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High performance power converter systems for nonlinear and unbalanced load/source.

机译:用于非线性和不平衡负载/源的高性能功率转换器系统。

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摘要

This dissertation covers three levels of issues and solutions dealing with unbalanced and/or nonlinear situations in power electronic systems, namely power converter level, power converter system level, and large-scale power electronics system level. At power converter level, after review of traditional PWM methods, especially two-dimensional space vector modulation schemes, three-dimensional space vector modulation schemes are proposed for four-legged voltage source converters, including inverters and rectifiers. The four-legged power converters with three-dimensional space vector modulation schemes have a better DC link voltage utilization and result in a low distortion. It is an effective solution to provide the neutral point for a three-phase four-wire system and to handle the neutral current due to unbalanced load or source and nonlinear loads. Comprehensive design guidelines for a four-legged inverter are presented. The four-legged rectifier is also presented which allows not only fault tolerant operation, but also provides the flexibility of equal resistance, equal current, or equal power operation under unbalanced source.; Average large-signal models of four-legged power converters in both the a-b-c and d-q-o coordinates are derived. Small signal models are obtained in the d-q-o rotating coordinates. Voltage control loops are designed in the d-q-o coordinates for a high power utility power supply. Performance is studied under various load conditions.; At the power converter system level, the load conditioner concept is proposed for high power applications. A power converter system structure is proposed which consists of a high-power low-switching frequency main inverter and a low-power high-switching frequency load conditioner. The load conditioner performs multiple functions, such as active filtering, active damping, and active decoupling with a high current control bandwidth. This hybrid approach allows the overall system to achieve high performance with high power and highly nonlinear loads.; At the large-scale power electronics system level, the nonlinear loading effect of load converters is analyzed for a DC distribution system. Two solutions to the nonlinear loading effect are presented. One is to confine the nonlinear load effect with the subconverter system, the other is to use a DC bus conditioner. The DC bus conditioner is the extension of the load conditioner concept.
机译:本论文涵盖了电力电子系统中不平衡和/或非线性情况的三个层次的问题和解决方案,即电力变换器级,电力变换器系统级和大规模电力电子系统级。在功率转换器级别,回顾了传统的PWM方法,尤其是二维空间矢量调制方案,提出了针对四脚电压源转换器(包括逆变器和整流器)的三维空间矢量调制方案。具有三维空间矢量调制方案的四足功率转换器具有更好的直流母线电压利用率,并且失真小。为三相四线制系统提供中性点并处理由于不平衡负载或电源和非线性负载而产生的中性电流是一种有效的解决方案。介绍了四脚逆变器的综合设计指南。还提出了四脚整流器,它不仅允许容错操作,而且还提供了在不平衡电源下等电阻,等电流或等功率工作的灵活性。推导了在a-b-c和d-q-o坐标下的四足功率转换器的平均大信号模型。在d-q-o旋转坐标中获得小信号模型。电压控制回路在d-q-o坐标中设计,用于大功率公用电源。在各种负载条件下研究性能。在功率转换器系统级别,提出了针对高功率应用的负载调节器概念。提出了一种由大功率低开关频率主逆变器和小功率高开关频率负载调节器组成的功率转换器系统结构。负载调节器执行多种功能,例如具有高电流控制带宽的有源滤波,有源阻尼和有源去耦。这种混合方法允许整个系统在高功率和高非线性负载下实现高性能。在大型电力电子系统级别,分析了直流配电系统中负载转换器的非线性负载效应。提出了两种非线性加载效应的解决方案。一种是通过子转换器系统限制非线性负载效应,另一种是使用直流母线调节器。 DC总线调节器是负载调节器概念的扩展。

著录项

  • 作者

    Zhang, Richard S.;

  • 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 1998
  • 页码 p.2441
  • 总页数 365
  • 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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