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Article

Impact of Winding Topology on Magnetic Field Quality and Fault Tolerance in Six-Phase Induction Machines †

1
Department of Electrical Engineering, Technical University of Moldova, Str. 31 August 1989, 78, MD-2012 Chisinau, Moldova
2
Department of Energy Utilisation, Electrical Drives and Industrial Automation, Faculty of Electrical Engineering, “Gheorghe Asachi” Technical University of Iasi, Bd. Dimitrie Mangeron, 21–23, 700050 Iasi, Romania
3
Department of Power Engineering, Faculty of Electrical Engineering, “Gheorghe Asachi” Technical University of Iasi, Bd. Dimitrie Mangeron, 21–23, 700050 Iasi, Romania
*
Author to whom correspondence should be addressed.
This paper is an extended version of the paper published in the 15th International Conference on Electromechanical and Energy Systems (SIELMEN 2025), Chisinau, Moldova, 16–17 October 2025.
Technologies 2026, 14(9), 542; https://doi.org/10.3390/technologies14090542
Submission received: 23 June 2026 / Revised: 20 August 2026 / Accepted: 25 August 2026 / Published: 1 September 2026

Abstract

The main scope of this research was to complete and validate the analysis of stator winding topologies of six-phase AC machines using the winding quality factor by determining fault tolerance and validating it through experimental tests. This paper proposes a unified and practical methodology for evaluating the performance of stator windings in six-phase induction machines, with emphasis on magnetic field quality and fault-tolerant operation. The approach combines analytical modeling of the magnetomotive force (MMF) with its graphical representation using the MMF polygon, enabling an efficient assessment of harmonic content through a global indicator, referred to as the winding quality factor. Several representative winding topologies are analyzed within a common framework, including single-layer and double-layer configurations with full-pitch and short-pitch coils, suitable for generating homologous series of six-phase machines. The study considers both normal operating conditions and post-fault regimes, particularly operation with a single three-phase set. The results reveal the strong influence of winding topology on harmonic distortion and overall machine performance, highlighting the trade-offs between magnetic field quality and fault tolerance. It is shown that appropriate winding design can reduce spatial harmonics and improve robustness under degraded operating conditions. The theoretical findings are validated through experimental investigations, demonstrating good agreement between analytical predictions and measured data. A parallel analysis was performed between the theoretical findings and experimental data, and the results conform to the authors’ expectations.
Keywords: induction machine; six-phase windings; winding quality factor; fault tolerance; harmonic analysis; MMF polygon induction machine; six-phase windings; winding quality factor; fault tolerance; harmonic analysis; MMF polygon

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MDPI and ACS Style

Todos, P.; Tertea, G.; Nucă, I.; Cazac, V.; Nițucă, C.; Dragomir, A. Impact of Winding Topology on Magnetic Field Quality and Fault Tolerance in Six-Phase Induction Machines. Technologies 2026, 14, 542. https://doi.org/10.3390/technologies14090542

AMA Style

Todos P, Tertea G, Nucă I, Cazac V, Nițucă C, Dragomir A. Impact of Winding Topology on Magnetic Field Quality and Fault Tolerance in Six-Phase Induction Machines. Technologies. 2026; 14(9):542. https://doi.org/10.3390/technologies14090542

Chicago/Turabian Style

Todos, Petru, Ghenadie Tertea, Ilie Nucă, Vadim Cazac, Costică Nițucă, and Alin Dragomir. 2026. "Impact of Winding Topology on Magnetic Field Quality and Fault Tolerance in Six-Phase Induction Machines" Technologies 14, no. 9: 542. https://doi.org/10.3390/technologies14090542

APA Style

Todos, P., Tertea, G., Nucă, I., Cazac, V., Nițucă, C., & Dragomir, A. (2026). Impact of Winding Topology on Magnetic Field Quality and Fault Tolerance in Six-Phase Induction Machines. Technologies, 14(9), 542. https://doi.org/10.3390/technologies14090542

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