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April 23, 2026COMPEL The International Journal for Computation and Mathematics in Electrical and Electronic Engineering0 citations

Post-fault direct torque control strategy for eight-switch three-phase NPC inverter-fed induction motor drives

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ZMZouhaira Ben MahmoudAKAdel Khedher

Key Points

  • The aim is to enhance post-fault performance of induction motor drives using a novel direct torque control scheme.
  • Developed three new look-up tables for the eight-switch three-phase inverter.
  • Utilized a hysteresis comparator to balance DC-link capacitor voltages.
  • Implemented strategies for reducing torque ripple and minimizing common-mode voltage fluctuations.
  • The proposed DTC strategy significantly reduces torque ripple and maintains voltage balance.
  • Simulation studies confirm the effectiveness of the look-up tables and control mechanisms.
  • Common-mode voltage is effectively confined within ± Vdc/6.

Abstract

Purpose This work aims to propose a novel post-fault direct torque control (DTC) scheme for induction motor drives supplied by an eight-switch three-phase inverter (ESTPI), implemented through the design of three new look-up tables. Design/methodology/approach A comprehensive analysis is performed to evaluate the effect of each voltage vector generated by the ESTPI on the stator flux, electromagnetic torque, DC-link capacitor voltages and common-mode voltage (CMV). To mitigate the capacitor voltage imbalance, a dedicated hysteresis comparator is incorporated to regulate the voltage difference between the DC-link capacitors. Torque ripple is reduced by eliminating vectors responsible for excessive torque pulsations, while CMV variations are minimized through the creation of two virtual vectors that replace those generating high CMV levels, effectively confining CMV within ± Vdc/6. Findings The validity and effectiveness of the proposed DTC strategy are confirmed through extensive simulation studies. By introducing three redesigned look-up tables and incorporating dedicated control mechanisms, namely, a hysteresis comparator for neutral point voltage (NPV) balance, the removal of torque-inducing vectors and the use of virtual vectors to constrain CMV, the proposed approach significantly enhances the drive’s post-fault performance. Originality/value The ESTPI, obtained by reconfiguring a faulty three-level NPC inverter, enables robust post-fault operation by maintaining balanced power delivery, reducing circuit complexity and preserving acceptable output voltage levels. However, when feeding induction motor drives, the performance of the ESTPI can be hindered by several critical challenges, including DC-link capacitor voltage imbalance, elevated torque ripple and fluctuations in CMV. Simultaneously addressing these issues is crucial to ensure stable, efficient and reliable motor-drive operation under fault conditions.

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Cite This Study

Mahmoud et al. (2026) studied this question.

synapsesocial.com/papers/69e9b80e85696592c86eb756https://doi.org/10.1108/compel-12-2025-0602
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Direct Torque Control of Induction Motor with Common-Mode Voltage Elimination2016 · 11 citations
  2. 2Direct power control with common mode voltage reduction of grid‐connected three‐level NPC inverter2018 · 26 citations
  3. 3Two modified SVPWM algorithms for common‐mode voltage reduction in eight‐switch three‐phase inverters2017 · 18 citations
  4. 4A novel DTC scheme for a sensorless five-phase IM drive under open-phase fault2019 · 7 citations
  5. 5Open-Phase Fault-Tolerant DTC Technique for Three-Level NPC VSI-Fed Five-Phase Induction Motor Drives2022 · 30 citations