A Reduced Switching Loss Technique Based on Generalized Scalar PWM for Nine-Switch Inverters

Метод уменьшения потерь при переключении на основе обобщённой скалярной ШИМ для девятиключевых инверторов
Leonardo R. Limongi, Marcelo C. Cavalcanti, Felipe Correa de Andrade, Fabrício Bradaschia
2017-07-10

current peak trackinggeneralized scalar pulse width modulationloss distribution balancingnine-switch inverterreduced switching loss
For three-phase dual-output dc-ac conversion systems, the nine-switch inverter is one of the most versatile available topologies. Despite some disadvantages, recent studies show that the nine-switch inverter achieves efficiency values equivalent to or higher than its 12-switch counterpart, when operating in certain ranges of the modulation index and displacement angles. The use of proper pulse width modulation techniques is able to increase the efficiency even more, as well as to equalize the loss distribution among the switches, favoring an effective and low-cost thermal design. The available pulse width modulation techniques are complex and do not explore the full capacity of the nine-switch inverter to reduce its losses. For this reason, this paper proposes an unrestricted generalized scalar pulse width modulation for nine-switch inverters. Based on this new generalization, a current peak tracking technique is also proposed, achieving small average number of switchings and the highest overall efficiency when compared with other techniques, likewise a more balanced loss distribution among the switches. Experimental results are carried out to demonstrate the validity of the new generalization and the effectiveness of the proposed technique in reducing the switching losses.
1
A current peak tracking technique based on the generalization achieves a small average number of switchings.
2
An unrestricted generalized scalar PWM for nine-switch inverters is proposed to better reduce switching losses.
3
Existing PWM methods are complex and do not fully exploit nine-switch inverter's loss-reduction potential.
4
Experimental results validate the new generalization and confirm its effectiveness in reducing switching losses.
5
Nine-switch inverter can achieve efficiency equal or higher than 12-switch inverter in certain modulation index and displacement angle ranges.
6
Proper PWM techniques can increase efficiency and equalize loss distribution among switches, aiding low-cost thermal design.
7
The proposed method attains the highest overall efficiency and a more balanced loss distribution compared to other techniques.

Nine-switch inverter used in three-phase dual-output DC–AC conversion systems

A generalized scalar PWM technique and an associated current peak tracking method to reduce switching losses, minimize average switchings, and balance loss distribution, improving overall efficiency of the nine-switch inverter

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2017-07-10
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Authors
Leonardo R. Limongi
Marcelo C. Cavalcanti
Felipe Correa de Andrade
Fabrício Bradaschia
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