Dr. M. Sumathi
ProfessorSathyabama University, India
Highest Degree
Ph.D. in Electronic Engineering from Sathyabama University, India
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Selected Publications
- khedkar, A., M. Sumathi and M. Murugan, 2017. Behavioral analysis of rician faded ofdm system for different number of subcarriers. Int. J. Control Theory Appl., 10: 1-6.
Direct Link | - Khedkar, A., M. Sumathi and M. Murugan, 2017. Root raised cosine pulse shape based ici suppression in ofdm system for rayleigh multipath channel. Int. J. Eng. Technol., 8: 2795-2799.
CrossRef | Direct Link | - Haripriya, D., C. Govindaraju and M. Sumathi, 2017. A novel input data transition aware dynamic voltage scaling based low power MAC architecture for DSP applications. Int. J. Des. Autom. Embedded Syst. 11: 1-17.
Direct Link | - Ashok K., M. Sumathi and M. Murugan, 2017. Modified raised cosine power pulse (mrcp) based solution to reduce the sensitivity to carrier frequency offset in rayleigh faded ofdm system. J. Computational Theor. Nanosci., 14: 4222-4226.
CrossRef | Direct Link | - Sumathi, M., R. Narmadha and K. Sumathi, 2016. Study and design evaluation of rf cmos oscillators. Indian J. Sci. Technol., 9: 1-8.
CrossRef | Direct Link | - Sheela, S., M. Sumathi and G.N. Priya, 2016. Comparative analysis of various filtering techniques for speckle noise suppression in ultrasound images. Int. J. Control Theory Appl., 9: 51-65.
- Narmadha, R., M. Sumathi, S.A.A. Nisha and K. Sudheera, 2016. Patient safety monitoring system using secured Transcutaneous electrical nerve stimulator-'gate control theory. Res. J. Pharm. Biol. Chem. Sci., 9: 1155-1168.
- Bhalerao, M.V., M. Sumathi and S.S. Sonavane, 2016. Line of Sight model for Visible Light Communication using Lambertian radiation pattern of LED. Int. J. Commun. Syst., 10.1002/dac.3250.
CrossRef | Direct Link | - Venkatraman, K. and M. Sumathi, 2015. Performance Evaluation of speckle reduction filters for OCT images. Int. J. Pharma. Biosci., 6: 837-845.
- Sumathi, M., 2015. Study and Performance analysis of Optical transmission based signal processing system. Int. J. Appl. Eng. Res., 10: 5255-5355.
- Shaw, P.R., M. Sumathi, S. Burnwal, 2015. Study of removal of speckle noise from OCT images. Biomed 35: 313-317.
PubMed | - Raju. L.M. and M. Sumathi, 2015. Secured high throughput of 128-bit AES algorithm based on interleaving technique. Int. J. Appl. Eng. Res., 10: 11047-11058.
- Haripriya. D., C. Govindaraju and M. Sumathi. 2015. Analysis of power management in portable embedded DSP applications. ARPN J. Eng. Appl. Sci., 10: 3185-3192.
Direct Link | - Gowthaman.A. and M. Sumathi, 2015. Performance study of enhanced sha-256 algorithm. Int. J. Appl. Eng. Res., 10: 10921-10932.
- 8. Sumathi, M., K. Venkatraman, R. Narmadha and C. Chavda, 2015. Automated digitization of analog information using optical transmission. J. Med. Imaging Health Inf., 5: 1255-1260.
CrossRef | - 6. Sumathi, M., D. Nirmala and R. Immanuel Rajkumar, 2015. Study of Data security algorithms using Verilog HDL. Int. J. Electr. Computer Eng., 5: 1092-1101.
Direct Link | - Sumathi, M., 2013. A Multi-standard reconfigurable DCR RF front-end for wireless applications. IUP J. Telecommun., 5: 25-41.
Direct Link | - Sumathi M. and S. Malarvizhi, 2012. Design Analysis and Comparative Study of RF Receiver Front-Ends in 0.18-μM CMOS. J. Electr. Electron. Eng., 5: 7-19.
Direct Link | - Venkatraman, K. And M. Sumathi, 2011. Review of optical coherence tomography image analysis for retinal disorders. Int. J. Pharm. Technol., 6: 2967-2980.
- Sumathi, M. and S. Malarvizhi, 2011. A Novel design evaluation of Low-Voltage RF front-end with VCO in 0.18-µm CMOS. J. Comput., 3: 15-19.
Direct Link | - Sumathi M. and S. Malarvizhi, 2011. Performance Comparison of RF CMOS Low Noise Amplifiers in 0.18-m technology scale. Int. J. VLSI Design Commun. Syst., 2: 45-54.
Direct Link | - Sumathi M. and S. Malarvizhi, 2011. Design and performance analysis of 5 GHz CMOS RF front-end circuits for IEEE 802.11 a application. Eur. J. Sci. Res., 54: 418-426.
- Sumathi, M. and S. Malarvizhi, 2010. A 1.5V, 2.4GHz RF CMOS front-end design evaluation for IEEE 802.11b/g application. Int. J. Wireless Commun., 2: 213-217.
- Sumathi M. and S. Malarvizhi, 2010. A 5-7GHZ DIRECT DOWN-CONVERSION receiver front-end in 0.18-µM CMOS. J. Instrum. Soc. India, 40: 222-224.