Testing and Analysis of Induction Motor Electrical Faults Using Current Signature Analysis
- 1 Department of EEE, K.S.R. College of Engineering, Tiruchengode, India
- 2 Department of EEE, K.S.R. College of Engineering, Tiruchengode, India
Abstract
The proposed method deals with the emerging technique called as Motor Current Signature Analysis (MCSA) to diagnosis the stator faults of Induction Motors. The performance of the proposed method deals with the emerging technique called as Motor Current Signature Analysis (MCSA) and the Zero-Sequence Voltage Component (ZSVC) to diagnose the stator faults of Induction Motors. The unalleviated study of the robustness of the industrial appliances is obligatory to verdict the fault of the machines at precipitate stages and thwart the machine from brutal damage. For all kinds of industry, a machine failure escorts to a diminution in production and cost increases. The Motor Current Signature Analysis (MCSA) is referred as the most predominant way to diagnose the faults of electrical machines. Since the detailed analysis of the current spectrum, the method will portray the typical fault state. This paper aims to present dissimilar stator faults which are classified under electrical faults using MCSA and the comparison of simulation and hardware results. The magnitude of these fault harmonics analyzes in detail by means of Finite-Element Method (FEM). The anticipated method can effectively perceive the trivial changes too during the operation of the motor and it shows in the results.
- Yeh, C., Sayed, A. and Povinelli, R. (2007) A Reconfigureurable Motor for Experimental Emulation of Stator Winding Inter-Turn and Broken Bar Faults in Poly Phase Induction Machines. IEEE International Electric Machines & Drives Conference, Antalya, 3-5 May 2007, Vol. 2, 1413-1419. http://dx.doi.org/10.1109/IEMDC.2007.383636
- Penman, J., Sedding, H.G., Lloyd, B.A. and Fink, W.T. (1994) Detection and Location of Interturn Short Circuits in the Stator Windings of Operating Motors. IEEE Transactions on Energy Conversion, 9, 652-658. http://dx.doi.org/10.1109/60.368345
- Fenger, M., Susnik, M., Laderoute, P. and Thomson, W.T. (2003) Development of a Tool to Detect Faults in Induction Motors via Current Signature Analysis. Proceedings of Cement Industry Technical Conference, 4-9 May 2003, 37-46. http://dx.doi.org/10.1109/citcon.2003.1204707
- Neelam, M. and Dahiy, R. (2007) Motor Current Signature Analysis and its Applications in Induction Motor Fault Diagnosis. International journal of systems Applications, Engineering & Development, 2, 29-35.
- Messaoudi, M. and Sbita, L. (2010) Multiple Faults Diagnosis in Induction Motor Using the MCSA Method. International Journal of Signal and Image Processing, 1, 190-195.
- Jagadanand, G., Gopi, L., George, S. and Jacob, J. (2012) Inter-Turn Fault Detection in Induction Motor Using Stator Current Wavelet Decomposition. International Journal of Electrical Engineering and Technology (IJEET), 3, 103-122.
- Prakasam, K. and Ramesh, S. (2015) Investigation of Induction Motor Stator Faults Using Motor Current Signature Analysis and Multisim. Middle-East Journal of Scientific Research, 23, 277-284.
- Bhowmik, P.S., Pradhan, S. and Prakash, M. (2013) Fault Diagnostic and Monitoring Methods of Induction Motor—A Review. International Journal of Applied Control, Electrical and Electronics Engineering (IJACEEE), 1, 1-18.
- Bhardwaj, K. and Agarawal, A. (2012) Fault Diagnosis of Three Phase Induction Motor Using Fuzzy Logic Controller and Sequence Analyzer. International Journal of Electrical and Instrumentation Engineering, 2, 112-118.