Comparative Evaluation of Harmonic Performance, Loss, and DC-Link Balancing Characteristics of Continuous and Discontinuous PWM for Phase-Leg Stacked Inverters

The phase-leg stacked PWM inverter generates multiphase voltages from a single stacked leg using a segmented dc link and ac-side dc-blocking capacitors. This paper compares six two-level PWM methods: SPWM, SVPWM, 60°&30° DPWM, +30°&−30° DPWM, DPWMMAX, and DPWMMIN. They are classified as continuous, asymmetric-clamping, and symmetric-clamping PWM and evaluated for current harmonics, switching frequency, semiconductor loss, dc-link ripple, and balancing dynamics. Results from a 450-V three-stack three-phase prototype show that continuous PWM gives lower current distortion and better balancing at low modulation indices. DPWM reduces the average switching frequency by about one-third and improves light- and medium-load efficiency. DPWMMAX and DPWMMIN offer the best compromise between loss reduction and stable dc-link regulation without clamp-type alternation. PWM selection guidelines are presented according to modulation index, load power factor, and operating objective.

Authors

Publication Details

Journal
The Transactions of The Korean Institute of Electrical Engineers
Published
2026-09-28
DOI
https://doi.org/10.5370/kiee.2026.75.9.2289
Primary Topic
Multilevel Inverters and Converters
Type
article
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article

Comparative Evaluation of Harmonic Performance, Loss, and DC-Link Balancing Characteristics of Continuous and Discontinuous PWM for Phase-Leg Stacked Inverters

Min-Sup Song, Jaewon Kim, Hosung Jung, Dongho Choi et al.
The Transactions of The Korean Institute of Electrical Engineers
Multilevel Inverters and Converters
article

Comparative Evaluation of Harmonic Performance, Loss, and DC-Link Balancing Characteristics of Continuous and Discontinuous PWM for Phase-Leg Stacked Inverters

Min-Sup Song, Jaewon Kim, Hosung Jung, Dongho Choi, Hyungchul Kim
article en

Abstract

The phase-leg stacked PWM inverter generates multiphase voltages from a single stacked leg using a segmented dc link and ac-side dc-blocking capacitors. This paper compares six two-level PWM methods: SPWM, SVPWM, 60°&30° DPWM, +30°&−30° DPWM, DPWMMAX, and DPWMMIN. They are classified as continuous, asymmetric-clamping, and symmetric-clamping PWM and evaluated for current harmonics, switching frequency, semiconductor loss, dc-link ripple, and balancing dynamics. Results from a 450-V three-stack three-phase prototype show that continuous PWM gives lower current distortion and better balancing at low modulation indices. DPWM reduces the average switching frequency by about one-third and improves light- and medium-load efficiency. DPWMMAX and DPWMMIN offer the best compromise between loss reduction and stable dc-link regulation without clamp-type alternation. PWM selection guidelines are presented according to modulation index, load power factor, and operating objective.

The Transactions of The Korean Institute of Electrical EngineersVol. 75(9)
Affordable and clean energy
Openalex Percentile: Top 22%
Multilevel Inverters and Converters
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Comparative Evaluation of Harmonic Performance, Loss, and DC-Link Balancing Characteristics of Continuous and Discontinuous PWM for Phase-Leg Stacked Inverters — Min-Sup Song, Jaewon Kim, et al. · The Transactions of The Korean Institute of Electrical Engineers (2026) | TGRS Research Map | TGRS