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An Interleaved Non-Isolated DC-DC Boost Converter with Diode-Capacitor Cells

Research output: Contribution to journalArticlepeer-review

Abstract

Using the conventional boost converter in applications that require high-voltage-gain conversion have several challenges. The conventional boost converter can have high-voltage-gain ratio if only operates with an extremely high duty ratio. Also, the output diode might suffer from the reverse recovery phenomena at the high duty cycle and high-power applications. Therefore, a new topology is required to overcome the issues associated with using the conventional boost converter in applications that require high-voltage-gain conversion. This paper introduces an interleaved boost converter with a diode-capacitor voltage multiplier cells to achieve high-voltage gain conversion with low voltage stresses on switches. The theory of operation of the proposed converter is explained. The steady-state analysis of proposed converter is verified through simulation to convert 20 to 400 V DC . A 200 W hardware prototype was experimentally implemented to validate both simulation and analysis.

Keywords

  • Diodes
  • Electric Inverters
  • Gain Measurement
  • HVDC Power Transmission
  • Boost
  • DC Distribution
  • DC-DC
  • Interleaved
  • Non-Isolated
  • Renewable
  • Solar
  • DC-DC Converters
  • PV
  • Inductors
  • Capacitors
  • Topology
  • Stress
  • Equivalent Circuits
  • Light Emitting Diodes
  • DC-DC Power Convertors
  • Power Capacitors
  • Power Semiconductor Diodes
  • Switching Convertors
  • Voltage Multipliers

Disciplines

  • Electrical and Computer Engineering

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