Dr. Vikas Gupta | Computer technology | Best Researcher Award
Dr. Vikas Gupta,Ch. Devi Lal State Institute of Engineering & Technology, Panniwala Mota, Sirsa, Haryana, India, India.
Dr. Vikas Gupta is an esteemed faculty member at Ch. Devi Lal State Institute of Engineering & Technology in Panniwala Mota, Sirsa, Haryana, India. With a focus on engineering education and research, he has contributed significantly to the academic community. Dr. Gupta is known for his commitment to fostering student development and advancing innovative engineering practices. His expertise and leadership continue to inspire students and colleagues alike.
Summary:
Dr. Vikas Gupta is an esteemed faculty member at Ch. Devi Lal State Institute of Engineering & Technology, known for his significant contributions to engineering education and research. His extensive experience, innovative research, and commitment to student development position him as a leading figure in the academic community. His publications and patents highlight his impact on the field.
Professional Profiles:
🎓 Education :
Dr. Vikas Gupta holds a Ph.D. in Mechanical Engineering from the National Institute of Technology, Kurukshetra (NITK). He earned his M.E. in Mechanical Engineering from the Birla Institute of Science and Technology (BITS) Pilani, where he achieved a perfect CGPA of 10.00/10.00, topping his batch. He completed his B.E. in Mechanical Engineering from Giani Zail Singh College of Engineering & Technology.
🏢 Experience:
With over 24 years of experience in academia, Dr. Gupta has held various positions in engineering colleges. He began his career as a Lecturer at BRCM College of Engineering & Technology, progressing to roles such as Senior Lecturer and Assistant Professor. He currently serves as an Assistant Professor at Ch. Devi Lal State Institute of Engineering and Technology, where he focuses on teaching and research in mechanical engineering.
🛠️Skills:
Dr. Gupta specializes in several research fields, including Additive Manufacturing, Heterogeneous Object Modeling of Medical Implants and Soft Tissues, Geometric Modeling, Robotics and Automation, and CAD/CAM/CAE. His expertise encompasses both theoretical and practical aspects of mechanical engineering, making him a valuable asset in educational and research settings.
Research Focus :
Dr. Gupta’s research interests are diverse, primarily focusing on advanced manufacturing techniques, modeling and simulation of biomedical applications, and the integration of robotics in mechanical systems. His work contributes to the development of innovative solutions in engineering, particularly in the context of medical implants and dynamic system modeling. His publications reflect a commitment to advancing knowledge in these critical areas.
Dr. Gupta has made significant contributions to the field of mechanical engineering. He has one patent published on an IoT-based portable hydroponic water nutrient monitoring device, with two more patents in process. His research impact is reflected in his Google Scholar H-index of 10 and I-index of 12. He has been recognized in the Marquis Who’s Who in the World for 2016 and 2017, and he received financial aid for his M.Tech. studies at BITS Pilani. Additionally, he has guided a Ph.D. student from NIT Kurukshetra and has been awarded multiple scholarships during his academic journey.
Conclusion:
Given his strengths in research, teaching, and mentorship, Dr. Vikas Gupta is well-suited for the Best Researcher Award. By addressing areas for improvement, such as enhancing collaboration and seeking additional funding, he can further amplify his contributions to engineering and inspire future generations. His continued dedication to advancing innovative engineering practices makes him a deserving candidate for this prestigious recognition.
- Gupta, V., & Tandon, P. (2015). Heterogeneous object modeling with material convolution surfaces. Computer-Aided Design, 62, 236-247.
- Gupta, V., Bansal, R., & Goel, V.K. (2015). Lean manufacturing: A Review. International Journal of Science Technology & Management, 3(2), 176-180.
- Gupta, V., Bajpai, V.K., & Tandon, P. (2014). Slice generation and data retrieval algorithm for rapid manufacturing of heterogeneous objects. Computer-Aided Design and Applications, 11(3), 255-262.
- Prakash, O., Gupta, V., & Mittal, V. (2013). Optimizing the design of connecting rod under static and fatigue loading. International Journal of Research in Management, Science & Technology.
- Gupta, V., Kasana, K.S., & Tandon, P. (2010). Computer aided design modeling for heterogeneous objects. arXiv preprint arXiv:1004.3571.
- Joshi, T., Sharma, R., Mittal, V.K., & Gupta, V. (2021). Comparative investigation and analysis of hip prosthesis for different bio-compatible alloys. Materials Today: Proceedings, 43, 105-111.
- Gupta, V., Saini, K., Kumar, A., Krishan, G., & Prakash, O. (2016). Comparative Analysis of Disc Brake Model for Different Materials Investigated Under Tragic Situations. Asian Review of Mechanical Engineering, 5(1), 18-23.
- Gupta, V., Kasana, K.S., & Tandon, P. (2012). Reference based geometric modeling for heterogeneous objects. Computer-Aided Design and Applications, 9(2), 155-165.
- Joshi, T., Sharma, R., Mittal, V.K., Gupta, V., & Krishan, G. (2022). Dynamic analysis of hip prosthesis using different biocompatible alloys. ASME Open Journal of Engineering, 1.
- Sharma, R., Mittal, V.K., & Gupta, V. (2019). Homogeneous modelling and analysis of hip prosthesis using FEA. Journal of Physics: Conference Series, 1240(1), 012118.
- Gupta, V., & Tandon, P. (2017). Heterogeneous composition adaptation with material convolution control features. Journal of Computing and Information Science in Engineering, 17(2), 021008.
- Gupta, V., Kasana, K.S., & Tandon, P. (2010). CAD modeling, algorithm design, and system structure for rapid prototyping of heterogeneous objects. International Journal of Computer Applications in Engineering, Technology & Sciences.
- Joshi, T., Sharma, R., Mittal, V.K., Gupta, V., & Krishan, G. (2022). Dynamic fatigue behavior of hip joint under patient specific loadings. International Journal of Automotive and Mechanical Engineering, 19(3), 10014.
- Gupta, V., Bansal, R., & Goel, V.K. (2013). A Review On Material Handling Equipment And Their Selection For Potential Application. International Journal of Technical Research (IJTR), 2(1), 51-54.
- Ravikant, Mittal, V.K., & Gupta, V. (2024). Homogeneous and heterogeneous modeling of patient-specific hip implant under static and dynamic loading condition using finite element analysis. Journal of The Institution of Engineers (India): Series D, 105(1), 1-20.