Sensors (May 2024)

Fault-Tolerant Control Based on Current Space Vectors against Total Sensor Failures

  • Cuong Dinh Tran,
  • Martin Kuchar,
  • Vojtech Sotola,
  • Phuong Duy Nguyen

DOI
https://doi.org/10.3390/s24113558
Journal volume & issue
Vol. 24, no. 11
p. 3558

Abstract

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This paper proposes a fault-tolerant control (FTC) strategy using the current space vectors to diagnose sensor failures and enhance the sustained operation of a field-oriented (FO) controlled induction motor drive (IMD). Three space vectors are established for the sensor fault diagnosis technique, including one converted from the measured currents and the other two calculated from the current estimation technique, respectively, measured and with reference speeds. A mixed mathematical model using three space vectors and their components is proposed to accurately determine the fault condition of each sensor in the motor drive. After determining the operating status of each sensor, if the sensor signal is in good condition, the feedback signal to the controller will be the measured signal; otherwise, the estimated signal will be used instead of the failed signal. Failure states of the various sensors were simulated to check the effectiveness of the proposed technique in the Matlab/Simulink environment. The simulation results are positive: the IMD system applying the proposed FTC technique accurately detected the failed sensor and maintained stability during the operation.

Keywords