Title :
Unbalance and harmonics detection in induction motors using an optical fiber sensor
Author :
Corres, Jesus M. ; Bravo, Javier ; Arregui, Francisco J. ; Matias, Ignacio R.
Author_Institution :
Univ. Publica de Navarra, Pamplona
fDate :
6/1/2006 12:00:00 AM
Abstract :
In this work, a new method for the detection of the negative effects of a particular unbalanced voltage and inverter harmonics on the performance of an induction motor using fiber sensors is proposed. Supplying a three-phase induction motor with unbalanced voltages causes an oscillating electromagnetic torque that generates vibrations, increased losses, efficiency reduction, and an extra temperature rise that leads to a reduction on insulation life of the machine. A new in-line fiber etalon accelerometer has been designed to detect these vibrations in the range DC-500 Hz. The in-line fiber etalon scheme used provides high robustness and stability, giving enough sensitivity to monitor the low-frequency and low-amplitude oscillations in the stator of the machine that exist in a voltage unbalance situation. To prove this claim, a 1.5-kW squirrel cage induction motor is analyzed under different unbalance levels. It is shown that a precise unbalance factor can be detected without accessing to the electric part of the machine and an accurate monitoring can be obtained using the high-resolution analysis proposed
Keywords :
fibre optic sensors; harmonic analysis; induction motors; stators; 1.5 kW; 500 Hz; Fabry-Perot interferometers; ILFE accelerometer; engine fault detection; fiber etalon accelerometer; harmonics detection; insulation life reduction; inverter harmonics; low-amplitude oscillations; low-frequency oscillations; machine stator; negative effect detection; optical fiber sensor; oscillating electromagnetic torque; three-phase induction motor; unbalance detection; unbalanced voltage; vibration detection; voltage unbalance situation; Condition monitoring; Electromagnetic induction; Induction generators; Induction motors; Inverters; Optical fiber sensors; Robust stability; Temperature sensors; Torque; Voltage; Engine fault detection; Fabry-PÉrot interferometers; ILFE accelerometer; induction motor; unbalanced voltage;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2006.874441