ANSYS
Skilled PhD scholar specializing in magnetic bearings with extensive experience in innovative research and development. Proficient in electromagnetic theory, magnetic levitation with a proven track record of optimizing bearing configurations. Strong analytical problem-solving skills with practical industrial focus. Demonstrated excellence in collaboration across international and inter-departmental programs. Seeking to apply expertise in magnetic bearings for technological advancements in high-performance machinery.
Effective Communication
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COMSOL MULTIPHYSICS
MATLAB
SOLIDWORKS
AUTOCAD
SOLIDEDGE
· D. K. Supreeth, S. I. Bekinal, S. R. Chandranna, and M. Doddamani, "A Review of Superconducting Magnetic Bearings and Their Application," in IEEE Transactions on Applied Superconductivity, DOI:10.1109/TASC.2022.3156813, (Scopus Indexed, Q2) (SCI Impact factor:1.949)
· D. K. Supreeth, S. I. Bekinal, and S. R. Chandranna, "An Overview on Electrodynamic Bearings," in IEEE Access, DOI: 10.1109/ACCESS.2022.3176632, (Scopus Indexed, Q1) (SCI Impact factor:3.476)
· Amarsh Jalaik, D. K. Supreeth, S. I. Bekinal, S. R. Chandranna, and M. Doddamani, " Damping system for an optimized rotation magnetized direction permanent magnet thrust bearing," in Progress in Electromagnetics Research C, (Scopus Indexed).
· Supreeth D. K., S. I. Bekinal, R.C. Shivamurthy, Vijay G. S., and M. Doddamani, “Analysis of Rotation Magnetized Direction Permanent Magnet Thrust Bearing for Maximum Characteristics Using a Complete Generalized Optimization Procedure and a Computational Framework,” IEEE Access, vol. 11, no. July, pp. 84346–84359, 2023, doi: 10.1109/ACCESS.2023.3302255. (Scopus Indexed, Q1) (SCI Impact factor:3.476)