• 제목/요약/키워드: PSFB

검색결과 59건 처리시간 0.032초

GaN소자와 평면변압기를 이용한 700kHz 차량용 DC-DC컨버터 개발 (Development of Low voltage DC-DC converter for xEV with high frequency·high power density based on GaN-HEMT and Planar transformer)

  • 김상진;;김규영;최세완;양대기;홍석용;이윤식;여인용
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2019년도 전력전자학술대회
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    • pp.348-349
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    • 2019
  • 본 논문은 전기자동차용 8.1kW/L의 높은 전력밀도를 갖는 저전압 DC-DC 컨버터(Low-voltage DC-DC converter, LDC)의 설계 방법을 제안한다. 넓은 전압범위에서 높은 전력밀도를 성취하기 위해 위상천이 풀-브릿지(Phase Shift Full-Bridge, PSFB) 컨버터의 2차측 토폴로지 후보군의 비교를 통해 전류-더블러 토폴로지로 토폴로지가 선정되었다. 또한 자속 상쇄 기법이 적용된 매트릭스 변압기를 적용한 PSFB 컨버터와 냉각기의 구조설계를 통해 8.1kW/L의 전력밀도를 달성하였으며 1.8kW 시작품을 제작하여 성능을 검증하였다.

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출력 커패시터가 없는 위상천이 풀브릿지 컨버터의 전류 전향 보상을 이용한 출력 전압 제어 기법 (Output Voltage Control Technique Using Current Forward Compensation for Phase Shifted Full Bridge Converter Without Output Capacitor)

  • 신유승;백승우;김학원;조관열;강정원
    • 전력전자학회논문지
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    • 제27권1호
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    • pp.40-47
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    • 2022
  • At present, the low-voltage, high-current type power supply is mainly used for effective sterilization in the ballast water treatment system. Research on PSFB converters without output capacitors has been ongoing. Such converters effectively treat ballast water without a separate disinfectant through electric pulses by applying a pulse-type power to the output electrode without an output capacitor. However, in the case of the pulse-type electrolysis treatment method, voltage overshoot can occur due to abrupt voltage fluctuations when the load changes, resulting in circuit reliability problems because of the output capacitorless system. Therefore, a new voltage control algorithm is required. In this paper, we will discuss voltage control for pulsed electrolysis topology without an output capacitor. The proposed voltage control method has been verified using Simulation and experiment. The usefulness of the proposed control method has been proven by the experimental results.

A Hybrid PWM-Resonant DC-DC Converter for Electric Vehicle Battery Charger Applications

  • Lee, Il-Oun
    • Journal of Power Electronics
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    • 제15권5호
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    • pp.1158-1167
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    • 2015
  • In this paper, a new hybrid DC-DC converter is proposed for electric vehicle 3.3 kW on-board battery charger applications, which can be modulated in a phase-shift manner under a fixed frequency or frequency variation. By integrating a half-bridge (HB) LLC series resonant converter (SRC) into the conventional phase-shift full-bridge (PSFB) converter with a full-bridge rectifier, the proposed converter has many advantages such as a full soft-switching range without duty-cycle loss, zero-current-switching operation of the rectifier diodes, minimized circulating current, reduced filter inductor size, and better utilization of transformers than other hybrid dc-dc converters. The feasibility of the proposed converter has been verified by experimental results under an output voltage range of 250-420V dc at 3.3 kW.

NEV용 1.5[kW]급 저가형 충전기 개발에 관한 연구 (A Study on Development of 1.5 [kW] Low-cost Battery Charger for NEVs(Neighborhood Electric Vehicles))

  • 이찬송;정진범;이백행;허진
    • 전기학회논문지
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    • 제61권4호
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    • pp.574-579
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    • 2012
  • In this paper, the battery charger developed which is satisfy by the characteristics of the rapid control and reduce the cost of the charger. analog-digital mixed mode controller developed with dedicated IC for PWM control and low-performance micro-processor is using for the operation control of charger. The low-cost NEV charger developed to verify the performance and usability is verified with charging battery experiment by of using developed charger.

Design of Integrated Magnetic Transformer for ZVS Phase Shift Full Bridge Converter

  • Li, Xin-Lan;Jang, Eun-Sung;Shin, Yong-Whan;Won, Jae-Sun;Kim, Jong-Sun;Oh, Dong-Seong;Shin, Hwi-Beom
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2008년도 하계학술대회 논문집
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    • pp.40-42
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    • 2008
  • This integrated magnetic (IM) transformer is proposed for a phase shifted full bridge (PSFB) converter with zero voltage switching (ZVS). In a new IM transformer, the transformer is located on the center leg of E-core and the output inductor is wound on two outer legs. The proposed circuit is analyzed electrically and magnetically. An E-core is redesigned and implemented. The proposed IM transformer is experimentally compared with the conventional one through a 1.2kW prototype converter.

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전기자동차용 DC-DC 컨버터 최적설계 (Optimization Design and Implementation of DC-DC Converter(LDC) for Electric Vehicle)

  • 권용효;김승모;김표수;김말수;남광희
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2012년도 추계학술대회 논문집
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    • pp.107-108
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    • 2012
  • This paper presents design and implementation of the LDC(1.8 kW DC-DC Converter for Electric Vehicles). For Implementation of the LDC, the adapted topology is ZVS(Zero Voltage Switching) PSFB(Phase Shift Full Bridge) with Digital Control is adopted. Also, for the purpose of stable operation of the LDC in vehicle with variable electrical load condition, Continuous Voltage and Current Limit Control scheme based on PI controller are developed. According to real-car test mode, the prototype of proposed the LDC is verified with performance and stability. Thus, optimizing design and implement of the LDC are discussed, and experimental results are presented.

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아크램프를 위한 전원공급 시스템의 연구 (A Study on the Power Supply System for the Arc Lamp)

  • 나재두
    • 전기학회논문지P
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    • 제67권3호
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    • pp.125-130
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    • 2018
  • Arc lamps are now widely utilized as illumination sources for a large number of investigations in wide-field fluorescence microscopy. Among many power converters for the lamp, the PSFB (Phase-Shift Full-Bridge) converter with the ZVS (Zero Voltage Switching) is the most widely used soft switched circuit in high-power applications. Also, in the most luminaries, the power factor has to be more and more important. Thus, the power factor correction(PFC) must be included in the power system. A new igniter module using the switching power device and the transformer is proposed instead of the conventional igniter using the mechanical contactor. The proposed converter with the high power factor and high efficiency is verified through the experimental works.

태양광 발전을 이용한 전기자전거용 배터리 충전장치 (The Battery Charger System for Electric Bicycle using Photovoltaic Power)

  • 원동조;이주혁;김재형;원충연;정용채
    • 한국조명전기설비학회:학술대회논문집
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    • 한국조명전기설비학회 2008년도 춘계학술대회 논문집
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    • pp.53-56
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    • 2008
  • In this paper, we propose the battery charging device for electric bicycle using photovoltaic power. DC voltage from the solar cells is low, it needs to be step-up by the power conversion device. The power conversion device applied to this paper is phase-shift full-bridge converter. This converter steps-up from 12${\sim}$22[Vdc] to 36[Vdc] for charging the battery of electric bicycle. Phase-shift full-bridge converter(PSFB) can obtain twice as much DC voltage compared with half-bridge converter, thus it has lower current stress less than half-bridge converter. It is simulated and tested the battery charging device using photovoltaic power.

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직렬 연결된 두개의 트랜스포머를 갖는 새로운 위상천이 풀 브릿지 컨버터 (A New Phase Shift Full Bridge Converter with Serially Connected Two Transformers)

  • 구관본;김태성;문건우;윤명중
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2002년도 전력전자학술대회 논문집
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    • pp.370-373
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    • 2002
  • A new phase shift full bridge converter(PSFB) with serially connected two transformers is proposed. It is well suited for applications in the communication equipment of a few hundred watts. The main features of the proposed converter are a wide input voltage range, an easiness to meet the requirement for zero voltage switching (ZVS) condition at a light load, and a small output voltage ripple. Furthermore, it features high power density since serially connected two transformers can replace both a main transformer and an output inductor. A mode analysis and experimental results are presented to verify the validity of the proposed converter.

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Integrated Magnetic Transformer for ZVS Phase Shift Full Bridge Converter

  • 이형란;신용환;원재선;김종선;신휘범
    • 전력전자학회논문지
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    • 제15권2호
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    • pp.119-126
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    • 2010
  • An integrated magnetic (IM) transformer is proposed for a phase shifted full bridge (PSFB) converter with zero voltage switching (ZVS). In a proposed IM transformer, the transformer is located on the center leg of E-core and the output inductor is wound on two outer legs with air gap. The proposed IM transformer is analyzed by using the magnetic capacitor model. For reducing the core size, EE core is redesigned. The proposed IM transformer is experimentally verified on a 1.2 kW prototype converter. The converter efficiency with the proposed IM transformer is about 93 % at full load and its volume size can be reduced. It can be expected that the power density can be largely increased with the proposed IM transformer.