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Information Seminar Paper

Title

Double Switch High Step-Up DC-DC Converter Based on Two-Winding Coupled Inductor

Pages

  -

Abstract

 High-voltage DC-DC converters are essential elements in most renewable-energy applications. For such converters, it is important to consider their features such as input current and voltage gain. The present paper proposes a novel topology for high step-up DC-DC converter. The suggested converter provides high voltage gain and minimal switch voltage stress using a magnetic-coupling-based voltage multiplier approach. In addition, a boost inductor at the input provides constant input current, which is advantageous for battery, fuel cell, and solar applications. Furthermore, the MOSFETs are switched at zero voltage, resulting in negligible switching losses. In addition, the linked inductor is biased to zero DC, resulting in a compact magnetic area and reduced core losses. This work presents the functionality of the proposed converter, provides the design considerations, and analyzes the converter performance. The converter operation and properties are validated through several simulations.

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  • Cite

    APA: Copy

    Abbasian, Sohrab, Farsijani, Mohammad, & Roinila, Tomi. (2024). Double Switch High Step-Up DC-DC Converter Based on Two-Winding Coupled Inductor. POWER ELECTRONICS AND DRIVES: SYSTEMS AND TECHNOLOGIES CONFERENCE PEDSTC. SID. https://sid.ir/paper/1132501/en

    Vancouver: Copy

    Abbasian Sohrab, Farsijani Mohammad, Roinila Tomi. Double Switch High Step-Up DC-DC Converter Based on Two-Winding Coupled Inductor. 2024. Available from: https://sid.ir/paper/1132501/en

    IEEE: Copy

    Sohrab Abbasian, Mohammad Farsijani, and Tomi Roinila, “Double Switch High Step-Up DC-DC Converter Based on Two-Winding Coupled Inductor,” presented at the POWER ELECTRONICS AND DRIVES: SYSTEMS AND TECHNOLOGIES CONFERENCE PEDSTC. 2024, [Online]. Available: https://sid.ir/paper/1132501/en

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