• 제목/요약/키워드: Continuous Conduction Mode(CCM)

검색결과 58건 처리시간 0.024초

Scheme to Improve the Line Current Distortion of PFC Using a Predictive Control Algorithm

  • Kim, Dae Joong;Park, Jin-Hyuk;Lee, Kyo-Beum
    • Journal of Power Electronics
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    • 제15권5호
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    • pp.1168-1177
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    • 2015
  • This paper presents a scheme to improve the line current distortion of power factor corrector (PFC) topology at the zero crossing point using a predictive control algorithm in both the continuous conduction mode (CCM) and discontinuous conduction mode (DCM). The line current in single-phase PFC topology is distorted at the zero crossing point of the input AC voltage because of the characteristic of the general proportional integral (PI) current controller. This distortion degrades the line current quality, such as the total harmonic distortion (THD) and the power factor (PF). Given the optimal duty cycle calculated by estimating the next state current in both the CCM and DCM, the proposed predictive control algorithm has a fast dynamic response and accuracy unlike the conventional PI current control method. These advantages of the proposed algorithm lower the line current distortion of PFC topology. The proposed method is verified through PSIM simulations and experimental results with 1.5 kW bridgeless PFC (BLPFC) topology.

임계모드 부스트형 태양전력 조절기 (Critical Conduction Mode BOOST Type Solar Array Regulator)

  • 양정환;유상범;윤석택
    • 한국위성정보통신학회논문지
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    • 제9권3호
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    • pp.86-90
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    • 2014
  • DC-DC 컨버터는 인덕터 전류의 동작에 따라 연속전류모드와 불연속전류모드, 임계모드로 나눌 수 있다. 임계모드는 연속전류모드와 불연속전류모드의 경계에서 동작한다. DC-DC 컨버터를 임계모드에서 동작하도록 설계하면 인덕터 크기를 줄일 수 있으며 ZCS(Zero Current Switching) 동작을 하여 스위치와 다이오드의 전력 손실을 줄일 수 있다. 본 논문에서는 임계모드로 동작하는 부스트형 컨버터를 인공위성 용 태양전력 조절기에 적용한다. 임계모드 동작 시 DC-DC 컨버터의 입출력 조건에 따라 DC-DC 컨버터의 스위칭 주파수가 변한다. 최대 스위칭 주파수 제한을 위해 스위칭 주파수 제한 로직을 적용하였다. 한편, 임계모드 부스트형 태양전력 조절기는 소신호 전달함수가 간단하여 제어기 설계가 용이하다. 임계모드 부스트형 태양전력 조절기의 소신호 전달함수를 유도하고 이를 바탕으로 전압제어기를 설계하였다. 최종적으로 모의실험을 통해 임계모드로 동작하는 태양전력 조절기를 검증하였다.

Bridgeless Buck PFC Rectifier with Improved Power Factor

  • Malekanehrad, Mahdi;Adib, Ehsan
    • Journal of Power Electronics
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    • 제18권2호
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    • pp.323-331
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    • 2018
  • Buck power factor correction (PFC) converters, compared with conventional boost PFC converters, exhibit high efficiency performance in the entire range of universal line voltage. This feature has gotten more attention for eliminating the zero crossing dead angle of buck PFC rectifiers. Furthermore, bridgeless structures for the reduction of conduction losses have been proposed. The aim of this paper is to introduce a single-phase buck rectifier that simultaneously has unity power factor (PF) and bridgeless structure while operating in the continuous conduction mode (CCM). For this purpose, two auxiliary flyback converters without any active switches are applied to a bridgeless buck rectifier to eliminate the zero crossing dead angle and achieve unity power factor, low total harmonic distortion (THD) and high efficiency. The operation and design considerations of the proposed rectifier are verified on a 150W, 48V prototype using a conventional peak-current-mode control. The measurement results show that the proposed rectifier has nearly unity power factor, THD less than 7% and high efficiency.

히스테리시스 제어를 사용하는 Buck Converter의 평균모델을 위한 Duty Cycle 모델링 (Duty Cycle Modeling for Average Model of Buck Converter Employing Hysteresis Control)

  • 홍성수
    • 전력전자학회논문지
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    • 제3권4호
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    • pp.330-337
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    • 1998
  • 히스테리시스 제어를 사용하는 Buck 컨버터의 평균모델을 위한 Duty Cycle 모델이 수학적으로 구해진다. 이 모델은 시간영역에서 연속 전도 모드와 불연속 전도 모드 모두를 동시에 시물레이션할 수 있다. 또한, SABER의 MAST언어를 이용하여, 제안된 모델의 템플릿이 제시되며, 이 템플릿은 시간영역이나 주파수 영역의 해석을 위해 사용되어질 수 있다. 이 템플릿의 정확성을 컴퓨터 시뮬레이션을 통하여 증명한다.

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A Three-Phase AC-DC High Step-up Converter for Microscale Wind-power Generation Systems

  • Yang, Lung-Sheng;Lin, Chia-Ching;Chang, En-Chih
    • Journal of Power Electronics
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    • 제16권5호
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    • pp.1861-1868
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    • 2016
  • In this paper, a three-phase AC-DC high step-up converter is developed for application to microscale wind-power generation systems. Such an AC-DC boost converter prossessess the property of the single-switch high step-up DC-DC structure. For power factor correction, the advanced half-stage converter is operated under the discontinuous conduction mode (DCM). Simulatanously, to achieve a high step-up voltage gain, the back half-stage functions in the continuous conduction mode (CCM). A high voltage gain can be obtained by use of an output-capacitor mass and a coupled inductor. Compared to the output voltage, the voltage stress is decreased on the switch. To lessen the conducting losses, a low rated voltage and small conductive resistance MOSFETs are adopted. In addition, the coupled inductor retrieves the leakage-inductor energy. The operation principle and steady-state behavior are analyzed, and a prototype hardware circuit is realized to verify the performance of the proposed converter.

다수의 다이오드 정류기와 연결된 풀 브릿지 DC-DC 컨버터의 분석 및 제어 (Analysis and Control of Full Bridge DC-DC Converter with Multiple Diode Rectifiers)

  • 이윤로;권용철;설승기
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2018년도 전력전자학술대회
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    • pp.261-263
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    • 2018
  • 본 논문에서는 다수의 고주파 단상 변압기를 사용하여 다수의 독립된 직류 전압원을 만들 수 있는, 여러 다이오드 정류기와 연결된 풀 브릿지 DC-DC 컨버터에 대한 분석 및 제어 기법을 제안한다. 본 토폴로지의 경우 제어 대상인 2차단 직류단이 다수이지만 1차단 스위칭 회로가 하나의 풀 브릿지 회로이기 때문에 2차단 전압의 개별 제어를 위한 자유도가 부족하다. 이에 따라 다수 직류단 전압의 평균 값을 제어하는 방식이 사용된다. 이때, 각 직류단에 다른 용량의 부하가 연결되어 있는 상황에 대하여 상세한 분석이 필요하다. 본 논문에서는 제시된 토폴로지(Topology)를 하드 스위칭 기반의 DCM(Discontinuous Conduction Mode) 및 CCM(Continuous Conduction Mode) 동작의 경우에 대해 분석한다. 이를 바탕으로, 직류단 전압 제어를 위한 전향 보상 및 안티 와인드업을 포함하는 Integral and Proportional (IP) 제어기를 구성하고, 제어기 이득 및 전향 보상을 수식화 한다. 최종적으로 구해지는 제어기의 전달 함수를 통해, 제어기가 정확하게 설계되었는지 컴퓨터 시뮬레이션으로 검증한다.

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DCM에서 PV시스템용 부스트 컨버터의 개선된 제어방식 (The Modified Control Method of Boost Converter for PV System in DCM)

  • 이영진;한동화;변병주;최중묵;바이스갈랑;최규하
    • 전력전자학회논문지
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    • 제18권4호
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    • pp.297-304
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    • 2013
  • This paper presents a improved control technique to overcome disadvantage when the inductor current of boost converter in PV system becomes DCM(Discontinuous Conduction Mode) due to the low insolation. MPPT(Maximum Power Point Tracking) output reference voltage could not be exactly followed by conventional dual-loop PI control method used typically because of the error between the actual current and measured current. Therefore, in this paper, Hybrid controller that changes the control method in DCM and CCM(Continuous Conduction Mode), and single state feedback controller are used to compensate that problem. The proposed control technique was verified by simulation using PSIM 9.0 and experiments.

LC 공진 필터를 이용한 전해 커패시터 없는 LED 구동용 PFC CCM 플라이백 컨버터의 출력 전류 리플 저감에 관한 연구 (The Study of Ripple Reduction of the PFC CCM Flyback Converter without Electrolytic Capacitor for LED Lightings using LC Resonant Filter)

  • 김춘택;김영석
    • 전기학회논문지
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    • 제65권4호
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    • pp.601-610
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    • 2016
  • The light-emitting diode (LED) has been used in a variety of industrial fields and for general 0lighting purposes on account of its high efficiency, low power consumption and long lifespan. The LED is driven by direct current; therefore, an AC/DC converter is typically required for its use. An electrolytic capacitor is generally used for stabilizing DC voltage during use of the AC/DC converter. However, this capacitor has a short lifespan, which makes it a limiting factor in LED lighting. Furthermore, LED lighting requires a dimmable control to enable energy savings and fulfil a growing consumer demand. In this paper, the dimmable single-stage power factor correction (PFC) continuous conduction mode (CCM) flyback converter that employs no electrolytic capacitor is presented. The LC resonant filter is alternatively applied to reduce the 120[Hz] ripple on the output. And the optimum value of the LC resonant filter parameters considering both efficient and performance is analysed. Simulation and experimental results verify the satisfactory operation of the converter.

LED 구동용 단일단 PFC CCM 플라이백 컨버터의 히스테리시스 최적 제어 (Optimal Hysteresis Control for CCM Driving of a Single-Stage PFC Flyback Converter for LED Lightings)

  • 김춘택
    • 전기학회논문지
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    • 제65권4호
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    • pp.586-592
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    • 2016
  • The current control of Continuous Conduction Mode(CCM) can be implemented by several methods: peak current control; average current control; and hysteresis control. Among these methods, the hysteresis current control is popularly applied in various converter applications because of its simplicity of implementation, fast current control response and inherent peak current limiting capability. However, a current controller with conventional hysteresis band which multiplies the current reference has the disadvantage that the modulation frequency varies in one cycle of the input voltage and, as a result, generates high switching frequency in the low input voltage section. Also it is complicated to design the input filter due to varying switching frequency. This paper proposed an optimum hysteresis-band current control method where the band is generated by using both multiplication method and sum method to maintain the modulation frequency to be nearly constant. This approach can solve the high switching frequency in the low input voltage section, and achieve easy design of input filter. The performance of the proposed converter is verified with the simulation and the experimental works.

부스트 능동 역률개선 컨버터의 특성 (Characteristics of Boost Active Power Factor Correction Converter)

  • 장준영;인치호
    • 제어로봇시스템학회논문지
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    • 제21권12호
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    • pp.1152-1159
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    • 2015
  • 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 PFC circuit with a boost converter using an input power source is studied in this paper. In a boost PFC circuit, there are two feedback control loops: a current feedback loop and a voltage feedback loop. In this paper, the regulation performance gained by using the 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 the designed boost PFC circuit is confirmed by both MATLAB simulation and experimental results.