• Title/Summary/Keyword: Full Bridge converter

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Loss Analysis for Isolated Dual Full-Bridge Bidirectional DC-DC Converter (절연형 Dual Full-Bridge 양방향 DC-DC 컨버터에 대한 손실 분석)

  • Koo, Beob-Jin;Kim, Hak-Soo;Sun, Daun;Jeong, Hye-Soo;Nho, Eui-Cheol;Kim, Heung-Geun;Chun, Tae-Won
    • Proceedings of the KIPE Conference
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    • 2014.11a
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    • pp.201-202
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    • 2014
  • 본 논문에서는 절연형 Dual Full-Bridge 양방향 DC-DC 컨버터의 손실 분석을 다루었다. 동일한 컨버터라 하더라도 스위칭 기법과 스위칭 주파수에 따라 손실이 다르게 나타나는데 여기서는 ZCS 가 되는 조건에서 스위칭 주파수를 10 [kHz] 로 하여 분석하였으며 계산결과가 실험결과와 거의 일치함을 확인하였다.

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Switching Frequency Design of Phase-Shifted Full-Bridge Converter in On Board Charger in Electric Vehicles for High Efficiency and High Power Density (전기자동차 OBC 용 Phase-Shifted Full-Bridge 컨버터의 고효율 및 고전력밀도 달성을 위한 스위칭 주파수 설계)

  • Lee, Jae Han;Son, Won-Jin;Ann, Sangjoon;Byun, Jongeun;Lee, Byoung Kuk
    • Proceedings of the KIPE Conference
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    • 2019.07a
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    • pp.346-347
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    • 2019
  • 본 논문에서는 3.3 [kW] on-board charger (OBC) 용 phasw-shifted full-bridge (PSFB) 컨버터의 고효율 및 고전력 밀도 달성을 위한 스위칭 주파수 설계 방안을 제안한다. 스위칭 주파수에 따라 달라지는 손실 양상 및 전력 밀도에 대해 분석하기 위해 각 스위칭 주파수 별 반도체 소자 손실과 수동 소자 손실을 계산하고, 수동 소자의 부피 변화에 따른 전력밀도 변화를 분석한다. 분석 결과를 바탕으로 고효율 및 고전력밀도 달성을 위한 시스템 설계 포인트를 선정하고 시뮬레이션을 통하여 설계 결과를 검증한다.

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Large Signal and Small Signal Models for a Pulsewidth-Modulated or Current Controlled Series Resonant Converter (전류 제어형 공진형 컨버터를 위한 대신호 및 소신호 모델)

  • Kim, Yoon-Ho;Yoon, Byung-Do;Sang, Doo-Hwan
    • Proceedings of the KIEE Conference
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    • 1990.11a
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    • pp.309-313
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    • 1990
  • Pulse width modulation using discontinuous conduction modes are applied to a full-bridge series resonant converter to regulate the output from no load to full load with low switching loss and a narrow range of frequency variation. Finally, a simple nonlinear discrete-time dynamic model for this proposed converter is derived using approximation. This discrete time model is linearized and a general input - output transfer function for the propelled converter is derived.

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A Novel Three-Level ZVS PWM Inverter Topology for High-Voltage DC/DC Conversion Systems with Balanced Voltage Sharing and Wider Load Range (차단전압 균형과 넓은 부하범위를 갖는 새로운 3-레벨 ZVS PWM DC-DC 컨버터)

  • 송인호;유상봉;서범석;현동석
    • Proceedings of the KIPE Conference
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    • 1996.06a
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    • pp.71-75
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    • 1996
  • As the Three-level ZVS PWM DC-DC converter operates likewise full-bridge ZVS PWM DC-DC converter and the blocking voltage of each switching device is a half of the DC-link voltage, it is suitable for the high imput voltage applications. However, it has some problems as follows; The blocking voltage of each devices is unbalanced and it causes the power losses of the inner switching devices to be increased. Also, it has narrow load range so that the switching losses and the efficiency are reduced as it goes to the light load. This paper presents an nove Three-level ZVS PWM DC-DC converter, which can reduce the overvoltage of the outer switches, eliminate the unbalance of the voltage sharing between the switches at turn-off due to the stray inductances, and operate from no load to full load. The characteristics and the performances of the proposed Three-level ZVS PWM DC-DC converter are verified by simulation and experimental results

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Fuel Cell Inverter Operation for Distributed Generation of simulation (연료전지의 인버터 운전 시뮬레이션)

  • Jeong, Dong-Hyo
    • Proceedings of the KIEE Conference
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    • 2007.11c
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    • pp.170-174
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    • 2007
  • Recently, a fuel cell is remarkable for new generation system. The fuel cell generation system converts the chemical energy of a fuel directly into electrical energy. The fuel cell generation is characterized by low voltage and high current. For connecting to utility, it needs both a step up converter and an inverter. The step up converter makes DC link and the inverter changes DC to AC. In this paper full bridge converter and the single phase inverter are designed and installed for fuel cell. Simulation and experiment verify that fuel cell generation system could be applied for the distributed generation.

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The method of ZVS Which is using synchronous Buck-Converter (동기형 Buck-Converter를 이용한 ZVS 기법)

  • Choi, Sang-Gyu;Kim, Seung-Ryong;Kim, Ki-Seon;Kim, Kwang-Heon;Park, Sung-Jun
    • Proceedings of the KIPE Conference
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    • 2010.07a
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    • pp.17-18
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    • 2010
  • 최근 전력변환기의 효율 증대를 위한 소프트 스위칭 및 동기형 DC/DC 컨버터에 대한 연구가 활발히 진행되고 있다. 따라서 본 논문에서는 동기형 Buck-Converter를 이용한 Full-Bridge DC/DC 컨버터의 ZVS 기법에 대하여 연구 하였으며, 제안된 방식의 타당성을 검증하기 위해 Psim을 이용한 시뮬레이션을 행하였다.

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Current Controller Design of a Phase Shift Full Bridge Converter for High Current Applications with Inductive Load (대 전류 응용 위한 유도 부하를 갖는 위상 변이 풀 브릿지 컨버터의 전류 제어기 설계)

  • Le, Tat-Thang;Park, Min-Won;Yu, In-Kun
    • Journal of Korea Society of Industrial Information Systems
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    • v.23 no.1
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    • pp.43-52
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    • 2018
  • This paper presents the performance of a Phase Shift Full Bridge (PSFB) converter with inductive load and a new current control scheme to improve dynamic response of output current with various inductive loads. Enhanced dynamic model is used which includes leakage inductance and inductive load. Effect of changing of inductive load was analyzed in detail. Proposed current control scheme is designed based on phase margin specifications. As a result, the proposed current control scheme helps to improve the dynamic response in comparison with the existing current control scheme. The performance of the designed controller is verified by a 500 A PSFB converter. The results will be utilized for high current applications with high inductive load such as superconducting devices.

DC-DC Converter of Fixed Duty Ratio Method for 1kW Photovoltaic System (1kW급 태양광 발전용 고정 시비율 방식의 DC-DC 컨버터)

  • Yoo, Ho-Won;Jung, Yong-Min;Lim, Seung-Beom;Lee, Jun-Young;Hong, Soon-Chan
    • Proceedings of the KIPE Conference
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    • 2008.06a
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    • pp.46-48
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    • 2008
  • A concern about micro grid connection system is elevated. The reason is that carbon dioxide emission is regionally restricted to prevent the drain of fossil fuel, high oil prices and global warming. The existing photovoltaic DC-DC converter is operated by the full-bridge method. However, the configuration is complicated because a phase shift method is required to raise an efficiency. A photovoltaic DC-DC converter connected with second layered half-bridge converter and boost converter is proposed in this paper. This proposed DC-DC converter is easy to control and has an advantage of reducing the size. Finally, the validity of the proposed converter is verified by the experimentation.

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A Study on the 3-phase 13.2 kV Solid State Transformer for the DC Distribution (직류 배전망 연계를 위한 3상 13.2kV급 반도체 변압기 시스템에 대한 연구)

  • Jeong, Dong-Keun;Yun, Hyeok-Jin;Park, Si-Ho;Kim, Ho-Sung;Kim, Myoung-Ho;Ryu, Myung-Hyo;Baek, Ju-Won
    • The Transactions of the Korean Institute of Power Electronics
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    • v.26 no.5
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    • pp.315-324
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    • 2021
  • A solid state transformer (SST) that can interface an MVAC of three-phase 13.2 kV and a 1.5 kV DC distribution. SST consists of an AC/DC converter and a DC/DC converter with a high-frequency isolation transformer (HFIT). The AC/DC converter consists of cascaded NPC full-bridge to cope with the MVAC. The DC/DC converter applies a quad active bridge (QAB) topology to reduce the number of the HFIT. Topology analysis and controller design for this specific structure are discussed. In addition, the insulation of HFIT used in DC/DC converters is considered. The discussion is validated using a 300 kVA three-phase SST prototype.

A Design of Power Converter for Fuel Cell Controlled by Micro-Processor (마이크로프로세서에 의해 제어되는 연료전지용 전력변환 회로 설계)

  • Won, Chung-Yuen;Jang, Su-Jin;Lee, Won-Chul;Lee, Tae-Won;Kim, Soo-Seok
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.18 no.5
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    • pp.61-68
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    • 2004
  • Recently, a fuel cell is remarkable for new generation system. The fuel cell is characterized by low voltage and high current. Therefor, for connecting to general load, it needs both a step up converter and an inverter. The proposed system consists of an isolated DC-DC converter to boost the fuel cell voltage to 380[Vdc] and a PWM inverter with LC filter to convert the dc voltage to single phase 220[Vac]. Also, bi-directional DC-DC converter for fuel cell generation system is composed to improve load response characteristic. In this paper, full bridge converter and the single phase inverter are designed and installed for fuel cell. Simulation and experiment verify that fuel cell generation system could be applied for the distributed generation.