• Title/Summary/Keyword: 벅-부스트 컨버터

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Design of Deadbeat Current Mode Control Using Small Signal Model (소신호 모델을 이용한 전류모드제어의 데드빗 제어기 설계)

  • Kim Hyo-Jae;Kwon Soon-Jae;Kim Sang-Bong;Jung Young-Seok
    • Proceedings of the KIPE Conference
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    • 2004.07b
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    • pp.752-755
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    • 2004
  • 본 논문에서는 전력변환회로의 소신호 모델을 이용한 데드빗 전류모드제어기를 설계하였다. 소신호 모델을 이용함으로써 부스투, 벅, 벅-부스트 컨버터에 모두 적용 가능한 데드빗 전류모드제어기를 설계 가능하고, 설계한 제어기는 모든 시비율 동작 조건에서 안정함을 확인하였다. 16bit 마이크로컨트롤러인 80C196KC를 사용하여 설계된 디지털 제어기를 구현하고, 아날로그제어기를 이용한 전류모드 제어에서의 동작 조건에 따른 불안정성 문제를 해결할 수 있음을 실험을 통해 확인하였다.

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A Study on 6-pulse-shift Current-source PWM Inverter for Photovoltaic System (태양광발전을 위한 6-pulse-shift 전류형 인버터에 관한 연구)

  • Lim, Joung-Min;Lee, Sang-Hun;Park, Sung-Jun;Moon, Chae-Joo;Chang, Young-Hak;Lee, Man-Hyung
    • The Transactions of the Korean Institute of Power Electronics
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    • v.11 no.3
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    • pp.193-200
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    • 2006
  • This paper suggests a 6-pulse-shift converter structure with PWM current-source inverter based on buck-boost configuration to improve the efficiency and to reduce the switching frequency of inverter for photovoltaic generation system, the device can be operated as interface system between solar module system and power system grid without energy storage cell. The circuit has six current-source buck-boost converter which operate chopper part and kas one full bridge inverter which make a decision the polarity of AC output. Therefore, the proposed PWM power inverter has advantages such as the reduction of witching loss and realization of unity power factor operation. The theoretical backgrounds are discussed and the input-output characteristics for the implemented prototype inverter using TMS320F2812 are verified experimentally in this paper.

A Design and Experiment of 3kW Three-phase Isolated Interleaved Battery Charger (3kW급 3상 절연형 인터리브드 배터리 충방전기 설계 및 실험)

  • Lee, Jongkyung;Cha, Hanju
    • Proceedings of the KIPE Conference
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    • 2011.07a
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    • pp.364-365
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    • 2011
  • 본 논문에서는 납축전지 모델링, 파라미터 도출 및 3kW급 3상 절연형 인터리브드 배터리 충방전기를 설계하고 부하실험 결과를 분석하였다. 제작된 컨버터는 모든 스위치가 ZVS로 동작하여 높은 효율을 갖고 3상 구조를 채택하여 전류경로의 분산을 통한 전력전달 능력 증대의 효과 및 입력전류 리플크기를 줄여주는 인터리브드 효과를 갖는다. 승압/강압 능력이 있는 부스트/벅 컨버터 구조를 갖도록 하여 낮은 권선비의 변압기로 높은 승압/강압 전력변환, 에너지원과 부하사이에 절연이 가능 해진다. 이러한 동작을 실험을 통해 확인하고 3kW 부하에서 약 95% 효율로 동작하는 것을 실험을 통하여 확인하였다.

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The LED Driver with Low Voltage Stress Using stacked floating voltage (저 전압스트레스를 갖는 floating 전압 스택형 LED 구동회로)

  • Joo, Hyung-ik;Ryu, Dong-Kyun;Choi, Heung-Kyun;Kim, Hugh;Han, Sang-Kyoo
    • Proceedings of the KIPE Conference
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    • 2014.07a
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    • pp.275-276
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    • 2014
  • 본 논문에서는 저 전압스트레스를 갖는 LED 구동회로를 제안한다. 기존 회로는 높은 출력 전압 사양의 LED 모듈을 구동하기 위하여 부스트 컨버터를 사용하며, 이에 따라 반도체 소자들의 전압스트레스가 높다. 반면, 제안된 회로는 높은 LED 출력전압을 구동하기 위하여 벅 컨버터의 출력전압에 Floating 된 보조전압을 더해 LED를 구동하기 때문에 반도체 소자의 전압스트레스를 현저히 줄일 수 있으며, 별도의 dimming 스위치가 필요 없는 장점이 있다. 본 논문에서 제안된 회로의 우수성을 검증하기 위하여 이론적 분석과 210W급 55인치 4-Channel LED 구동회로에 적용하여 실험결과를 제시한다.

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Design of Buck-Boost Converter for driving Multi-channel OLED Lighting system (다채널 OLED 조명 시스템 구동용 벅-부스트 컨버터 설계)

  • Kwak, Bong-Woo;Lee, Jin-Hyeong;Kim, Myungbok
    • Proceedings of the KIPE Conference
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    • 2012.07a
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    • pp.443-444
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    • 2012
  • 최근 각광받고 있는 반도체 발광 소자를 이용한 고체 상태 광원(Solid State Lighting)은 기존 광원에 비해 고효율이어서 에너지 절약적 측면에서 대두되고 있다. 점광원인 LED에 비해 면광원인 OLED는 두께를 얇게 구현할 수 있고, 다양한 모양으로 광원의 구현이 가능하다. 따라서, 본 논문에서는 효율적인 OLED 조명 구동을 위해 넓은 입력전압 범위를 지니는 Buck-Boost 컨버터를 제안한다.

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A Single-Phase Quasi Z-Source AC-AC Converter with a Series Connection of the Output Terminals (출력이 직렬 결합된 단상 Quasi Z-소스 AC-AC 컨버터)

  • Oum, Jun-Hyun;Jung, Young-Gook;Lim, Young-Cheol;Choi, Joon-Ho
    • The Transactions of the Korean Institute of Power Electronics
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    • v.16 no.5
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    • pp.415-429
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    • 2011
  • In this study, a single-phase quasi Z-source AC-AC converters with a series connection of the output terminals is proposed. The proposed system has configuration that the input terminals of two quasi Z-source AC-AC converters are connected in parallel and its output terminals are connected in series. The out of phase mode and in phase mode of the proposed system are presented. To verify the validity of the proposed converter, a DSP controlled hardware was made and PSIM simulation was executed. As a result, controlling the duty ratio of the converter, the desired buck-boost output voltages could be generated. For each modes, as compared with the single converter operation, the proposed converter could enhance the efficiency and input power factor according to different loads. Also, in case of the out of phase mode under the constant load, the efficiency and input power factor of the proposed system are increased 10[%], 35[%] respectively in compared with the single converter. And, the output voltage is constantly controlled in dynamic state in case while the load is suddenly changed.

Parallel Node DC/DC Converter Buck-Boost Judgement Control Algorithm of 3-Phase Induction Motor Inverter for Compressor (컴프레서용 3상유도전동기 인버터의 병렬 노드 DC/DC 컨버터의 벅/부스트의 판단 제어알고리즘)

  • Son, Ji-Hun;Kim, Tae-Woo;Kim, Ji-Su;Kang, Jun-Seok;Choi, Myeong-Soo;Kim, Tae-Woong
    • Proceedings of the KIPE Conference
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    • 2019.07a
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    • pp.382-383
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    • 2019
  • 본 논문에서는 고효율 및 비용 절감을 위한 컴프레서용 유도 전동기기반 DC/DC 컨버터 판단 알고리즘을 제안한다. 소형 커패시터를 사용한 인버터 시스템은 넓은 다이오드 전도 시간을 나타내며 불충분한 DC-Link 전압으로 발생하는 효율 감소를 해결하기 위하여 전력변환시스템의 판단 기법을 제안하고, 이에 대한 유효성을 시뮬레이션 해석을 통해 검증한다.

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A Study on High Efficiency OBC with Wide Range Output Using Isolated Current-Fed PFC Converter (절연형 전류원 PFC 컨버터를 사용한 넓은 출력범위를 가지는 고효율 OBC에 대한 연구)

  • Kim, Hyung-Sik;Kim, Hee-Jun;Ahn, Joon-Seon
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.12 no.1
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    • pp.99-105
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    • 2019
  • OBC for battery charging of electric vehicles mainly consist of two stages including PFC circuit and isolated DC-DC converter circuit. In general, a non-isolated boost converter is used as the PFC circuit, and a resonant converter capable of ZVS (zero voltage switching) is used as the isolated DC-DC converter. In this paper, we propose an OBC composed of isolated current-fed type PFC circuit and buck DC-DC converter. The proposed OBC is easy to configure the circuit and controller, and can cope with a wide output range. In order to verify the validity of the proposed circuit, a prototype 3.3 ㎾ class prototype was fabricated. As a result, the maximum efficiency and the maximum power factor of 99.2% were confirmed under the operational stability and rated load conditions at the output voltage of 150V ~ 400V.

Controller Design of Buck-Boost Converter with Constant Voltage Output (정 전압 출력을 갖는 벅-부스트 컨버터의 제어기 설계)

  • Lee, Woo-Cheol
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.29 no.9
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    • pp.42-50
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    • 2015
  • The Buck-Boost converter consisted of two switches is more expensive than the conventional Buck converter, because of the increase of the components. However, it can control the DC voltage depending on the requested load voltage without additional circuits, because it can control the voltage under the relatively wide range of the load. Additionally, it can control the output voltage constantly under the variation of the input voltage. In the paper two control loops consisted of current and voltage control are designed. When two controllers are operated at the same time the problem of the output voltage is occurred. Therefore, the solution of the output voltage problem is proposed. Finally, the validity of the proposed scheme is investigated with simulated and experimental results for a prototype system rated at 1kVA.

2-Phase Bidirectional Non-Inverting Buck-Boost Converter using Coupled Inductor (결합 인덕터를 이용한 2상 양방향 비반전 벅-부스트 컨버터)

  • Chae, Jun-Young;Jeong, Seung-Yong;Cha, Hon-Nyong;Kim, Heung-Geun
    • The Transactions of the Korean Institute of Power Electronics
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    • v.19 no.6
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    • pp.481-487
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    • 2014
  • This study proposes a two-phase non-inverting buck-boost converter that uses a coupled inductor. The multi-phase converter has many advantages over single-phase counterparts, such as reduced output current ripple and conduction loss in switching devices and passive elements. Although the output current ripple of the multi-phase converter is reduced significantly because of the interleaved effect, the inductor current ripple is not reduced in multi-phase converters. One of the solutions to this problem is to use a coupled inductor. A 4 kW prototype converter is built and tested to verify the performance of the proposed converter.