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Analysis and implementation of high step-up DC-DC converter for PV based grid application

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  • Saravanan, S.
  • Ramesh Babu, N.

Abstract

The high static gain DC-DC converter using a single switch for Photovoltaic (PV) based grid application with improved efficiency is proposed in this article. This proposed topology has been derived from single ended primary inductor converter (SEPIC) by introducing a voltage-doubler circuit for providing high voltage gain with reduced voltage stress across the semiconductor devices. The operating principle, steady state analysis and the design guidelines of the proposed converter are discussed in detail. A single phase full bridge inverter is employed for the DC output voltage from the converter to AC grid application. The prototype of 250W/300V DC output with 30V PV input is implemented and the performance of the proposed topology is validated.

Suggested Citation

  • Saravanan, S. & Ramesh Babu, N., 2017. "Analysis and implementation of high step-up DC-DC converter for PV based grid application," Applied Energy, Elsevier, vol. 190(C), pages 64-72.
  • Handle: RePEc:eee:appene:v:190:y:2017:i:c:p:64-72
    DOI: 10.1016/j.apenergy.2016.12.094
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    References listed on IDEAS

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    Cited by:

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    4. Mahdavyfakhr, Mohammad & Rashidirad, Nasim & Hamzeh, Mohsen & Sheshyekani, Keyhan & Afjei, Ebrahim, 2017. "Stability improvement of DC grids involving a large number of parallel solar power optimizers: An active damping approach," Applied Energy, Elsevier, vol. 203(C), pages 364-372.
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    6. Wang, Qin & Yao, Wei & Fang, Jiakun & Ai, Xiaomeng & Wen, Jinyu & Yang, Xiaobo & Xie, Hailian & Huang, Xing, 2020. "Dynamic modeling and small signal stability analysis of distributed photovoltaic grid-connected system with large scale of panel level DC optimizers," Applied Energy, Elsevier, vol. 259(C).
    7. M. Karthikeyan & R. Elavarasu & P. Ramesh & C. Bharatiraja & P. Sanjeevikumar & Lucian Mihet-Popa & Massimo Mitolo, 2020. "A Hybridization of Cuk and Boost Converter Using Single Switch with Higher Voltage Gain Compatibility," Energies, MDPI, vol. 13(9), pages 1-24, May.
    8. Bradai, R. & Boukenoui, R. & Kheldoun, A. & Salhi, H. & Ghanes, M. & Barbot, J-P. & Mellit, A., 2017. "Experimental assessment of new fast MPPT algorithm for PV systems under non-uniform irradiance conditions," Applied Energy, Elsevier, vol. 199(C), pages 416-429.
    9. Amir, Asim & Amir, Aamir & Che, Hang Seng & Elkhateb, Ahmad & Rahim, Nasrudin Abd, 2019. "Comparative analysis of high voltage gain DC-DC converter topologies for photovoltaic systems," Renewable Energy, Elsevier, vol. 136(C), pages 1147-1163.

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