• Title/Summary/Keyword: Power Factor Improvement Circuit

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Improvement of input power factor on single phase full-bridge PWM AC/DC Converter (단상 full-bridge PWM AC/DC 콘버어터의 입력 역율개선)

  • Kim, Hyun-Soo;Park, Sung-Jun;Byun, Young-Bok;Kim, Kwang-Tae;Kwon, Soon-Jae;Kim, Cheul-U
    • Proceedings of the KIEE Conference
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    • 1995.11a
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    • pp.255-257
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    • 1995
  • Many new electronic products are required to have a unity power factor and a distortion free input current waveform. In this parer, a high performance single phase AC/DC converter with input power factor correction is proposed. And each parameters are determined. Proposed control strategy has many advantages which include two Quadrants operation, simplified control circuit, high performance features and continuous Input current. The experimental results are included to verify the validity of this approach.

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Characteristics of Non-Isolated OSAKA Converter -Characteristics of Three-Phase Soft-Switching Power Factor Corrected Converter for Large Scale Power Without Three-Phase Transformer-

  • Taniguchi, Katsunori;Shimomori, Wataru;Lee, Hyun-Woo
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1383-1386
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    • 2005
  • Non-isolated OSAKA Converter, which removes a three-phase transformer, is described in this paper. The converter switches once in every half cycle of an AC commercial power source. Therefore, it can solve many problems caused by the high frequency operation. The proposed converter achieves the soft-switching operation and the EMI noise can be reduced. In this circuit, the resonant capacitor, which is used for the soft-switching operation, is utilized for the improvement of an input current waveform. To achieve low cost and compact structure, non-isolated OSAKA converter removes a three-phase transformer of the OSAKA converter. By removing the three-phase transformer, three phase currents occur the interferences each other. To avoid the interference, a new switching method for non-isolated OSAKA converter is preposed. The converter can be constructed by the low-speed large power devices. The converter generates the low distorted input current waveforms with high power factor.

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A Study on Reactive Current Compensation Using Thyristor Switch (Thyristor Switch를 사용한 무효전류 보상에 관한 연구)

  • 박민호;이복용
    • 전기의세계
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    • v.28 no.12
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    • pp.41-45
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    • 1979
  • Improvement of power factor is achieved by reactive-current compensation, connecting power condenser to the circuit. This paper describes a method of reactive-current compensation, employing thyristor switching of capacitor banks without any breaker. This method reduces supply transients to the minimum by means of connecting condenser, because thyristor is triggered at zero point in condenser current. The reactive current detection and the experimental system to trigger thyristor at appropriate moment are given. IThe results show the fast reactive-current compensation on the condition of minimum transient.

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Totem-pole Bridgeless Boost PFC Converter Based on GaN FETs (GaN FET을 이용한 토템폴 구조의 브리지리스 부스트 PFC 컨버터)

  • Jang, Paul;Kang, Sang-Woo;Cho, Bo-Hyung;Kim, Jin-Han;Seo, Han-Sol;Park, Hyun-Soo
    • The Transactions of the Korean Institute of Power Electronics
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    • v.20 no.3
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    • pp.214-222
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    • 2015
  • The superiority of gallium nitride FET (GaN FET) over silicon MOSFET is examined in this paper. One of the outstanding features of GaN FET is low reverse-recovery charge, which enables continuous conduction mode operation of totem-pole bridgeless boost power factor correction (PFC) circuit. Among many bridgeless topologies, totem-pole bridgeless shows high efficiency and low conducted electromagnetic interference performance, with low cost and simple control scheme. The operation principle, control scheme, and circuit implementation of the proposed topology are provided. The converter is driven in two-module interleaved topology to operate at a power level of 5.5 kW, whereas phase-shedding control is adopted for light load efficiency improvement. Negative bias circuit is used in gate drivers to avoid the shoot-through induced by high speed switching. The superiority of GaN FET is verified by constructing a 5.5 kW prototype of two-module interleaved totem-pole bridgeless boost PFC converter. The experiment results show the highest efficiency of 98.7% at 1.6 kW load and an efficiency of 97.7% at the rated load.

A Study of the Partial Circulating Current Type Cycloconverter with a Resonant Circuit for Induction Heating (공진회로(共振回路)를 이용한 유도가열용(誘導加熱用) 부분순환전류형(部分循環電流形) 사이크로콘버터에 관한 연구(硏究))

  • Kim, Hyun-Jung;Cho, Kyu-Min;Kim, Young-Seok
    • Proceedings of the KIEE Conference
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    • 1992.07b
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    • pp.1002-1004
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    • 1992
  • This paper presents a study of the partial circulating current type cycloconverter with a resonant circuit for induction heating. A method of input power factor improvement is proposed. Since the circulating currents flow through the circulating current reactors, the out-put currents are continuous and sinusoid. The proposed cycloconverter can keep the displacement factor at 1.0 by PWM control method regardless of load. The control functions are derived, the operational principles are described and the simulation and experimental results are presented.

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Efficiency and Power Factor Improvement of Induction Motor Using Single-Phase Back Rectifier (단상 강압 정류기를 이용한 유도전동기의 효율 및 역률 개선)

  • 문상필;이현우;서기영
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.16 no.4
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    • pp.22-29
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    • 2002
  • Usually, much harmonics are included and cause harmonic loss of motor, torque pulsation, electro-magnetic noise and shock etc. by switching function of inverter when drive induction motor variableness inside. It applied partial resonant Buck converter and three phase voltage type SPWM inverter circuit to induction motor driving system in this paper that see to solve such problem. Changed operation condition variously to do input current of circuit that propose sine-wave by unit power factor almost and capacitor supplied bringing back to life voltage by power supply arranging properly assistance diode and electric power switching. Power factor and efficiency improved as that minimize variation of input at power supply voltage polarity reverse by that add voltage reversal function. Also, by using output filter, reduced harmonic of output line to line voltage components, and introduce state space analysis and forecast operation of rectifier. Such all items confirmed validity through simulation and an experiment.

The Selection of the Condenser Positions for the Improvement Power Factor of the High Voltage Induction Motors (고압유도전동기의 역률개선을 위한 콘덴서 위치 선정 방안)

  • Lee, Eun-Chun;Jeon, Il-Bang;Kim, Chang-Bum;Choe, Yeong-Gyu;Shin, Kang-Uk;Hong, Sung-Taek;Lee, Eun-Woong
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1068-1070
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    • 2005
  • This study sorted high voltage motors by the voltage and the capacity and analyzed the property of motor-start. So we found out some problems of the starting circuit from several sites, and made the answers of the problems. If these results of our study are utilized in new WTPs, the safety of the starting circuit will be improved and the life of electric power system will be longer. We recommend this study as a reference when our company founds the standard of electric facility design.

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High Power Factor Converter for Electric Vehicle Chargers (전기자동차 충전기용 고역율 콘버어터 회로)

  • 김영민;이수원;모창호;유철로
    • The Transactions of the Korean Institute of Power Electronics
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    • v.2 no.1
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    • pp.33-38
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    • 1997
  • Generally, various semiconductor switching devices for power systems are used in battery chargers for electric vehicle. When these used, it takes the problems of transient-current or distortion of waveforms in power systems near by battery chargers because of harmonics and large peak-current, low power factor, etc., caused by the non-linearity of these devices. Recently, power factor control, line current peak-cut, harmonics reduction which was ignored in past is more and more important. In this paper, to solve those problems we will improve the characteristics of voltage rising and propose the high power factor converter circuit for battery chargers. Our proposed system convert commutated voltage to AC resonant wave in high frequency inverter and rectify the link voltages passed high-frequency transformer and transfer the DC voltages. Especially, the effect using these converter system can be improved very large by power factor control and we have to verify the possibilities of improvement through the experiment of Pb-Acid battery application.

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Input Current Waveform Improvenment using LC Resonant Circuit in Commercial Frequency (상용주파의 LC공진회로를 이용한 입력전류파형 개선)

  • Mun, Sang-Pil;Kim, Chil-Ryong;Kwon, Soon-Kurl;Suh, Ki-Young
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.21 no.5
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    • pp.126-132
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    • 2007
  • We propose a power factor correction scheme using a LC resonant circuit in commercial frequency without switching devices. In this method, It makes a sinusoidal wave by widening conduction period using the current resonance in commercial frequency, Hence, the harmonic characteristics can be significantly improved, where the lower order harmonics, such as the fifth and seventh orders are much reduced. The result are confirmed by the theoretical and experimental implementations

Improvement in Power Factor of Partial Switching Converter for air-conditioner (에어컨용 부분공진 스위칭 컨버터의 역률개선)

  • Suh, K.Y.;Lee, H.W.;Ko, T.E.;Kim, Y.M.;Mun, S.P.;Jang, W.S.
    • Proceedings of the KIEE Conference
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    • 1999.07f
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    • pp.2662-2664
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    • 1999
  • To improve the current waveform of diode rectifiers, we propose a new operating principle for the voltage diode rectifiers. In the conventional voltage rectifier circuit, relatively large capacitors are used to boost the output voltage, while the proposed circuit uses smaller ones and a small reactor not to boost the output voltage but improve the input current waveform. A circuit design method is shown and confirmed simulation. It explained that compared conventional SPWM inverter with HPWM(Half Pulse-width modulated)Inverter. Proposed HPWM inverter eliminated dead-time by lowering switching loss and holding over-shooting. Output voltage and current of this paper were applied for real air-conditioner.

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