Publication
Seung-min Jung, Minseong Kim, Do-Hyeon Kim, and June-Seok Lee, "Linear Modulation Range and Harmonic Characteristics of Zero-Sequence PWM Methods for Five-Leg Voltage Source Inverter Fed Dual-Motor Drives", The Transactions of the Korean Institute of Electrical Engineers, In Press.
In Press
2026
PEEMS
-
Jun. 29, 2026
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1. Authors: Seung-min Jung, Minseong Kim, Do-Hyeon Kim, and June-Seok Lee
2. Title: Linear Modulation Range and Harmonic Characteristics of Zero-Sequence PWM Methods for Five-Leg Voltage Source Inverter Fed Dual-Motor Drives
3. Journal: The Transactions of the Korean Institute of Electrical Engineers
4. Vol/no/pp: In Press.
5. Date: In Press.
6. Abstract
: This paper analyzes and compares two carrier-based zero-sequence pulse-width modulation (PWM) methods, Double-Zero-Sequence (DZS) PWM and Common-Zero-Sequence (CZS) PWM, for dual-motor drives fed by a five-leg voltage-source inverter (FLVSI). Although both methods use offset-voltage injection to expand the linear modulation range and reduce output-voltage harmonics, their performance depends on the phase difference between the voltage vectors of each motor. To compare the two methods, the linear modulation ranges are derived based on the pole-voltage references of each method. In addition, the zero-vector dwell-time allocation is analyzed with respect to the phase difference. The analysis shows that CZS PWM provides a wider linear modulation range and lower output-voltage harmonics than DZS PWM at small phase differences. However, as the phase difference increases, the modulation characteristics of the two methods become comparable.
- Jul. 14, 2026 Jun-Yeop Seo, Han-Vit Kim, and June-Seok Lee, "A Highly Linear Overmodulation Method for Dual Inverter with an Isolated DC Bus Considering Phase Voltage and Current THD Reduction", The Transactions of the Korean Institute of Electrical Engineers, In Press.
- Jun. 22, 2026 Hye-Won Kang, Joon-Seok Kim, and June-Seok Lee, "Voltage-Error-Based Angular Compensation for Torque Accuracy Improvement in IPMSM Drives", in Proc. 2026 IPEC
