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March 6, 2026International Journal of Automation Technology1 citationsOpen Access

Study on a Dual-Motor Synchronous Drive System Based on a TAB Converter

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YWYiying WangHebei University of EngineeringMLMingxian LiuHebei University of EngineeringDZDongyi ZhangHebei University of Engineering

Key Points

  • The primary aim is to address limitations of existing dual-motor systems and enhance synchronization performance.
  • Proposed an integrated dual-motor synchronous drive system with voltage conversion capability.
  • Developed speed-loop and torque-loop compensated PID control strategies.
  • Investigated phase-shift control for the triple-active bridge converter.
  • Conducted simulations and experiments to validate proposed methods.
  • Speed-loop compensated PID method significantly improves speed synchronization accuracy.
  • Torque-loop compensated PID control enhances overall synchronization performance.
  • Experimental results confirm the effectiveness of the new control strategies.

Abstract

This study addresses the limitations of conventional frequency converter-driven dual-motor systems, such as excessive space occupancy and power imbalance between the front and rear motors. An integrated dual-motor synchronous drive system is presented, integrating voltage conversion and variable-frequency functionality. Furthermore, this study proposes two cross-coupling synchronization strategies: a speed-loop compensated proportional integral derivative (PID) control and torque-loop compensated PID control. In accordance with the system architecture, phase-shift control for the triple active bridge converter and direct torque control for the motors are investigated. Under unbalanced load conditions, the proposed speed-loop compensated PID cross-coupling method replaces the conventional single-gain cross-coupling controller, significantly improving speed synchronization accuracy. The torque-loop compensated PID cross-coupled control further enhances synchronization performance. Both simulation and experimental results validate the accuracy and effectiveness of the proposed control strategies.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69aa7027531e4c4a9ff59b59https://doi.org/10.20965/ijat.2026.p0137
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