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Special Issue Paper

Advances in Space Vector Modulation Techniques for Multilevel Inverters: A Comprehensive Review

Zifan Lin1Xinan Zhang1( )Jianguo Zhu2( )Wenxiang Du1Jiahan Ye1Yang Bai1
School of Engineering, The University of Western Australia, WA 6009, Australia
School of Electrical and Computer Engineering, The University of Sydney, NSW 2006, Australia
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Abstract

Space-vector modulation (SVM) is widely used in multilevel inverters because of its ability to improve DC bus utilization, reduce harmonic distortion, and enhance operational flexibility. However, the increasing complexity of multilevel inverter topologies, such as neutral-point clamped, cascaded H-bridge, and modular multilevel converters, presents challenges in terms of computational efficiency, neutral-point voltage balancing, and common-mode voltage suppression. A detailed review of SVM techniques is provided, including traditional methods and advanced variants such as carrier-based SVM, selective harmonic elimination SVM, and virtual SVM. Additionally, recent hybrid approaches that combine multiple strategies to address specific performance requirements are discussed. The findings highlight advancements in improving the modulation performance, reducing switching losses, and achieving better harmonic attenuation. A discussion of the future challenges and opportunities for multilevel inverter modulation strategies is concluded.

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Chinese Journal of Electrical Engineering
Pages 63-77

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Cite this article:
Lin Z, Zhang X, Zhu J, et al. Advances in Space Vector Modulation Techniques for Multilevel Inverters: A Comprehensive Review. Chinese Journal of Electrical Engineering, 2025, 11(2): 63-77. https://doi.org/10.23919/CJEE.2025.000146

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Received: 05 February 2025
Revised: 09 June 2025
Accepted: 15 June 2025
Published: 30 June 2025
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