• Title/Summary/Keyword: 24-pulse diode rectifier

Search Result 7, Processing Time 0.018 seconds

A New 24-Pulse Diode Rectifier for High Voltage and High Power Application (새로운 고전압 대전력용 24펄스 다이오드 정류기 시스템)

  • 최세완;김기용
    • The Transactions of the Korean Institute of Power Electronics
    • /
    • v.4 no.3
    • /
    • pp.304-309
    • /
    • 1999
  • In this paper, a new 24longleftarrowpulse diode rectifier system based upon the conventional series-connected 12-pulse rectifier is p proposed with the least number of switching devices and low VA rating of the additional passive components. The p proposed approach does not employ any active switching devices. Therefore, the system is rugged and simple to i implement. Detailed analysis with VA rating calculation of the components is presented and experimental results from a a 220V, 3kV A rectifier system verify the proposed concept.

  • PDF

Design Considerations for Auto-Connected Multi-Pulse Rectiviers for High Power AC Motor Drives

  • ;Prasad N. Enjeti
    • The Transactions of the Korean Institute of Power Electronics
    • /
    • v.4 no.5
    • /
    • pp.413-422
    • /
    • 1999
  • Auto-connected multipulse(12/24pulse) rectifier schemes are cost effective methods for reducing line current hamonics in PWM drive systems. Employing these schemes to enhance utility power quality requires careful attention to several design considerations In particular, excursion of dc-link voltage at no load, effect of pre-existing voltage distortion, impedance mismatches, unequal diode drops on rectifier current sharing and performance, are fully analyzed, Several corrective measures to improve the performance of 12/24­pulse rectifier systems are also discussed. Finally, experimental results on a 460V, 60Hz 400kVA commercial ASD, retrofitted with 12/24pulse rectifier systems are discussed in detail.

  • PDF

Harmonic Reduction Scheme By the Advanced Auxiliary Voltage Supply (개선된 보조전원장치에 의한 고조파 저감대책)

  • Yoon, Doo-O;Yoon, Kyoung-Kuk;Kim, Sung-Hwan
    • Journal of the Korean Society of Marine Environment & Safety
    • /
    • v.21 no.6
    • /
    • pp.759-769
    • /
    • 2015
  • Diode rectifiers are very popular in industry. However, they include large low-order harmonics in the input current and do not satisfy harmonic current content restrictions. To reduce the harmonics to the power system, several methods have been introduced. It is heavy and expensive solution to use passive filters as the solution for high power application. Another solution for the harmonic filter is utilization of active filter, but it is too expensive solution. Diode rectifiers with configurations using switching device have been introduced, but they are very complicated. The combined 12-pulse diode rectifier with the square auxiliary voltage supply has been introduced. It has the advantages that auxiliary circuit is simple and inexpensive compared to other strategies. The advanced auxiliary voltage supply in this thesis is presented as a new solution. When the square auxiliary voltage supply applied, the improvement of THD is 6~60[%] in whole load range. But when the advanced auxiliary voltage supply applied, it shows stable and excellent reduction effect of THD as 57~71[%]. Especially, for the case with 10[%] load factor, reduction effect of THD has little effect as 6[%] in the case of inserting a square auxiliary voltage supply. But when the proposed new solution applied, reduction effect has excellent effect as 71[%]. Theoretical analysis of the combined 12-pulse diode rectifier with the advanced auxiliary voltage supply is presented and control methods of the auxiliary supply is proposed. The reduction in the input current harmonics is verified by simulation using software PSIM.

A Multipulse-Voltage Source Rectifier System with a Three-Phase Diode Circuit in order to improve the Input Current Waveforms (입력 전류 파형 개선을 위한 다펄스 3상 다이오드 전압원 정류 시스템)

  • Im, Seong-Goun;Park, Hyun-Chul;Lee, Seong-Ryong;Yu, Chul-Ro
    • Proceedings of the KIEE Conference
    • /
    • 1993.07b
    • /
    • pp.853-855
    • /
    • 1993
  • In this paper, a further improved system obtaining very low distorted waveforms of input ac currents of three phase rectifier circuit is proposed. The proposed system consists of an uncomplicated 24 pulse diode bridge rectifier that is transformerless, by adding only switching circuit which consists of two switchs to conventional system. Also to optimum the effectiveness or the harmonic reduction, the optimum turn ratio of an autotransformer and the optimum switching control angle are decided by computer simulation. And then, the voltage waveform obtained has a total harmonic distortion of 8.1%, and the predominant harmonics 23th and 25th. This paper describes operation principle, analysis of the waveforms of input voltage and current. The theoretial results are verified through simulation.

  • PDF

A harmonic reduction scheme for 12-pulse diode rectifiers by auxiliary voltage supply (보조전원장치에 의한 12-펄스정류기의 고조파 저감)

  • Kim, Sung-Hwan;Kim, Jong-Su;Oh, Sae-Gin;Yoon, Kyoung-Kuk
    • Journal of Advanced Marine Engineering and Technology
    • /
    • v.38 no.7
    • /
    • pp.916-922
    • /
    • 2014
  • Diode rectifiers have been widely used for an AC to DC converter. But a big problem is that they include large harmonics components in the input currents. A 12-pulse configuration with phase shifting transformer is useful for reducing them. however, it still includes the ($12{\pm}1$)th (m; integer) harmonics in the input currents. In this paper, we propose a single-phase square wave auxiliary voltage supply which is inserted in the middle DC bus. It reduces harmonics especially the 11th and 13th and the harmonic characteristic becomes almost equivalent to a 24-pulse rectifier. Theoretical analysis of the combined 12-pulse diode rectifier with the auxiliary supply is presented and a control method of the auxiliary supply is proposed. The reduction in the input current harmonics is verified by simulation using software PSIM.

A Secondary Resonance Soft Switching Half Bridge DC-DC Converter with an Inductive Output Filter

  • Chen, Zhang-yong;Chen, Yong
    • Journal of Power Electronics
    • /
    • v.17 no.6
    • /
    • pp.1391-1401
    • /
    • 2017
  • In this paper, a secondary resonance half-bridge dc-dc converter with an inductive output filter is presented. The primary side of such a converter utilizes asymmetric pulse width modulation (APWM) to achieve zero-voltage switching (ZVS) of the switches, and clamps the voltage of the switch to the input voltage. In addition, zero current switching (ZCS) of the output diode is achieved by a half-wave rectifier circuit with a filter inductor and a resonant branch in the secondary side of the proposed converter. Thus, the switching losses and diode reverse-recovery losses are eliminated, and the performance of the converter can be improved. Furthermore, an inductive output filter exists in the converter reduce the output current ripple. The operational principle, performance analysis and design equation of this converter are given in this paper. The analysis results show that the output diode voltage stress is independent of the duty cycle, and that the voltage gain is almost linear, similar to that of the isolation Buck-type converter. Finally, a 200V~380V input, 24V/2A output experimental prototype is built to verify the theoretical analysis.

High Efficiency Resonant Flyback Converter using a Single-Chip Microcontroller (싱글칩 마이크로컨트롤러를 이용한 고효율 공진형 플라이백 전력변환기)

  • Jeong, Gang-Youl
    • Journal of IKEEE
    • /
    • v.24 no.3
    • /
    • pp.803-813
    • /
    • 2020
  • This paper presents a high efficiency resonant flyback converter using a single-chip microcontroller. The proposed converter primary performs the resonant switching by applying the asymmetrical pulse-width modulation (APWM) to the half-bridge power topology. And the converter secondary uses the diode flyback rectifier as its power topology and operates with the zero current switching (ZCS). Thus the proposed converter achieves high efficiency. The total structure of proposed converter is very simple because it uses a single-chip microcontroller and bootstrap circuit for its control and drive, respectively. First, this paper describes the converter operation according to each operation mode and shows its steady-state analysis. And the software control algorithm and drive circuits operating the proposed converter are explained. Then, the operation characteristics of proposed converter are shown through the experimental results of an implemented prototype based on each explanation.