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New Modulation Method and Control Strategies for Power Electronics Inverters

机译:电力电子逆变器的新型调制方法和控制策略

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摘要

The DC to AC power Converters (so-called Inverters) are widely used in industrial applications. The MLIs are becoming increasingly popular in industrial apparatus aimed at medium to high power conversion applications. In comparison to the conventional inverters, they feature superior characteristics such as lower total harmonic distortion (THD), higher efficiency, and lower switching voltage stress.;Nevertheless, the superior characteristics come at the price of a more complex topology with an increased number of power electronic switches. The increased number of power electronics switches results in more complicated control strategies for the inverter. Moreover, as the number of power electronic switches increases, the chances of fault occurrence of the switches increases, and thus the inverter's reliability decreases. Due to the extreme monetary ramifications of the interruption of operation in commercial and industrial applications, high reliability for power inverters utilized in these sectors is critical. As a result, developing simple control strategies for normal and fault-tolerant operation of MLIs has always been an interesting topic for researchers in related areas. The purpose of this dissertation is to develop new control and fault-tolerant strategies for the multilevel power inverter. For the normal operation of the inverter, a new high switching frequency technique is developed.;The proposed method extends the utilization of the dc link voltage while minimizing the dv/dt of the switches. In the event of a fault, the line voltages of the faulty inverters are unbalanced and cannot be applied to the 3-phase loads.;For the faulty condition of the inverter, three novel fault-tolerant techniques are developed. The proposed fault-tolerant strategies generate balanced line voltages without bypassing any healthy and operative inverter element, makes better use of the inverter capacity and generates higher output voltage. These strategies exploit the advantages of the Selective Harmonic Elimination (SHE) and Space Vector Modulation (SVM) methods in conjunction with a slightly modified Fundamental Phase Shift Compensation (FPSC) technique to generate balanced voltages and manipulate voltage harmonics at the same time. The proposed strategies are applicable to several classes of MLIs with three or more voltage levels.
机译:直流到交流电源转换器(所谓的逆变器)广泛用于工业应用。在针对中高功率转换应用的工业设备中,MLI变得越来越流行。与传统逆变器相比,它们具有优越的特性,例如更低的总谐波失真(THD),更高的效率和更低的开关电压应力。;尽管如此,这些优越的特性是以更复杂的拓扑为代价的,因为拓扑数量增加了电力电子开关。电力电子开关数量的增加导致逆变器的控制策略更加复杂。而且,随着电力电子开关的数量增加,开关发生故障的机会增加,因此逆变器的可靠性降低。由于商业和工业应用中操作中断的极端经济后果,这些领域中使用的功率逆变器的高可靠性至关重要。因此,为MLI的正常和容错操作开发简单的控制策略一直是相关领域研究人员关注的主题。本文的目的是为多电平功率逆变器开发新的控制和容错策略。对于逆变器的正常运行,开发了一种新的高开关频率技术。所提出的方法在最小化开关的dv / dt的同时扩展了直流链路电压的利用。发生故障时,故障逆变器的线路电压不平衡,不能施加到三相负载上。针对逆变器的故障状况,开发了三种新颖的容错技术。所提出的容错策略可产生平衡的线路电压,而不会绕过任何正常运行的逆变器元件,可更好地利用逆变器容量并产生更高的输出电压。这些策略充分利用了选择性谐波消除(SHE)和空间矢量调制(SVM)方法的优势,以及经过略微修改的基本相移补偿(FPSC)技术,可生成平衡电压并同时控制电压谐波。提出的策略适用于具有三个或三个以上电压电平的几类MLI。

著录项

  • 作者

    Aleenejad, Mohsen.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Electrical engineering.;Energy.;Engineering.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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