Publications :

Subash kumar C S., & Gopalakrishnan, V. (2013). Design of synchronous reference frame based harmonic detection and space vector pulse-width modulation based switching of shunt active filter. Australian Journal of Electrical and Electronics Engineering, 10(3), 362-370. 

Thangaprakash, S., Krishnan, A., Jothibasu, P., & Subash Kumar, C. S. (2011). Analysis of advanced pulse-width modulation schemes for Z-source inverters. Australian Journal of Electrical and Electronics Engineering, 8(2), 155-170. 

Subash Kumar  C. S., & Gopalakrishnan, D. V. (2013). Investigation of harmonic detection techniques for shunt active power filter. Journal of Electronics & Communication Engineering, 68-73. 

Subash Kumar C S., Gopalakrishnan, V., Dhanasekaran, R., & Vaikundaselvan, B. (2014). Digital Control of Space Vector Pulse Width Modulation Based Shunt Active Filter. In Applied Mechanics and Materials (Vol. 573, pp. 115-121). Trans Tech Publications Ltd.     

Subash Kumar C S., & Gopalakrishnan, V. (2015). Modified Synchronous Reference Frame based Harmonic Extraction for Shunt Active Filter. International Journal of Power Electronics and Drive Systems, 6(4). 

Subash kumar C S., & Gopalakrishnan, V. (2018). Digital implementation of modified phase locked loop based harmonic extraction for shunt active filter. Journal of Vibroengineering, 20(4), 1897-1906

Rajasekar, P., & Subash Kumar C. S. (2019). Implementation of Low Power Null Conventional Logic Function for Configuration Logic Block. Wireless Personal Communications, 107(4), 2231-2245.   

M. Venkatesan, C. S. Subash Kumar, M. Sathiyanathan (2020) A Step  by Step Design of PV System: A Research Approach for Engineering Graduates (Vol. 16. No-1,), 30-35

Arthanareeswaran, J., Karunanidhi, B., Muruganantham, S., Dhamodharan, A., & Swarnamma, Subash Kumar C S (2021). Automatic vehicle accident indication and reporting system for road ways using Internet of Things. International Journal of Safety and Security Engineering, 11(3), 269-277. 

Dinesh, M., Arvind, C., Sreeja Mole, S. S., Subash Kumar, C. S., Chandra Sekar, P., Somasundaram, K., & Sundramurthy, V. P. (2022). An energy efficient architecture for furnace monitor and control in foundry based on industry 4.0 using IoT. Scientific Programming, 2022, 1-8. 

Subash Kumar CS, & P, Rajasekar (2022). FPGA Implementation of optimum switching angle control for shunt active filter using ANNSVPWM. International Journal of Electronics, 109(9), 1532-1549. 

Rajasekar, P., Mangalam, H., & Subash Kumar, C. S. (2023). Logic Realization of Galois Field for AES SBOX using Quantum Dot Cellular Automata. The Journal of Supercomputing, 79(3), 3024-3054. 

Mani, V., Yarlagadda, S. R., Ravipati, S., & Subash Kumar C S. (2023). ANN Optimized Hybrid Energy Management Control System for Electric Vehicles. STUDIES IN INFORMATICS AND CONTROL, 32(1), 101-110. 

Chandra Sekar, P., Rajasekar, P., Suresh Kumar, S., Manivasagam, M. A., & Subash Kumar, C. S. (2023). Firefly Optimized Resource Control and Routing Stability in MANET. Engineering Proceedings, 59(1), 18. 


Book Chapters :

Battery Life and Electric Vehicle Range PredictionSmart Intelligent Systems for Industrial Applications, Scrivener and Wiley , 2020

Remaining Useful Life Prediction of Small and Large Signal Analog Circuit using Filtering Algorithms, Smart Intelligent Systems for Industrial Applications , Scrivener and Wiley , 2020

Conferences :

  Subash Kumar C S &Gopalakrishnan V. 2015  ‘Low pass Notch Fliter Based Phase Locking Scheme for Shunt Active Filter’, in the IEEE International Conference at Karpagam College of Engineering.

 Subash Kumar C S &Gopalakrishnan V2,013 ‘Comparison of Harmonic Detection Methods for Shunt Active filter’   JCT College of Engineering and Technology.

Subash Kumar C S &Gopalakrishnan V, 2013 ‘A Novel Adaptive Control Strategy for Shunt Active Power Filter’ Kathir College of Engineering.

Subash Kumar C S Online condition monitoring of induction motor using current signature analysis,  2019 National Conference on Communication Computing and System Design