Optimal Switching Method Using Variable Additional On-time Control for CRM-operated Multi-cell Series-parallel Converter

  • Kim, Jintae
  • Won, Jehyuk
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초록

Unlike the conventional boost-derived power-factor-correction (PFC) converter, the multi-cell series-parallel (MCSP) converter can step-up/step-down the output voltage. Its modular concept has a flexibility to select the voltage rating of switches depending on the number of cells. Based on its high degree-of-freedom (DOF) in combination of switching states, this paper proposes an optimal switching method that can suppress the amplitudes of switch currents while improving converter efficiency by synthesizing pentagonal inductor current waveform in critical conduction mode (CRM) control. In addition, a total harmonic distortion of input current (iTHD) is improved with variable additional on-time control. Thanks to an inherent capacitor voltage balancing feature of the MCSP converter, it does not require additional balancing control. The feasibility of the proposed control is verified by experiments in the 300 W prototype. IEEE

키워드

CapacitorsControl systemsCritical conduction mode (CRM)Customer relationship managementInductorsMulti-cell Series-parallel (MCSP) ConverterPower factor correction (PFC)SwitchesTopologyVariable additional on-timeVoltage controlBOOST AC/DC CONVERTERPFC CONVERTERDESIGN
제목
Optimal Switching Method Using Variable Additional On-time Control for CRM-operated Multi-cell Series-parallel Converter
저자
Kim, JintaeWon, Jehyuk
DOI
10.1109/TIE.2023.3245200
발행일
2024-01
유형
Article
저널명
IEEE Transactions on Industrial Electronics
71
1
페이지
409 ~ 418