• 제목/요약/키워드: Output voltage and frequency

검색결과 1,468건 처리시간 0.026초

고주파 공진현상을 이용한 CW CO2 레이저의 출력리플 최소화 (Minimization of a CW CO2 Laser Output Ripple by using High Frequency Resonance Phenomena)

  • 사쿠라;권민재;김희제;이동길;허국성
    • 전기학회논문지
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    • 제62권6호
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    • pp.798-802
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    • 2013
  • In a conventional DC power supply used for CO2 laser, the circuit elements such as a rectifier bridge, a current-limiting resistor, a high voltage switch, energy storage capacitors ans a high-voltage isolation transformer using high turn ratio are necessary. Consequently, those supplies are expensive and require a large space. Thus, laser resonator and power supply should be optimally designed. In this paper, we propose a new power supply using high frequency resonance phenomena for CW(Continuous wave) CO2 laser (maximum output of 23W with discharge length of 450mm). It consists of a transformer including leakage inductance, magnetizing inductance and half-bridge converter, a three-stage Cockcroft-Walton and PFC(Power factor correction) circuit. The output ripple voltage can be controlled the minimum of 0.24% under the high frequency switching of 231kHz. Furthermore, the output efficiency was improved to 16.4% and the laser output stability of about 5.6% was obtained in this laser system.

출력 전압 맥동감소를 위한 직렬공진형 변환기의 제어기 설계 (Controller Design of the Series Resonant Converter for Reducing Output Voltage Ripple)

  • 김만고;한재원;윤명중
    • 대한전기학회논문지
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    • 제37권6호
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    • pp.376-382
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    • 1988
  • A small-signal low-frequency disturbance of the input line affects the regulated-output voltage of the series resonant converter. To mitigate the detrimental effect, the output feedback PI-controller is employed. Small-signal linear models are represented to characterize the closed loop series resonant converter system. Design equations for the PI-controller which satisfy stability and percent ripple conditions are derived from the closed-loop linear model. Experimental results are presented which show excellent correlation with theory.

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Control and Implementation of Dual-Stator-Winding Induction Generator for Variable Frequency AC-Generating System

  • Bu, Feifei;Hu, Yuwen;Huang, Wenxin;Shi, Kai
    • Journal of Power Electronics
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    • 제13권5호
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    • pp.798-805
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    • 2013
  • This paper presents the control and implementation of the dual-stator-winding induction generator for variable frequency AC (VFAC) generating system. This generator has two sets of stator windings embedded into the stator slots. The power winding produces the VFAC power to feed the loads, and the control winding is connected to the static excitation controller to control the generator for output voltage regulation with speed and load variations. On the basis of the idea of power balance, an instantaneous slip frequency control (ISFC) strategy using the information of both the output voltage and the output power is used in this system. A series of experiments is carried out on a 15 kW prototype for verification. Results show that the system has good static and dynamic performance in a wide speed range, which demonstrates that the ISFC strategy is suitable for this system.

Unbalance Control Strategy of Boost Type Three-Phase to Single-Phase Matrix Converters Based on Lyapunov Function

  • Xu, Yu-xiang;Ge, Hong-juan;Guo, Hai
    • Journal of Power Electronics
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    • 제19권1호
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    • pp.89-98
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    • 2019
  • This paper analyzes the input side performance of a conventional three-phase to single-phase matrix converter (3-1MC). It also presents the input-side waveform quality under this topology. The suppression of low-frequency input current harmonics is studied using the 3-1MC plus capacitance compensation unit. The constraint between the modulation function of the output and compensation sides is analyzed, and the relations among the voltage utilization ratio and the output compensation capacitance, filter capacitors and other system parameters are deduced. For a 3-1MC without large-capacity energy storage, the system performance is susceptible to input voltage imbalance. This paper decouples the inner current of the 3-1MC using a Lyapunov function in the input positive and negative sequence bi-coordinate axes. Meanwhile, the outer loop adopts a voltage-weighted synthesis of the output and compensation sides as a cascade of control objects. Experiments show that this strategy suppresses the low-frequency input current harmonics caused by input voltage imbalance, and ensures that the system maintains good static and dynamic performances under input-unbalanced conditions. At the same time, the parameter selection and debugging methods are simple.

Random PWM 기법을 이용한 전도노이즈 저감 (A study on the Conducted Noise Reduction in Random PWM)

  • 정동효
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년도 학술대회 논문집 전문대학교육위원
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    • pp.154-158
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    • 2006
  • The switching-mode power converter has been widely used because of its features of high efficiency and small weight and size. These features are brought by the ON-OFF operation of semiconductor switching devices. However, this switching operation causes the surge and EMI(Electromagnetic Interference) which deteriorate the reliability of the converter themselves and entire electronic systems. This problem on the surge and noise is one of the most serious difficulties in AC-to-DC converter. Random Pulse Width Modulation (RPWM) is peformed by adding a random perturbation to switching instant while output-voltage regulation of converter is performed. RPWM method for reducing conducted EMI in single switch three phase discontinuous conduction mode boost converter is presented. The more white noise is injected, the more conducted EMI is reduced. But output-voltage is not sufficiently regulated. This is the reason why carrier frequency selection topology is proposed. In the case of carrier frequency selection, output-voltage of steady state and transient state is fully regulated. A RPWM control method was proposed in order to smooth the switching noise spectrum and reduce it's level. Experimental results are verified by converter operating at 300v/1kW with $5%{\sim}30%$ white noise input. Spectrum analysis is performed on the Phase current and the CM noise voltage. The former is measured with Current Probe and the latter is achieved with LISN, which are connected to the spectrum analyzer respectively.

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입력전압 가변 및 동작 모드 변화를 통해 넓은 출력전압 범위에서 동작하는 LLC 공진컨버터 (LLC Resonant Converter Operating over a Wide Output Voltage Range by Varying the Input Voltage and Changing Operating Modes)

  • 이지철;주종성;허예창;마리우스;김은수;전용석;국윤상
    • 전력전자학회논문지
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    • 제22권6호
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    • pp.517-526
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    • 2017
  • In this paper, we propose an LLC resonant converter that operates over a wide controllable output voltage ($50V_{DC}$ to $800V_{DC}$) and shows high efficiency characteristics under all load conditions and output voltages. Two 3.3kW prototypes are designed for an experimental comparison between the variable frequency control (control scheme 1) and the variable input voltage($V_{IN}$) control (control scheme 2) mechanisms. The experimental results show that the variable input control mechanism demonstrates high efficiency under all loads and output voltages.

디지털 동기좌표계 전류제어기에서의 시지연을 고려한 PWM 기법 (A Compensation Method for Time Dealy of Full Digital Synchronous Frame Current Regulator of PWM ac Drives)

  • 배본호;설승기
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 춘계학술대회 논문집 전기기기 및 에너지변환시스템부문
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    • pp.244-246
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    • 2001
  • In a full digital implementation of a current regulator, the voltage output is inevitably delayed due to arithmetic calculation and PWM. In case of the synchronous frame current regulator, the time delay is accompanied by the rotation of frame. In some applications in which the ratio of sampling frequency to output frequency is not high enough, such as high power drive or super high-speed drive, it is known that the effect of rotation of frame during the delay time causes phase and magnitude error in the voltage output. The error degrades the dynamic performance and can bring about the instability of current regulator at high speed. It is also intuitively known that advancing the phase of voltage output can mitigate the instability. In this paper, the instability problems are studied analytically and a compensation method for the error has been proposed. By means of computer simulation and complex root locus analysis, comparative study with conventional methods is carried out and the effectiveness of proposed method is verified.

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The Development of a Programmable Single-Phase AC Power Source with a Linear Power Amplifier

  • Jeon, Jeong-Chay;Jeon, Hyun-Jae;Yoo, Jae-Geun;Son, Jae-Hyun
    • 조명전기설비학회논문지
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    • 제21권9호
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    • pp.39-46
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    • 2007
  • This paper presents a programmable single-phase ac power source that provides a sinusoidal output voltage with an adjustable output amplitude and frequency over a wide range as well as an arbitrary waveform. The ac power source under consideration have a linear power amplifier. The desired output values can be programmed with a personal computer. The power source operates at 220[V]/60[Hz] mains and the output voltage is isolated from the input circuit. The system consists mainly of a power converter to generate and amplify the waveform signal, a controller to control the desired output signal and measure the output parameters, and a control program to set the desired output and display the values. The prototype ac power source was constructed and tested with the results demonstrating a good performance.

회전자 여자제어를 이용한 풍력발전 DFIG의 출력제어 (Power Control of the DFIG Using the Rotor Exciting Control)

  • 이우석;오철수
    • 조명전기설비학회논문지
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    • 제13권3호
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    • pp.93-100
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    • 1999
  • 풍력발전은 넓은 범위의 속도제어를 요구하며, 권선형 유도발전기를 이용한 DFIG시스템을 이러한목적에 잘 부합한다. 동기속도 이상의 영역에서 풍속에 의한 원동기 속도와 증가에 불구하고 회전자 여자 주파수를 슬립주파수와 다르게 인가하여 DFIG의 속도와 출력 제얼르 다루고 있다. 속도제어와 동작점 이동의 해석을 위하여 토크시뮬레이션을 하였고, 회전자 여자주파수와 전압제어에 의해 출력이 정격값 이하의 안정된 영역에서 제어될 수 있음을 고찰하였다.

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65nm CMOS 공정을 이용한 전압제어발진기와 고속 4분주기의 설계 (A Design of Voltage Controlled Oscillator and High Speed 1/4 Frequency Divider using 65nm CMOS Process)

  • 이종석;문용
    • 전자공학회논문지
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    • 제51권11호
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    • pp.107-113
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    • 2014
  • 60GHz 무선 통신 시스템에 적용 가능한 전압 제어 발진기와 고속 4분주기를 65nm CMOS 공정을 사용하여 설계했다. 전압제어 발진기는 전류소스와 NMOS 차동쌍 LC구조로 설계하였으며 분주기는 차동 인젝션 록킹 구조에 베렉터를 추가하여 동작주파수 범위를 조절할 수 있는 구조로 설계했다. 전압 제어 발진기와 분주기에 모두 전류소스를 추가하여 전원잡음에 따른 위상잡음 특성을 개선하였다. 전압 제어 발진기는 64.36~67.68GHz의 동작범위가 측정됐고, 고속 4분주기는 전압 제어 발진기의 동작범위에 대해 정확한 4분주가 가능하며 5.47~5.97dBm의 높은 출력전력이 측정됐다. 분주기를 포함한 전압제어 발진기의 위상잡음은 1MHz 오프셋 주파수에서 -77.17dBc/Hz이고 10MHz 오프셋 주파수에서 -110.83dBc/Hz이다. 소모전력은 전원전압 1.2V에서 38.4mW 이다 (VCO 포함).