Improved single-zone overmodulation algorithm for space vector modulated inverters

Manoj Kumar Modi, G. Narayanan
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引用次数: 9

Abstract

Space vector modulated voltage-source inverters require an overmodulation algorithm for continuous control of line-side voltage during overmodulation and for a smooth transition from PWM to six-step mode. Overmodulation increases the dc bus utilisation of a voltage source inverter, but requires significantly higher computational effort than linear modulation. This paper proposes a novel single-zone overmodulation algorithm for two-level voltage-source inverters. The proposed algorithm treats the whole overmodulation zone as a single undivided zone for the purpose of voltage control. This overmodulation algorithm maintains proportionality between the reference voltage and applied voltage up to the six-step mode. The new algorithm is evaluated and compared, theoretically as well as experimentally, with the existing algorithms. The proposed single-zone algorithm decreases the computational effort significantly over the standard two-zone algorithm, but at the cost of moderate increase in harmonic distortion. Compared to the existing single-zone algorithm, the proposed algorithm is shown to reduce computational burden as well as harmonic distortion.
空间矢量调制逆变器的改进单区过调制算法
空间矢量调制电压源逆变器需要一种过调制算法,以便在过调制期间连续控制线侧电压,并从PWM平滑过渡到六步模式。过调制增加了电压源逆变器的直流母线利用率,但需要比线性调制高得多的计算量。提出了一种新的双电平电压源逆变器的单区过调制算法。该算法将整个过调制区视为一个不分割的电压控制区。这种过调制算法保持基准电压和施加电压之间的比例关系,直到六步模式。从理论上和实验上对新算法与现有算法进行了评价和比较。与标准的两区算法相比,本文提出的单区算法显著减少了计算量,但代价是谐波失真适度增加。与现有的单区域算法相比,该算法减少了计算量和谐波失真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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