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Dr. Sreeram T S

Assistant Professor, Department of Electrical and Electronics Engineering, School of Engineering, Coimbatore

Qualification: B. Tech., M.Tech., Ph.D
@amrita.edu
Research Interest: Cyber-attacks in power systems, Power system state estimation, Smart grids and energy management systems, Stability analysis of microgrids

Bio

Dr. Sreeram T S completed B.Tech in Electrical and Electronics Engineering from Mar Athanasius College of Engineering Kothamangalam, M.Tech in Energy Systems Engineering from IIT Bombay and Ph.D. in Electrical Engineering from IIT Madras. His Ph.D. thesis title is “Selection of measurements for defense against false data injection attacks targeting power system state estimation”. His major research interests include

1. Cyber-attacks in power systems
2. Power system state estimation
3. Smart grids and energy management systems
4. Stability analysis of microgrids

Before joining Amrita, Dr. Sreeram T S worked as an ad-hoc faculty at NIT Calicut. He was a teaching assistant for NPTEL course DC Power Transmission Systems (Dr. S. Krishna). He is a reviewer for IEEE Transactions on Smart Grids.

Publications

Journal Article

Year : 2021

Protection against false data injection attacks considering degrees freedom in attack vectors

Cite this Research Publication : T. S. Sreeram and S. Krishna, “Protection against false data injection attacks considering degrees freedom in attack vectors,” IEEE Trans. Smart Grid, vol. 12, no. 6, pp. 5258-5267, 2021.

Publisher : IEEE Trans. Smart Grid

Year : 2019

Managing False Data Injection Attacks During Contingency of Secured Meters

Cite this Research Publication : T. S. Sreeram and S. Krishna, “Managing False Data Injection Attacks During Contingency of Secured Meters,” IEEE Trans. Smart Grid, vol. 10, no. 6, pp. 6945–6953, 2019.

Publisher : IEEE Trans. Smart Grid

Year : 2017

Hopf bifurcation analysis in droop controlled islanded microgrids

Cite this Research Publication : T. S. Sreeram, D. K. Dheer, S. Doolla, and S. Singh, “Hopf bifurcation analysis in droop controlled islanded microgrids,” Int. J. Electr. Power Energy Syst., vol. 90, pp. 208–224, 2017.

Publisher : Int. J. Electr. Power Energy Syst

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