교수진

일반대학원소프트웨어융합대학AI융합네트워크학과

이교범Kyo-Beum Lee

  • 소속 미래모빌리티공학과 / AI융합네트워크학과
  • 연구실원천관 303호
  • 이메일 kyl@ajou.ac.kr
  • 내선번호2376

관심분야

  • Power Electronics, Electric Vehicle Applications

학력

  • 2003.08 고려대학교 박사
  • 1999.02 아주대학교 석사
  • 1997.02 아주대학교 학사

경력

    * Editor-in-Chief - Journal of Power Electronics (2022 - 2024)
    * Editor - Journal of Power Electronics (2019 - 2021)
    * Associate Editor - IEEE Transactions on Power Electronics (2006 - )
    * Associate Editor - IEEE Transactions on Industrial Electronics (2011 - 2013, 2018 - 2021)
    * Associate Editor - Journal of Power Electronics (2009 - 2018)
    * Associate Editor - Journal of Electrical Engineering and Technology (2015 - 2020)
    
    * Technical Advisor for LS Electric (2022)
    * Technical Adviser for LG Electronics (2015 - 2016)
    * Technical Adviser for Woojin Industrial Systems (2014 - 2016)
    
    * IEEE Senior Member (2010 - )

연구분야

    The PEL (Power Electronics Laboratory) carries out research in mainly four areas that all are closely related to the use of power electronics. We focus on
    
    - Electric vehicle 
    : power electronic systems are the most essential technology for electric vehicle. The power electronic systems mainly contain EV battery charging, EV battery managing and motor driving. In the power electronic systems, a battery which is DC source is charged and the DC source is converted to the AC source to drive the motor effectively. 
    
    - Motor driving 
    : In many industry area, motor are used for factory automation. We are doing research into controls of motor such as AC, DC motor and SRM, etc. there are several kinds of control method for those motors for example, flux weakning control, position/speed sensorless control, direct torque control and etc.
    
    - Reliability 
    : Increasing efforts have been put into making power electronic systems better in terms of reliability in order to achieve high power source availability and also reduce the cost of maintenance. Fault diagnosis and tolerant control techniques are studied for IGBT, current sensor, voltage sensor, and DC-link capacitor for the converter. 
    
    - Renewable energy system 
    : in renewable energy system, the power electronics are used both for controlling the renewable source and interfacing with the load which can be grid-connected or working in stand-alone mode. The kind of renewable energy are wind energy, solar energy and fuel cell, etc.

기타

    * Contribution Award, KIPE(Korea Institute of Power Electronics) (2025)
    * Academic Award, KIEE (Korean Institute of Electrical Engineers) (2015, 2020, 2025)
    * Baek Hyun Award, KIPE (2010, 2017, 2025)
    * Woon-Gok Kwang-Sik Lee Paper Award (2025)
    * Research and Publication Award, KIPE (2021, 2023, 2024, 2025)
    * Best Paper Award, IEEE CENCON 2023 (2023)
    * Best Paper Award, IEEE SLED 2023 (2023)
    * Min-Ho Park Academic Award, KIEE/KIPE (2016/2022)
    * Jung Yeon Teak Academic Award, KIPE (2021)
    * Ajou Publication Award (2013 - 2025) 
    * Best Reviewer Award, KIPE (2012, 2016, 2020)
    * Excel Award, JEET (Journal of Electrical Engineering and Technology) (2016, 2018, 2019, 2020)
    * Best Associate Editor Award, JEET (2016, 2017, 2018, 2020)
    * Best Paper Award, TKIPE (The Transactions of the Korean Institute of Power Electronics) (2019, 2020)
    * Outstanding Paper Award, The Korean Federation of Science and Technology Societies (2016, 2020) 
    * Best Paper Award, JPE (Journal of Power Electronics) (2010, 2015, 2019)
    * Best Reviewer Award, JEET (2016, 2017, 2018)
    * So Choon Award, KIPE (2018)
    * IEEE PELS Malaysia Chapter Best Paper Award, IEEE CENCON2017 (2017)
    * Best Paper Award, IEEE PECON2016 (2016)
    * Presidential Citation (2013)
    * First Prize Paper Award, Industrial Automation and Control Committee (IACC), IEEE Industry Applications Society (2006)
    * Best Paper Award at the 30th Annual Conference of the IEEE Industrial Electronics Society (2004)

대표논문

  • [논문] 김성오(제1), 이교범*, PWM Technique to Minimize Output Voltage Distortion for Mitigating Motor Overvoltage Caused by the Reflected Wave Phenomenon, IEEE TRANSACTIONS ON POWER ELECTRONICS, pp. 3467-3480 (03월, 2026)
  • [논문] Hasan Ali Gamal Al-kaf(제1), Samer Saleh Hakami, 이교범*, Explainable Deep Learning Fault Detection Method for Multilevel Inverters, IEEE Transactions on Industrial Informatics, pp. 579-590 (01월, 2026)
  • [논문] 이형우(제1), 남기정, 이교범*, Gain Design Method for Active Damping Control in Mono-Inverter Dual Parallel Permanent Magnet Synchronous Motors Drive Systems, IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, pp. 7330-7338 (09월, 2025)
  • [논문] 이교범*, Sadeq Ali, Samer Hakami(제1), An Optimized Hybrid Unipolar PWM Technique for Ripple Reduction in Flying Capacitor of 5L-ANPC Converters, IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, Vol.72, No.7, pp. 6637-6647 (07월, 2025)
  • [논문] 이형우(제1), 남기정, 이교범*, Simple Speed Control Strategy for a Mono-Inverter Dual Parallel Permanent Magnet Synchronous Motor Drive System, IEEE Journal of Emerging and Selected Topics in Power Electronics, pp. 2580-2589 (04월, 2025)

연구활동

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  • [논문] 김성오(제1), 이교범*, PWM Technique to Minimize Output Voltage Distortion for Mitigating Motor Overvoltage Caused by the Reflected Wave Phenomenon, IEEE TRANSACTIONS ON POWER ELECTRONICS, pp. 3467-3480 (3월, 2026)
  • [논문] Hasan Ali Gamal Al-kaf(제1), Samer Saleh Hakami, 이교범*, Explainable Deep Learning Fault Detection Method for Multilevel Inverters, IEEE Transactions on Industrial Informatics, pp. 579-590 (1월, 2026)
  • [논문] 박철현(제1), 김성오, 강병우, 이교범*, Overvoltage Analysis in Motor Drive Systems with Different Transmission Line Lengths, Journal of Electrical Engineering & Technology, pp. 667-681 (1월, 2026)

특허 및 기타

  • [특허] 이교범, 모터 과전압 회피를 위한 제어 방법과, 이를 이용하는 제어 장치 및 인버터, 특허, (등록) (10-2919748) (1월, 2026)
  • [특허] 최혜원, 이교범, 이중 병렬 3-레벨 인버터의 누설 전류 저감을 위한 공간 벡터 변조 장치 및 방법, 특허, (등록) (10-2870254) (10월, 2025)
  • [특허] 이교범, 모터 과전압 회피를 위한 제어 방법과, 이를 이용하는 제어 장치 및 인버터, 특허, (출원) (PCT/KR2025/010342) (7월, 2025)