박사

고전력밀도 및 고확장성을 갖는 모듈형 LLC 공진형 컨버터에 관한 연구

구현수 2019년
논문상세정보
    • 저자 구현수
    • 형태사항 삽화: xiii, 169 p.: 26 cm
    • 일반주기 지도교수 : 한상규, 참고문헌 : p. 149-157
    • 학위논문사항 전자공학과 전자공학전공, 국민대학교 일반대학원, 2019. 2, 학위논문(박사)-
    • DDC 23, 621.3
    • 발행지 서울
    • 언어 kor
    • 출판년 2019
    • 발행사항 국민대학교 일반대학원
    유사주제 논문( 4,648)
' 고전력밀도 및 고확장성을 갖는 모듈형 LLC 공진형 컨버터에 관한 연구' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 응용 물리
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
4,649 0

0.0%

' 고전력밀도 및 고확장성을 갖는 모듈형 LLC 공진형 컨버터에 관한 연구' 의 참고문헌

  • “DC/DC converter packaging”, Tear-down digest at homepage (www.ieec.binghamton.edu/ieec/teardown/dcdc_converter_packaging.htm)
  • Z. Guo, D. Sha, X. Liao, “Hybrid Phase-Shift-Controlled Three-Level and LLC DC–DC Converter With Active Connection at the Secondary Side,” vol. 30, no. 6, pp 2985-2996, June 2015.
  • Yang, C.H., Liang, T.J., Chen, K.H., Li, J.S., and Lee, J.S., “Loss Analysis of Half-Bridge LLC Resonant Converter,” In Future Energy Electronics Conference (IFEEC), pp. 155-160, 2013.
  • Y. Qiu, B. Lu, B. Yang, D. Fu, F. C. Lee, “A High-Frequency High- Efficiency Three-Level LCC Converter for High-Voltage Charging Applications,” in Proc. IEEE PESC, pp. 4100–4106, 2004.
  • Y. Jiao, “High Power High Frequency 3-level Neutral Point Clamped Power Conversion System,” PhD. dissertation, Virginia Tech., Blacksburg, VA, 2015.
  • Y. Gu, Z. Lu, L. Hang, Z. Qian, G. Huang, "Three-Level LLC Series Resonant DC/DC Converter,” IEEE Trans. Power Electron., vol. 20, no. 4, pp. 781-789, July 2005.
  • X. Wu, J. Zhang, and Z. Qian, “A simple two-channel LED driver with automatic precise current sharing,” IEEE Trans. Ind. Electron., vol. 58,no. 10, pp. 4783–4788, Oct. 2011.
  • X. Wu, C. Hu, J. Zhang, and Z. Qian, “Analysis and design considerations of LLCC resonant multioutput DC/DC LED driver with charge balancing and exchanging of secondary series resonant capacitors,” IEEE Trans. Power Electron., vol. 30, no. 2, pp. 780–789, Feb. 2015.
  • X. Wu, C. Hu, J. Zhang, and C. Zhao, “Series-parallel auto-regulated charge-balancing rectifier for multi-output light-emitting diode driver,” IEEE Trans. Ind. Electron., vol. 61, no. 3, pp. 1262–1268, Mar. 2014.
  • W. Saito, “power device trends for high-power density operation of power electronics system,” Jpn. J. Appl. Phys., 53, 04EP02, Feb. 2014.
  • W. Li, Q. Luo, Y. Mei, S. Zong, X. He, and C. Xia, “Flying-Capacitor-Based Hybrid LLC Converters With Input Voltage Autobalance Ability for High Voltage Applications,” IEEE Trans. Power Electron., vol. 31, no. 3, pp. 1908-1920, Mar. 2016.
  • W. J. Muldoon, “High Frequency Transformer Optimization,” HAC Trade Study Report 2228/1130, May, 1970.
  • UL8750, The Standard for Safety of Light Emitting Diode (LED) Equipment for Use in Lighting Products, Underwriters Laboratories Inc., 2009.
  • T. Jiang, J. Zhang, “A Bidirectional Three-Level LLC Resonant Converter With PWAM Control,” IEEE Trans. Power Electon., vol. 31, no. 3, pp. 2212-2225, Mar. 2016.
  • T. Jiang, J. Zhang etc. “High efficiency quasi- two-stage converter with current sharing for multi-channel LED driver”, Future Energy Electronics Conference (IFEEC), pp. 311–315, Nov. 2013
  • T Baltynov, V Unni, EMS Narayanan. “The world's first high voltage GaN-on-Diamond power semiconductor devices,” Solid-State Electronics 125, pp. 111–117, 2016.
  • S.-S. Hwang, W.-S. Hwang, and S.-K. Han, “Cost-effective single switch multi-channel LED driver,” Journal of Power Electronics, Vol. 15, No. 2, pp. 319-326, Mar. 2015.
  • S.-S. Hong, S.-H. Lee, S.-H. Cho, C.-W. Roh, and S.-K. Han, “A new cost effective current-balancing multi-channel LED driver for a large screen LCD backlight units,” Journal of Power Electronics, vol. 10, no. 4, pp. 351– 356, Jul. 2010.
  • S. Ishii, K. Yasuoka, S. Ibuka, “Pulsed power application assisted by power semiconductor devices,” 13th International Symposium on Power Semiconductor Devices and ICs, pp. 11-14, Jun. 2001.
  • S. H. Cho, S. H. Lee, S. Hong, D.-S. Oh, and S.-K. Han, “High-accuracy and cost-effective current-balanced multichannel LED backlight driver using single-transformer,” in Proc. IEEE 8th Int. Conf. Power Electron. ECCE Asia, pp. 520–527, 2011.
  • Robert W. Erickson and Dragan Maksimovic, Fundamentals of power electronics(2nd edition), New York: Kluwer Academic Pubishers, 2004.
  • R. Zhao and J. Zhang, “High efficiency hybrid current balancing method for multi-channel LED drive,” in Proc. IEEE Appl. Power Electron. Conf., pp. 854–860, 2015.
  • R. Ren, B. Liu, E. A. Jones, F. Wang, D. Costinett, “Capacitor-Clamped, Three-level GaN-Based DC–DC Converter With Dual Voltage Outputs for Battery Charger Applications,” IEEE Journal of Emerging and Selected Topics in Power Electronics, vol. 4, no. 3, pp. 841-853, Sep. 2016.
  • R. G. Klimo, A. B. Larson, and J. E. Murray, “Optimization Study of High Power Static Inverters and Converters,” Quarterly report no. 2 NASA-CR-54021, April 20, 1964, Contract NAS 3-2785.
  • R. G. Hoft and H. A. Owen, “Special issue on power electronics,” Proc. IEEE, vol. 76, no. 4, pp. 307–512, Apr. 1988.
  • Moore's Law and Intel innovation. Intel.com. http://www.intel.com/about/companyinfo/museum/exhibits/moore.htm
  • K.H. Yi, “LLC DC/DC Converter with Input Voltage Balancing Capacitor for Electric Vehicles,” Indian Journal of Science and Technology, vol. 9 (17), May. 2016.
  • K. Mitsui, T. Sato, K. Nishijima, T. Nabeshima, "LLC Converter Combined with Switched Capacitor for High Voltage Applications,” 2013 International Conference on Renewable Energy Research and Applications, pp. 1013-1017, Oct. 2013.
  • K. Jin, X. Ruan, “Hybrid Full-Bridge Three-Level LLC Resonant Converter—A Novel DC–DC Converter Suitable for Fuel-Cell Power System,” IEEE Trans. Indus. Electron. vol. 53, no. 5, pp 1492-1503, Oct. 2006.
  • K. Jin, X. Ruan, F. Liu, “An Improved ZVS PWM Three-Level Converter,” IEEE Trans. Ind. Electron., vol. 54, issue 1, pp. 319 – 329, Feb. 2007.
  • K. Jin, X. Ruan, "Zero-Voltage-Switching Multiresonant Three-Level Converters,” IEEE Trans. Indus. Electron. vol. 54, no. 3, pp 1705-1715, June 2007.
  • K. Jin, M. Yang, X. Ruan, M. Xu, "Three-Level Bidirectional Converter for Fuel-Cell/Battery Hybrid Power System,” IEEE Trans. Indus. Electron. vol. 57, no. 6, pp 1976-1986, June 2010.
  • K. I. Hwu, S. Chou, "A Simple Current-Balancing Converter for LED Lighting," 2009 Twenty-Fourth Annual IEEE Applied Power Electronics Conference and Exposition, pp. 587-590, Mar. 2009.
  • K. H. Loo, Y. M. Lai, and C. K. Tse, “Design and analysis of LCC resonant network for quasi-lossless current balancing in multi-string AC-LED array,” IEEE Trans. Power Electron., vol. 28, no. 2, pp. 1047– 1059, Feb. 2013.
  • J. Zhang, L. Xu, X.Wu, and Z. Qian, “A precise passive current balancing method for multi-output LED drivers,” IEEE Trans. Power Electron., vol. 26, no. 8, pp. 2149–2159, Aug. 2011.
  • J. D. van Wyk, F. C. Lee, and D. Boroyevich, “Special issue on power electronics technology: Present trends and future development,” Proc. IEEE, vol. 89, no. 6, pp. 1–3, Jun. 2001.
  • J. D. van Wyk, F. C. Lee, D. Boroyevich, Z. Liang, and K. Yao, “A future approach to integration in power electronics systems,” in Proc. IEEE Ind. Electron. Conf., pp. 1008–1019, Nov. 2003.
  • J. D. van Wyk and F. C. Lee, “Power electronics technology at the dawn of a new millennium—status and future,” in Proc. IEEE PESC, pp. 3–12, Jun. 1999.
  • I. O. Lee, “Analysis and Design of a Three-Level LLC Series Resonant Converter for High- and Wide-Input-Voltage Applications,” IEEE Trans. on power Electron., vol. 27, no. 6, pp. 2966-2979, June 2012.
  • I. O. Lee, “A Hybrid PWM-Resonant DC-DC Converter for Electric Vehicle Battery Charger Applications,” Journal of Power Electronics, vol. 15, no. 5, pp. 1158-1167, Sep. 2015.
  • I. O. Lee, S. Y. Cho, G. W. Moon, "Three-Level Resonant Converter With Double LLC Resonant Tanks for High-Input-Voltage Applications,” IEEE Trans. Indus. Electron. vol. 59, no. 9, pp 3450-3463, Sep. 2012.
  • H. Wu, S. Ji, F. C. Lee, and X. Wu, “Multi-channel constant current (MC3) LLC resonant LED driver,” in Proc. IEEE Energy Convers. Congr. Expo., pp. 2568–2575, 2011.
  • H. Akiyama, T. Sakugawa, T. Namihira et al., “Industrial Applications of Pulsed Power Technology,” IEEE Trans. Dielectrics and Electrical Insulation, vol. 14, no. 5, pp. 1051-1064, 2007.
  • Gu, Z.Lu and Z.Qian, “Three-level LLC series resonant DC/DC converter,” IEEE Trans. Power Electron., vol. 20, pp. 781 – 789, July 2005.
  • Fred C. Lee, J. D. van Wyk, D. Boroyevich, Guo-Quan Lu, Zhenxian Liang, Peter Barbosa, “Technology Trends toward a system in a Module in power electronics,” Circuits and Systems Magazine, IEEE Vol 2, Issue 4, Fourth Quarter, pp. 4-22, 2002.
  • Francisco Canales, “Novel DC/DC Converters For High-Power Distributed Power Systems,” PhD. dissertation, Virginia Tech., Blacksburg, VA, 2003.
  • F. Xiaoyun, L. Xiaojian, and W. Yan, “Research and analysis of the design development and perspective technology for LED lighting products,” in Proc. IEEE Comput.-Aided Ind. Design Conceptual Design, Wenzhou, China, pp. 1330–1334, Nov. 2009.
  • F. F. Judd and D. R. Kessler, “Design Optimization of Power Transformers,” Bell Laboratories, Whippany, New Jersey IEEE Applied Magnetics Workshop, June 5-6, 1975
  • F. E. Gentry and R. A. York, “Special issue on high power semiconductor devices,” Proc. IEEE, vol. 55, no. 8, pp. 1–2, Apr. 1967.
  • E. Wittenbreder, “Zero voltage switching pulse width modulated power converters,” U.S. Patent No. 5402329.
  • D. Y. Kim, J. K. Kim, G. W. Moon, “A Three-Level Converter With Reduced Filter Size Using Two Transformers and Flying Capacitors,” IEEE Trans. Power Electron., vol. 28, no. 1, pp. 46-53, Jan. 2013.
  • D. Boroyevich and J. Z. Chen, “Integrated multidisciplinary modeling, analysis and design in power electronics,” 10th international conference on power electronics and motion control EPEPEMC, cavtat, paper SSJAF-05, 2002.
  • C. W. T. Mclyman, Transformer and inductor design handbook, Marcel Dekker, 2004.
  • C. McLyman, “Transformer Design Tradeoffs,” Technical Memorandum 33-767 Rev. 1, Jet Propulsion Laboratory, Pasadena, CA.
  • Byeong-Mun Song, McDowell, R., Bushnell, A., Ennis, J., “A three-level DC-DC converter with wide-input voltage operations for ship-electric-power- distribution systems,” IEEE Trans. Plasma Science, vol. 32, issue 5, part 1, Oct. 2004, pp.1856 – 1863.
  • B. Lu, W. Liu, Y. Liang, F. C. Lee, and J. D. van Wyk, “Optimal design methodology for LLC resonant converter,” in Proc. IEEE APEC, pp. 533–538, 2006.
  • B. Lin, C. Chen, "Zero voltage switching DC converter for high-input voltage and high-load current applications,” IET Power Electron., vol. 7, Iss. 1, pp. 124-131, 2014
  • B. K. Bose, “Special issue on power electronics and motion control,” Proc. IEEE, vol. 82, no. 8, pp. 1–2, Aug. 1994.
  • A. B. Lostetter, F. Barlow, and E. Elshabini, “An overview to integrated power module design for high power electronics packaging,” microelectronics reliability, vol. 40, no. 3, pp 365-379, 2000.
  • 60 years of the transistor: 1947 – 2007. Intel.com. http://www.intel.com/technology/timeline.pdf