307
Views
15
CrossRef citations to date
0
Altmetric
Research Article

Design and analysis of a proposed transformerless/non-isolated high-‎gain DC-DC converter for renewable energy applications

ORCID Icon, , &

References

  • Ardi, H., Ajami, A., & Sabahi, M. (2018). A novel high step-up DC-DC converter with continuous input current integrating coupled inductor for renewable energy applications. IEEE Transactions on Industrial Electronics, 65(2), 1306–1315.
  • Ayoubi, Y., Elsied, M., Oukaour, A., Chaoui, H., Slamani, Y., & Gualous, H. (2016). Four-phase interleaved DC/DC boost converter interfaces for super-capacitors in electric vehicle application based on advanced sliding mode control design. Elsevier, Electric Power Systems Research, 134, 186–196.
  • Elsied, M., Oukaour, A., Chaoui, H., Gualous, H., Hassan, R., & Amin, A. (2016). Real-time implementation of four-phase interleaved DC-DC boost converter for electric vehicle power system. Elsevier, Electric Power Systems Research, 141, 210–220.
  • Gules, R., dos Santos, W. M., dos Reis, F. A., Romaneli, E. F. R., & Badin, A. A. (2014). A modified SEPIC converter with high static gain for renewable applications. IEEE Transactions on Power Electronics, 29(11), 5860–5871.
  • Khadmun, W., & Subsingha, W. (2013). High voltage gain interleaved dc boost converter application for photovoltaic generation system. Elsevier, Energy Procedia, ( EMSES2012) 34, 390–398.
  • Lee, Y.-S., Hong, W.-T., & Chou, T.-H. (2013). Multiphase high gain boost converter with switched-capacitor and coupled-inductor. IEEE, 1st International Future Energy Electronics Conference (IFEEC) (pp. 320–325).
  • Li, H., Yang, D., Su, W., Lü, J., & Yu, X. (2019). Overall distribution particle swarm optimization MPPT algorithm for photovoltaic system under partial shading. IEEE Transactions on Industrial Electronics, 66(1), 265–275.
  • Maalandish, M., Hosseini, S. H., Jalilzadeh, T., & kurdkandi, N. V. (2018). A new high step-up DC/DC converter using one switch and lower losses for PV applications. IET Power Electronics, 11(13), 2081–2092.
  • Navamani, J. D., Vijayakumar, K., & Jegatheesan, R. (2018). Non-isolated high gain DC-DC converter by quadratic boost converter and voltage multiplier cell. Ain Shams Engineering Journal, 9(4), 1397–1406.
  • Sahoo, M., & Kumar, K. S. (2014). High gain step up DC-DC converter for DC micro-grid application. IEEE, 7th international conference on information and automation for sustainability “ Sharpening the Future with Sustainable Technology”. Colombo, Sri Lanka.
  • Sakulchotruangdet, S., & Khwan-on, S. (2016). Three-phase interleaved boost converter with fault tolerant control strategy for renewable energy system applications. Elsevier, Procedia Computer Science, ( iEECON2016) 86, 353–356.
  • Salvador, M. A., Lazzarin, T. B., & Coelho, R. F. (2018). High step-up DC–DC converter with active switched-inductor and passive switched-capacitor networks. IEEE Transactions on Industrial Electronics, 65(7), 5644–5654.
  • Saravanan, S., & Babu, N. R. (2017a). Analysis and implementation of high step-up DC-DC converter for PV based grid application. Elsevier, Applied Energy, 190(3), 64–72.
  • Saravanan, S., & Babu, N. R. (2017b). A modified high step-up non-isolated DC-DC converter for PV. Journal of Applied Research and Technology, 15(3), 242–249.
  • Saravanan, S., & Babu, N. R. (2018). Design and development of single switch high step-up DC-DC converter. IEEE Journal of Emerging and Selected Topics in Power Electronics, 6(2), 855–863.
  • Spiazzi, G., Biadene, D., Marconi, S., & Bevilacqua, A. (2019). Non-isolated high step-up DC-DC converter with minimum switch voltage stress. IEEE Transactions on Power Electronics, 34(2), 1470–1480.
  • Sri Revathi, B., & Prabhakar, M. (2016). Non-isolated high gain DC-DC converter topologies for PV applications – A comprehensive review. Elsevier, Renewable and Sustainable Energy Reviews, 66, 920–933.
  • Tang, Y., Fu, D., Wang, T., & Xu, Z. (2015). Hybrid switched-inductor converters for high step-up conversion. IEEE Transactions on Industrial Electronics, 62(3), 1480–1490.
  • Tyagi, P., Kotak, V. C., & Singh, V. P. S. (2014). Design high gain DC-DC boost converter with coupling inductor and simulation in PSIM. IJRET International Journal of Research in Engineering and Technology, 3(4), 156–163.
  • Wu, G., Ruan, X., & Ye, Z. (2015). Non-isolated high step-up DC-DC converters adopting switched-capacitor cell. IEEE, Transactions on Industrial Electronics, 62(1), 383–393.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.