• Title/Summary/Keyword: 고주파용 DC/DC 전력용 컨버터

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A ZVS Forward DC-DC Converter Using Coreless PCB Transformer and Inductor (코어 없는 PCB 변압기와 인덕터를 이용한 ZVS Forward DC-DC 컨버터)

  • Hwang, Sun-Min;Ahn, Tae-Young
    • Journal of the Institute of Electronics Engineers of Korea SC
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    • v.38 no.4
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    • pp.37-44
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    • 2001
  • The experimental results and application potentials of a ZVS Forward DC-DC converter based coreless PCB transformer and coreless inductor are presented. The experimental converter, that has a maximum power of 12W, maximum switching frequency of 2.2MHz and nominal input voltage of 24V, has been successfully implemented. The coreless PCB transformer and inductor are found to have many favorable characteristics to high frequency operations due to the absence of a core loss. A power conversion efficiency of the experimental converter was measured at 70${\sim}$80%, and the output was regulated at 12V within 0.7% tolerance.

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Development of DC-DC Converter for Ancillary Power Supply in Hybrid Electric Vehicle (하이브리드 자동차 보조전원 공급용 DC-DC 컨버터 개발)

  • Kim, Jong-Cheol;Choi, Deok-Kwan;Park, Hae-Woo
    • Proceedings of the KIPE Conference
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    • 2005.07a
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    • pp.261-265
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    • 2005
  • This paper describes the DC-DC Converter for Ancillary Power Supply in Hybrid Electric Vehicle. DC-DC Converter is used for charging 12V auxiliary battery supplying electric power to head ramp, audio, ECU etc in automobiles. used DC-DC Converter Topology is PS-ZVS FB(Phase Shifted Zero Voltage Switching Full-Bridge) to reduce switching loss and EMI noise induced by high frequency operating condition. And For easy compensation and stable system response characteristic, current mode control method including slope compensation is employed. Constant current / constant voltage charging control method guarantee stable electric charging of auxiliary battery. Simulation toll PSIM6.0 is used for initial circuit parameter settings and H/W debuging. Thermal problems of Switching components in DC-DC Converter is improved by using Thermo Tracer.

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Structure and Control of Smart Transformer with Single-Phase Three-Level H-Bridge Cascade Converter for Railway Traction System (Three-Level H-Bridge 컨버터를 이용한 철도차량용 지능형 변압기의 구조 및 제어)

  • Kim, Sungmin;Lee, Seung-Hwan;Kim, Myung-Yong
    • Journal of the Korean Society for Railway
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    • v.19 no.5
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    • pp.617-628
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    • 2016
  • This paper proposes the structure of a smart transformer to improve the performance of the 60Hz main power transformer for rolling stock. The proposed smart transformer is a kind of solid state transformer that consists of semiconductor switching devices and high frequency transformers. This smart transformer would have smaller size than the conventional 60Hz main transformer for rolling stock, making it possible to operate AC electrified track efficiently by power factor control. The proposed structure employs a cascade H-Bridge converter to interface with the high voltage AC single phase grid as the rectifier part. Each H-Bridge converter in the rectifier part is connected by a Dual-Active-Bridge (DAB) converter to generate an isolated low voltage DC output source of the system. Because the AC voltage in the train system is a kind of medium voltage, the number of the modules would be several tens. To control the entire smart transformer, the inner DC voltage of the modules, the AC input current, and the output DC voltage must be controlled instantaneously. In this paper, a control algorithm to operate the proposed structure is suggested and confirmed through computer simulation.

Design and Implementation of High Efficiency 3.3kW On-Board Battery Charger for Electric Vehicle (전기자동차용 고효율 3.3kW On-Board 배터리 충전기 설계 및 제작)

  • Kim, Jong-Soo;Choe, Gyu-Yeong;Jung, Hye-Man;Lee, Byoung-Kuk;Cho, Young-Jin
    • Proceedings of the KIPE Conference
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    • 2010.07a
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    • pp.190-191
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    • 2010
  • 본 논문은 전기자동차 (Electric Vehicles, EVs) 및 플러그인 하이브리드 자동차 (Plug-In Hybrid Electric Vehicles, PHEVs)용 리튬 이온 (Li-Ion) 배터리 충전을 위한 3.3 kW급 차량 탑재형 (On-Board) 충전기 하드웨어의 설계 및 제작에 대하여 기술한다. 차량 실장 특성을 고려하여 부하직렬공진형 dc-dc 컨버터를 적용하고, 80-130kHz의 고주파 스위칭 및 ZVS (Sero-Voltage Switching) 기법을 통해 수동소자의 크기를 최적화하여 5.84L, 5.8kg의 저부피, 경량을 달성한다. 전자부하를 대상으로 정전류 (Continuous Current, CC) 및 정전압 (Continuous Voltage, CV) 제어를 수행하여 93%의 고효율 획득 및 성능을 검증한다.

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Development of 1.2[kW]Class Fuel Cell Power Conversion System (1.2[kW]급 연료전지용 전력변환장치의 개발)

  • Suh, Ki-Young;Kim, Chil-Ryong;Cho, Man-Chul;Kim, Jung-Do;Yoon, Young-Byun;Kim, Hong-Sin;Park, Do-Hyung;Ha, Sung-Hyun
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.21 no.6
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    • pp.117-125
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    • 2007
  • Recently, a fuel cell with low voltage and high current output characteristics is remarkable for new generation system. It needs both a DC-DC step-up converter and DC-AC inverter to be used in fuel cell generation system. Therefor, this paper, consists of an isolated DC-DC converter to boost the fuel cell voltage 380[VDC] and a PWM inverter with LC filter to convent the DC voltage to single-phase 220[VAC]. Expressly, The fuel cell system which it proposes DC-DC the efficient converter used PWM the phase transient control law and it depended to portion resonance ZVS switching, loss peek voltage and electric current of realization under make schedule, switching frequency anger and the switch reduction. And mind benevolence it sprouted 2 in stop circuit and it added and a direct current voltage and the electric current where the ingredient is reduced in load side ripple stable under make whom it will be able to supply. Besides the efficiency of 92[%]is obtained over the wide output voltage regulation ranges and load variations. Also, under make over together the result leads simulation and test, the propriety confirmation.

The Characteristics Analysis and Design of High-Frequency Isolated Type ZVZCS PS-PWM DC-DC Converter with Fuel Cell Generation System (연료전지 발전시스템에 적용된 고주파 절연형 ZVZCS PS-PWM DC-DC 컨버터의 설계 및 특성 해석)

  • Suh, Ki-Young;Mun, Sang-Pil;Kim, Dong-Hun;Lee, Hyun-Woo;Kwon, Soon-Kurl
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.20 no.4
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    • pp.21-28
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    • 2006
  • In this paper, the proposed full-bridge high frequency isolated zoo voltage and zero current switching phase shifted pulse width modulation(ZVZCS PS-PWM)DC-DC converter among fuel cell generation system consist of 1.2[kW] fuel cell of Nexa Power Module, full-bridge DC-DC converter to boost the fuel cell low voltage($28{\sim}43[%]$) to 380[VDC] and a single phase full-bridge inverter is implemented to produce AC output(220[VAC], 60[Hz]). A tapped inductor filter with freewheeling diode is newly implemented in the output filter of the proposed full-bridge high frequency isolated ZVZCS PS-PWM DC-DC converter to suppress circulating current under the wide output voltage regulation range, thus to eliminate the switching and transformer turn-on/off over-short voltage or transient phenomena. Besides the efficiency of $93{\sim}97[%]$ is obtained over the wide output voltage regulation ranges and load variations.

The Study of Module Type 20kW Plasma Power Supply for Magnetron Sputter (마그네트론 스퍼터용 모듈형 20kW 플라즈마 전원장치에 대한 연구)

  • Han Hee-Min;Seo Kwang-Duk;Cho Yong-Kyu;Kim Joohn-Sheok
    • Proceedings of the KIPE Conference
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    • 2006.06a
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    • pp.56-58
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    • 2006
  • 본 논문은 PVD(Physical Vapor Deposition)의 마그네트론 스퍼터(Magnetron sputter) 박막코팅(Thin film coating) 공정에서 플라즈마(Plasma)를 발생시키고 제어하는 DC 전원공급 장치에 관한 것이다. 이 논문에서는 임피던스의 변화가 심하고 아크(Arc)가 빈번히 발생하는 플라즈마 부하의 특성에 대해, 과도상태(Transient state)의 출력제어 성능을 향상시키고 아크 발생 시 부하로 전가되는 아크에너지를 저감시키기 위한 직류 전원 공급 장치에 대해 소개한다. 전원장치는 수하특성을 가지며 플라즈마 부하에 적합한 출력 제어성을 확보하고 아크 에너지를 최소화하기 위해 고주파 L-C 직렬공진회로 기법을 적용한다. 개발된 DC 20kW급 전원 장치는 인버터와 고주파 절연변압기, 정류기로 구성된다. 인버터는 $100{\sim}200kHz$의 제어주파수로 PFM 및 PWM 제어를 하며, 단위용량 5kW급 컨버터 4개를 직, 병렬 연결하여 출력리플을 최소화 하였다. 개발된 장치의 우수한 제어성능은 실제 플라즈마 공정에서 시험 평가한 결과를 통해 검증할 수 있었다.

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A Study on Technical Trends in Telecom Rectifier Plant (통신용 정류시설의 기술적 동향에 관한 연구)

  • 김만고
    • Journal of Advanced Marine Engineering and Technology
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    • v.21 no.3
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    • pp.278-283
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    • 1997
  • The rectifier is the main element in the telecom DC power system. This paper investigates the advantages and disadvantages of three rectifier techniques ; thyristor, ferro - resonant, and switched - mode. Compared with other techniques, the switched - mode rectifier tech¬nique offers several advantages such as higher efficiency, smaller size and weight, and lower audible noise. Technical requirements in telecom rectifier plant are also described. Finally, the future trends in telecom powering are discussed in connection with the advance oftelecom net¬works.

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Characteristics of Transformer as a function of Coiling method (코일 형태에 따른 변압기의 특성)

  • Kim, Hyun-Sik;Kim, Jong-Ryung;Lee, Hae-Yon;Evgeniy, Ustinov;Oh, Young-Woo
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.05b
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    • pp.161-164
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    • 2004
  • 변압기는 권선방법에 따라 많은 특성의 변화를 나타내게 되는데 일반적인 동선의 권선법과 코일형태로 동판을 가공하여 사용하는 평면 권선방법, 그리고 고전류용 변압기에 이용되는 것으로 코어의 권선창 표면을 감싸는 형태의 관형 권선방법의 3가지의 코일 형태 또는 권선방법에 따른 변압기의 특성 변화와 컨버터에 채용되었을 때의 전력효율에 대하여 고찰하였다. 평면 코일을 이용한 변압기는 높은 코일간의 결합도로 인해 가장 낮은 누설인덕턴스와 가장 높은 성능지수 및 결합계수를 나타내었고, 관형코일을 이용한 변압기는 높은 누설특성으로 인해 가장 낮은 성능지수와 결합계수를 나타내었다. 그리고 이들을 DC-DC 컨버터에 채용하여 분석한 결과 평면변압기가 가장 높은 효율을 발휘하였다. 관형변압기는 저전력에서는 높은 누설량으로 인해 효율이 상대적으로 낮지만 출력전력이 증가할수록 상승하는 발열량에 대한 방열효과가 높아 효율의 감소폭이 작아서 고주파 또는 대전류용 변압기 응용이 기대된다.

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The Development of Buck Type Electronic Ballast for 250W MHL and Dimming System (250W MHL용 Buck Type 전자식 안정기 및 Dimming 시스템 개발)

  • 박종연;박영길;정동열;김한수
    • The Transactions of the Korean Institute of Power Electronics
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    • v.7 no.1
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    • pp.30-40
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    • 2002
  • This paper studies the electronic ballast development for 250w MH lamps. We have improved the input power factor using a PFC IC. To provide the rating voltage required In the lamps, we have used the buck type dc-dc converter By this method, the stress of switching devices in inverter can be reduced. The inverter is the Full-Bridge type. To eliminate the acoustic resonance phenomena of MH lamps, we have added the high frequency sinewave voltage to the low frequency square-wave voltage to the lamp. We hove developed the igniter circuit using the L, C devices. We could control dimming of the lamp by varying the output voltage of the buck converter. The time of illuminating lamps and luminous intensity could be adjusted by season and time band. The buck converter output voltage can be controlled and the no load and over current situation were Protected by the development of the microprocessor Program.