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Applying Reduced General Direct Space Vector Modulation Approach of AC–AC Matrix Converter Theory to Achieve Direct Power Factor Controlled Three-Phase AC–DC Matrix Rectifier

机译:应用AC-AC矩阵变换器理论的简化通用直接空间矢量调制方法实现功率因数控制的三相AC-DC矩阵整流器

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This paper presents a novel approach to achieve both tight dc voltage regulation and direct power factor control by applying general direct space vector modulation (G-SVM) of matrix converter theory to a three-phase ac–dc matrix rectifier. The reduced form of G-SVM and the derivation of the three-phase ac–dc matrix rectifier from a three-phase ac–ac matrix converter are described and theoretically justified. The proposed matrix converter features intrinsic buck conversion, tight output voltage regulation via modulation, inherent capability of four-quadrant operation, elimination of the bulky storage component on the dc bus, and sinusoidal input current. Moreover, the reduced G-SVM-controlled three-phase ac–dc matrix rectifier can achieve leading, lagging, or unity input power factor by simple and direct control of the input current displacement angle. This significantly benefits the potential application of the reduced G-SVM-controlled three-phase matrix rectifier to automotive, aircraft, ship, and other three-phase standby dc supplies. In these applications, the unity power factor control is indispensable when the dc load widely changes. Simulated and experimental verification for this strategy has been presented and discussed in this paper.
机译:本文提出了一种通过将矩阵转换器理论的通用直接空间矢量调制(G-SVM)应用于三相AC-DC矩阵整流器来实现严格的直流电压调节和直接功率因数控制的新颖方法。 G-SVM的简化形式以及从三相ac-ac矩阵转换器衍生出的三相ac-dc矩阵整流器的方法在理论上得到了描述和说明。提出的矩阵转换器具有固有的降压转换,通过调制的严格输出电压调节,四象限工作的固有能力,消除了直流总线上笨重的存储组件以及正弦输入电流。此外,减少的G-SVM控制的三相AC-DC矩阵整流器可通过简单直接地控制输入电流位移角来实现超前,滞后或单位输入功率因数。这极大地降低了G-SVM控制的三相矩阵整流器在汽车,飞机,轮船和其他三相备用直流电源中的潜在应用潜力。在这些应用中,当直流负载变化很大时,单位功率因数控制是必不可少的。本文对此策略进行了仿真和实验验证。

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