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Modeling and control of parallel three-phase PWM converters.

机译:并联三相PWM转换器的建模和控制。

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摘要

This dissertation studies modeling and control issues of parallel three-phase pulse-width modulated (PWM) converters. The converters include three-phase boost rectifiers, voltage source inverters, buck rectifiers and current source inverters.; The averaging of the parallel converters is performed based on a generic functional switching unit, which is called a phase leg in boost rectifiers and voltage source inverters, and a rail arm in buck rectifiers and current source inverters. Based on phase-leg and rail-arm averaging, the developed models are not only equivalent to the conventional three-phase converter models that are based on phase-to-phase averaging, but they also preserve common-mode information, which is critical in the analysis of the parallel converters. The models reveal such parallel dynamics as reactive power circulation and small-signal interaction.; A unique feature of the parallel three-phase converters is a zero-sequence circulating current. This work proposes a novel zero-sequence control concept that uses variable zero-vectors in the space-vector modulation (SVM) of the converters. The control can be implemented within an individual converter and is independent from the other control loops for the converter. Therefore, it greatly facilitates the design and expansion of a parallel system.; Proper operation of the parallel converters requires an explicit load-sharing mechanism. In order to have a modular design, a droop method is recommended. Traditionally, however, a droop method has to compromise between voltage regulation and load sharing. After parametric analysis, a novel droop method using a gain-scheduling technique is proposed. The numeric analysis shows that the proposed droop method can achieve both good voltage regulation and good load sharing.; An interleaving technique is often used in parallel converter systems in order to reduce current ripples. Because of its symmetrical circuit structure, the parallel three-phase converter system can reduce both differential-mode and common-mode noise with a center-aligned symmetrical SVM.; Based on the concept that a symmetrical circuit can reduce common-mode dv/dt noise, a conventional three-phase, four-leg inverter is modified so that its fourth leg is symmetrical to the other three legs. The common-mode dv/dt noise can be practically eliminated with a new modulation strategy. Meanwhile, with a modified control design, the new four-leg inverter still can handle low-frequency common-mode components that occur due to unbalanced and nonlinear load.
机译:本文研究了并联三相脉宽调制(PWM)转换器的建模和控制问题。转换器包括三相升压整流器,电压源逆变器,降压整流器和电流源逆变器。并行转换器的平均是基于通用功能开关单元执行的,该功能开关单元在升压整流器和电压源逆变器中称为相脚,在降压整流器和电流源逆变器中称为导轨臂。基于相支路和轨臂平均,开发的模型不仅等效于基于相间平均的常规三相转换器模型,而且还保留了共模信息,这对于并行转换器的分析。这些模型揭示了诸如无功功率循环和小信号相互作用之类的并行动力学。并联三相转换器的独特之处在于零序循环电流。这项工作提出了一种新颖的零序控制概念,该概念在转换器的空间矢量调制(SVM)中使用可变零矢量。该控制可以在单个转换器内实现,并且独立于该转换器的其他控制回路。因此,它极大地方便了并行系统的设计和扩展。并行转换器的正确运行需要明确的负载共享机制。为了具有模块化设计,建议采用下垂方法。然而,传统上,下垂方法必须在电压调节和负载共享之间折衷。经过参数分析,提出了一种采用增益调度技术的新型下垂方法。数值分析表明,所提出的下垂方法可以实现良好的电压调节和良好的负载分配。为了减少电流纹波,并行转换器系统中经常使用交错技术。由于其对称的电路结构,并联三相转换器系统可以通过中心对齐的对称SVM降低差模和共模噪声。基于对称电路可以降低共模dv / dt噪声的概念,对常规的三相四桥臂逆变器进行了修改,使其第四桥臂与其他三个桥臂对称。利用新的调制策略,实际上可以消除共模dv / dt噪声。同时,通过改进的控制设计,新的四臂逆变器仍然可以处理由于不平衡和非线性负载而产生的低频共模分量。

著录项

  • 作者

    Ye, Zhihong.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 167 p.
  • 总页数 167
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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