• Journal of Terahertz Science and Electronic Information Technology
  • Vol. 20, Issue 2, 176 (2022)
GAO Pengfei1、*, LI Kejian1, LIU Hongxia2, SHEN Wenjuan1, and LIU Keman1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.11805/tkyda2020239 Cite this Article
    GAO Pengfei, LI Kejian, LIU Hongxia, SHEN Wenjuan, LIU Keman. Small signal modeling for high step-up Buck-Boost converter based on coupled inductor[J]. Journal of Terahertz Science and Electronic Information Technology , 2022, 20(2): 176 Copy Citation Text show less
    References

    [5] YAO Jia,ZHENG Kaisheng,ABRAMOVITZ A. Small-signal model of switched inductor boost converter[J]. IEEE Transactions on Power Electronics, 2019,34(5):4036-4040.

    [7] BABAEI Mohamd Reza,KAZEMI Farhda Mohajel. Application of transformer less high gain DC/DC converter for gridconnected offshore windfarms[J]. Journal of Applied Science and Engineering, 2016,19(3):329-336.

    [9] DAS Moumita,AGARWSAL Vivek. Design and analysis of a high-efficiency DC-DC converter with soft switching capability for renewable energy applications requiring high voltage gain[J]. IEEE Transactions on Power Electronics,2016,63(5):2936-2944.

    [12] YAO Jia,ABRAMOVITZ Alexander,SMEDLEY Keyue Ma. Analysis and design of charge pump-assisted high step-up tapped inductor SEPIC converter with an “inductor-less” regenerative snubber[J]. IEEE Transactions on Power Electronics, 2014,30(10):5565-5580.

    [13] TATTIWONG Kaweewat,BUNLAKSANANUSORN Chanin. A novel clamp-mode coupled-inductor boost converter with high step-up voltage gain[J]. Journal of Electrical Engineering and Technology, 2017,12(2):809-819.

    GAO Pengfei, LI Kejian, LIU Hongxia, SHEN Wenjuan, LIU Keman. Small signal modeling for high step-up Buck-Boost converter based on coupled inductor[J]. Journal of Terahertz Science and Electronic Information Technology , 2022, 20(2): 176
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