박사

MMC 방식의 STATCOM 성능검증을 위한 시험회로 및 방법에 관한 연구

박용희 2016년
논문상세정보
' MMC 방식의 STATCOM 성능검증을 위한 시험회로 및 방법에 관한 연구' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • LC공진
  • Valve
  • full-bridge
  • mmc
  • statcom
  • submodule
  • testcircuit
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
92 0

0.0%

' MMC 방식의 STATCOM 성능검증을 위한 시험회로 및 방법에 관한 연구' 의 참고문헌

  • 고속 전력용 반도체 소자의 스위칭 테스트 장치(공개특허 제 -67320) [1998]
  • 풍력발전의 출력안정화를 위한 에너지저장장치 시스템의 SOC 피드백제어 에 관한 연구
    최준영 명지대학교 박사학위 논문 [2015]
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    정홍주 한양대학교 박사학위 논문 [2015]
  • “전기기기제어론”
    설승기 홍릉과학출판사, , 제4장 [2007]
  • 박사
  • “보조 사이리스테의 턴 -오프 회로를 간소화한 HVDC사이리스터 밸브 시험용 합성 시험회로”
  • “100MVA급 STATCOM Systemdmf 위한 제어기 설계에 관한 연구”
    한영성 한양 대학교 박사학위 논문 [2012]
  • odriguez, J.; Bernet, S.; Bin Wu; Pontt, J.O.; Kouro, S., "Multilevel Voltage-Source-Converter Topologies for Industrial Medium-Voltage Drives," Industrial Electronics, IEEE Transactions on , vol.54, no.6, pp.2930,2945, Dec. 2007.
  • Y. Han, H. Yoo, J. Kim, S. Kim, “A test facility for large scale inverter valve and pole using resonant circuit”ICPE 2007, Oct. Daegu, Korea
  • Y. H. Liu, J. Arrillaga, and N. R. Watson, “Cascaded H-bridge voltage reinjection—Part II: Application to HVDC transmission,” IEEE Trans. Power Del., vol. 23, no. 2, pp. 1200–1206, Apr. 2008.
  • Y. H. Liu, J. Arrillaga, and N. R. Watson, “Cascaded H-bridge voltage reinjection Part I: A new concept in multilevel voltage-source — conversion,” IEEE Trans. Power Del., vol. 23, no. 2, pp. 1175–1182, Apr. 2008.
  • V. G. Agelidis and L. Xu, “A novel HVDC system based on flying capacitor multilevel PWM converters,” in Proc. CIGRE/IEEE PES Int. Symp. Quality Security Electr. Power Del. Syst. (CIGRE 2001), Wuhan, China, Sep. 2001.
  • T. Xu, C. Davison, “Operational Tests for the MMC-Based VSC Valves”, PCIM Erope 2014, May.
  • Schauder, C. D., et al., “Development of a 100MVAR Static Condenser for Voltage Control of Transmission Systems,” IEEE Transaction on Power Delivery, Vol. 10, No. 3, July 1995.
  • S. mori et al. “Development of Large Static Var Generator Using Self-Commutated Inverters for Improving Power System Stability” IEEE, PES Winter Power Meeting, Paper No. 92WM165-1.1992
  • S. Bhattacarya, “Series Connected IGCT Based High Power Three-Level Neutral Point Clamped Voltage Source Inverter Pole for FACTS Applications”, PESC’05, pp.2315-2321, 2005
  • S. Bernet, T. Meynard, R. Jakob, T. Bruckner, B. McGrath, “Tutorial Multi-Level Converters”, in Proc. IEEE-PESC Tutorials, 2004, Aachen, Germany
  • Rodriguez, J.; Franquelo, L.G.; Kouro, S.; Leon, J.I.; Portillo, R.C.; Prats, M.A.M.; Perez, M.A., "Multilevel Converters: An Enabling Technology for High-Power 270 Applications," Proceedings of the IEEE , vol.97, no.11, pp.1786,1817, Nov. 2009.
  • R. Marquardt, A. Lesnicar, "A new modular voltage source inverter topology", EPE 2003, Toulouse.
  • N. G. Hingorani, “Flexible AC Transmission”, IEEE SPECTRUM, pp. 40-45, April 1993.
  • M. I. Shelton, W. A. Mittelstadt, P. E. Winkelman, W.J. Bellerby, “Bonneville Power Administration 1400MW Braking Resistor”, IEE Trans. on PAS, PAS-94, pp.602-611, 1975
  • L. Xu and V. G. Agelidis, “A VSC transmission system using flying capacitor multilevel converters and selective harmonic elimination PWM control,” in Proc. 7th Int. Power Eng. Conf., pp. 1176–1181, 2005.
  • L. Gyugyi, “Reactive Power Generation and Contol by Thyristor Circuits”, IEEE Trans. Ind. Appl., vol. IA-15, no. 5, pp. 521-532, Sept./Oct., 1979
  • L. Gyugyi, “Dynamic Compensation of AC Transmission Lines by Solid-state Synchronous Voltage Sources” IEEE, PES Summer Power Meeting, Paper No. 93 SM 434-1 PWRD, 1993.
  • L. Gyugyi et al. “Advanced Static Var Compensator Using Gate Turn-off Thyristors for Utility Applications” CIGRE paper 23-203, 1990.
  • Kouro, S.; Malinowski, M.; Gopakumar, K.; Pou, J.; Franquelo, L.G.; Bin Wu; Rodriguez, J.; Perez, M.A.; Leon, J.I., "Recent Advances and Industrial Applications of Multilevel Converters," Industrial Electronics, IEEE Transactions on , vol.57, no.8, pp.2553,2580, Aug. 2010.
  • K. K. Sen, “STATCOM-STATic synchronous COMpensator: Theory, Modeling, and Applications,” in Proc. IEEE Power Eng. Soc. Winter Meeting, Vol. 2, 1999.
  • J. Dorn, H. Huang, and D. Retzmann, “Novel voltage-sourced converters for HVDC and FACTS applications,” in Proc. CIGRE Meeting 2007, Osaka, Japan, pp. 314 –321.
  • J. Colmenares, "Analysis, implementation and experimental evaluation of a phase shifted PWM control system," Master of Science Thesis, 2011.
  • J. Choi and S. Sul, "Fast current controller in three-phase AC/DC boost converter using dq axis crosscoupling", IEEE Trans. Power Electron., vol. 13, pp.179-185, 1998.
  • I. A. Erinmez, Ed., “Static Var Compensators”, Working Group 38-01, Task Force No.2 on SVC, CIGRE, 1986.
  • Hingorni, N. G., “High Power Electronics and Flexible AC Transmission System,” IEEE Power Engineering Review, pp.3-4, July 1988.
  • H.J. Knaak, “Modular Multilevel Converters and HVDC/FACTS: a success story,” in Conf EPE 2011, Birmingham.
  • Gyugyi, L., “Dynamic Compensation of AC Transmission Lines by Solid-State Synchronous Voltage Sources,” IEEE Transactions on Power Delivery, Vol. 9, No. 2, April 1994.
  • G. P. Adam, O. Anaya-Lara, G. Burt, and J. McDonald, “Transformerless STATCOM based on a five-level modular multilevel converter,” in 13th European Conference on Power Electronics and Applications, EPE, pp. 1–10, 2009.
  • EPRI, “Transmission System Static Var Control”, EPRI Report No. EL-2754, December 1982.
  • EPRI, “Proceedings: Transmission Static Var Systems Seminar”, EPRI Report No. EL-1047-SR, April 1979.
  • EPRI, “FACTS System Studies: Southern Company Services”, EPRI Report, Final Draft, RP3022-02, June 1994.
  • EPRI, “Evaluation of Flexible AC Transmission Systems(FACTS) Technology to Improve First Swing: TVA’s Cumberland Plant” EPRI TR-103164,RP3022-02, Final Report, December 1994.
  • EPRI, “Assessment of FACTS Requirements on PSE&G System, Task3- Study of PJM SSR Mitigation Options” EPRI RP3022-02, Progress Report Prepared by GE, May 1994.
  • EPRI, “Application of TCSC in New York State” EPRI TR 103641,1993.12
  • E. Nho, B. Han, T. Chung, “New Synthetic Test Circuit for Thyristor Valve in HVDC Converter”Trans. on Power Delivery IEEE, Vol. 27, No.4, Oct. 2012
  • E. Larsen et al. “Benefits of GTO-Based Compensation Systems for Electric Utility Applications” IEEE, PES Summer Power Meeting, Paper No. 91 SM 387-0 TWRD, 1991.
  • CIGRE B4, “FACTS Overview”,CIGRE,95 TP 108, 1995.4
  • C. W. Edwards et. al., “Advanced Static Var Generator Employing GTO Thyristors”, IEEE ,PES Winter Meeting, Paper No. 38WM109-1,1988
  • B. Lee, H. Song, S. Kim, S. Kwon, G. Jang, V. Ajjarapu, “A study on determination of interface flow limits in the KEPCO System using the modified continuation power flow(MCPF)”, IEEE Trans. Power Systems, vol. 17, no. 3, Aug.2002, pp. 557-564
  • Abu-Rub, H.; Holtz, J.; Rodriguez, J.; Ge Baoming, "Medium-Voltage Multilevel Converters  State of the Art, Challenges, and Requirements in Industrial Applications," Industrial Electronics, IEEE Transactions on , vol.57, no.8, pp.2581,2596, Aug. 2010.
  • A. Lindberg and T. Larsson, “PWM and control of three level voltage source converters in an HVDC back-to-back station,” in Proc. AC DC Power Transmiss., London, U.K., pp. 297–302, 1996.