THERMAL SCIENCE

International Scientific Journal

Authors of this Paper

External Links

PERFORMANCE ANALYSIS OF THREE PORT FULL BRIDGE CONVERTER FOR HYBRID PHOTOVOLTAIC/BATTERY MANAGEMENT SYSTEM

ABSTRACT
In this paper, performance analysis of three port full bridge converter based hybrid PV/Battery management system is explained. The overall control system of the three port full bridge converter based PV/Battery management system is created and simulated using MATLAB. Maximum power point tracking of solar PV system is controlled by perturb and observe method. Load regulation of PV/Battery management system is controlled by phase shift PWM technique. The system is tested for various real time operating conditions of the power system such as variation of PV panel voltage, change of battery voltage and change of load power. The experimental verification also is carried out for developed system. Finally, simulation result and experimental result are compared for the developed system.
KEYWORDS
PAPER SUBMITTED: 2018-09-25
PAPER REVISED: 2018-11-05
PAPER ACCEPTED: 2018-11-22
PUBLISHED ONLINE: 2018-12-16
DOI REFERENCE: https://doi.org/10.2298/TSCI180925332S
CITATION EXPORT: view in browser or download as text file
THERMAL SCIENCE YEAR 2019, VOLUME 23, ISSUE Supplement 1, PAGES [S79 - S89]
REFERENCES
  1. Ioakimidis, C. S., et al., Solar Thermal and Wind Energy Applications…, Thermal Science, Vol. 22, 2018, No. 5, pp. 2163-2176.
  2. Fazelpour, F., et al.: Feasibility Study of Renewable Energy Resources and Optimization ... Thermal Science, Vol. 21, 2017, No. 1A, pp. 335-351
  3. Y.-C. Liu and Y.-M. Chen, "A systematic approach to synthesizing multi-input DC-DC converters," IEEE Trans. Power Electron., vol. 24, no. 1, pp. 116-127, Jan. 2009
  4. Y. Li, et al., "Synthesis of multi-input DC-DC converters," IEEE Trans. Power Electron., vol. 25, no. 9, Sep. 2010
  5. H. Tao, et al.,"Family of multiport bidirectional DC-DC converters," Proc. Inst. Elect. Eng., vol. 153, no. 3, pp. 451-458, May 2006
  6. H. Matsuo, et al., "Characteristics of the multi-input DC-DC converter," IEEE Trans. On Ind.Electron., vol. 51, no. 3, Jun. 2004
  7. A. Kwasinski, "Identification of feasible topologies for multiple-input DC-DC converters," IEEE Trans. Power Electron., vol. 24, no. 3, Mar. 2009
  8. M.G.Villalva, et al., "Modeling and circuit-based simulation of photovoltaic arrays," Brazilian Journal of Power Electronics, vol.14, no.1, pp.35-45, 2009
  9. Savita Nema, et al., "Matlab/simulink based study of photovoltaic cells/modules/array and their experimental verification," International Journal of Energy and Environment, vol. 1, issue 3, pp. 487-500, 2010.
  10. H. Wu, et al, "Full-bridge three-port converters with wide input voltage range for renewable power systems," IEEE Trans. Power Electron., vol. 27, no. 9, pp. 3965-3974, Sep. 2012.
  11. F. Nejabatkhah et al., "Modeling and control of a new three-input DC-DC boost converter for hybrid PV/FC/battery power system," IEEE Trans. Power Electron., vol. 27, no. 5, pp. 2309-2324, May 2012.
  12. S. H. Hosseini et al., "Multi-input DC boost converter for grid connected hybrid PV/FC/battery power system," IEEE Electrical Power & Energy Conference, 2010.
  13. R. J. Wai et al., "Newly designed ZVS multi-input converter," IEEE Trans. Ind. Electron., vol. 58, no. 2, pp. 555-566, Feb. 2011
  14. H. Tao et al., "Three-port triple-half-bridge bidirectional converter with zero-voltage switching," IEEE Trans. Power Electron., vol. 23, no. 2, pp. 782-792, Mar. 2008.
  15. Y.-M. Chen et al., "Multi-input DC/DC converter based on the multiwinding transformer for renewable energy applications," IEEE Trans. Ind. Electron., vol. 38, no. 4, Jul./Aug. 2002.

© 2024 Society of Thermal Engineers of Serbia. Published by the Vinča Institute of Nuclear Sciences, National Institute of the Republic of Serbia, Belgrade, Serbia. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International licence