Optimal Pulse-Width Modulation for Three-Level Inverters

Оптимальная широтно-импульсная модуляция для трехуровневых инверторов
D.G. Holmes, Thomas Brückner
2005-01-01

average switching frequencycontinuous pulse-width modulationdiscontinuous pulse-width modulationneutral-point voltage balancingthree-level neutral-point-clamped inverter
The three-level neutral-point-clamped voltage source inverter is widely used in high power, medium voltage applications. This paper studies continuous and discontinuous pulse-width modulation for this inverter. Detailed analysis of discontinuous modulation shows that the average switching frequency is not directly proportional to the carrier or sampling frequency, since additional switching transitions occur between different regions of discontinuity. At typical switching frequencies for high power applications (up to 2 kHz) these additional transitions contribute significantly to the inverter's total losses, so that a proper comparison of the harmonic performance can only be carried out under constant loss conditions with varying carrier frequency. This comparison is performed for a typical industrial medium voltage inverter. The paper then considers the major issues of neutral-point voltage balancing and loss distribution within the inverter, for the identified optimal modulation schemes.
1
At typical high-power switching frequencies (up to 2 kHz), additional transitions in discontinuous modulation significantly increase total inverter losses.
2
Discontinuous PWM for three-level neutral-point-clamped inverters has average switching frequency not directly proportional to carrier or sampling frequency due to extra transitions between discontinuity regions.
3
Harmonic performance comparisons must be made under constant loss conditions with varying carrier frequency to be fair, because losses vary with modulation discontinuities.
4
The paper identifies optimal modulation schemes for a typical industrial medium-voltage inverter and analyzes their implications for neutral-point voltage balancing and loss distribution.

Three-level neutral-point-clamped (NPC) voltage-source inverter used in high-power medium-voltage applications

Pulse-width modulation strategies (continuous and discontinuous PWM) optimization including effects on switching transitions, average switching frequency, harmonic performance under constant-loss conditions, neutral-point voltage balancing, and loss distribution

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2005-01-01
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D.G. Holmes
Thomas Brückner
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