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[Keyword] resonant converter(7hit)

1-7hit
  • Inverting Quasi-Resonant Switched-Capacitor Bidirectional Converter and Its Application to Battery Equalization

    Yuang-Shung LEE  Yin-Yuan CHIU  Ming-Wang CHENG  Yi-Pin KO  Sung-Hsin HSIAO  

     
    PAPER-Energy in Electronics Communications

      Vol:
    E92-B No:4
      Page(s):
    1326-1336

    The proposed quasi-resonant (QR) zero current switching (ZCS) switched-capacitor (SC) converter is a new type of bidirectional power flow control conversion scheme. The proposed converter is able to provide voltage conversion ratios from -3/- (triple-mode/ trisection-mode) to -n/- (-n-mode/--mode) by adding a different number of switched-capacitors and power MOSFET switches with a small series connected resonant inductor for forward and reverse power flow control schemes. It possesses the advantages of low switching losses and current stress in this QR ZCS SC converter. The principle of operation, theoretical analysis of the proposed triple-mode/ trisection-mode bidirectional power conversion scheme is described in detail with circuit model analysis. Simulation and experimental studies are carried out to verify the performance of the proposed inverting type ZCS SC QR bidirectional converter. The proposed converters can be applied to battery equalization for battery management system (BMS).

  • Generalized Construction of ZCS Switched-Capacitor Bi-directional Converter

    Yuang-Shung LEE  Yin-Yuan CHIU  Ming-Wang CHENG  

     
    PAPER-Energy in Electronics Communications

      Vol:
    E89-B No:10
      Page(s):
    2913-2921

    The proposed zero-current switching switched-capacitor (ZCS SC) DC-DC converter is an innovative bi-directional power flow control conversion scheme. A zero-current switching switched-capacitor step-up/step-down bi-directional converter is presented that can improve the current stress problem during bi-directional power flow control processing. It can provide a high voltage conversion ratio of n/ (n-mode/-mode) using four power MOSFET main switches, a set of switched-capacitors and a small resonant inductor. Simulation and experimental results are carried out to verify the concept and performance of the proposed quadruple-mode/quarter-mode bi-directional DC-DC converter.

  • A Method Using an Averaging Technique for the Analysis and Evaluation of Real Quasi-Resonant Converters

    Yi-Cherng LIN  Der-Cherng LIAW  

     
    PAPER

      Vol:
    E89-C No:6
      Page(s):
    803-810

    A method using an averaging technique for the analysis and evaluation of real quasi-resonant converters (QRC's) is proposed in this paper. To reduce the great difference between the real characteristics and those of ideal circuits, a modeling technique is developed by considering the effect of parasitic power losses. Then, using the averaging approach reasonably simplifies the process of solving equations to obtain the steady-state solutions of state variables. Also, an updating algorithm is constructed to take all the power losses such as core losses, which are often absent in the conventional analysis, into account to improve the accuracy of the steady-state solutions. By these efforts, the evaluation of characteristics for QRC's is realized.

  • Design, Analysis, and Implementation of a Low-Profile Resonant DC-to-DC Converter Using PCB Transformer

    Byungcho CHOI  Donghyung KIM  Kijo LEE  

     
    PAPER-Energy in Electronics Communications

      Vol:
    E87-B No:8
      Page(s):
    2335-2341

    The current paper presents the design, analysis, and implementation of a low-profile resonant dc-to-dc converter that utilizes a coreless printed circuit board transformer as a substitute for the conventional magnetic core-based transformer. A prototype series resonant converter, fabricated in a 40 mm80 mm area with a 4 mm thickness while achieving the maximum efficiency of 85% at a 58 W output power, is used as an example to address the theoretical and practical issues involved in the design, analysis, and implementation of a PCB transformer-based low-profile dc-to-dc converter.

  • A Family of Single -Switch ZVS-CV DC-to-DC Converters

    Takerou MIZOGUCHI  Tamotsu NINOMIYA  Takashi OHGAI  Masahito SHOYAMA  

     
    PAPER-Power Supply

      Vol:
    E79-B No:6
      Page(s):
    849-856

    A family of single-switch ZVS-CV (Zero-voltage switchingclamped voltage) dc-to-dc converters is presented. This class of converter is realized by employing a commutation inductor circuit which is connected in parallel with either the transistor or the freewheeling diode in a conventional PWM converter. The technique described here is simple and output-voltage control is easy. The converters that comprise this family are derived form Buck, Boost, Buck/Boost, Cuk, Sepic and Zeta PWM converters. The steady-state characteristics of these converters such as the voltage conversion ratio, the ZVS conditions, and the input and output current ripples are analyzed. The analysis is confirmed by experiment.

  • Voltage-Mode Resonant Forward Converter with Capacitor-Input Filter*

    Toru HIGASHI  Masatoshi NAKAHARA  Tamotsu NINOMIYA  

     
    PAPER-Power Supply

      Vol:
    E79-B No:1
      Page(s):
    37-44

    A voltage-mode resonant forward converter with capacitor-input filter is proposed, and its static and dynamic characteristics for both half-wave type and full-wave type are revealed by analysis and experiment. As a result, this converter has prominent features of simplicity of circuit configuration, isolation between input and output and high stability.

  • Control Characteristics of Series Resonant Converter with Parallel Resonant Circuit under Parallel Resonant Frequency

    Akio NISHIDA  Kazurou HARADA  Yoshiyuki ISHIHARA  Toshiyuki TODAKA  

     
    PAPER-Power Supply

      Vol:
    E77-B No:12
      Page(s):
    1607-1613

    This paper presents an analysis of the control characteristics of the series resonant converter with a parallel resonant circuit, especially under parallel resonant frequency. Operations of the circuit are classified into several modes. The control characteristics are calculated using the equations derived from equivalent circuits, and are verified by the experiments. From the analysis, the mechanism of a jumping phenomenon in the closed-loop control characteristics is clarified.