• Title/Summary/Keyword: PWM rectifier

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Development of High Voltage Pulse Power Supply for Gyroklystron Tube (Gyroklystron Tube 구동을 위한 고전압 펄스 전원장치의 설계 및 개발)

  • Park, Jae-An;Youn, Young-Dae
    • Proceedings of the KIEE Conference
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    • 2000.07e
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    • pp.71-73
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    • 2000
  • 최근 고 에너지 저장 및 발생장치의 개발은 군사용에서 산업용으로 응용되면서 각종 첨단 설비가 개발되고 있다. 본 논문에서는 전자빔 발생기로 쓰이는 Gyroklystron용 대전력, 고전압, 전류 펄스 전원장치로 입력부, 특고압 발생부, 고압 정류부 및 IGBT 펄스 스위치 구성하고 그 설계 및 개발 자료에 대하여 기술하였다. 대전력 고전압 전류펄스 전원장치를 위한 각 구성 부분의 제어 및 설계 특징은 다음과 같다. 입력부인 IGBT Inverter는 펄스 전원장치의 제어를 위하여 출력 고전압을 Feedbark System에 의해 펄스 설정 전압을 유지하도록 제어하며, 또한 펄스 출력중에 직류 고전압부의 전압강하, 즉 펄스 진압의 Drop이 커지는 것을 방지하기 위하여 Fast Dynamics를 갖도록 Feedback System을 구성하였다. 단상 특고압 승압용 변압기 3대를 직렬접속한 특고압 발생부는 PWM 제어된 전압을 입력받아 특고압으로 승압시키며 고압 펄스성 전압과 매우 높은 dV/dt 전압이 인가되므로 Stray Capacitance가 최소가 되어야 하며 절연파괴로부터 보호될 수 있어야 한다. 고압 정류부는 Inverter와 특고압 변압기에 의하여 전원이 공급되므로 교류전압의 교번 순간에 매우 높은 전압변동률을 가지는 Fast Recovery High Voltage Rectifier로 설계 제작되어졌다. 펄스 스위치인 IGBT 스위치는 Gate Driver에 의해 구동되어 지며 주어진 펄스 사양을 만족시키게 된다. 특히 소자의 전압특성을 고려하여 120KV의 전압 값을 갖도록 설계, 제작하였다.

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A New Soft Recovery Quasi-Resonance Pulse Width Modulating Boost Converter with Multiple Order Folding Snubber Network (다중 폴딩 스너버 망에 의한 새로운 펄스 폭 변조 의사 공진형 컨버터)

  • 정진국
    • Journal of the Institute of Electronics Engineers of Korea TE
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    • v.37 no.3
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    • pp.66-71
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    • 2000
  • A new Soft Recovery Quasi-Resonant Converter (SR QRC) haying multiple order folding snubber network is proposed. It is combined with normal quasi-resonant converter with folding snubber network of which the surrounding components are composed of diodes and capacitors. The reverse recovery loss of main rectifier diode is eliminated by this method utilizing multiple resonance. The proposed converter has PWM capability with high efficiency and is suitable for high voltage and high power applications. By extension of this concept to other switching converters, a new family of SR PW QRC may be developed.

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A Fault Tolerant Structure and Control Strategy for Electromagnetic Stirring Supplies

  • Li, Yan;Luo, An;Xiang, Xinxing;Chen, Yandong;He, Zhixing;Zhou, Fayun;Chen, Zhiyong
    • Journal of Power Electronics
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    • v.17 no.5
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    • pp.1256-1267
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    • 2017
  • A fault tolerant structure and its corresponding control strategy for electromagnetic stirring power supplies are proposed in this paper. The topology structure of the electromagnetic stirring power supply contains two-stages. The fore-stage is the PWM rectifier. The back-stage is the fault tolerant inverter, which is a two-phase three-bridge orthogonal inverter circuit while operating normally. When the power switch devices in the inverter are faulty, the structure of the inverter is reconfigured. The two-phase half bridge inverter circuit is constructed with the remaining power switch devices and DC-link capacitors to keep the system operating after cutting the faulty power switch devices from the system. The corresponding control strategy is proposed to let the system work under both normal and fault conditions. The reliability of the system is improved and the requirement of the electromagnetic stirring process is met. Finally, simulation and experimental results verify the feasibility of the proposed fault tolerant structure and corresponding control strategy.

Development of High Voltage Pulse Power Supply for Electron Beam Gun (Electron Beam Gun 구동을 위한 고전압 펄스 전원장치 개발)

  • Park, Jae-An;Lee, Young-Wun;Park, Sung-Tae;Lee, Kyeong-Soo;Jeong, Byung-Ung
    • Proceedings of the KIEE Conference
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    • 2000.07b
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    • pp.1309-1311
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    • 2000
  • 본 논문에서는 입력부, 특고압 발생부 및 고압 정류부, IGBT Pulse Switch로 구성된 Gyro-klystron용 대전력, 고전압, 전류 펄스 전원장치의 설계 및 개발에 대하여 기술하였다. 대전력, 고전압, 전류 펄스 전원장치를 위한 각 구성부분의 제어 및 설계 특징은 다음과 같다. 입력부인 IGBT Inverter는 펄스 전원장치의 전압 제어를 위하여 출력 고전압을 Feedback System 제어에 의해 Pulse 설정 전압을 갖도록 제어하며, 또한 Pulse 출력중에 직류 고전압부의 전압강하, 즉 Pulse 전압의 Drop이 커지는 것을 방지하기 위하여 Fast Dynamics를 갖도록 Feedback System을 구성하였다. 3대의 단상 특고압 승압변압기가 직렬로 구성된 특고압 발생부는 PWM된 전압을 입력받아 특고압으로 승압시킨다. 특고압 변압기는 고압 Pulse성 전압과 매우 높은 dV/dt 전압이 인가되므로 Stray Capacitance가 최소가 되어야 하며 절연파괴로부터 보호될 수 있어야 한다. 고압 정류부는 Inverter와 특고압변압기에 의하여 전원이 공급되므로 교류전압의 교번순간에 매우 높은 전압 변동률을 가지는 Fast Recovery High Voltage Rectifier로 설계, 제작되어졌다. Pulse Switch인 IGBT Switch는 Gate Driver에 의해 구동되어 진다. 주어진 Pulse 사양을 만족시키며 특히 소자의 전압 특성을 고려하여 120KV의 전압값을 갖도록 설계, 제작하였다. 본 논문에서는 고전압 펄스 전원장치 각 부분의 설계에 대하여 기본적인 사항들을 제시하며, 실험결과를 통하여 제안된 방식의 우수한 특성을 입증한다.

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A Study on Simple Single phase Air-conditioner of Power factor Correction Circuit (심플한 단상 에어컨의 역률개선회로에 관한 연구)

  • 문상필;서기영;이현우;김영문;김영철
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.15 no.2
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    • pp.73-79
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    • 2001
  • This paper describes the simple single phase air-conditioner of power factor correction (PFC) circuit. By adopting PFC in the rectifier, we can reduce harmonic into power line, improve the efficiency and lower the total system cost compared to conventional inviter only. Also, system performance is improved by stabilizing the output voltage of PFC. To improve the current waveform of diode rectifiers, we propose a new operating principle for the voltage diode rectifiers. A circuit design method is shown by experimentation and confirmed simulation. It explained that compared conventional pulse-width modulated (PWM) inverter with half pulse-width modulated (HPWM) inverter HPWM inverter. Proposed HPWM inverter eliminated dead-time by lowering switching loss and holding over-shooting.

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Received Power Regulation of LF-Band Wireless Power Transfer System Using Bias Control of Class E Amplifier (E급 증폭기의 바이어스 조정을 통한 LF-대역 무선 전력 전송시스템의 수신 전력 안정화)

  • Son, Yong-Ho;Han, Sang-Kyoo;Jang, Byung-Jun
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.24 no.9
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    • pp.883-891
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    • 2013
  • In wireless smart phone charging scenario, the transmitter pad is larger than the size of the receiver pad. Thus, it is important to supply a constant power to the receiver regardless of its location. In this paper, we propose a new method to regulate the receiver's power by adjusting a drain bias of class E power amplifier. The proposed LF-band wireless power transfer system is as follows: a buck converter power supply which is controlled by a pulse width modulation(PWM) IC TL494, a class E amplifier using a low cost IRF510 power MOSFET, a transmitter coil whose dimension is $16cm{\times}18cm$, a receiver coil whose dimension is $6cm{\times}8cm$, and a full bridge rectifier using Schottky diodes. A measured performance show a maximum output power of 4 W and system efficiency of 67 % if we fix the bias voltage. If we adjust the bias voltage, the received power can be maintained at a constant power of 2 W regardless of receiver pad location.

Model Predictive Control of Bidirectional AC-DC Converter for Energy Storage System

  • Akter, Md. Parvez;Mekhilef, Saad;Tan, Nadia Mei Lin;Akagi, Hirofumi
    • Journal of Electrical Engineering and Technology
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    • v.10 no.1
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    • pp.165-175
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    • 2015
  • Energy storage system has been widely applied in power distribution sectors as well as in renewable energy sources to ensure uninterruptible power supply. This paper presents a model predictive algorithm to control a bidirectional AC-DC converter, which is used in an energy storage system for power transferring between the three-phase AC voltage supply and energy storage devices. This model predictive control (MPC) algorithm utilizes the discrete behavior of the converter and predicts the future variables of the system by defining cost functions for all possible switching states. Subsequently, the switching state that corresponds to the minimum cost function is selected for the next sampling period for firing the switches of the AC-DC converter. The proposed model predictive control scheme of the AC-DC converter allows bidirectional power flow with instantaneous mode change capability and fast dynamic response. The performance of the MPC controlled bidirectional AC-DC converter is simulated with MATLAB/Simulink(R) and further verified with 3.0kW experimental prototypes. Both the simulation and experimental results show that, the AC-DC converter is operated with unity power factor, acceptable THD (3.3% during rectifier mode and 3.5% during inverter mode) level of AC current and very low DC voltage ripple. Moreover, an efficiency comparison is performed between the proposed MPC and conventional VOC-based PWM controller of the bidirectional AC-DC converter which ensures the effectiveness of MPC controller.