• 제목/요약/키워드: 소프트 스위칭

검색결과 327건 처리시간 0.02초

AC 모듈형 태양광 모듈 집적형 컨버터를 위한 소프트 스위칭 DC-DC 컨버터 (Soft Switching DC-DC Converter for AC Module Type PV Module Integrated Converter)

  • 윤선재;김영호;정용채;원충연
    • 전력전자학회논문지
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    • 제18권3호
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    • pp.247-255
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    • 2013
  • In this paper, a soft switching DC-DC converter for AC module type photovoltaic (PV) module integrated converter is proposed. A push-pull converter is suitable for a low voltage PV AC module system because the step-up ratio of a high frequency transformer is high and the number of primary side switches is relatively small. However, the conventional push-pull converters do not have high efficiency because of high switching losses by hard switching and transformer losses (copper and iron losses) by high turns-ratio of the transformer. In the proposed converter, primary side switches are turned on at zero voltage switching (ZCS) condition and turned off at zero current switching (ZVS) condition through parallel resonance between secondary leakage inductance of the transformer and a resonant capacitor. Therefore the proposed push-pull converter decreases the switching loss using soft switching of the primary switches. Also, the turns-ratio of the transformer can be reduced by half using a voltage-doubler of secondary side. The theoretical analysis of the proposed converter is verified by simulation and experimental results.

소프트 스위칭 기법을 이용한 1단 PFC-flyback 컨버터 (The Study on the One-stage PFC-flyback Converter using the Soft Switching Technique)

  • 이상혁;황정구;박성준
    • 전력전자학회논문지
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    • 제18권3호
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    • pp.263-269
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    • 2013
  • The flyback converter has been applied widely in isolated DC/DC power converters because this converters employ a single MOSFET switch. The leakage inductance should be minimized for high efficiency of flyback converter. but in reality, it is very difficult. Namely, The Snubber circuit is essential to recover the leakage inductance stored energy when the switch is turn off. Flyback Converter typically operates in DCM mode and when switch is turn off in hard switching, this hard switching action results in a high power losses and switching stresses. In order to overcome these problems, a novel soft switching flyback converter using resonant snubber circuit is proposed in this paper. The resonant snubber circuit is composed of the transformer leakage inductance and a capacitor. To verify and confirm the proposed resonant snubber circuit, PSIM simulation and hardware prototype are implemented. Simulation and Experimental results indicate that the proposed resonant snubber circuit is effective.

도전손실 저감을 위한 새로운 소프트 스위칭 FB DC-DC 컨버터 (Novel soft switching FB DC-DC converter for reducing conduction losses)

  • 김은수;조기연;계문호;김윤호;윤병도
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1996년도 하계학술대회 논문집 A
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    • pp.388-391
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    • 1996
  • The conventional high frequency phase-shifted full bridge DC-DC converter has a disadavantage that a circulating current flows through transformer and switching devices during the freewheeling interval Due to this circulating current, RMS current stress, conduction losses of transformer and switching devices are increased. To alleviate this problem, this study provides a novel circulating current free type high frequency soft switching phase-shifted full bridge DC-DC converter which applies the energy recovery snubber(ERS) attached at the secondary side of transformer. The ERS adopted in this study is consisted of three fast recovery diode($Ds_1$, $Ds_2$, $Ds_3$), two resonant capacitor($Cs_1$, $Cs_2$) and a small resonant inductor [(Lr) : It can be ignored because the transformer leakage inductance(Ll) is able to use in stead of inserting the resonant inductor(Lr)]

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태양광 발전을 위한 대용량 소프트 스위칭 승강압 DC-DC 컨버터 (High Power Buck-boost DC-DC Converter of Soft Switching for Photovoltaic Power Generation)

  • 김영철;김재준;이종근;전중함;곽동걸;이현우
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 1996년도 창립기념 전력전자학술발표회 논문집
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    • pp.117-120
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    • 1996
  • Power conversion system must be increased switching frequency in order to achieve a small size, a light weight and a low noise. However, the switches of converter are subjected to high switching power losses and switching stresses. As a result of those, the power system brings on a low efficiency. In this paper, the authors propose a DC-DC boost converter of high power by partial resonant switch method (PRSM). The switching devices in a proposed circuit are operated with soft switching and the control technique of those is simplified for switch to drive in constant duty cycle. The partial resonant circuit makes use of a inductor using step up and a condenser of loss-less snubber. Also the circuit has a merit which is taken to increase of efficiency, as it makes to a regeneration at input source of accumulated energy in snubber condenser without loss of snubber in conventional circuit. The result is that the switching loss is very low and the efficiency of system is high. The proposed converter is deemed the most suitable for high power applications where the power switching devices are used.

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새로운 소프트 스위칭 승압형 정류기의 토폴로지 (The Topology of Novel Soft Switching Boost Rectifier)

  • 허영환;문상필;김영문;박한석
    • 전기학회논문지P
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    • 제64권4호
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    • pp.308-314
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    • 2015
  • This paper has proposed a new boost rectifier. Adequate input current was obtained by keeping the duty ratio constant without complicated conventional control methods and the improvement of the waveform was increased. With a decrease of distortion up to 12.9[%], the scope of restriction on harmonics was set to 13.0[%]($3^{td}$ harmonics), 1.1[%]($5^{td}$ harmonics) and 0.6[%]($7^{td}$ harmonics), respectively. Because complicated methods of control are avoided, the circuit configuration is simple and practical. In particular, the said effect turned out to be highly efficient in the low boosting ratio range(boosting ratio$({\alpha})=1.25$). The feasibility of these facts has been proven both theoretically and experimentally.

무손실 가변 영전압 구간을 갖는 새로운 저손실 준 병렬공진 직류-링크 인버터 (A New Low Loss Quasi Parallel Resonant DC-Link Inverter with Variable Lossless Zero Voltage Duration)

  • 권경안;김권호;최익;정용채;박민용
    • 전력전자학회논문지
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    • 제2권2호
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    • pp.8-18
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    • 1997
  • 본 논문에서는 개선된 PWM 적용성, 저손실 특성 및 낮은 전압 스트레스를 가지는 새로운 저손실 준 병렬공진 직류-링크 인버터를 제안한다. 직류-링크 동작손실을 대폭 감소시킴은 물론 넓은 동작범위에 걸쳐 안정한 소프트 스위칭을 보장하기 위하여 프리휠링 구간을 최소화시키는 방법을 또한 제안한다. 게다가 직류-링크의 영전압 구간의 무손실 제어에 의하여 낮은 변조지수 동작에 있어서도 제안된 인버터는 개선된 PWM 적용성을 보인다. 제안된 인버더 토폴로지의 유용성을 확인하기 위하여 실험 및 시뮬레이션을 행하였다.

친환경 자동차 HDC를 위한 고승압 소프트스위칭 양방향 컨버터 (High Gain Soft switching Bi-directional Converter for Eco-friendly Vehicle HDC)

  • 오세철;박준성;권민호;최세완
    • 전력전자학회논문지
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    • 제17권4호
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    • pp.322-329
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    • 2012
  • This paper proposes a non-isolated bidirectional soft-switching converter with high voltage for high step-up/down and high power applications. Compared to the conventional boost converter the proposed converter can achieve approximately doubled voltage gain using the same duty cycle. The voltage ratings of the switch and diode are reduced to half, which result in the use of devices with lower $R_{DS(ON)}$ and on drop leading to reduced conduction losses. Also, voltage ratings of the passive components are reduced, and therefore the total energy volume is reduced to half. Further, the switch is turned on with ZVS in the CCM operation which results in negligible surge caused leading to reduced switching losses. The validity of the proposed converter is proved through a 10kW prototype.

패시브 보조 공진 스너버를 이용한 소프트 스위칭 승압형 DC-DC 컨버터의 토폴로지 (The Topology of Soft Switching Boost Type DC-DC Converter using a Passive Auxiliary Resonant Snubber)

  • 성치호;박한석
    • 전기학회논문지P
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    • 제64권3호
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    • pp.146-152
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    • 2015
  • In this paper, we propose a boost DC-DC converter using a modification of the passive auxiliary resonant snubber circuit with a DC-DC converter in a typical active auxiliary resonant snubber-bridge inverter. The proposed boost DC-DC converter is small compared to the DC-DC converter according to the soft-switching scheme that requires a general auxiliary switch by realizing the soft switching operation as a DC-DC converter which does not require an auxiliary switch. It is light-weight, switch the turn-on and turn-off switching loss at the time of the superposition of the voltage and current is extremely small, so small. And the reduction of the surge voltage and current of the switch. In addition, the proposed boost DC-DC converter has a high efficiency over a wide load characteristics change area than conventional hard switching PWM boost converter using an RC snubber loss.

새로운 유도가열용 소프트 스위칭 고주파 인버터 (Soft Switching High Frequency Inverter for New Induction Heating)

  • 김칠용;문상필;김영문;김해재;류재엽;김수욱
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 학술대회 논문집 전문대학교육위원
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    • pp.119-124
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    • 2007
  • This research presented the new zero-current switching pulse width modulation SEPP(Single Ended Push-Pull)high frequency inverter for solving the problem of the zero-current SEPP high frequency inverter circuit which is using widely in the practical application of an induction heating apparatus, the soft switching operation and power control are impossible when the lowest power supply in the zero-current switching pulse width modulation SEPP high frequency inverter. The inverter circuit which is attempted by on-off operation of a switch has the reduction effect of the power loss due to a soft switching and a high frequency switching. And it confirmed that the power regulation is possible continuously from 0.25[kW] until 2.84[kW] in the case the duty rate(D) changes from 0.08 to 0.3 under zero-current switching operating by a dissymmetry pulse width modulating control and the power conversion efficiency comes true the efficiency of 95[%]. Due to the result above, the ZCS PWM SEPP high frequency inverter will be effective as sources of an induction heating apparatus.

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FCEV용 HDC 고효율 운전을 위한 소프트 스위칭 셀 최적 설계 방안 (Optimal Design of Soft-Switching Cell for High Efficiency and High Power Density for HDC of FCEVs)

  • 김소영;노태원;이재형;안정훈;이병국
    • 전력전자학회논문지
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    • 제23권3호
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    • pp.217-224
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    • 2018
  • In this study, the optimal design methods of soft-switching cell for high-voltage DC-DC converter (HDC) of fuel cell electric vehicles (FCEVs) is proposed for high efficiency and high power density. The appropriate soft-switching cell for FCEVs is chosen by analyzing the losses of HDC which adopts soft-switching cell. The proposed optimal design methods for the soft-switching cell are divided into two purposes which are improvement of efficiency and power density. Two kinds of design methods enable to improve fuel efficiency and cost, respectively. The proposed design methods are validated with the experimental results based on the specification and hardware used in actual FCEVs.