Dr. Vinay Kumar Jaiswal
Deputy General Manager (Electric Vehicles)
Lucas TVS Limited, Chennai, India
E-mail: *****.******@*****.***
**************@*******.***
Mobile: +91-983*******
Professional Summary: Over 20 years’ experience in leading teams for electric vehicles concerning electric machines, drives, and batteries, for requirements capture, concept development, FEM design & analysis (electromagnetic, thermal, structural, and noise & vibration), cost & design optimizations, power electronics, prototype development to mass production, and product certification against accepted national and international standards.
Education: Ph.D. (Electric Machines & Drives)- CGPA 3.9/4.3 University - University of Quebec in collaboration with McGill University, Montreal, Quebec, Canada
M.S. (Electrical & Electronics Engineering) - First Class University - Indian Institute of Science (I.I.Sc.), Bangalore, India B.E. (Electrical Engineering)-First Class
University - Madan Mohan Malaviya University of Technology, Gorakhpur, India
Employment History:
1. Lucas TVS Limited
2. Hero MotoCorp Limited
3. Rolls-Royce Corporate Lab, Singapore
4. Crompton Greaves Limited, Global R&D
Centre
5. Hydro-Quebec Chair, Quebec, Canada
6. Cognizant Technology Solutions
Deputy General Manager (Electric
Vehicles) from May 2025 to present
Senior Manager (Electric Vehicles)
from Jan. 2020 to May 2025
Senior Research Fellow (Electric
Machines & Drives) from 2016 to
2019
Senior Technology Manager
(Electric Machines & Drives) from
2005 to 2016
Research Scholar from 2001 to 2005
Software Engineer from 1999 to 2001
Major Projects Completed:
1. In-house design, development, and experimental validation of 6-Phase Permanent Magnet Assisted Synchronous Reluctance Machine (PMaSRM) and Controller for Automotive Applications.
2. In-house design, development, and experimental validation of Brushless Direct Current (BLDC) Machine and Controller for Automotive Applications. 3. In-house design, development, and experimental validation of Axial Flux Permanent Magnet (AFPM) Machine and Controller for Automotive Applications.
Resume of Dr. Vinay Kumar Jaiswal
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4. In-house design, development, and experimental validation of Switched Reluctance Machine (SRM) and Controller for Automotive Applications. 5. Design of winding fault indicator and estimation of remaining useful life of inverter-fed permanent magnet synchronous machine (PMSM) using SIMULINK-MAXWELL coupled simulation and experimental validation on test rig.
6. Design of drives for permanent magnet synchronous machines. 7. Development of winding failure diagnosis and prognosis technique and experimental validation on test rig for brushless synchronous generator
(BLSG).
8. Development of a software for accurate prediction of stray loss, iron loss and starting current for three phase induction motor considering stator magnetomotive force harmonics and saturation effects using lumped circuit method.
9. Electromagnetic and thermal design of 315 frame, 320 kVA, salient pole alternator using finite element method (FEM).
10. Electromagnetic analyses for development of premium efficiency (IE3/IE4 class) three phase induction motors using FEM.
11. Electromagnetic and thermal design of 690V, 4P, doubly-fed induction generator (DFIG).
12. Accurate Performance Prediction of Three-Phase Induction Motor by FEM using Separate Saturation Curves for Stator Teeth and Yoke. 13. Electromagnetic and thermal design of 220/20 kV, 340 MVA Power transformer.
14. Electromagnetic and thermal design of magnetic actuators for various applications.
15. Determination of transient recovery voltage (TRV) of 400 kV systems for the design of SF6 circuit breaker.
16. Electromagnetic and thermal design of 20MVA phase shifting transformer. 17. Electromagnetic analysis for development of ultra low noise power transformer using FEM.
18. Reduction of stray losses in power transformer using magnetic shunts. 19. Electromagnetic analyses for weight reduction of power transformer using FEM.
20. Electromagnetic and thermal design of 40 MVAr shunt reactor. 21. Electromagnetic and thermal design of 36 kV & 145 kV, two turns current transformer.
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22. Design of transient and ferro-resonance damping circuit for 400 kV, Coupling Capacitor Voltage Transformer (CCVT).
Software used: SIEMENS - Simcenter MOTORSOLVE, MAGNET, ELECNET, THERMNET, ANSYS-RMxprt, ANSYS-Maxwell, ANSYS-MotorCAD, PSCAD, AutoCAD, SolidWorks, CATIA, and MATLAB Simulink/Simscape. Publications:
Refereed Journal Papers:
1. Vinay Jaiswal, Danwei Wang, and Padmanabhan Sampath Kumar, “Winding Fault Diagnosis and Failure Prognosis Technique for Brushless Synchronous Generator”, Journal of Electric Power Components and Systems, Dec 7, 2020, vol. 48, no. 11, pp. 1159-1170.
2. Vinay Jaiswal, “Contribution of Spatial Harmonics and Tooth Pulsation in Iron Loss of Three Phase Induction Motor”, International Journal of Power and Energy Systems, November 2015, vol. 35, no. 3, pp. 127-132. 3. Vinay Jaiswal, and N. K. Deshmukh, “Computation of No-load Iron Losses including Spatial Harmonics and Tooth Pulsation Components for Cage Motors”, Journal of Russian Electrical Engineering, 2014, vol. 85, no. 5, pp. 325-333. 4. Vinay Jaiswal, “Finite element analysis of electric field around an ice-covered semi- conducting glazed insulator using a form of Kelvin transformation” Journal of Electrostatics, February 2011, vol. 69, no. 1, pp. 15-22. 5. Vinay Jaiswal, and M. Farzaneh, “Modelling of Flashover Performance of an Ice- covered Resistive glazed Post Station Insulator in Presence of an Air Gap”, Journal of Physics D: Applied Physics, January 2006, vol. 39, no. 1, pp. 227-232. 6. V. Jaiswal, M. Farzaneh, and D. A. Lowther, “Impulse Flashover Performance of a Semi-conducting Glazed Station Insulator under Icing Conditions based on Field Calculations by Finite Element Method”, IEE Proceedings- Generation, Transmission and Distribution, November 2005, vol. 152, no. 6, pp. 864-870. 7. Vinay Jaiswal, and Joy Thomas M., “Finite Element Modeling of Ionized Field Quantities around a Monopolar HVDC Transmission Line”, Journal of Physics D: Applied Physics, December 2003, Vol. 36, No. 23, pp. 3089-3094. Refereed Conference Papers:
8. V. Jaiswal, and N. K. Deshmukh, "Determination of iron loss considering spatial harmonics and tooth pulsation effects for cage motor", Proc. IEEE Conference on Renewable Energy Research and Applications (ICRERA-2014), Milwaukee, WI, USA, 19th-22nd Oct. 2014, pp. 348-353.
9. V. Jaiswal, Fazil M., Hangal A., and Ravi, N., “Accurate Performance Prediction of Three-Phase Induction Motor by FEM Using Separate Saturation Curves for Teeth and Yoke”, Proc. IEEE Conference on Power Electronics, Drives and Energy Systems (PEDES-2006), Delhi, India, 12th- 15th Dec. 2006. 10. Danwei Wang, Vinay Jaiswal et al., “Inter-turn fault and Condition Identification in BLSG using Multiple Indicator Approach”, 2017 IEEE PES General Meeting, 16th- 20th July 2017, Chicago, IL, USA.
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11. V. Nguyen, Vinay Jaiswal et al., “A Study on the Characteristic of Stator Winding Degradation Process and Its Life Estimation of Induction Motors”, Asia Pacific Conference of the Prognosis and Health Management Society 2017 (PHMAP 17), 12th-15th July, Jeju, Korea.
Certifications:
1. Design Failure Mode and Effects Analysis (DFMEA) by TUV SUD South Asia Pvt. Ltd.
2. TRIZ by TRIZ association of Asia.
Linguistic Skills: English, French, and Hindi
Computer Skills: C++, Java, C, and FORTRAN
Awards:
1. Recipient of a research award (PAIR- Programme d'Aide Institutionnelle a la Recherche) of amount $5,000 CAD from the Government of Canada in 2004 for contribution in design of electrical machines.
2. Recipient of Rolls-Royce, Certificate of Excellence. Patents:
1. Vinay Jaiswal, “Permanent magnet assisted synchronous reluctance motor for electric scooter”, Patent filed in March 2024.
2. Vinay Jaiswal, “System for estimation of remaining useful life of a motor and method thereof”, Patent filed in February 2022.
3. Vinay Jaiswal, and N. K. Deshmukh, “Transient and ferro-resonance damping circuit for Coupling Capacitor Voltage Transformer (CCVT)”, Patent filed in March 2010.
4. Vinay Jaiswal, and N. K. Deshmukh, “A method for determining core loss in a three phase squirrel cage induction motor”, Patent filed in March 2008.