Gird-interactive Current Controlled Voltage Source Inverter System with UPS

UPS를 고려한 계통연계 전류제어형 전압원 인버터

  • 고성훈 (전북대 고급인력 양성사업단) ;
  • 임성훈 (숭실대 공대 전기공학부) ;
  • 이수원 (연세대 TMS 정보기술사업단) ;
  • 이성룡 (군산대 공대 전자정보공학부)
  • Published : 2007.06.01

Abstract

This paper presents a grid-interactive current controlled voltage source inverter (CCVSI) with uniterruptible power supply (UPS), which uses an inner current control loop (polarized ramp time (PRT)) and outer feedback control loops to improve grid power quality and UPS. To reduce the complexity, cost and number of power conversions, which results in higher efficiency, a single stage CCVSI is used. The operation of this system could be divided into the power quality control (PQC) state mode and the UPS state mode. In PQC mode, the system operated to compensate the reactive power demand by nonlinear load or variation in load. In UPS mode. the system is controlled to provide a sinusoidal voltage at the rated value for the load when the gird fail. To verify the proposed system, a comprehensive evaluation with theoretical analysis, simulation and experimental results for 1KVA load capacity is presented.

Keywords

References

  1. A.M. Sharaf and A.R.N.M.R.U. Haque, 'Low cost utility interconnected photovoltaic scheme for residential/ village/ cottage electricity', Proceedings of the System Theory SSST, vol. 1, pp. 435-438, March 2005 https://doi.org/10.1109/SSST.2005.1460952
  2. IEEE Standard 1159, 'Monitoring Electric Power Quality,' in IEEE Standards Board, 1995
  3. M. Dai, M.N. Marwail, J.W. Jung and A. Keyhani, 'Power flow control of a single distributed generation unit with nonlinear local load', Conf. Rec. of IEEE PES 2004, vol. I, pp.398-403, Oct. 2004 https://doi.org/10.1109/PSCE.2004.1397647
  4. B.Singh, K. AI-Haddad. and A. Chandra, 'A review of active filter for power quality improvement', IEEE Trans. on Industrial Electronics, vol. 46, No.5, pp960-971, Oct. 1999 https://doi.org/10.1109/41.793345
  5. T. Kawabata, N. Sashida, Y. Yamamoto, K. Ogasawara and Y. Yamasaki, 'Parallel Processing Inverter System', IEEE Trans. power Electronics, vol.6, no.3, pp.442-450, July. 1991 https://doi.org/10.1109/63.85912
  6. L. l. Borle, M.S. Michael and C. V. Nayar, 'Development and Testing of a 20-kW Grid Interactive Photo voltaic Power Conditioning System in Western Australia', IEEE Trans, Industry Applications, vol. 33. no. 2. pp. 502-508, March, 1997 https://doi.org/10.1109/28.568016
  7. H. Dehbonei, C. V. Nayar, and L. Chang, 'A New Modular Hybrid Power System,' IEEE International Symposium on Industrial Electronics, 2003
  8. .S.H. Ko, S.R. Lee, H. Dehbonei and C.V nayar,' Application of Voltage and Current Controlled Voltage Source Inverters For Distributed Generation Systems', IEEE Trans. Energy Conversion, vol.21, no.13 pp. 782-792, setember, 2006 https://doi.org/10.1109/TEC.2006.877371
  9. H. Dehbonei, C. V. Nayar, and L. Borle, 'A Combined Voltage Controlled and Current Controlled 'Dual Converter' for a Weak Grid Connected Photovoltaic System with Battery Energy Storage,' IEEE Power Electronics Specialists Conference, Cairns, pp985-990, 2002 https://doi.org/10.1109/PSEC.2002.1022387