[123]
S. -J. Kong, J. -H. Choi, M. -Y. Lee, E. Chung and J. -Y. Lee, "7 kW Bidirectional H-bridge Flyback Converter for On-board Chargers," in IEEE Transactions on Transportation Electrification, doi: 10.1109/TTE.2026.3675019.
[122]
Jung, C., Jung, M., Lee, B., Chung, E., & Lee, J. (2025). PWM SRC with variable input structure to implement wide output voltage for fast chargers. Journal of Power Electronics, 26, 242 - 252.
[121]
Choi, J., Kim, Y., Kong, S., Kim, J., Chung, E., & Lee, J. (2025). 40-kW isolated bidirectional DC/DC converter based on LLC/SRC and buck converters with ZVT for fast chargers. Journal of Power Electronics, 25, 814 - 825.
[120]
Nam, S., Kim, Y., Choi, J., Jung, M., & Lee, J. (2024). 35 kW isolated fuel-cell DC–DC converter design based on PWM resonant converter with hybrid switch structure. Journal of Power Electronics, 24, 1208 - 1218.
[119]
Kong, S., Kim, Y., Kim, J., Choi, J., & Lee, J. (2023). Loss and efficiency comparisons of single-phase full-bridge inverters according to switch structures. Journal of Power Electronics, 24, 281-291.
[118]
Kim, J., Kim, Y., Nam, S., Hong, D., Kong, S., & Lee, J. (2023). Design of a welding power supply with wide input voltage range. Journal of Power Electronics, 1-9.
[117]
Kwon, H., Nam, S., Choi, J., Jung, C., Lee, J., & Kim, Y. (2023). 3.3 kW bidirectional charger design based on active-clamp flyback circuits. Journal of Power Electronics, 23, 456-466.
[116]
Hong, D., Kong, S., Jeong, C., Kwon, J., Lee, J., & Kim, M. (2023). 2-kW plasma power supply design with small frequency fluctuations. Journal of Power Electronics, 23, 860-869.
[115]
Choi, J., Kim, Y., Kim, J., Kwon, H., & Lee, J. (2023). Design of a 6.6 kW charger based on an SRT converter applying a parallel structure of IGBT and Si-MOSFET. Journal of Power Electronics, 23, 607-616.
[114]
Mun, S., Choi, S., Hong, D., Kong, S., & Lee, J. (2022). Three-phase 11 kW on-board charger with single-phase reverse function. Journal of Power Electronics, 22, 1255 - 1264.
[113]
Choi, J., Kwon, H., & Lee, J. (2022). Design of a 3.3 kW/100 kHz EV Charger Based on Flyback Converter With Active Snubber. IEEE Transactions on Vehicular Technology, 71, 7161-7170.
[112]
Kwon, J., Kwon, H., Choi, S., Lee, J., & Kim, S. (2022). Design of 20 kW audio power supply for single-phase/three-phase applications. Journal of Power Electronics, 22, 1010 - 1019.
[111]
Kwon, H., Choi, J., Kwon, H., Shin, T., Choi, S., & Lee, J. (2022). Design of pseudo-single-stage-type isolated/bidirectional converter for battery formation equipment. Journal of Power Electronics, 22, 893 - 902.
[110]
Hong, D., Kong, S., & Lee, J. (2022). Design of a 5.6 kW EV low-voltage DC/DC converter based on full-bridge converter with input series output parallel structure. Journal of Power Electronics, 22, 395 - 405.
[109]
최재혁, 권혁진, 권재현, 이준영. (2022). 배터리 충, 방전 및 영전압 제어를 위한 양방향 컨버터 설계. 전력전자학회논문지, 27(5), 431-437.
[108]
공소정, 권재현, 홍대영, 하민우, 이준영. (2022). 고전압 MLCC 시험을 위한 에너지 회수 회로 제안. 전력전자학회논문지, 27(3), 214-220.
[107]
윤덕현, 이우석, 이준영, 이일운. (2021). 220V, 440V 3상 계통전압 혼용이 가능한 용접 전원장치용 위상천이 풀브리지 컨버터. 전력전자학회논문지, 26(5), 372-375.
[106]
이상연, 이우석, 이준영, 이일운. (2021). SiC-MOSFET 기반 11-kW급 양방향 탑재형 충전기 성능. 전력전자학회논문지, 26(5), 376-379.
[105]
오성택, 권혁진, 박정욱, 최승원, 이일운, 이준영. (2021). 고전압용 절연형 양방향 DC-DC 컨버터의 분산 설계로 인한 전력 불균형 문제의 개선방안. 전력전자학회논문지, 26(2), 82-89.
[104]
Yun, D., Lee, W., Lee, J., & Lee, I. (2021). A 3-Leg Inverter-Based High-Frequency Welding Power Supply Capable of AC 220 and 440-V Operation. IEEE Transactions on Power Electronics, 36, 12877-12888.
[103]
김민우, 허경현, 이우석, 최승원, 이일운, 이준영, 정계수, 이토 에이지, 변동섭. (2019-11-22). 30kW 고주파 용접 전원용 Full-Bridge 컨버터의 분산설계에 관한 연구. 전력전자학회 학술대회 논문집, 서울.
[102]
허경현, 이우석, 최승원, 이일운, 송형석, 이준영. (2020). Coupled Inductor를 사용한 대형수소전기화물차용 7kW급 저전압 컨버터의 설계 및 분석. 전력전자학회논문지, 25(1), 37-43.
[101]
Choi, S., Oh, S., Kim, M., Lee, I., & Lee, J. (2020). Interleaved Isolated Single-Phase PFC Converter Module for Three-Phase EV Charger. IEEE Transactions on Vehicular Technology, 69, 4957-4967.
[100]
Heo, G., Choi, S., Lee, I., & Lee, J. (2020). A power balance technique for high power welding machines with modular design. EPE Journal, 30, 139 - 152.
[99]
Choi, S., Kim, Y., & Lee, J. (2018). Design of 10kW three-phase EV charger with wide output voltage range based on voltage-fed isolated PFC converter. EPE Journal, 29, 11 - 24.
[98]
Lee, W., Kim, J., Lee, J., & Lee, I. (2019). Design of an Isolated DC/DC Topology With High Efficiency of Over 97% for EV Fast Chargers. IEEE Transactions on Vehicular Technology, 68, 11725-11737.
[97]
김진학, 이우석, 최승원, 이준영, 이일운. (2018). 전기전동차 급속충전기 고효율화를 위한 새로운 DC-DC 컨버터 토폴로지. 전력전자학회논문지, 23(3), 182-189.
[96]
Choi, S., Kim, Y., Leeiloun, & Young, L.J. (2018). Isolated PFC Converter Based on an ADAB Structure with Harmonic Modulation for EV Chargers. Journal of Power Electronics, 18, 383-394.
[95]
Choi, S., Lee, I., & Lee, J. (2018). Design of 5-kV/5-kW Magnetron Power Supply Using PWM SRC With PISO-Connected Transformer. IEEE Transactions on Plasma Science, 46, 2840-2847.
[94]
김윤재, 이준영, 이일운, 이병권, 최승원, 홍영근. (2017). 전기자동차 충전기를 위한 3상 절연형 PFC 컨버터의 회로 연구. 전력전자학회논문지, 22(5), 404-413.
[93]
Lee, I., & Lee, J.Y. (2017). A High-Power DC-DC Converter Topology for Battery Charging Applications. Energies, 10, 871.
[92]
Kim, K., Kim, J., Kim, D.H., Han, B.M., & Lee, J.Y. (2017). Improved Pre-charging Method for MMC-Based HVDC Systems Operated in Nearest Level Control. Journal of Power Electronics, 17, 127-135.
[91]
Lee, B., Kim, J., Kim, S., & Lee, J. (2017). An Isolated/Bidirectional PWM Resonant Converter for V2G(H) EV On-Board Charger. IEEE Transactions on Vehicular Technology, 66, 7741-7750.
[90]
Choi, J.Y., Choi, S., & Lee, J. (2018). Hybrid PWM DC/DC converter for EV on-board charger with single transformer. EPE Journal, 28, 63 - 74.
[89]
Hassan, N.U., Kim, Y., Han, B.M., & Lee, J.Y. (2017). A Hybrid DC/DC Converter for EV OBCs Using Full-bridge and Resonant Converters with a Single Transformer. Journal of Power Electronics, 17, 11-19.
[88]
노현규, 이준영, 김민재. (2016). 넓은 범위의 선형 출력 제어를 위한 5kW 플라즈마 전원장치 설계 및 반응기 커패시턴스 추정 알고리즘의 관한 연구. 전력전자학회논문지, 21(6), 514-524.
[87]
신준영, 이재민, 최승원, 이준영. (2016). 액티브 스너버를 이용한 고주파 용접기 컨버터 개발. 전력전자학회논문지, 21(4), 351-355.
[86]
노현규, 신철준, 이준영. (2016). 5kW급 플라즈마 방전장치 설계 최적화의 관한 연구. 전력전자학회논문지, 21(2), 150-159.
[85]
Kim, D.H., Han, B.M., & Lee, J.Y. (2016). Modularized Three-Phase Semiconductor Transformer with Bidirectional Power Flow for Medium Voltage Application. Energies, 9, 668.
[84]
Choi, S., Lee, J., & Lee, J. (2016). High-Efficiency Portable Welding Machine Based on Full-Bridge Converter With ISOP-Connected Single Transformer and Active Snubber. IEEE Transactions on Industrial Electronics, 63, 4868-4877.
[83]
Shin, C., Yoo, K., Kim, D., & Lee, J. (2016). Current limiting circuit for low-cost HESS. Electronics Letters, 52, 64-66.
[82]
Kim, Y., & Lee, J. (2016). Full-Bridge+SRT Hybrid DC/DC Converter for a 6.6-kW EV On-Board Charger. IEEE Transactions on Vehicular Technology, 65, 4419-4428.
[81]
Lee, B., Kim, J., Kim, S., & Lee, J. (2016). A PWM SRT DC/DC Converter for 6.6-kW EV Onboard Charger. IEEE Transactions on Industrial Electronics, 63, 894-902.
[80]
Lee, B., & Lee, J. (2015). Bidirectional Semiconductor Transformer using high frequency resonant converter. EPE Journal, 25, 36 - 43.
[79]
Kim, Y. J., & Lee, J. Y. (2015). A Resonant PWM DC/DC Converter with Coreless Transformer for Light Electric Vehicles On-Board Charger. EPE Journal, 25(4), 17–24. https://doi.org/10.1080/0939-8368.2015.11882292
[78]
Lee, J., & Han, B.M. (2015). A Bidirectional Wireless Power Transfer EV Charger Using Self-Resonant PWM. IEEE Transactions on Power Electronics, 30, 1784-1787.
[77]
Lee, J., Yoon, Y., & Kang, J. (2015). A Single-Phase Battery Charger Design for LEV Based on DC-SRC With Resonant Valley-Fill Circuit. IEEE Transactions on Industrial Electronics, 62, 2195-2205.
[76]
Lee, J., Yoo, K., Jung, B., Chae, B., & Seo, J. (2014). Large air-gap 6.6 Kw wireless EV charger with self-resonant PWM. Electronics Letters, 50, 459-461.
[75]
Han, B.M., Choi, N.S., & Lee, J. (2014). New Bidirectional Intelligent Semiconductor Transformer for Smart Grid Application. IEEE Transactions on Power Electronics, 29, 4058-4066.
[74]
Shin, C., & Lee, J. (2014). An Electrolytic Capacitor-less Bi-Directional EV On-Board Charger Using Harmonic Modulation Technique. IEEE Transactions on Power Electronics, 29, 5195-5203.
[73]
Lee, J.Y., Yoon, Y., & Han, B.M. (2014). New Intelligent Semiconductor Transformer With Bidirectional Power-Flow Capability. IEEE Transactions on Power Delivery, 29, 299-301.
[72]
Lee, J. (2014). An EL Capacitorless EV On-Board Charger Using Harmonic Modulation Technique. IEEE Transactions on Industrial Electronics, 61, 1784-1787.
[71]
Lee, J., & Chae, H. (2014). 6.6-kW Onboard Charger Design Using DCM PFC Converter With Harmonic Modulation Technique and Two-Stage DC/DC Converter. IEEE Transactions on Industrial Electronics, 61, 1243-1252.
[70]
유광민, 김승주, 김경동, 박승희, 변용섭, 임승범, 이윤하, 이준영. (2012-07-03). LLC 공진형 컨버터를 이용한 무정전전원장치 battery discharger 설계. 전력전자학회 학술대회 논문집, 무주.
[69]
Yoon, Y., Kwon, S.M., & Lee, J. (2013). Single-stage battery charger for light electric vehicles based on DC-SRC with current-boosting circuit. Electronics Letters, 49, 1023-1025.
[68]
Yoo, K., Kim, K., & Lee, J. (2013). Single- and Three-Phase PHEV Onboard Battery Charger Using Small Link Capacitor. IEEE Transactions on Industrial Electronics, 60, 3136-3144.
[67]
K. -M. Yoo and J. -Y. Lee, "A 10-kW Two-Stage Isolated/Bidirectional DC/DC Converter With Hybrid-Switching Technique," in IEEE Transactions on Industrial Electronics, vol. 60, no. 6, pp. 2205-2213, June 2013, doi: 10.1109/TIE.2012.2191753.
[66]
박아련, 김도현, 김경태, 한병문, 이준영. (2012). 2단 DC-DC 컨버터로 구성된 배터리 에너지저장용 계통연계형 전력변환장치. 전기학회논문지, 61(12), 1848-1856.
[65]
유광민, 김원용, 박승희, 이동후, 김윤성, 정유석, 이준영. (2012). 컨버터 병렬운전을 위한 디지털 부하분담 기법. 전력전자학회논문지, 17(2), 150-157.
[64]
Lee, J., Jeong, Y., & Han, B.M. (2012). A Two-Stage Isolated/Bidirectional DC/DC Converter With Current Ripple Reduction Technique. IEEE Transactions on Industrial Electronics, 59, 644-646.
[63]
Kim, C., Yi, K., Moon, G., & Lee, J. (2012). Design of Low-Cost Address Energy Recovery Circuit of AC-PDP With Load-Adaptive Characteristics. IEEE Transactions on Industrial Electronics, 59, 402-411.
[62]
Hyung-Jun Chae, Kyoung-Dong Kim, Hyung-Rock Oh, Jun-Young Lee. (2011). 비상전원 공급장치를 위한 넓은 입력전압 범위를 갖는 절연형 DC/DC 컨버터. 전력전자학회논문지, 16(4), 334-341.
[61]
Jeong, Y., & Lee, J. (2011). Parameter Identification of an Induction Motor Drive with Magnetic Saturation for Electric Vehicle. Journal of Power Electronics, 11, 418-423.
[60]
Han, B., & Jeong, J. (2011). Real-Time Hardware Simulator for Grid-Tied PMSG Wind Power System. Renewable energy & power quality journal, 1426-1431.
[59]
Lee, J.Y., Han, B.M., & Choi, K.C. (2011). High-efficiency grid-tied power conditioning system for fuel cell power generation. 8th International Conference on Power Electronics - ECCE Asia, 1492-1497.
[58]
Youn, S., & Lee, J. (2011). Electrolytic-capacitor-less AC/DC electric vehicle on-board battery charger for universal line applications. Electronics Letters, 47, 768-770.
[57]
Jae-Hyun Kwon, Hyeok-Min Kwon, Seung-Won Choi, Jun-Young Lee & Sung-Ok Kim. (2022) Design of 20 kW audio power supply for single-phase/three-phase applications. Journal of Power Electronics 22:6, pages 1010-1019.
[56]
J. -Y. Lee, Y. -S. Jeong and B. -M. Han, "An Isolated DC/DC Converter Using High-Frequency Unregulated LLC Resonant Converter for Fuel Cell Applications," in IEEE Transactions on Industrial Electronics, vol. 58, no. 7, pp. 2926-2934, July 2011, doi: 10.1109/TIE.2010.2076311.
[55]
Su-Young Yun, Hyung-Jun Chae, Won-Yong Kim, Hyung-Tae Moon, Yu-Seok Jeong, Jun-Young Lee. (2010). 전기자동차용 배터리 충전기. 전력전자학회논문지, 15(6), 460-465.
[54]
Lee, J.-Y. (2010) “Design of High Power Density AC/DC Adapter,” The Transactions of the Korean Institute of Power Electronics. The Korean Institute of Power Electronics. doi: 10.6113/tkpe.2010.15.4.259.
[53]
Chae, H., Moon, H.T., & Lee, J. (2010). On-board battery charger for PHEV without high-voltage electrolytic capacitor. Electronics Letters, 46, 1691-1692.
[52]
Lee, J., Kang, J., & Jeong, Y. (2010). Single-Side Sustaining Technique for Plasma Display Panel Using Dual-Resonant Method. IEEE Transactions on Industrial Electronics, 57, 1635-1643.
[51]
Lee, J. (2010). Design of High Power Density Two-Stage AC/DC Notebook Adaptors Based on Loss Analysis. EPE Journal, 20, 41 - 49.
[50]
오은태, 윤수영, 이윤재, 유광민, 채형준, 한병문 and 이준영. (2009). 연료전지 계통 연계형 고효율 DC-DC 컨버터. 전기학회논문지ABCD, 58(12), 2410-2415.
[49]
주영아, 오은태, 한병문 and 이준영. (2009). 2단 구성 DC-DC 컨버터와 인버터에 의한 연료전지발전 계통연계시스템 연구. 전기학회논문지ABCD, 58(8), 1551-1558.
[48]
오은태, 정용민, 이경인, 유호원 and 이준영. (2009). 무수은 면광원 램프용 Scanning Backlight 구동회로. 전력전자학회 논문지, 14(1), 8-14.
[47]
정유석 and 이준영. (2009). Adaptive Flux Observer with On-line Inductance Estimation of an Interior PM Synchronous Machine Considering Magnetic Saturation. Journal of Power Electronics, 9(2), 188-197.
[46]
이준영. (2009). Cost-effective Single Board PDP Sustaining Driver with Dual Resonant Method. Journal of Power Electronics, 9(1), 93-99.
[45]
Kim, T.-H., Kang, J.-W., & Lee, J.-Y. (2009). An Address Voltage Stabilization Circuit for the Single-Side Driving Method of AC Plasma Display Panels. Journal of Power Electronics, 9(6), 884–891.
[44]
채형준, 허정욱, 황선남, 이준영, 임성규. (2008). 면광원을 사용한 Scanning Backlight System의 설계 및 제작. 반도체및디스플레이장비학회지 , 7(2), 29-33.
[43]
황선남, 채형준, 임성규, 이준영. (2008). Boost-Flyback topology를 이용한 1KW급 Converter. 반도체및디스플레이장비학회지 , 7(2), 7-12.
[42]
이경인, 임승범, 정용민, 오은태, 이준영. (2008). 평균전류모드 플라이백 토폴로지를 이용한 PDP용 고효율 AC-DC 컨버터 및 Hold-up 특성 개선. 반도체및디스플레이장비학회지 , 7(2), 23-27.
[41]
채형준, 정용민, 황선남, 허정욱, 이준영 and 임성규. (2008). 면광원을 사용한 Scanning Backlight Unit의 설계 및 제작. 전력전자학회 논문지, 13(5), 376-382.
[40]
Jun-Young Lee, Sun-Nam Hwang. (2008). Voltage-Stacking Cell을 이용한 고이득 부스트 컨버터. 전기학회논문지, 57(6), 982-984.
[39]
Lee, J., & Hwang, S. (2008). Non-isolated high-gain boost converter using voltage-stacking cell. Electronics Letters, 44, 644-645.
[38]
Lee, J. Y., & Ko, J. S. (2008). Flyback Topology with Charge-Pump Gate Driver for Plasma Display Panel. EPE Journal, 18(4), 20–25. https://doi.org/10.1080/09398368.2008.11463694
[37]
J. -Y. Lee, "Picture-Based Address Power Saving Method for High Resolution Plasma Display Panel (PDP)," in IEEE Transactions on Industrial Electronics, vol. 55, no. 1, pp. 49-58, Jan. 2008, doi: 10.1109/TIE.2007.896038.
[36]
이준영, 강신호 and 장전호. (2007). Pulse-Grouping Control Methodfor High power Density DC/DC Converters. 반도체디스플레이기술학회지, 6(2), 45-48.
[35]
이준영, 장준호, 강신호 and 이경인. (2007). CIM(Current Injection Method)을 이용한 Charge-Pump 방식의 Plasma Backlight용 고압 Inverter. 전력전자학회 논문지, 12(5), 386-393.
[34]
이준영, 장준호, 홍성수 and 강신호. (2007). 고전력밀도 AC/DC Adapter를 위한 off-time 제어법. 전력전자학회 논문지, 12(6), 510-516.
[33]
이준영, 강신호 and 장전호. (2007). Pulse-Grouping Control Methodfor High power Density DC/DC Converters. 반도체디스플레이기술학회지, 6(2), 45-48.
[32]
J. -Y. Lee, "An Improved Magnetic-Coupled AC-PDP Sustain Driver With Dual Recovery Paths," in IEEE Transactions on Industrial Electronics, vol. 54, no. 3, pp. 1623-1631, June 2007, doi: 10.1109/TIE.2007.894766.
[31]
J. -Y. Lee, "Single-Stage AC/DC Converter With Input-Current Dead-Zone Control for Wide Input Voltage Ranges," in IEEE Transactions on Industrial Electronics, vol. 54, no. 2, pp. 724-732, April 2007, doi: 10.1109/TIE.2007.891765.
[30]
유성재, 신호철, 김영섭, 이상범, 장지근, 공명선, 장호정, 이준영, 이영관. (2006). 새로운 이미지 개선 알고리즘에 관한 연구. 반도체및디스플레이장비학회지 , 5(2), 15-18.
[29]
유광민, 임성규, 이준영. (2006). PDP 유지 전원단을 위한 고효율 Single-stage PFC Flyback Converter. 반도체및디스플레이장비학회지 , 5(3), 11-16.
[28]
황선남, 정용민, 이준영. (2006). Dot-Matrix 디스플레이의 PWM방식과 PAM방식의 혼합 계조표현 법. 반도체및디스플레이장비학회지 , 5(3), 37-41.
[27]
Jun-Young Lee. (2006). Dual Path Magnetic-Coupled AC-PDP Sustain Driver with Low Switching Loss. Journal of Power Electronics, 6(3), 205-213.
[26]
Lee, J., & Kim, Y. (2006). Panel capacitance estimation method for three-electrode AC-PDP. Electronics Letters, 42, 685-687.
[25]
S. . -K. Han, J. . -Y. Lee, G. . -W. Moon and M. . -J. Youn, "IGBT-Based Cost-Effective Energy-Recovery Circuit for Plasma Display Panel," in IEEE Transactions on Industrial Electronics, vol. 53, no. 5, pp. 1546-1554, Oct. 2006, doi: 10.1109/TIE.2006.882018.
[24]
Jun-Young Lee and Myung-Joong Youn, "An advanced sustaining technology for plasma display panel using voltage-balancing method," in IEEE Transactions on Industrial Electronics, vol. 53, no. 2, pp. 542-553, April 2006, doi: 10.1109/TIE.2006.870869.
[23]
이준영. (2005). Single-Scan Plasma Display Panel(PDP)를 위한 고속 어드레스 에너지 회수 기법. 전기학회논문지 B권, 54(9(B)), 450-453.
[22]
Lee, J. (2005). Current stress reduction technique for AC PDP sustain driver using magnetic-coupling method. Electronics Letters, 41, 1000-1002.
[21]
Lee, J. Y., & Moon, G. W. (2005). An Integrated Single-Stage Quasi-Resonant Power Factor Correction Converter with Active Clamp Circuit. EPE Journal, 15(3), 11–19. https://doi.org/10.1080/09398368.2005.11463592
[20]
Lee, J. (2004). High-speed full-resonant address energy recovery technique for plasma display panel with load-adaptive characteristic. Electronics Letters, 40, 666-668.
[19]
Jun-Young Lee, Jin-Sung Kim, Nam-Sung Jung and Bo-Hyung Cho, "The current injection method for AC plasma display panel (PDP) sustainer," in IEEE Transactions on Industrial Electronics, vol. 51, no. 3, pp. 615-624, June 2004, doi: 10.1109/TIE.2004.825359.
[18]
한상규, 이준영, 문건우, 윤명중, 박창배, 정남성, 박정필. (2002). 새로운 에너지 회수 방식을 채용한 고효율 PDP 구동 회로. 전력전자학회논문지, 7(2), 121-128.
[17]
J. Lee, J. Kim, M. So, B. Cho, "New Energy Recovery Concept for AC PDP Sustaining Driver Using Current Injection Method (CIM)," Journal of Power Electronics, vol. 2, no. 3, pp. 189-198, 2002. DOI: 10.6113/JPE.2001.02.3.189.
[16]
Lee, J. (2002). Cost-effective PDP sustaining driver with current injection method. Electronics Letters, 38, 1637-1639.
[15]
Lee, J. Y. (2002). A New Line Harmonic Reduction Technique for Single-Phase Single-Stage Converter Using Parallel Power Processing. EPE Journal, 12(4), 21–27. https://doi.org/10.1080/09398368.2002.11463514
[14]
Han, S. K., Lee, J. Y., Moon, G. W., Youn, M. J., Park, C. B., Jung, N. S., & Park, J. P. (2002). Energy-recovery circuit for plasma display panel. Electronics Letters, 38(15), 790-792. https://doi.org/10.1049/el:20020547
[13]
Lee, J. (2002). Single-stage power factor correction converter with parallel power processing for wide line and load changes. Electronics Letters, 38, 421-423.
[12]
Jun-Young Lee and Myung-Joong Youn, "A single-stage power-factor-correction converter with simple link voltage suppressing circuit (LVSC)," in IEEE Transactions on Industrial Electronics, vol. 48, no. 3, pp. 572-584, June 2001, doi: 10.1109/41.925584.
[11]
김일송, 이준영, 윤명중. (2000). 과학위성 1호 전력계 설계. 전력전자학회논문지, 5(5), 475-483.
[10]
이준영, 박희정, 구관본, 윤명중. (2000). 90-265Vrms입력범위를 갖는 단일전력단 역률개선 컨버터. 전력전자학회논문지, 5(5), 508-514.
[9]
Jun-Young Lee, Gun-Woo Moon, Hee-Jhung Park and Myung-Joong Youn, "Integrated ZCS quasi-resonant power factor correction converter based on flyback topology," in IEEE Transactions on Power Electronics, vol. 15, no. 4, pp. 634-643, July 2000, doi: 10.1109/63.849033.
[8]
Lee, J. Y., Moon, G. W., & Youn, M. J. (2000). Design of a Single-Stage a.c./d.c. Converter for Low Power Level Applications. EPE Journal, 9(3–4), 17–25. https://doi.org/10.1080/09398368.2000.11463446
[7]
이준영, 문건우, 구관본, 윤명중. (1999). 능동 클램프 회로를 적용한 단상 ZCS 공진형 역률개선 컨버터. 전력전자학회논문지, 4(6), 539-546.
[6]
이준영, 문건우, 김현수, 윤명중. (1999). 부스트-플라이백 결합형 ZCS Quasi-Resonant 역률개선 컨버터. 전력전자학회논문지, 4(1), 91-98.
[5]
Lee, J. Y., Moon, G. W., Jung, Y. S., & Youn, M. J. (1999). Integrated ZCS quasi-resonant single-stage high power factor converter. Electronics Letters, 35(7), 526-527. https://doi.org/10.1049/el:19990371
[4]
Jun-Young Lee, Gun-Woo Moon and Myung-Joong Youn, "Design of a power-factor-correction converter based on half-bridge topology," in IEEE Transactions on Industrial Electronics, vol. 46, no. 4, pp. 710-723, Aug. 1999, doi: 10.1109/41.778222.
[3]
Gun-Woo Moon, Chung-Wook Roh, Jun-Young Lee and Myung-Joon Choo, "Magnetic-coupled high power factor converter with low line current harmonic distortions for power factor correction and fast output response," in IEEE Transactions on Industrial Electronics, vol. 45, no. 4, pp. 552-558, Aug. 1998, doi: 10.1109/41.704881.
[2]
이준영, 문건우, 정영석, 윤명중. (1997). Half bridge 회로를 기반으로 한 역률개선용 컨버터. 전력전자학회논문지, 2(3), 26-36.
[1]
Jun-Young Lee, Gun-Woo Moon, Myung-Joong Youn. (1997). Design of Single-Stage AC/DC Converter with High Efficiency and High Power Factor for Low Power Level Applications. Journal of Electrical Engineering and Information Science, 2(3), 123-131.