Pyroelectric-based solar and wind energy harvesting system SH Krishnan, D Ezhilarasi, G Uma, M Umapathy IEEE transactions on sustainable energy 5 (1), 73-81, 2013 | 85 | 2013 |
Investigation on the effect of Womersley number, ECG and PPG features for cuff less blood pressure estimation using machine learning G Thambiraj, U Gandhi, U Mangalanathan, VJM Jose, M Anand Biomedical Signal Processing and Control 60, 101942, 2020 | 45 | 2020 |
Improved energy harvesting from vibration by introducing cavity in a cantilever beam A Rami Reddy, M Umapathy, D Ezhilarasi, G Uma Journal of Vibration and Control, 2014 | 38 | 2014 |
Design enhancement of a chevron electrothermally actuated microgripper for improved gripping performance P Shivhare, G Uma, M Umapathy Microsystem Technologies 22, 2623-2631, 2016 | 36 | 2016 |
A new resonance-based method for the measurement of nonmagnetic-conducting-sheet thickness K Suresh, G Uma, M Umapathy IEEE Transactions on instrumentation and measurement 60 (12), 3892-3897, 2011 | 35 | 2011 |
Resonance based DC current sensor BS Kumar, K Suresh, UV Kumar, G Uma, M Umapathy Measurement 45 (3), 369-374, 2012 | 34 | 2012 |
Cantilever piezoelectric energy harvester with multiple cavities SS Raju, M Umapathy, G Uma Smart Materials and Structures 24 (11), 115023, 2015 | 32 | 2015 |
A new piezoelectric energy harvester using two beams with tapered cavity for high power and wide broadband U Ramalingam, U Gandhi, U Mangalanathan, SB Choi International Journal of Mechanical Sciences 142, 224-234, 2018 | 30 | 2018 |
A new piezoelectric-patched cantilever beam with a step section for high performance of energy harvesting R Usharani, G Uma, M Umapathy, SB Choi Sensors and Actuators A: Physical 265, 47-61, 2017 | 29 | 2017 |
Normal limits of ECG measurements related to atrial activity using a modified limb lead system J Sivaraman, G Uma, S Venkatesan, M Umapathy, VE Dhandapani Anatolian Journal of Cardiology 15 (1), 2, 2015 | 29 | 2015 |
Design of High Output Broadband Piezoelectric Energy Harvester with Double Tapered Cavity Beam R Usharani, G Uma, M Umapathy International Journal of Precision Engineering and Manufacturing- Green …, 2016 | 28 | 2016 |
Piezoelectric based resonant mass sensor using phase measurement K Suresh, G Uma, BS Kumar, UV Kumar, M Umapathy Measurement 44 (2), 320-325, 2011 | 28 | 2011 |
Enhanced microcontroller interface of resistive sensors through resistance-to-time converter R Anandanatarajan, U Mangalanathan, U Gandhi IEEE Transactions on Instrumentation and Measurement 69 (6), 2698-2706, 2019 | 26 | 2019 |
Design and testing of piezoelectric resonant pressure sensor Y Sujan, G Uma, M Umapathy Sensors and Actuators A: Physical 250, 177-186, 2016 | 24 | 2016 |
A study on atrial Ta wave morphology in healthy subjects: An approach using P wave signal-averaging method J Sivaraman, G Uma, S Venkatesan, M Umapathy, NK Kumar Journal of Medical Imaging and Health Informatics 4 (5), 675-680, 2014 | 23 | 2014 |
Design and analysis of high output piezoelectric energy harvester using non uniform beam SS Raju, M Umapathy, G Uma Mechanics of Advanced Materials and Structures 27 (3), 218-227, 2020 | 22 | 2020 |
An effective energy harvesting in low frequency using a piezo-patch cantilever beam with tapered rectangular cavities SS Raju, SB Choi, M Umapathy, G Uma Sensors and Actuators A: Physical 297, 111522, 2019 | 20 | 2019 |
Cantilever beam with trapezoidal cavity for improved energy harvesting AR Reddy, M Umapathy, D Ezhilarasi, G Uma International Journal of Precision Engineering and Manufacturing 16, 1875-1881, 2015 | 20 | 2015 |
Smart Coriolis mass flowmeter M Shanmugavalli, M Umapathy, G Uma Measurement 43 (4), 549-555, 2010 | 20 | 2010 |
High-output piezoelectric energy harvester using tapered beam with cavity SS Raju, M Umapathy, G Uma Journal of Intelligent Material Systems and Structures 29 (5), 800-815, 2018 | 19 | 2018 |