• Title/Summary/Keyword: Boost Input Type

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Control Characteristics of Boost input type active clamp DC-DC converter (Boost 입력형 능동 클램프 DC-DC 컨버터의 제어특성)

  • Ceong Cin-Beom;Kim Hee-Jun
    • Proceedings of the KIPE Conference
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    • 2001.07a
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    • pp.510-513
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    • 2001
  • In this paper, an application of asymmetrical duty control method to a boost input type active clamp DC-DC converter is discussed. In order to verify the discussed results, a 50W prototype converter is built and is tested. Through the experimental results an asymmetrical controlled boost input type active clamp converter is validated.

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High-powerfactor Control of Boost-type Rectifier without input Current Sensing (입력전류의 검출이 없는 승압형 정류기의 고역률제어)

  • Bae, Chang-Han;Lee, Gyo-Beom;Song, Jung-Ho;Lee, Gwang-Un
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.48 no.9
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    • pp.510-516
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    • 1999
  • In this paper, a new high-powerfactor control method for boost-type rectifier is proposed, which removes the necessity of input current sensing. This method generates a sinewave duty template only from the line voltage waveform and rectifier output, and reduces reactive power remarkably utilizing three compensation coefficients which are determined through experiments. These compensations make the input current to be in phase with the input voltage all over the load range. A prototype boost-type rectifier is designed and experimental results are presented.

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Characteristic of Boost input type active clamp DC-DC converter (Boost 입력형 능동클램프 DC-DC 컨버터의 동작특성)

  • Ceong, Cin-Beom;Kim, Hee-Jun
    • Proceedings of the KIEE Conference
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    • 2001.04a
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    • pp.301-303
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    • 2001
  • This paper proposes the boost input type active clamp DC-DC converter featuring the high efficiency and improved EMI characteristics. The main characteristic of the converter is to operate with the non-pulsating input and output currents. Besides, it has the zero-voltage switching (ZVS) and low voltage stress characteristics. For the proposed converter, the detailed operation principles and the simulation results are presented.

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A Study on Boost Type Single-Phase Inverter System for Compensation of Voltage Sag (Voltage Sag 보상을 위한 승압형 단상 인버터 시스템에 관한 연구)

  • Seo, Young-Min;Lee, Seung-Yong;Hong, Soon-Chan
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.25 no.11
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    • pp.50-57
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    • 2011
  • This paper proposes a boost type single-phase inverter system to compensate the voltage sag appeared on source side. The proposed system is composed of a boost converter, a PWM inverter, and a bypass diode. If the voltage sag has appeared in input voltage, the boost converter would be operated to compensate it in the proposed system. The boost converter would not be operated when the magnitude of input voltage is more than 0.9 pu. The output voltage is kept constant by a direct-quadrature frame controller in the inverter. A 300 W class boost type inverter system was simulated, and the validity of the proposed system was verified by carrying out experiments.

Characteristics of Boost Input Type Active Clamp Forward ZVS Converter (Boost 입력형 능동클램프 Forward ZVS Converter)

  • Oh Yong-Seung;Kim Hee-Jun
    • Proceedings of the KIPE Conference
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    • 2002.07a
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    • pp.386-389
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    • 2002
  • This paper proposes the boost input type active clamp forward ZVS(zero voltage switching) DC-DC converter which can provide high efficiency and improved EMI characteristics. Moreover, it has active clamp circuit for reducing the voltage stress and zero voltage switching technique for minimizing switching loss. The detailed operation principles and the simulation results are presented.

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A Buck-Boost Type Charger with a Switched Capacitor Circuit

  • Wu, Jinn-Chang;Jou, Hurng-Liahng;Tsai, Jie-Hao
    • Journal of Power Electronics
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    • v.15 no.1
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    • pp.31-38
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    • 2015
  • In this paper, a buck-boost type battery charger is developed for charging battery set with a lower voltage. This battery charger is configured by a rectifier circuit, an integrated boost/buck power converter and a switched capacitors circuit. A boost power converter and a buck power converter sharing a common power electronic switch are integrated to form the integrated boost/buck power converter. By controlling the common power electronic switch, the battery charger performs a hybrid constant-current/constant-voltage charging method and gets a high input power factor. Accordingly, both the power circuit and the control circuit of the developed battery charger are simplified. The switched capacitors circuit is applied to be the output of the boost converter and the input of the buck converter. The switched capacitors circuit can change its voltage according to the utility voltage so as to reduce the step-up voltage gain of the boost converter when the utility voltage is small. Hence, the power efficiency of a buck-boost type battery charger can be improved. Moreover, the step-down voltage gain of the buck power converter is reduced to increase the controllable range of the duty ratio for the common power electronic switch. A prototype is developed and tested to verify the performance of the proposed battery charger.

Power Factor Correction of Single-phase Boost Converter for Low-cost Type UPS Configuration (저 가격형 UPS를 구성하기 위한 단상 부스트 컨버터의 고 역률 제어)

  • Park, Jong-Chan;Shon, Jin-Geun
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.62 no.3
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    • pp.145-150
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    • 2013
  • A novel AC to DC PWM converters with unity input power factor are proposed to overcome the above shortcoming. The main function of these converters is to shape the input line current to force it exactly in phase with the input AC voltage. Therefore, the input power factor can be improved to near unity and the input current harmonics can be eliminated. In this paper, half-bridge converter with two active switches and two diodes are utilized for low-cost type UPS configuration. By having only two semiconductors in the current path at any time, losses can be reduced over the conventional boost topology. Also, this converter provides controllable dc-link voltage, high power factor, and low cost type converter by simple power circuits. Simulation results show that the proposed half-bridge converter/inverter control technique can be applied to single-phase low-cost type UPS systems successfully.

Boost Input type High Power Factor Resonant Power Supply for driving Magnetron Device (마그네트론 구동용 고역률 부스트 입력 방식의 공진형 전원장치)

  • Jeong, Jin-Beom;Yeon, Jae-Eui;Kim, Hee-Jun
    • Proceedings of the KIEE Conference
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    • 2003.07b
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    • pp.1078-1080
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    • 2003
  • This paper proposes the boost input type resonant power supply for driving the magnetron device of the high-capacity microwave oven. Circuit topology of the proposed power supply is the boost input type resonant converter which uses the resonance between transformer leakage inductance and resonance capacitance. Proposed power supply obtains high power factor more than 98% through continuous current mode pulse width modulation. To verify the validity of the proposed power supply, operation principle in the steady state is analyzed and experimental results are presented.

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Analysis of current harmonics in the High PowerFactor Boost-type Rectifier (고역률 Boost-type 정류기의 고조파 분석)

  • Bae, Chang-Han;Lee, Kyo-Beum;Lee, Kwang-Won
    • Proceedings of the KIEE Conference
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    • 1998.07f
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    • pp.1969-1972
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    • 1998
  • Harmonic analysis is important for PWM rectifiers with high powerfactor. This paper describes the harmonic analysis of input current in high powerfactor boost-type rectifier. The magnitudes of the harmonics are obtained through the current wave from analysis and the effect of source reactance is also analyzed.

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A Study on High Power-Factor Control of Boost Type Rectifier Using Duty Cycle Pattern (듀티비 패턴을 이용한 승압형 정류기의 고역률 구현에 관한 연구)

  • Lee, Kyo-Beum;Lee, Kwang-Won
    • Proceedings of the KIEE Conference
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    • 1998.07f
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    • pp.1934-1936
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    • 1998
  • This paper proposes a new control scheme for enhanced power factor in the boost type AC/DC rectifier. The control scheme is to generate duty-cycle pattern without instantaneous measurement of the input line current. With a very simple controller structure the line current is forced to trace a sinusoid in phase with input voltage. The simulation results show the validity of the proposed control scheme.

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