Title :
Fault-Tolerant Rotor Position and Velocity Estimation Using Binary Hall-Effect Sensors for Low-Cost Vector Control Drives
Author :
Scelba, G. ; De Donato, G. ; Scarcella, Giuseppe ; Capponi, F. Giulii ; Bonaccorso, F.
Author_Institution :
Dept. of Electr., Electron. & Syst., Eng. Univ. of Catania, Catania, Italy
Abstract :
High-resolution position and velocity estimation algorithms based on binary Hall-effect sensors for low-cost vector control drives have been the subject of significant research in recent years. While different estimation algorithms have been proposed and analyzed, no contribution so far has dealt with Hall-effect sensor faults and their repercussion on the drive. Here, single and multiple Hall-effect sensor faults are analyzed, and a method to detect, identify, and mitigate such faults is investigated. The method is general, and it ensures proper operation of the drive and is not dependent on the particular estimation algorithm that is used; by way of example, here it will be applied to a vector-tracking observer. Limitations on the performances of the faulty system are discussed, and experimental results are reported to confirm the theoretical analysis.
Keywords :
Hall effect devices; fault tolerant control; machine vector control; motor drives; observers; rotors; sensors; binary Hall-effect sensors; fault detection; fault identification; fault mitigation; fault-tolerant rotor position estimation algorithm; fault-tolerant rotor velocity estimation algorithm; field-oriented control; low-cost vector control drives; vector-tracking observer; Fault detection; Fault diagnosis; Observers; Rotors; Sensors; Vectors; Fault compensation; Hall-effect; fault identification; fault tolerance; low resolution; vector control; vector-tracking observer (VTO);
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2014.2304616