• 제목/요약/키워드: Full bridge LLC converter

검색결과 26건 처리시간 0.019초

전기자동차 충전기용 10kW 하이브리드 컨버터 (A 10kW Hybrid Converter for the Electric Vehicle Charge Application)

  • 트란다이두옹;유선호;부하이남;최우진
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2015년도 전력전자학술대회 논문집
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    • pp.319-320
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    • 2015
  • A hybrid converter for the on-board charger consisting of a soft switching full bridge (SSFB) and a half bridge (HB) LLC resonant converter is proposed. The proposed topology adopts an additional switch and a diode at the secondary side of SSFB converter to guarantee the wide ZVS range of primary side switches and to eliminate the circulating current. The output voltage is regulated by controlling the duty cycle of secondary side switch. The effectiveness of the proposed converter was experimentally verified using a 10-kW prototype circuit. The experimental results show 96.8% peak efficiency.

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고효율 및 소형 스위치모드 라인 트랜스포머 (High Efficiency and Small Size Switch Mode Line Transformer(SMLT))

  • 김진홍;양정우;장두희;강정일;한상규
    • 전력전자학회논문지
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    • 제24권4호
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    • pp.237-243
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    • 2019
  • A high-efficiency and small-sized switched-mode line transformer (SMLT) is proposed in this study. The conventional structure of an adapter is composed of line transformer and rectifiers. This structure has a limit in miniaturizing due to low-frequency line transformer. Another structure is composed of power factor correction (PFC) and DC/DC converter. This structure has a limit in reducing volume due to two-stage structure. As the proposed SMLT is composed of an LLC resonant converter, a high-frequency transformer can be adopted to achieve isolation standards and size reduction. This proposed structure has different operation modes in accordance with line input voltage to overcome poor line regulation. In addition, the proposed SMLT is applied to the front of a conventional PFC converter, because the SMLT output voltage is restored to rectified sinusoidal wave by using a full-bridge rectifier in the secondary side. The design of the PFC converter is easy, because the SMLT output voltage is controlled as rectified sinusoidal wave. The validity of the proposed converter is proven through a 350 W prototype.

A Novel Hybrid Converter with Wide Range of Soft-Switching and No Circulating Current for On-Board Chargers of Electric Vehicles

  • Tran, Van-Long;Tran, Dai-Duong;Doan, Van-Tuan;Kim, Ki-Young;Choi, Woojin
    • Journal of Electrical Engineering and Technology
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    • 제13권1호
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    • pp.143-151
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    • 2018
  • In this paper, a novel hybrid configuration combining a phase-shift full-bridge (PSFB) and a half-bridge resonant LLC converter is proposed for the On-Board Charger of Electric Vehicles (EVs). In the proposed converter, the PSFB converter shares the lagging-leg switches with half-bridge resonant converter to achieve the wide ZVS range for the switches and to improve the efficiency. The output voltage is modulated by the effective-duty-cycle of the PSFB converter. The proposed converter employs an active reset circuit composed of an active switch and a diode for the transformer which makes it possible to achieve zero circulating current and the soft switching characteristic of the primary switches and rectifier diodes regardless of the load, thereby making the converter highly efficient and eliminating the reverse recovery problem of the diodes. In addition an optimal power sharing strategy is proposed to meet the specification of the charger and to optimize the efficiency of the converter. The operation principle the proposed converter and design considerations for high efficiency are presented. A 6.6 kW prototype converter is fabricated and tested to evaluate its performance at different conditions. The peak efficiency achieved with the proposed converter is 97.7%.

전력변환장치를 이용한 상용차용 무시동 에어컨 압축기 시스템 (Commercial Vehicle Anti-Start Air Conditioner Compressor System Using a Power Conversion Unit)

  • 한근우;김성곤;이충훈;최명현;정영국;임영철
    • 조명전기설비학회논문지
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    • 제29권6호
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    • pp.96-108
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    • 2015
  • his study deals with a power conversion unit of an anti-start air conditioner compressor system for the commercial vehicle. In case of converter, to reduce the switching losses and current stresses of the device, applies LLC resonant topology. Transformer leakage inductance in the full-bridge converter is used for making the resonance with the capacitor of the voltage-doubler. Through this method we can increase power and decrease volume of system. Both circuit analysis and design guideline are described. So in this paper, power conversion unit is designed. 2.5kW anti-start air conditioner compressor system was implemented, and system operation and stability was verified through experiment.

유도 급전을 이용한 경전철 시스템의 효율 개선에 대한 연구 (A study on the improvement of efficiency in the light railway vehicle system using IPT)

  • 최승철;이병송;목형수
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2010년도 추계학술대회
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    • pp.62-63
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    • 2010
  • This paper presents a potential for application of Inductive Power Transfer(IPT) to the light railway vehicle system. IPT system allows for a vehicle fitted with existing or new generation batteries to park over a small charging unit and commence charging immediately. Regular charging will allow for smaller batteries to be used in vehicles. In this paper, IPT system uses a full-bridge LLC resonant converter and is possible for the regenerative braking which is an energy recovery mechanism.

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철도차량 보조전원장치의 고효율-경량화를 위한 전력변환회로 연구 (Research on Power Converters for High-Efficient and Light-Weight Auxiliary Power Supplies (APS) in Railway System)

  • 이재범;조인호
    • 한국철도학회논문집
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    • 제20권3호
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    • pp.329-338
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    • 2017
  • 최근 철도차량용 보조전원장치는 시스템의 경량화를 위해 기존 60Hz 저주파 변압기를 제거하고 고주파 구동과 절연 특성을 갖는 '절연형 dc/dc 컨버터'를 적용하는 구조가 주목받고 있다. 본 논문에서는 '절연형 dc/dc 컨버터를 적용한 보조전원장치 구조'에 대해서 설명하고, 다양한 분석을 통해 보조전원장치의 고효율 및 경량화에 적합한 dc/dc 컨버터 및 구조를 제안하고자 한다. 대용량 IGBT 소자의 고주파 스위칭(경량화)을 위해 필수적인 '영전압-영전류-스위칭'특성을 갖는 '공진형 컨버터'를 활용하여 다양한 보조전원장치용 전력변환장치 구조(1-Stage와 2-Stage)를 제안하였고, 각각의 구조에 적합한 컨버터 회로를 선정한 후 설계 및 시뮬레이션을 통해 비교하였다. 1-Stage 구조의 경우 공진형 컨버터만을 사용하였고, 2-Stage 구조의 경우 공진형 컨버터와 공진형 컨버터의 입력전압 변동을 최소화하는 Pre-regulator를 적용하였다. Pre-regulator로서 감압 컨버터 또는 승압 컨버터를 각각 적용하여 서로 다른 2-Stage 구조를 구성하고 각 방식의 손실을 비교하였다. 회로에 사용되는 소자들의 전압 및 전류 스트레스를 고려하여 소자를 선정하고 시뮬레이션을 통해 동작을 검증하였으며, 손실 분석을 통해 고효율 및 경량화에 가장 적합한 구조 및 회로를 제안하였다.