A new switching loss reduced discontinuous PWM scheme for a unidirectional three-phase/switch/level boost-type PWM (VIENNA) rectifier

J. Kolar, U. Drofenik
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引用次数: 41

Abstract

In this paper the applicability of discontinuous modulation for a three-phase/switch/level PWM rectifier system is investigated. As an analysis of the voltage formation of the system shows, the clamping in intervals (in each case, of one bridge leg to one bus of the DC output circuit) being characteristic for discontinuous modulation can occur in regions lying symmetrically around the maxims of the related phase currents. This results in a maximum reduction of the switching power loss. The increase of the effective pulse frequency (as compared to continuous modulation for equal switching losses) made possible thereby is calculated analytically. Furthermore, by digital simulation the RMS value of the mains current harmonics resulting for discontinuous modulation and increased pulse frequency is determined in dependency on the modulation depth. Also, it is compared to the harmonic characteristic for harmonic optimal continuous modulation. The load on the power semiconductors and on the output capacitors (characterized by the RMS value and the amplitude of the low-frequency harmonics of the capacitor current) is included into the comparison of the modulation methods. Finally, the time shape of the phase modulation functions (to be provided for the control of the voltage formation of the system based on a subharmonic oscillation method) for discontinuous modulation is calculated and the control of the potential of the output voltage center point is discussed.
一种用于单相三相/开关/电平升压型PWM (VIENNA)整流器的降低开关损耗的间断PWM新方案
本文研究了三相/开关/电平型PWM整流系统不连续调制的适用性。正如对系统电压形成的分析所显示的那样,作为不连续调制特征的间隔夹紧(在每种情况下,一个桥腿到直流输出电路的一个母线)可能发生在相关相电流最大值周围对称的区域。这样可以最大限度地降低开关功率损耗。有效脉冲频率的增加(与相等开关损耗的连续调制相比)由此可能得到解析计算。此外,通过数字仿真,确定了由间断调制和脉冲频率增加引起的电源电流谐波的均方根值与调制深度的关系。并与谐波最优连续调制的谐波特性进行了比较。功率半导体和输出电容上的负载(以电容电流的RMS值和低频谐波幅值为特征)被纳入调制方法的比较。最后,计算了不连续调制的相位调制函数(用于基于次谐波振荡方法控制系统电压形成)的时间形状,并讨论了输出电压中心点电位的控制。
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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