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Development of energy-efficient IBC with IGBT module for photovoltaic applications

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The proposed study is improvised value-engineered modifications for the basic interleaved boost converter (IBC) by including relevant modifications in circuits, which is expected for a better performance in switching with reduction in losses. The newly modified IBC circuit with insulated gate bipolar transistor (IGBT) along with converter has been experimented by simulations and the results are tabulated to modified IBC with metal oxide silicon field effect transistors. Further experimental analysis and validations of the proposed simulation with hardware developed adopting model SKM195GB066D consisting of IGBTs is presented. This study further enhances and summarises the optimum utilisation and the performance of IBC with the proposed IGBT modules that synchronises power diode. Enhancing the simulation outcomes, the hardware is proposed and developed to be tested for a load up to 1.5 kW with the evaluation of key parameters such as efficiency of the converter.
Wydawca
Rocznik
Strony
73--81
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
  • PES University, Department of Electrical and Electronics Engineering, Bangalore, India
autor
  • Otis Elevator Company, SM-IEEE, PES University, Department of Engineering, Bangalore, India
Bibliografia
  • Ahmad, S. S., Makbul, A. and Abdul, H. M. Y. (2010). Dynamic evolution control of interleaved boost dc–dc converter for fuel cell application. In: 2010 Conference Proceedings IPEC, Singapore, 2010, pp. 869-874.
  • Chien-Ming, W., Chang-Hua, L., Shih-Yung, H., Chien-Min, L. and Jyun-Che, L. (2014) Analysis, design and performance of a zero-current-switching pulse-width modulation interleaved boost dc/dc converter. IET Power Electronics, 7(9), pp. 2437–2445.
  • Choi, S., Agelidis, V. G., Yang, J., Coutellier, D. and Marabeas. (2011). Analysis design and experimental results of a floating-output interleaved-input boost-derived DC–DC high-gain transformer-less converter. IET Power Electronics, 4(1), 168–180.
  • Diaz-Saldierna, L. H., Leyva-Ramos, J., Ortiz-Lopez, M. G. and Reyes-Malanche, J. A. (2012). Current-controlled switching regulator using a DC-DC converter with high-step-down voltage gain. IET Transactions on Power Electronics, 5(7), pp. 1147–1153.
  • Ebrahim, B. and Zahra, S. (2017). High voltage gain dc-dc converters based on coupled inductors. IET Power Electronics, 11(3), 434–452.
  • Freitas, A. A. A., Tofoli, F. L., Júnior, E. M. S., Daher, S. and Antunes, F. L. M. (2015). High-voltage gain dc–dc boost converter with coupled inductors for photovoltaic systems. IET Transactions on Power Electronics, 8(10), 1885–1892.
  • Huber, L., Irving, B. T. and Jovanovic, M. M. (2009). Closed-loop control methods for interleaved DCM/CCM boundary boost PFC converters. In: Proceedings of the 24th Annual IEEE Applied Power Electronics Conference and Exposition, Washington, USA, 15–19 February.
  • Mahmoud, F., Navid, M., Ehsan, A. and Hosein, F. (2017). High voltage gain interleaved dc–dc converter with minimum current ripple. IET Power Electronics, 10(14), pp. 1924–1931.
  • Prasanna Kumar, C. and Venugopal, N. (2018). Performance and stability analysis of series cascaded, high-gain, interleaved boost converter for photovoltaic applications. Power Electronics and Drives, 3(1), 85–97.
  • Pyosoo, K., Sanghyuk, L., Junsung, P. and Sewan, C. (2011) High step-up interleaved boost converters using voltage multiplier cells. In: Power Electronics and ECCE Asia (ICPE & ECCE), 2011 IEEE 8th International Conference on, IEEE, pp. 2844–2851.
  • Ranoyca, N., Alencar, L. S., Fernando, L. T., Paulo, P. P., Demercil de Souza, O., Jr. and Barreto, L. H. S. C. (2014). Soft switching high-voltage gain dc–dc interleaved boost converter. IET Power Electronics, 8(1), 120–129.
  • Smith, N. and Mc Cann, R. (2014). Analysis and simulation of a multiple input interleaved boost converter for renewable energy applications. In: Proceedings of the 36th International Telecommunications Energy Conference (INTELEC), Vancouver, Canada, 28 September–2 October 2014.
  • Wen, J., Jin, T. and Smedley, K. (2006). A new interleaved isolated boost converter for high power applications. In: Proceedings of the 21st Annual IEEE Applied Power Electronics Conference and Exposition, Dallas, USA, 19–23 March 2006.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a68612a8-2ef7-4af5-ad3c-24c928ad6012
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