Room ECED-1 : 207
Email sakthi517@nitc.ac.in
Office Phone 04952286730
Mobile 9995335962
Home Address D-11B, NITC Staff Quarters, NIT Calicut
Areas Of Interest Digital Signal Processing, Multirate Filter Banks

Bachelor of Engineering 2000 Bharathidasan University, Trichirappalli,Tamilnadu

Master of Technology 2004 SASTRA University, Thanjavur,Tamilnadu

Doctor of Philosophy (PhD) 2018 National Institute of Technology, Calicut

1. Verification and Mapping of JTAG-based HSIO Interface tests to HSTAP- based tests 2022

2. Bit Width Optimization for WLAN Receiver for Die Size and Power Consumption Optimization & Experiments on Power Amplifier Linearization 2022

3. Filter Bank Multicarrier 2019

4. Subgraph Based Graph Filter Banks Using Energy Preserving Operator 2019

5. Design of a High performance I/O Accelerator Based on Transport Triggered Architecture 2012

6. ARM Based Embedded Web Server for Lab Remote Monitoring 2012

7. Portable Health Monitoring System 2012

8. Multi-User Detection Using Taguchi method for DS-CDMA systems 2008

Assistant Professor Dec 2006 to till date  NIT Calicut

Lecturer Jan 2005 to Nov 2006 2005 SASTRA University, Thanjavur, Tamilnadu,India

 

1.Sushmitha Sajeevu and V. Sakthivel , “ A Novel Low Complexity High Resolution Spectrum Hole Detection Technique for Cognitive Radio ”, Taylor & Francis : International Journal of Electronics, March 2023, https://doi.org/10.1080/00207217.2023.2192970

2. Parvathi A K and V. Sakthivel , “Low Complexity Multiplier-less Modified FRM Filter Bank using MPGBP Algorithm ”,  International Journal of Electronics and Telecommunications,  vol. 68, pp. 831-840, November 2022, https://doi.org/10.24425/ijet.2022.143892

3. Parvathi A K and V. Sakthivel , “Design of Sparse Uniform Linear Array Beamformer using Modified FRM Structure for Varied Applications ”,  International Journal of Electrical and Computer Engineering Systems,  vol. 13, pp. 695-700, October 2022, https://doi.org/10.32985/ijeces.13.8.9

4. Sushmitha Sajeevu and V. Sakthivel , “A Low Complexity and high modularity design for continuously variable bandwidth digital filters ”, Taylor & Francis : International Journal of Electronics - August 2022,    https://doi.org/10.1080/00207217.2022.2117856

5. Parvathi A K and V. Sakthivel , “Low Complexity Adaptive Spectrum Sensing using Modified FRM Filter Bank ”, Taylor & Francis : International Journal of Electronics - November 2021,  https://doi.org/10.1080/00207217.2021.2001866

6. Parvathi A K and V. Sakthivel , “Low complexity reconfigurable Modified FRM Architecture with Full Spectrum Utilization for Efficient Channelizers ”, Elsevier: Engineering Science and Technology, an International Journal - June 2021 https://doi.org/10.1016/j.jestch.2021.06.002

7. V. Sakthivel and Elizabeth Elias , “Low complexity reconfigurable channelizers using non-uniform filter banks ”, Elsevier: Computers and Electrical Engineering, an International Journal,  vol. 68, pp. 389-403, May 2018. Doi:10.1016/j.compeleceng.2018.04.015.

8. V. Sakthivel and Elizabeth Elias , “Design of hardware-efficient digital hearing aids using non-uniform MDFT filter banks”, Springer: Signal,Image and Video Processing, vol. 12, pp. 1429-1436, Nov. 2018.  Doi:10.1007/s11760-017-1225-1.

9. V. Sakthivel and Elizabeth Elias, Design of non-uniform modified DFT filter banks. In Proceedings of Region 10 Conference (TENCON) 2016, Singapore, pp.1419-1424, November 2016.

 10. V. Sakthivel and Elizabeth Elias, Design of Sharp MDFT Filter Banks with perfect reconstruction in the SPT space. Far East Journal of Electronics & Communications, vol. 16, pp. 395-414, Apr. 2016.

11. V. Sakthivel and Elizabeth Elias , “Design of low complexity sharp MDFT Filter Banks with perfect reconstruction using Hybrid Harmony-Gravitational Search Algorithm”, Elsevier: Engineering Science and Technology, an International Journal, vol. 18, pp. 648-657, May 2015.

 

1. PARVATHI A K : DESIGN AND IMPLEMENTATION OF LOW COMPLEXITY RECONFIGURABLE MODIFIED FRM ARCHITECTURE WITH ALTERNATE MASKING SCHEME

2. SUSHMITHA SAJEEVU : DESIGN AND IMPLEMENTATION OF LOW COMPLEXITY RECONFIGURABLE PASCAL STRUCTURE BASED CONTINUOUSLY VARIABLE BANDWIDTH FILTER

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