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Saravanakumar Thangavel | Control systems | Best Researcher Award

Posted on 29/01/202531/01/2025 by ScienceFather

Dr. Saravanakumar Thangavel | Control systems | Best Researcher Award

Assistant Professor, SRM Institute of Science and Technology (Deemed to be University), Kattankulathur, Chennai, India 

Dr. T. Saravanakumar is an expert in Mathematics with a focus on control systems, currently an Assistant Professor at SRM Institute of Science and Technology. He holds a Ph.D. in Mathematics (Control Systems) from Anna University. With diverse experience as a postdoctoral researcher in South Korea and Vietnam, he has contributed significantly to robust stabilization and finite-time stability in dynamical systems. Dr. Saravanakumar has published numerous research articles in high-impact journals and serves on various editorial boards. His professional journey spans from guest faculty roles to assistant professorship, reflecting his expertise in both academia and research.

 

Publication Profile

Google Scholar

🎓 Education

Ph.D. in Mathematics (Control Systems), Anna University, Coimbatore (2018). M.Phil. in Mathematics, Sri Ramakrishna Mission Vidyalaya College of Arts & Science, Coimbatore (2012). M.Sc. in Mathematics, Bharathiar University, Coimbatore (2010). B.Sc. in Mathematics, Gobi Arts & Science College, Coimbatore (2008) Dr. Saravanakumar’s academic qualifications showcase his deep involvement in the study of control systems and dynamical systems. His Ph.D. thesis focused on robust stabilization, and his M.Phil. project addressed controllability in impulsive systems.

💼 Experience

Assistant Professor, SRM Institute of Science and Technology, Chennai (Sep 2024-Present). Post-Doctoral Researcher, Pukyong National University, South Korea (Nov 2023-Jul 2024). Post-Doctoral Researcher, Kyungpook National University, South Korea (Sep 2022-Sep 2023). Post-Doctoral Researcher, Jeonbuk National University, South Korea (Sep 2021-Aug 2022). IM Simons Post-Doctoral Fellowship, Vietnam Academy of Science and Technology (Dec 2019-Mar 2021) Dr. Saravanakumar’s professional experience spans several prestigious institutions, where he applied his expertise in mathematical modeling, quantum computing, and electronic engineering in various postdoctoral roles before transitioning to his current academic position.

🏆 Awards & Honors

Research Excellence Award, GEU, Dehradun (2015). Early Career Research Award, SERB (2017). DST Travel Grant, USA (2012). Membership, International Association of Advanced Materials (IAAM). Best Paper Presentation, TriboIndia-2023, NIT Srinagar (2023) These accolades reflect Dr. Saravanakumar’s commitment to advancing research in control systems and mathematical applications. His research contributions have earned him recognition in both national and international forums.

🔬 Research Focus

Robust Control Systems: Developing resilient techniques for systems under uncertainties. Finite-Time Stability: Studying control methods for stable operation in limited timeframes. Networked Control Systems: Investigating the stability and performance of systems over networks. Stochastic Switched Systems: Exploring control strategies for systems with random switching. His work combines advanced mathematical modeling with real-world applications, addressing complex issues in control systems and dynamical systems.

Publication Top Notes

    1. Title: Finite-time resilient reliable sampled-data control for fuzzy systems with randomly occurring uncertainties
      • Authors: R Sakthivel, T Saravanakumar, YK Ma, SM Anthoni
      • Year: 2017
      • Citations: 66
    1. Title: Finite-time dissipative based fault-tolerant control of Takagi–Sugeno fuzzy systems in a network environment
      • Authors: R Sakthivel, T Saravanakumar, B Kaviarasan, Y Lim
      • Year: 2017
      • Citations: 59
    1. Title: Dissipativity based repetitive control for switched stochastic dynamical systems
      • Authors: R Sakthivel, T Saravanakumar, B Kaviarasan, SM Anthoni
      • Year: 2016
      • Citations: 45
    1. Title: Resilient extended dissipative control for Markovian jump systems with partially known transition probabilities under actuator saturation
      • Authors: T Saravanakumar, SM Anthoni, Q Zhu
      • Year: 2020
      • Citations: 37
    1. Title: Finite-time sampled-data control of switched stochastic model with non-deterministic actuator faults and saturation nonlinearity
      • Authors: T Saravanakumar, NH Muoi, Q Zhu
      • Year: 2020
      • Citations: 35
    1. Title: Finite‐time reliable dissipative control of neutral‐type switched artificial neural networks with non‐linear fault inputs and randomly occurring uncertainties
      • Authors: T Saravanakumar, VJ Nirmala, R Raja, J Cao, G Lu
      • Year: 2020
      • Citations: 25
    1. Title: Finite-time extended dissipative based optimal guaranteed cost resilient control for switched neutral systems with stochastic actuator failures
      • Authors: Q Zhu, T Saravanakumar, S Gomathi, SM Anthoni
      • Year: 2019
      • Citations: 20
    1. Title: Non‐fragile reliable control synthesis of the sugarcane borer
      • Authors: R Sakthivel, T Saravanakumar, M Sathishkumar
      • Year: 2017
      • Citations: 15
    1. Title: Dissipative analysis for discrete‐time systems via fault‐tolerant control against actuator failures
      • Authors: T Saravanakumar, R Sakthivel, P Selvaraj, SM Anthoni
      • Year: 2016
      • Citations: 15
    1. Title: Hybrid‐driven‐based resilient control for networked T‐S fuzzy systems with time‐delay and cyber‐attacks
    • Authors: T Saravanakumar, TH Lee
    • Year: 2023
    • Citations: 14
Posted in: BiographyTagged: Adaptive Control, Automation, Bode Plot, Closed-Loop Systems, Control Algorithms, Control Engineering, Control Loop, Control Signal, Control System Analysis, Control System Applications, Control System Design, Control System Dynamics, Control System Performance, Control System Simulation, Control System Stability, Control Systems, Control Theory, Digital Control Systems, Feedback Control, Feedback Loop, Feedback Regulation, Frequency Domain Analysis, Industrial Control Systems, Kalman Filter, Linear Quadratic Regulator, Linear Systems, Linear Time-Invariant Systems, LQR, Model Predictive Control, Multivariable Control, Nonlinear Control Systems, Open-Loop Control, Optimal Control, PID Control, Pole-Zero Plot, Process Automation, Process Control, Real-Time Control, Robust Control, Stability, Stability Margins, State Feedback Control, State-Space Representation, System Behavior, System Feedback, System Identification, System Modeling, System Optimization, System Response, Time Domain Analysis, Transfer Functions

Sathishkumar Murugesan | Systems and Control Theory | Best Researcher Award

Posted on 29/01/202531/01/2025 by ScienceFather

Assist. Prof. Dr. Sathishkumar Murugesan | Systems and Control Theory | Best Researcher Award

Assistant Professor (Research), SRM Institute of Science and Technology (Deemed to be University)

Dr. Murugesan Sathishkumar is an Assistant Professor in the Department of Mathematics at SRM Institute of Science and Technology, India. He specializes in systems and control theory, focusing on robust control, fault-tolerant systems, and networked control applications. His work bridges mathematical modeling and practical engineering challenges, contributing significantly to fields like event-based control and cyber-security in systems.

 

Publication Profile

Google Scholar

Scopus Profile

🎓 Education

Dr. Sathishkumar holds a Ph.D. in Mathematics from Anna University (2018), focusing on robust control and filter designs. He also earned an M.Phil. and M.Sc. in Mathematics from Bharathiar University, securing first-class distinctions. His academic journey laid the foundation for his expertise in systems theory, differential equations, and control systems.

💼 Experience

Dr. Sathishkumar’s career includes positions as a post-doctoral researcher at National Cheng Kung University, Taiwan, and a research staff member at Tokyo Institute of Technology, Japan. He has over 7 years of teaching and research experience, contributing to academia through teaching, guiding research, and publishing extensively.

🏆 Awards & Honors

Dr. Sathishkumar has received numerous accolades, including the “Most Read Author” recognition by the International Journal of Adaptive Control and Signal Processing (2024) and several academic awards for excellence in research. His contributions have earned him the UGC-National Fellowship and certificates of merit throughout his academic career.

🔬 Research Focus

His research focuses on robust control, fault-tolerant systems, and secure networked control systems. Notably, his work addresses issues like resilience in multi-agent systems, cyber-attacks in networked control, and robust filtering techniques, with applications in various fields including biological pest control and complex systems synchronization.

Publication Top Notes

  • Synchronization and state estimation for stochastic complex networks with uncertain inner coupling
    • Authors: R Sakthivel, M Sathishkumar, B Kaviarasan, SM Anthoni
    • Year: 2017
    • Citation: 74

 

  • Non-fragile filtering for singular Markovian jump systems with missing measurements
    • Authors: M Sathishkumar, R Sakthivel, C Wang, B Kaviarasan, SM Anthoni
    • Year: 2018
    • Citation: 71

 

  • Finite-time mixed H∞ and passive filtering for Takagi–Sugeno fuzzy nonhomogeneous Markovian jump systems
    • Authors: M Sathishkumar, R Sakthivel, OM Kwon, B Kaviarasan
    • Year: 2017
    • Citation: 65

 

  • Mixed H∞ and passivity-based resilient controller for nonhomogeneous Markov jump systems
    • Authors: M Sathishkumar, R Sakthivel, F Alzahrani, B Kaviarasan, Y Ren
    • Year: 2019
    • Citation: 53

 

  • Hybrid-triggered reliable dissipative control for singular networked cascade control systems with cyber-attacks
    • Authors: M Sathishkumar, YC Liu
    • Year: 2020
    • Citation: 47

 

  • Resilient event-triggered fault-tolerant control for networked control systems with randomly occurring nonlinearities and DoS attacks
    • Authors: M Sathishkumar, YC Liu
    • Year: 2020
    • Citation: 32

 

  • Resilient finite-time distributed event-triggered consensus of multi-agent systems with multiple cyber-attacks
    • Authors: S Murugesan, YC Liu
    • Year: 2023
    • Citation: 28

 

  • Fault-tolerant sampled-data control of singular networked cascade control systems
    • Authors: R Sakthivel, M Sathishkumar, Y Ren, OM Kwon
    • Year: 2017
    • Citation: 24

 

  • Robust reliable dissipative filtering for Markovian jump nonlinear systems with uncertainties
    • Authors: R Sakthivel, M Sathishkumar, K Mathiyalagan, S Marshal Anthoni
    • Year: 2017
    • Citation: 24
  • LMI approach-based sampled-data control for uncertain systems with actuator saturation: application to multi-machine power system
    • Authors: S Santra, M Joby, M Sathishkumar, SM Anthoni
    • Year: 2022
    • Citation: 21

 

  • Resilient annular finite-time bounded and adaptive event-triggered control for networked switched systems with deception attacks
    • Authors: M Sathishkumar, YC Liu
    • Year: 2021
    • Citation: 21

 

  • Quantized finite-time non-fragile filtering for singular Markovian jump systems with intermittent measurements
    • Authors: S Rathinasamy, S Murugesan, F Alzahrani, Y Ren
    • Year: 2019
    • Citation: 21

 

 

Posted in: BiographyTagged: Adaptive Control, Autonomous Systems, Bode Plot, Closed-Loop Control, Control Algorithms, Control Design, Control Engineering, Control System Analysis, Control System Stability, Control Systems, Control Systems Design, Control Theory Applications, Digital Control Systems, Dynamic Systems, Feedback Control, Feedback Loops, Frequency Domain Analysis, Frequency Response, Industrial Control Systems, Kalman Filter, Linear Quadratic Regulator, Linear Systems, Linear Time-Invariant Systems, LQR, Lyapunov Stability, Lyapunov’s Direct Method, Model Predictive Control, Multivariable Control, Nonlinear Dynamics, Nonlinear Systems, Open-Loop Control, Optimal Control, Optimal Feedback, PID Controllers, Pole-Zero Plot, Real-Time Control, Robust Control, Stability Analysis, Stability Margins, State Feedback, State-Space Analysis, System Behavior, System Dynamics, System Identification, System Modeling, System Optimization, System Simulation, System Stability, Systems and Control Theory, Time Domain Analysis, Transfer Functions

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