• 제목/요약/키워드: Full-Bridge Inverter

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A Study on Reducing Conduction Losses and Lossless Snubber Circuit of Full-Bridge DC-DC Converter (FB DC-DC Converter의 도전손실 저감과 무손실 스너버 회로에 관한 연구)

  • Ra, B.H.;Lee, H.W.;Kwon, S.K.;Kim, J.H.;Suh, K.Y.;Woo, J.I.
    • Proceedings of the KIEE Conference
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    • 1999.07f
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    • pp.2665-2667
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    • 1999
  • This Paper proposes a new toplogy snubber circuit of Full-Bridge DC-DC Converter for reducing conduction losses and snubber circuit heating loss. Using Partial Resonent Soft Switching Method and Clamping, studying on a new snubber circuit for reducing losses that a snubber circuit heating loss in the secondly diode rectification side, a switching losses in the primary side of IGBT inverter and conduction losses in the high frequency insulation transformer. In this paper, we present FB DC-DC converter included a new lossless snubber circuit, and then be analyzed and simulated.

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Developed high performance wireless charging system (고성능 무선충전 시스템 개발)

  • Jo, heol-Hee;Chen, Ya-Fei;Zhang, Hai-Long;Kim, Dong-Hee
    • Proceedings of the KIPE Conference
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    • 2018.07a
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    • pp.368-369
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    • 2018
  • In this paper, a wireless charging system for drones is developed. The system is consists of PFC(Power Factor Correction), Full-Bridge inverter, S-S(Series-Series) resonant circuit and Full-Bridge rectifier. The parameters of the S-S resonant circuit is designed and calculated. According to these parameters and the switching devices, the system model without PFC is setted up with thermal module devices in PSIM. When output voltage is setted to 50[V] and input voltage is changed from 100[V] to 380[V], The efficiency of the system model is measured by simulation.

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Utility-Connected Solar Power Conditioner Using Edge-Resonant Soft Switching Duty Cycle Sinewave Modulated Inverter Link

  • Ogura, Koki;Chandhaket, Srawouth;Nakaoka, Mutsuo;Terai, Haruo;Sumiyoshi, Shinichiro;Kitaizumi, Takeshi;Omori, Hideki
    • Journal of Power Electronics
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    • v.2 no.3
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    • pp.181-188
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    • 2002
  • The utility interfaced sinewave modulation Inverter for the solar photovoltaic power conditioner with a high frequency transformer is presented for residential applications. As compared with the conventional full-bridge hard switching slnewave PWM inverter with a high frequency link, the simplest single-ended edge-resonant soft switching sinewave inverter with a sinewave duty cycle pulse control scheme is implemented, resulting in size and weight reduction, low cost and high efficiency This paper presents a prototype system of the sinewave zero voltage soft switching sinewave inverter for solar power conditioner, along with its operating principle and unique features. In addition to these, this paper discusses a control implementation to deliver high quality output current. Major design of each component and the power loss analysis under actual power processing is also discussed and evaluated from an experimental point of view A newly developed utility-connected sinewave power conditioning circuit which achieves 92.5% efficiency under 4kW output is demonstrated.

Study on High Efficiency EEFL Backlight inverter for 32-inch LCD TV

  • Oh, Won-Sik;Cho, Kyu-Min;Moon, Gun-Woon;Min, Sook-Kyu;Kim, Hyun-Jin;Jeon, Hyoung-Jun;Kim, Jong-Sun;Mim, Byoung-Woon
    • Proceedings of the KIPE Conference
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    • 2005.07a
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    • pp.405-407
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    • 2005
  • As the screen size of LCD increases, EEFL(External Electrode Fluorescent Lamp) has been suggested to be applicable as backlight source for LCD . Since the electrodes of EEFL are outside of the tube, EEFL enhances the lifetime compared with CCFL(Cold Cathode Fluorescent Lamp), and a single inverter can drive multiple EEFL tubes of which luminance is uniform Therefore, a compact design can be realized and the cost of EEFL application would be much lower than that of CCFL. Moreover, EEFL inverter has higher efficiency per unit power than CCFL inverter. In this paper, a complementary full-bridge PWM(Pulse Width Modulation) inverter was designed for 32-inch LCD TV backlight which has 20 EEFL tubes and adapted two different driving methods to the EEFL inverter. The validity of this study is confirmed from the experimental results.

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Digital-To-Phase-Shift PWM Circuit for Full Digital Controlled FB DC/DC Converter

  • Kim, Eun-Soo;Choi, Hae-Young;Park, Soon-Gu;Kim, Tae-Jin;Kim, Yoon-Ho;Lee, Jae-Hak
    • Proceedings of the KIPE Conference
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    • 1998.10a
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    • pp.442-446
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    • 1998
  • With the advent of the high-speed microprocessor and DSP, the possibility of executing a control strategy in digital domain has become a reality. By the use of the DSP and microprocessor controller, many high power converters such as especially inverter and motor drive system may be enhanced resulting in the improved robustness to EMI, the ability to communicate the operating conditions and the ease of adjusting the control parameters. But, the digital controller using DSP or microprocessor is not applied in the high frequency switching power supplies, especially full bridge dc/dc converter. So, this paper presents the method and realization of designing a digital-to-phase shift PWM circuit for full digital controlled phase-shifted full bridge dc/dc converter with zero voltage switching. The operating principles, simulation and experimental results will be presented.

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The Design of Acoustic Resonance Free and Dimmable Electronic Ballast for 1kW MHL (음향 공명 제거 및 조광 제어가 가능한 1kW 메탈 핼라이드 램프용 전자식 안정기 설계)

  • Lee, Bong-Jin;Park, Chong-Yun;Kim, Ki-Nam
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.10
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    • pp.1782-1789
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    • 2008
  • This paper presents the design of acoustic resonance(AR) free and dimmable electronic ballast for 1kW Metal-Halide Lamp(MHL). The proposed Ballast consists of a Full-Bridge(FB) rectifier, a passive power factor correction(PFC) circuit, a full-bridge inverter, an ignitor using LC resonance and a control circuit for frequency modulation and dimming control. Whereas a passive PFC provides advantages in terms of high reliability and low cost for constructing the circuit, it is difficult to supply a stable voltage because of the output voltage ripple that occurs with a period of 120Hz. Although the ballast can be designed with a small size and a light weight if it is driven at a switching frequency between 1 and 100 kHz, AR will occur if the eigenvalue frequency of the lamp coincides with the inverter's operation frequency. The operation frequency was modulated in real time according to the output voltage ripple to compensate for the variation in power supplied to the lamp and eliminate AR. For dimming, the method, which modulated drive frequency of FB inverter using the control of DC level by microprocessor, was used. The Dimming ranged at least from 600W to 1kw as rated power of the lamp with 4 stages. Performance of the proposed technique was validated through numerical analysis, computer simulation using Pspice and by applying it to an electronic ballast for a prototype 1kW MHL.

Square Wave Voltage Injection Starting Method of SP-PMSM Considering Nonlinearity of Full-bridge Inverter (풀 브릿지 인버터의 비선형성을 고려한 단상 영구자석 동기 전동기의 구형파 전압 주입 기동 기법)

  • Yoo, Sang-Min;Hwang, Seon-Hwan;Lee, Ki-Chang
    • Journal of Aerospace System Engineering
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    • v.16 no.3
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    • pp.93-98
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    • 2022
  • The purpose of this paper was to propose a method for improving the performance of the open-loop control of single-phase permanent magnet synchronous motor (SP-PMSM), based on a square wave voltage injection. Generally, the SP-PMSM driving systems cmprise a full-bridge inverter and asymmetric air-gap structure of magnetic circuit, because a zero torque occurs on the symmetrical air-gap. As a result, it cannot be started at a specific rotor position. Thus, it is possible to cause the start-up failure at an open-loop control for sensorless operation of SP-PMSM. In this paper, the method with square wave voltage injection considering the nonlinearity of the inverter is presented to resolve the problem. The effectiveness of the proposed algorithm is verified through several experiments.

Improved Charge Pump Power Factor Correction Electronic Ballast Based on Class DE Inverter

  • Thongkullaphat, Sarayoot
    • International journal of advanced smart convergence
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    • v.4 no.1
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    • pp.64-70
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    • 2015
  • This paper proposes fluorescent electronic ballast with high power factor and low line input current harmonics. The system performance can be improved by a charged pump circuit. Details of design and circuit operation are described. The proposed electronic ballast is modified from single-stage half bridge class D electronic ballast by adding capacitor parallel with each power switch and setting the circuit parameter to operate under class DE inverter condition. By using this proposed method the DC bus voltage can be reduced around by 50% compare with conventional class D inverter circuit. Because the power switches are operated at zero voltage switching condition and low dv/dt of class DE switching. The experimental results show that the proper frequency of the prototype is around 50 kHz with input power factor of 0.982, $THD_i$ 10.2% at full load and efficiency of more than 90%.

Current Fed H.F Inverter Topology with VVVF Function (VVVF 기능을 가진 전류형 고주파 인버터 회로 Topology)

  • Lee, Bong-Seop;Kim, Dong-Hee;Shin, Soo-Kug;Gu, Tae-Guen;Bae, Gi-Hun;So, Jung-Hun
    • Proceedings of the KIEE Conference
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    • 1996.07a
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    • pp.321-323
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    • 1996
  • In this paper, it introduces a several circuit type of current-fed Full Bridge high frequence inverter with VVVF function. These inverter circuit presents various output control method according to on/off signal pattern of switches. also, It is certify that the accordance of characteristics is compared theoretical waveform with experimental results according to each signal pattern.

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Control Technique for High Frequency Link Current-Fed Inverter (고주파 링크 전류원 인버터의 제어기법)

  • Kim Seok-Hwan;Lim Jung-Gyu;Chung Se-Kyo;Lee Hyun-Woo
    • Proceedings of the KIPE Conference
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    • 2004.07b
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    • pp.795-798
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    • 2004
  • This paper describes a control technique for a high frequency (HF) link current-fed inverter with a single power conversion stage. The switching and control techniques for the primary full-bridge inverter and secondary cycloconverter are presented for generating a sinusoidal output voltage. The simulation and experimental results are provided to show the validity of the proposed control technique.

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