• 제목/요약/키워드: 3 Level Converter

검색결과 279건 처리시간 0.02초

개선된 비절연형 3-레벨 고승압 부스트 컨버터 (An Improved Non-Isolated 3-Level High Step-Up Boost Converter)

  • 김수한;차헌녕;김흥근;최병조
    • 전력전자학회논문지
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    • 제18권4호
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    • pp.342-348
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    • 2013
  • In this paper, an improved non-isolated 3-level high step-up boost converter is proposed. By using the well known duality principle, the proposed converter is derived from two-phase buck converter. Compared with the traditional boost converter and 3-level boost converter, the proposed converter can obtain very high voltage conversion ratio and the voltage stress of switching devices and diodes is only 1/4 of the output voltage. A 1 kW prototype converter is built and tested to verify performances of the proposed converter.

출력 전압 밸런싱 기능을 가진 비절연형 3-레벨 고승압 부스트 컨버터 (A Non-Isolated 3-Level High Step-Up Boost Converter With Output Voltage Balancing)

  • 윤성현;강혜민;차헌녕;김흥근
    • 전력전자학회논문지
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    • 제20권5호
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    • pp.464-470
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    • 2015
  • In this paper, a non-isolated three-level high step-up boost converter with output voltage balancing is proposed. By adding one extra inductor to the conventional three-level boost converter, the proposed converter is derived. Compared with the traditional boost converter and the three-level boost converter, the proposed converter can obtain very high voltage conversion ratio, and the voltage and current stress of switching devices and diodes are reduced. A 2.7 kW prototype converter is built and tested to verify performances of the proposed converter.

인터리빙 동작을 위한 하단 인덕터를 갖는 3-Level Boost Converter (3-Level Boost Converter Having Lower Inductor for Interleaving Operation)

  • 이강문;백승우;김학원;조관열;강정원
    • 전력전자학회논문지
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    • 제26권2호
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    • pp.96-105
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    • 2021
  • Large-scale power converters consist of series or parallel module combinations. In these modular converter systems, the interleaving technique can be applied to improve capacitor reliability by reducing the ripple of the I/O current in which each module operates as a phase difference. However, when applying the interleaving technique for conventional three-level boost converters, the short-circuit period of the converter can be an obstacle. Such problem is caused by the absence of a low-level inductor of the conventional three-level boost converter. To solve this problem, a three-level boost converter with a low-level inductor is proposed and analyzed to enable interleaved operation. In the proposed circuit, the current ripple of the output capacitor depends on the neutral point connections between the modules. In this study, the ripple current is analyzed by the neutral point connections of the three-level boost converter that has a low-level inductor, and the effectiveness of the proposed circuit is proven by simulation and experiment.

결합 인덕터를 이용한 3-레벨 Zeta 컨버터 (Three-Level Zeta Converter using a Coupled Inductor)

  • 이승재;양민권;허준;최우영
    • 전력전자학회논문지
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    • 제21권3호
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    • pp.191-199
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    • 2016
  • Conventional two-level Zeta converters have drawbacks, such as high voltage stresses and high current ripples. To address these problems, a three-level Zeta converter that uses a couple inductor is proposed in this study. The proposed converter utilizes the three-level power switching circuit to reduce the voltage stresses and inductor current ripples. Compared with the conventional converter, the proposed converter can improve power efficiency and power density. A 500 W prototype circuit is used to verify the operation and performance of the proposed converter via experimental results.

Hybrid ZVS Converter with a Wide ZVS Range and a Low Circulating Current

  • Lin, Bor-Ren;Chen, Jia-Sheng
    • Journal of Power Electronics
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    • 제15권3호
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    • pp.652-659
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    • 2015
  • This paper presents a new hybrid soft switching dc-dc converter with a low circulating current and high circuit efficiency. The proposed hybrid converter includes two sub-converters sharing two power switches. One is a three-level PWM converter and the other is a LLC converter. The LLC converter and the three-level converter share the lagging-leg switches and extend the zero-voltage switching (ZVS) range of the lagging-leg switches from nearly zero to full load since the LLC converter can be operated at fsw (switching frequency) $\approx$ fr (series resonant frequency). A passive snubber is used on the secondary side of the three-level converter to decrease the circulating current on the primary side, especially at high input voltage and full load conditions. Thus, the conduction losses due to the circulating current are reduced. The output sides of the two converters are connected in series. Energy can be transferred from the input voltage to the output load within the whole switching period. Finally, the effectiveness of the proposed converter is verified by experiments with a 1.44kW prototype circuit.

결합인덕터를 이용한 전압 클램프 3-레벨 고승압 컨버터 (Clamp-mode Three-level High Voltage Gain Boost Converter using Coupled Inductor)

  • 김수한;차헌녕;김흥근;최병조
    • 전력전자학회논문지
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    • 제17권6호
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    • pp.500-506
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    • 2012
  • In this paper, a non-isolated high step-up and high efficiency boost converter is proposed. By using the 3-level boost converter structure, the proposed converter can obtain higher voltage gain than conventional high step-up converters. The voltage spike of the switching device is well clamped by using the clamp circuit composed of a clamp diode and a capacitor and the energy of the leakage inductor of coupled inductor is effectively transferred to output. Due to the 3-level structure, the equivalent switching frequency of the coupled inductor is doubled, which results in reduced inductor size. A 500 W prototype converter is built and tested to verify performance of the proposed converter.

NPC와 H-Bridge 컨버더의 부스트 벡터와 커패시터 전압의 해석 (Analysis of Capacitor Voltage and Boost Vector in Neutral-Point-Clamped and H-Bridge Converter)

  • 김정균;김태진;강대욱;현동석
    • 전력전자학회논문지
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    • 제8권3호
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    • pp.274-284
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    • 2003
  • 대용량 전력변환기기인 멀티-레벨 컨버터는 전동기구동시스템 및 유연송전시스템 등에 널리 사용되고 있다. 이중 H-Bridge 컨버터는 캐스캐이드 형태를 사용하여 멀티-레벨로의 확장이 용이한 장점으로 인해 shunt형 기기로 점차 응용이 확대되고 있다. 정상 상태에서 대략 0.7∼0.8의 변조지수 범위에서 작동한다. 고변조지수에서는 부스트 벡터인 zero vector가 인가되지 않아도 DC-link 전압은 일정하게 유지된다. 이것은 3-레벨 컨버터의 여러 벡터 중 zero vector 이외에도 또 다른 boost vector가 존재한다는 것을 의미한다. 본 논문은 boost vector의 원리를 살펴보고 3레벨 컨버터에서 zero vector와 또 다른 boost vector와의 차이점을 고찰하였다. 또한 본 논문은 두 토폴로지의 충전 전류와 커패시터 전압을 해석하고 비교한다 이 전압과 전류는 스위칭 상태와 기준전압과 관련되어 있고 이것을 이용하여 각 커패시터의 충전전류와 전압리플에 대한 계산 방법을 제안하였고 다양한 DC-Link 전압제어 방법을 시뮬레이션을 통해 비교하였다.

에너지 회생 스너버를 적용한 3레벨 DC/DC 컨버터 (Three Level DC/DC Converter Using Energy Recovery Snubber)

  • 조용현;김윤호;김은수
    • 전력전자학회논문지
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    • 제6권1호
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    • pp.64-73
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    • 2001
  • 영전압 영전류 스위칭 3레벨 DC/DC 컨버터를 제안한다. 이 컨버터는 높은 순환 에너지, 정류다이오드들의 제한적인 기생순환, 그리고 내부 스위치에 의한 제한된 영전암 스위칭 부하뜰 갖는 일반적인 영전압 영전류 스위칭 3레벨 DC/DC 컨버터 약점을 극복한다. 본 논문에서 제안된 컨버터는 외부스위치가 영전압 스위칭을 이룰 수 있도록 하고 1차 측에 플라잉 커패시터로 위상전이 제어하도록 되었다. 또 컨버터는 내부 스위치플이 영전류 스위칭을 이루는 구간동안 l차 측에 에너지 회생 스너버에 의해 리셋 하는 보조회로를 갖는다. 제안된 컨버터들은 6kW, 30kHz 의 실험 장치를 제작하였고 해석하였다.

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3-레벨 컨버터에 의한 직류전력제어 (DC Power Control for 3-Level Converter.)

  • 정연택;이사영;함년근
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 1996년도 창립기념 전력전자학술발표회 논문집
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    • pp.126-129
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    • 1996
  • This paper study on the control method of 3-level converter. The control of converter is composed of active power control for controlling a output voltage and of reactive power control for high power factor drives. And also, output central voltage is controlled by sensing a each condensor voltage of bank connected the part of dc.

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Bi-Directional Multi-Level Converter for an Energy Storage System

  • Han, Sang-Hyup;Kim, Heung-Geun;Cha, Honnyong;Chun, Tae-Won;Nho, Eui-Cheol
    • Journal of Power Electronics
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    • 제14권3호
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    • pp.499-506
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    • 2014
  • This paper proposes a 3 kW single-phase bi-directional multi-level converter for energy storage applications. The proposed topology is based on the H-bridge structure with four switches connected to the DC-link. A simple phase opposition disposition PWM method that requires only one carrier signal is also suggested. The switching sequence to balance the capacitor voltage is considered. The topology can be extended to a nine-level converter or a three-phase system. The operating principle of the proposed converter is verified through a simulation and an experiment.