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Parallelling three-phase AC to DC converter using CUK rectifier modules based on power balance control technique

机译:使用基于功率平衡控制技术的CUK整流器模块的并联式三相AC-DC转换器

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The analysis and design of a paralleling three-phase ac to dc converter using CUK rectifier modules for DC Distributed Power System (DPS) applications are presented. The proposed control technique is used to obtain the three-inductor current compensators and to improve the dynamic response of the rectifier without affecting its steady-state performance and also to minimize total harmonic distortion (THDi) in the source current. As a result, the output voltage of the converter can withstand the variations of the dc load current and input voltage. The control method is employed in the voltage feedback loop. The implementation of this control circuit uses only analog circuitry. The experimental prototype has been built with a DC output voltage 248 V and output power 1.5 kW. Each converter operates in Continuous Conduction Mode together with hysteresis current control. The experimental results indicate that such scheme is effective and offers the good dynamic transient response. The results obtained are: power factor higher than 0.99 and THDi less than 3%. The system offers 88% efficiency and provides good inductor current sharing among the converter modules. The simulation and experimental results are presented to verify the feasibility of the control strategy.
机译:提出了使用CUK整流器模块对直流分布式电源系统(DPS)应用进行并联的三相AC-DC转换器的分析和设计。所提出的控制技术用于获得三电感电流补偿器,并在不影响其稳态性能的情况下改善了整流器的动态响应,并最大程度地减小了源电流中的总谐波失真(THDi)。结果,转换器的输出电压可以承受直流负载电流和输入电压的变化。在电压反馈回路中采用了控制方法。该控制电路的实现仅使用模拟电路。实验原型已构建为具有248 V的直流输出电压和1.5 kW的输出功率。每个转换器都在连续导通模式下与磁滞电流控制一起工作。实验结果表明,该方案是有效的,并提供了良好的动态瞬态响应。获得的结果是:功率因数高于0.99,THDi低于3%。该系统提供88%的效率,并在转换器模块之间提供良好的电感器电流共享。仿真和实验结果表明了该控制策略的可行性。

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  • 来源
    《Power Electronics, IET》 |2010年第4期|P.511-524|共14页
  • 作者

    Chunkag V.; Kamnarn U.;

  • 作者单位

    Department of Electrical Engineering, Faculty of Engineering, King Mongkut's University of Technology North Bangkok, Thailand;

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