Design and performance analysis of switched reluctance motor using ANSYS Maxwell S Allirani, H Vidhya, T Aishwarya, T Kiruthika, V Kowsalya 2018 2nd International Conference on Trends in Electronics and Informatics …, 2018 | 26 | 2018 |
DIRECT TORQUE CONTROL TECHNIQUE IN INDUCTION MOTOR DRIVES-A REVIEW. S Allirani, V Jagannathan Journal of Theoretical & Applied Information Technology 60 (3), 2014 | 23 | 2014 |
High performance direct torque control of induction motor drives using space vector modulation S Allirani, V Jagannathan International Journal of Computer Science Issues (IJCSI) 7 (6), 178, 2010 | 20 | 2010 |
Torque ripples minimization in DTC based induction motor drive using fuzzy logic technique S Allirani, V Jagannathan International Journal of Computer Applications 40 (1), 25-31, 2012 | 15 | 2012 |
Development of space vector pulse width modulation algorithm for voltage source inverter using dsPIC controller 30F4011 S Allirani, VBT Raaj International Journal of Pure and Applied Mathematics 114 (9), 257-269, 2017 | 10 | 2017 |
A literature review on electric vehicles: architecture, electrical machines for power train, converter topologies and control techniques H Vidhya, S Allirani 2021 International Conference on Computational Performance Evaluation (ComPE …, 2021 | 8 | 2021 |
Direct torque control technique for voltage source inverter fed induction motor drive S Allirani, V Jagannathan International Journal of Electrical Engineering 5 (5), 629-640, 2012 | 8 | 2012 |
Design of 8/6 Pole Switched Reluctance Motor Drive Using ANSYS Simplorer S Allirani, S R., H Vidhya First International Conference on Electrical, Electronics, Information and …, 2022 | 5 | 2022 |
Performance analysis on direct torque controlled induction motor drive with varying hysteresis controller bandwidth S Allirani, NS Lakshmi, H Vidhya International Journal of Power Electronics and Drive Systems 11 (3), 1165 - 1174, 2020 | 5 | 2020 |
Design of model based controller to improve the performance of a nonlinear multivariable system with control challenges DA Vijula, S Allirani 2016 IEEE Region 10 Conference (TENCON), 3515-3520, 2016 | 5 | 2016 |
Model Reference Adaptive System based Speed Sensorless Control of Induction Motor using Fuzzy - PI Controller SU Allirani S International journal of computer applications 110 (5), 23-28, 2015 | 5 | 2015 |
Modeling and simulation of high performance direct torque controlled induction motor drive S Allirani, V Jagannathan Journal of Electrical Systems 9 (3), 355-366, 2013 | 5 | 2013 |
Virtual Instrumentation in Electrical Engineering Applications G Ramachandiran, J Kandhasamy, A Saminathan Journal of The Institution of Engineers (India): Series B 101 (2), 193-199, 2020 | 4 | 2020 |
Modelling and Simulation of Permanent Magnet Synchronous Motor for Performance Enhancement Using ANSYS Maxwell AS 29. Subha Lakshmi N. Algorithms for Intelligent Systems. Springer, Singapore., https://doi.org/10 …, 2021 | 3 | 2021 |
Design and Hardware Implementation of Switched Reluctance Motor using ANSYS Maxwell SA H.Vidhya Second International Conference on Advances in Electrical and Computer …, 2020 | 3 | 2020 |
Simulation of Switched Reluctance Motor Drive using Asymmetric Bridge Converter SA H.Vidhya International Journal of Research in Electrical, Electronics and …, 2020 | 3 | 2020 |
Realization and encompassment of torque and speed pulsations depreciation in permanent magnet synchronous motor employing ILC-Sine PWM N Subha Lakshmi, S Allirani Int J Eng Technol 7 (4.19), 454-457, 2018 | 3 | 2018 |
Performance Evaluation on Category Classification of an Images Using Convnet AS 26. Sheikdavood K., Prabhu K. Annals of R.S.C.B 25 (3), 2202 – 2208, 2021 | 2* | 2021 |
Space Vector Modulation Based Direct Torque Control of Induction Motor using Matlab Simulink, Maxwell Simplorer DSA G. S. Gobikha International Journal of Scientific Research in Science, Engineering and …, 2017 | 2 | 2017 |
Field programmable gate array based direct torque control of induction motor drive,(2013) S Allirani, V Jagannathan International Review of Automatic Control (IREACO) 6 (4), 373-380, 0 | 2 | |