Researchers

- SUGAHARA Kengo
- Associate Professor
| Faculty | Department of Electrical, Electronic and Communication Engineering / Graduate School of Science and Engineering |
|---|---|
| Researchmap | https://researchmap.jp/ksugahar |
Education and Career
Education
- 1995/04 - 1999/03 , Keio University, Science and Technology,
- 1999/04 - 2001/03 , Kyoto University, 理学研究科,
- 2007/09 - 2007/09 , Hosei University, Graduate School,
Academic & Professional Experience
- Apr. 2019 - Today , Kindai University 理工学部 電気電子工学科 准教授
- Apr. 2014 - Mar. 2019 , Kindai University Faculty of Science and Engineering, Department of Electric and Electronic Engineering 講師
- Oct. 2010 - Mar. 2014 , 三菱電機株式会社 神戸製作所
- Apr. 2001 - Sep. 2010 , Mitsubishi Electric Corporation 先端技術総合研究所
Research Activities
Research Areas
- Natural sciences , Theoretical studies related to particle-, nuclear-, cosmic ray and astro-physics
- Informatics , Computational science
Research Interests
Design optimization, Accelerator Physics, Electromagnetic Analysis
Published Papers
-
Data-Driven Topology Optimization With Warm Starting CMA-ES for Constraint Optimization in Rotating Machines
Yuki Hidaka; Takahiro Sato; Kengo Sugahara
IEEE Access 14 , 27435-27443, 2026 -
An Optimization Method for Coil Design Problems Based on Physarum Solver and Evolutionary Computation
Takahiro Sato; Kengo Sugahara; Yuki Hidaka
IEEJ TRANSACTIONS ON ELECTRICAL AND ELECTRONIC ENGINEERING 26, Jul. 2025 , Refereed -
Topology Optimization of Electrical Machines with Quantum Annealing Considering Nonlinear Magnetic Properties
Yuki Hidaka; Takahiro Sato; Kengo Sugahara
IEEJ Transactions on Industry Applications 145 (6) , 495-503, Jun. 2025 , Refereed
Books etc
- Applications of Advanced Techniques of Electromagnetic Field Analysis , Investigating; R; D Committee on; Applications of; Advanced Techniques of Electromagnetic Field Analysis , IEEJ , Jun. 2023
- Improving Accuracy of Electromagnetic Field Analysis , Investigating; R; D Committee on; im; roving; accuracy of; electromagnetic field analysis , 電気学会 , Mar. 2020
- Advanced Electromagnetic Field Analysis for Effective Design , 先進電磁界解析による設計高度化技術調査専門委員会 , 電気学会 , Dec. 2016
Conference Activities & Talks
- 磁気浮上装置の制御を目的とした三次元CLN法の基礎検討 , 谷本直斗; 菅原賢悟; 髙橋康人; 松尾哲司 , 静止器/回転機 合同研究会 , 10, Sep. 2024
- Gauging in generating basis functions for three-dimensional Cauer Ladder Network , Naoto TANIMOTO; Kengo SUGAHARA , SIELA 2024 - 23rd International Symposium on Electrical Apparatus and Technologies , 14, Jun. 2024
- Comparison of minor loops between H-input and B-input vector play models identified from major loops , Kengo SUGAHARA; Akira AHAGON; Yoshiki HANE; Alexander SAUSENG; Lucas DOMENIG; Klaus ROPPERT , SIELA 2024 - 23rd International Symposium on Electrical Apparatus and Technologies , 13, Jun. 2024
MISC
- Nonlinear Model Order Reduction of a Cage Induction Motor based on Parameterized CLN Method and Time-harmonic Eddy-current Analysis , 竹中雄太; 高橋康人; 藤原耕二; 菅原賢悟; 松尾哲司 , 電気学会研究会資料(Web) , SA-25-103-114.116-119/RM-25-115-126.128-131 , 2025
- Accuracy Comparison of the Three-Dimensional CLN Method for a Square Prism Conductor: A Comparative Study of A-φ, T-Ω, A-T Methods , 谷本直斗; 矢野隆晃; 菅原賢悟; 長嶺英朗; 亀有昭久 , 電気学会研究会資料(Web) , SA-25-001-029/RM-25-001-029 , 2025
- A Fundamental Study of the Formulation of a CLN Method with a Clear Physical Interpretation for Heat Conduction Analysis , 谷本直斗; 菅原賢悟; 高橋康人; 松尾哲司 , 電気学会研究会資料(Web) , SA-25-001-029/RM-25-001-029 , 2025
Patents
- 電磁界解析装置、方法及びプログラム , 亀有 昭久, 進藤 裕司, 松尾 哲司, 菅原 賢悟 , 特許第6827826号
- 円形加速器、円形加速器の運転方法、および粒子線治療装置 , 菅原 賢悟, 小田原 周平 , 特許第6169254号
- 高周波加速器の製造方法、高周波加速器、および円形加速器システム , 菅原 賢悟, 花川 和之, 岸井 保人, 山本 和男 , 特許第6041975号
Awards & Honors
- Mar. 2025, パワーアカデミー事務局, 萌芽研究優秀賞
- Aug. 2021, J. Magn Soc. Jpn, MSJ Distinguished Paper Award
- Nov. 2020, IEEE, EEE-IAS TSC Fist Prize
Research Grants & Projects
- 経済産業省(中小企業庁), 成長型中小企業等研究開発支援事業, AIエージェントと電磁気・熱連成解析による誘導加熱コイルの自律的3次元設計最適化システムの研究開発
- Japan Society for the Promotion of Science, Grants-in-Aid for Scientific Research, Creation of new structure of nuclear fusion coil by quantum annealing and 3D topology optimization. , Kindai University
- パワーアカデミー事務局 パワーアカデミー研究助成 萌芽研究(チーム型), 粒子線がん治療用加速器電磁石の高速かつ高精度な磁場制御シミュレーション技術の確立