. |
電力工学
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| 8. |
電力電子実験
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| 9. |
電力電子工学
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| 10. |
電気工学概論
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5件表示
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全件表示(10件)
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■ 委員会・協会等
| 1. |
2006/04/01~2008/03/31 |
電気学会, 電気学会編修専門第4部会 編修委員
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| 2. |
2008/04/01~2010/03/31 |
電気学会, 電気学会編修専門第4部会 主査
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| 3. |
2012/04/01~2014/03/31 |
電気学会, 電気学会編修専門第4部会 編修委員(再任)
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| 4. |
2025/06/01~ |
電気学会, 東京支部学生員委員会 委員
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■ 資格・免許
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■ 取得特許
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1.
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マグナス波力発電装置(特許7770059号)
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■ プロフィール
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Ken-ichiro Yamashita (M'17) received the M.Eng. and D.Eng. degrees in electrical engineering from Tokyo Denki University, Tokyo, Japan, in 2001 and 2004, respectively.,His research interests include electrical machinery and wind-turbine generator systems.,Dr. Yamashita is a member of the Institute of Electrical Engineers of Japan.
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