• Title/Summary/Keyword: Boost type PFC(Power Factor Correction)

Search Result 14, Processing Time 0.032 seconds

Characteristics of a High Power Factor Boost Converter with Continuous Current Mode Control

  • Kim, Cherl-Jin;Jang, Jun-Young
    • KIEE International Transaction on Electrical Machinery and Energy Conversion Systems
    • /
    • v.4B no.2
    • /
    • pp.65-72
    • /
    • 2004
  • Switching power supply systems are widely used in many industrial fields. Power factor correction (PFC) circuits have a tendency to be applied in new power supply designs. The input active power factor correction (APFC) circuits can be implemented in either the two-stage approach or the single-stage approach. The two-stage approach can be classified into boost type PFC circuit and dc/dc converter. The power factor correction circuit with a boost converter used as an input power source is studied in this paper. In a boost power factor correction circuit there are two feedback control loops, which are a current feedback loop and a voltage feedback loop. In this paper, the regulation performance of output voltage and compensator to improve the transient response presented at the continuous conduction mode (CCM) of the boost PFC circuit is analyzed. The validity of designed boost PFC circuit is confirmed by MATLAB simulation and experimental results.

Analysis of the Electronic Ballast with Semi-boost PFC for Fluorescent Lamps (Semi-boost PFC에 의한 형광등용 전자식 안정기 해석)

  • Han, Jae-Hyun;Jo, Gye-Huyn;Park, Chong-Yeun
    • Journal of Industrial Technology
    • /
    • v.23 no.A
    • /
    • pp.35-39
    • /
    • 2003
  • There are many kinds of electronic ballast for various kinks of fluorescent lamps. The PFC(Power Factor Correction) circuit in electronic ballast is classified in two types. One is the active PFC and the other is the passive PFC circuit. The active type PFC is higher than the passive type, but the cost of the passive type is cheaper than the active type. In this study, we introduced the modified passive PFC method which is called semi-boost PFC, and then we analyzed and experimented the electronic ballast which is composed of the semi-boost PFC, half-bridge, and LCC resonant tank. Experimental results showed that the $$PF{\geq_-}0.98$$, $$CF{\leq_-}1.4$$ and input current $THD{\approx}15%$.

  • PDF

Boost Type PFC Rectifier with Active Power Decoupling Circuit with Repetitive Controller (반복제어기를 적용한 Active Power Decoupling 회로를 갖는 Boost Type PFC 정류기)

  • Hwang, Duck-Hwan;Lee, Jungyong;Cho, Younghoon;Choe, Gyu-Ha
    • The Transactions of the Korean Institute of Power Electronics
    • /
    • v.23 no.6
    • /
    • pp.389-396
    • /
    • 2018
  • This study proposes a control method using a repetitive controller for a boost-type PFC rectifier with an APD circuit structure to improve the current distortion caused by DCM condition. Conventional proportional integral controllers have bandwidth limitations in DCM conditions. The performance improvement of the APD controller in the DCM region is verified through simulations and experiments on the compensation of harmonics by the repetitive controller.

Comparative Analysis of Single stage Power Factor Correction Circuit (단상 전원에 적용되는 수동 및 능동 역률개선회로의 특성)

  • Kim, Cherl-Jin;Kim, Choong-Sik;Yoo, Byeong-Kyu;Yoon, Shin-Yong;Baek, Soo-Hyun
    • Proceedings of the KIEE Conference
    • /
    • 2004.04a
    • /
    • pp.166-168
    • /
    • 2004
  • Conventional Switched Mode Power Supplies(SMPS) with diode-capacitor rectifier have distorted input current waveform with high harmonic order contents. Typically, these SMPS have a power factor lower than 0,7. To improve with this problem the power factor correction(PFC) circuit of power supplies has to be introduced. Specially, to the reduce size and manufacture cost of power conversion device, the single-stage PFC converter is increased to demand as necessary of study. In this paper, comparative analysis of Valley-fill, boost and feedforward type single stage power factor correction circuit based on the flyback converter is given. Also, the validity of designed three type of single stage PFC circuit are confirmed by simulation and experimental results.

  • PDF

High Performance Current Control Algorithm Based on Virtual DQ Synchronous Reference Frame for Single-Phase Boost PFC Converter (단상 부스트 PFC 컨버터용 가상 DQ 동기좌표계 기반 고성능 전류제어 알고리즘)

  • Kim, Hyun-Geun;Jin, Seong-Min;Lee, Sang-Hee;Lee, Su-Hyoung;Kim, Joohn-Sheok
    • The Transactions of the Korean Institute of Power Electronics
    • /
    • v.22 no.6
    • /
    • pp.496-503
    • /
    • 2017
  • This study proposes a high-performance current control algorithm for a diode-bridge-type single-phase boost power factor correction (PFC) converter. The conventional asynchronous single-phase current controllers that directly control AC-type current tend to be accompanied by steady-state errors due to their poor dynamic characteristics for the transient-state, which can be attributed to bandwidth limitations and phase delays. In the proposed algorithm, an ideal current control with minimal phase delays and steady-state errors can be achieved by using a virtual DQ synchronous reference frame and by controlling the synchronous reference frame excluding the frequency component in the single-phase system. The performance of the conventional asynchronous single-phase current controller is compared with that of the proposed algorithm through simulation and experiments, and the results have confirmed the superiority of the latter.

Three-phase Three-level Boost-type Front-end PFC Rectifier for Improving Power Quality at Input AC Mains of Telecom Loads

  • Saravana, Prakash P.;Kalpana, R.;Singh, Bhim
    • Journal of Power Electronics
    • /
    • v.18 no.6
    • /
    • pp.1819-1829
    • /
    • 2018
  • A three-phase, three-switch, and three-level boost-type PWM rectifier (Vienna rectifier) is proposed as an active front-end power factor correction (PFC) rectifier for telecom loads. The proposed active front-end PFC rectifier system is modeled by the switching cycle average model. The relation between duty ratios and DC link capacitor voltages is derived in terms of the system input currents. Furthermore, the feasible switching states are identified and applied to the proposed system to reduce the switching stress and DC ripples. A detailed equivalent circuit analysis of the proposed front-end PFC rectifier is conducted, and its performance is verified through simulations in MATLAB. Simulation results are verified using an experimental setup of an active front-end PFC rectifier that was developed in the laboratory. Simulation and experimental results demonstrate the improved power quality parameters that are in accordance with the IEEE and IEC standards.

ZVT single phase power factor correction circuit with low conduction loss and low cost (저도통 손실, 저가의 ZVT 단상 역률 보상 회로)

  • Baek, J.W.;Cho, J.G.;Kim, W.H.;Rim, G.H.;Song, D.I.;Kwon, S.G.
    • Proceedings of the KIEE Conference
    • /
    • 1996.07a
    • /
    • pp.255-258
    • /
    • 1996
  • A new low conduction loss, low cost zero-voltage-transition power factor correction circuit(PFC) is presented. Conventional PFC which consists of a bridge diode and a boost converter(one switch) always has three semiconductor conduction drops. Two switch type PFCs reduces conduction loss by reducing one conduction drop but the cost is increased because of increased number of active switches. The proposed PFC reduces conduction loss with one switch, which allows low cost. Conduction loss improvement is a little bit less than that of two switch type, but very close up. Operation and features are comparatively illustrated and verified by simulation and experimental results of 1 kW laboratory prototype.

  • PDF

Efficiency and Design Analysis of Power Conversion Unit for Household Appliances according to PFC Type (가전제품용 전력변환 장치의 PFC 구조에 따른 시스템 효율 분석 및 설계)

  • Park, Sang-Min;Kim, Dong-Hee;Joo, Dong-Myoung;Kim, Min-Jung;Lee, Byoung-Kuk
    • Proceedings of the KIPE Conference
    • /
    • 2014.07a
    • /
    • pp.417-418
    • /
    • 2014
  • 본 논문은 PFC (Power Factor Correction)와 절연형 DC-DC 컨버터의 2단 구조를 갖는 가전제품용 저전압 시스템의 효율을 분석하며, 이에 따른 Buck 및 Boost PFC 토폴로지와 절연형 DC-DC 컨버터 효율 및 설계 차이점을 비교한다. PFC 구조에 따른 각 시스템의 역률 규제 만족 여부와 시스템 효율을 이론적 해석 및 시뮬레이션을 통해 검증한다.

  • PDF

TWO-SWITCH BOOST CHOPPER-BASED PFC RECTIFIER FOR ELECTRONIC BALLAST

  • Takhashi, Nobuo;Okutsu, Kenzo;Kato, Yoshito;Ohkita, Masaaki;Matsuyama, Makoto;Nakaoka, Mutsuo
    • Proceedings of the KIPE Conference
    • /
    • 1998.10a
    • /
    • pp.993-997
    • /
    • 1998
  • This paper presents a two-switch boost chopper with a sinewave current shaping and power factor correction scheme, which is applied for driving electronic ballast using high frequency resonant inverter. A working principle of the proposed one-converter type electronic ballast with power factor correction and active filtering schemes is described on the bases of the equivalent circuit of each operation mode, together with operation analysis. The steady-state performance evaluations of this electronic ballast are illustrated and discussed in experiment.

  • PDF

Study of Single-Stage High-Power-Factor Electronic Ballast for fluorescent lamps operating in critical conduction mode (임계모드에서 동작하는 단일 전력단을 갖는 고역률 형광등용 전자식 안정기에 관한 연구)

  • Seo, C.S.;Kim, D.H.;Byun, Y.B.;Lee, P.S.;Sim, K.Y.;Oh, S.H.
    • Proceedings of the KIEE Conference
    • /
    • 2001.07b
    • /
    • pp.1126-1128
    • /
    • 2001
  • A single-stage high-power-factor electron ic ballast operating in critical conduction mode is presented in this paper. The proposed topology is based on integration of a boost-like converter and a LCC Type half-bridge serial resonant inverter. The power-factor-correction(PFC) stage is a boost-like converter operating in critical conduction mode for positive and negative half cycle voltage respectively at line frequency (60Hz) so that a high power factor is achieved naturally. The simulated and experimental results for 100w fluorescent lamps operating at 42kHz switching frequency and 220V line voltage have been obtained.

  • PDF