Three-phase induction motors are widely used in industrial settings to drive various types of machinery and manufacturing processes. Squirrel cage motors, in particular, are the most commonly employed due to their robustness and versatility. Throughout their operational lifespan, these motors are exposed to a variety of mechanical and electrical stressors that can compromise their performance. To ensure reliability and avoid unplanned shutdowns that may disrupt production, a monitoring system capable of detecting anomalies in the motor's operational parameters was developed. This system records temperature in the windings, measures stator vibration, and collects electrical variables at the motor terminals. The proposed solution is implemented in a test bench designed for integration with an industrial-grade platform and serves as a training tool for engineering students.

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Implementation of a Predictive Monitoring and Diagnostic System for the Operating Conditions of an Induction Motor

  • Mauricio Aarón Pérez-Romero,
  • Brenda Cecilia Montes-Perez,
  • Armando Josué Piña-Díaz,
  • Alejandra Armenta-Molina

摘要

Three-phase induction motors are widely used in industrial settings to drive various types of machinery and manufacturing processes. Squirrel cage motors, in particular, are the most commonly employed due to their robustness and versatility. Throughout their operational lifespan, these motors are exposed to a variety of mechanical and electrical stressors that can compromise their performance. To ensure reliability and avoid unplanned shutdowns that may disrupt production, a monitoring system capable of detecting anomalies in the motor's operational parameters was developed. This system records temperature in the windings, measures stator vibration, and collects electrical variables at the motor terminals. The proposed solution is implemented in a test bench designed for integration with an industrial-grade platform and serves as a training tool for engineering students.