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An enhanced gain non-isolated quadratic boost DC-DC converter with continuous source current. | LitMetric

AI Article Synopsis

  • The paper presents a non-isolated quadratic boost DC-DC converter that achieves high output voltage gain while reducing the number of components needed in its design.
  • This converter features continuous source current, simplifying filter design and making it ideally suited for photovoltaic applications, while also eliminating the need for an additional control power supply.
  • The study includes detailed mathematical modeling, steady-state analysis, and power loss calculations, and validates its findings with a 250 W experimental prototype showing a peak efficiency of 92% at a 50% duty cycle.

Article Abstract

In this paper, a non-isolated quadratic boost DC-DC converter has been proposed. The proposed converter provides high output voltage gain with a lower component count on the structure. In addition, the input side inductor provides continuous source current and the output voltage is positive. Since the proposed topology possesses the continuous source current, it simplifies the filter design at the input side further making the converter suitable for photovoltaic applications. Another important feature of this converter includes the utilization of the same switch ground that omits the additional control power supply in the system design. The detailed mathematical modeling of the proposed topology including the steady state analysis for different modes of operations, voltage stress calculations of the components, and power loss calculations have been precisely demonstrated in this work. The simulation has been carried out in Matlab/Simulink software. Finally, a 250 W experimental prototype has been developed and tested in the laboratory environment and the peak efficiency of the proposed topology has been found 92% at 50% duty cycle, which validates the correctness of the theoretical and simulation outcomes of the proposed work.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10703286PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0293097PLOS

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