Advanced Power Interface & Power Electronics Lab. (APIPEL)

전력변환연구실

관련기사 바로가기
전력변환연구실

Advanced Power Interface & Power Electronics Lab. (APIPEL) is established as an Intelligent Power Interface Research Center to develop various power conversion systems for the high efficiency of electric power and the smart interface of clean energy sources. The research of APIPEL is focused on power conversion, power control, and power interface technology for various industrial applications of consumer electronics, renewable energy, electric vehicles, etc. Particular interests are concerned with power applications of smart grids, wireless power transmission, dc micro/nano grids, real-time & power hardware-in-the-loop simulation (HILS) using power converter/inverter topologies, high-frequency power converters using wide band-gap devices, resonant power converters for home and industrial applications, and digital signal processors with intelligent signal processing and digital control algorithms.

Major research field

Power Converters, Wireless Power Transfer, Smart Power Interface, Power HIL System, Induction Heating System

Desired field of research

AI-based Power Control System, Multi-functional Power Conversion System, Intelligent Power Interface

Research Keywords and Topics

- High frequency power interface for consumer electronics, EV/ES, renewable energy, and EMI reduction
- Resonant power interface for wireless power transfer, resonant converters/inverters, IH applications
- Bidirectional power interface for smart grid/DC microgrid, grid-interactive converters, ESS applications
- Real-time and power hardware-in-the-loop simulation (PHILS) for various power systems

Research Publications
MORE

- IEEE Transactions on Industrial Electronics, “Maximum Voltage Gain Tracking Algorithm for High-Efficiency of Two-Stage Induction Heating System Using Resonant Impedance Estimation,” Kyung-Wook Heo / Juil Jin / Jee-Hoon Jung, Accepted, (2022.09)
- IEEE Transactions on Industrial Electronics, “Modified Three-port DAB Converter Employing Voltage Balancing Capability for Bipolar DC Distribution System,” Jun-Young Lee / Jee-Hoon Jung, vol. 69, no. 7, pp. 6710-6721 (2022.07)
- IEEE Transactions on Industrial Electronics, “Hybrid Input Power Balancing Method of Modular Power Converters for High Efficiency, High Reliability, and Enhanced Dynamic Performance,” Mina Kim / Hwa-Pyeong Park / Jee-Hoon Jung, vol. 69, no. 5, pp. 5132-5141, (2022.05)

Patents

- [국내] Extended pahase shift control system for dual active bridge converters (KR 10-2314871), 정지훈, (2021.10)
- [국외] Induction heat cooking apparatus to implement WPT and PFC power converter (US 10925123), 정지훈 외, (2021.02)

국가과학기술표준분류

  • ED. 전기/전자
  • ED03. 중전기기
  • ED0302. 전력변환기기

국가기술지도분류

  • 환경/에너지 프론티어 진흥
  • 032100. 고신뢰성 전력시스템 기술

녹색기술분류

  • 고효율화기술
  • 전력효율성 향상
  • 325. 전기기기 효율성향상기술

6T분류

  • IT 분야
  • 기타 정보기술
  • 010411. 기타 정보기술