Amar Deep Maurya | Civil Engineering | Research Excellence Award

Mr. Amar Deep Maurya | Civil Engineering | Research Excellence Award

Rajkiya Engineering College Mainpuri | India

Amar Deep Maurya is a researcher in civil engineering with contributions in sustainable construction materials, structural optimization, and innovative testing methods. His academic background includes a bachelor’s degree in civil engineering with strong engagement in interdisciplinary learning across environmental sciences and digital design tools. He has gained practical experience through engineering internships focused on road estimation, planning, sustainability, and environmental assessment. His research centers on waste-derived construction materials, particularly the statistical modeling and optimization of waste-glass-based paver blocks using Response Surface Methodology, which demonstrated marked improvements in strength and durability while reducing environmental impact. He has also contributed to the development of advanced mortar testing methods and has completed multiple design-based projects in AutoCAD and 3D modeling. His scholarly output includes research and review articles with measurable impact metrics such as h-index, citation count, and document contributions as reflected through academic indexing platforms. His publications explore areas including sustainable paver blocks, RSM-based prediction models, and self-healing concrete. Recognized for academic excellence, he secured a technical poster award and additional certifications enhancing his professional competence. Overall, his work reflects a commitment to sustainable engineering innovations and practical solutions for future-ready civil infrastructure.

Profile: Scopus

Featured Publication

Statistical modeling and optimization of waste glass-based paver block properties. (2025). Next Materials.

Gaurav Yadav | Engineering | Best Researcher Award

Gaurav Yadav | Engineering | Best Researcher Award

SRM University | India

Gaurav Yadav is an academic and researcher specializing in Electrical and Electronics Engineering, with expertise in power electronics, electric vehicle technologies, and grid-interactive systems. Currently serving as an Assistant Professor at SRM University, Sonipat, he has contributed to advancing electric vehicle charging infrastructure and real-time control systems. His research integrates advanced control strategies, AI-driven solutions, and innovative hardware design to enhance system efficiency and reliability. With numerous publications in reputed journals and conferences, he actively engages in workshops, seminars, and collaborative projects, fostering innovation in sustainable energy systems and modern electrical engineering applications.

Professional Profiles

Scopus | Orcid 

Education

Gaurav Yadav holds a Ph.D. in Power Electronics from Delhi Technological University, where his research focused on the design and development of grid-interactive electric vehicle chargers. He earned his M.Tech in Power System Engineering and a B.Tech in Electrical Engineering from Integral University. His academic journey built a strong foundation in power electronics, renewable energy integration, and control systems. He has undertaken specialized training in electric vehicle infrastructure, converter design, and advanced control methods, complemented by exposure to cutting-edge simulation tools and real-time implementation platforms, equipping him with the skills to bridge theoretical concepts with practical applications.

Professional Experience

Gaurav Yadav is currently an Assistant Professor in the Electrical and Electronics Engineering Department at SRM University, Sonipat. He has been actively engaged in teaching, research, and mentoring, focusing on power electronics, electric vehicle charging systems, and renewable energy integration. His professional work includes developing control algorithms, conducting hardware-in-the-loop simulations, and implementing real-time testing for advanced converters. He has collaborated with industry and academic partners on projects involving electric mobility, smart grid systems, and high-efficiency energy conversion technologies. Through workshops, seminars, and consultancy, he has contributed to both academic enrichment and practical advancements in his field.

Awards and Recognition

Gaurav Yadav has received recognition for his impactful research in electric vehicle charging systems and power electronics through publications in high-impact international journals and conference proceedings. His work has been published in reputed Q1 and Q2 journals, reflecting its academic significance and technical innovation. He has been invited to present his research at prestigious national and international conferences, earning appreciation from peers and experts. His participation in government-sponsored workshops and collaborative initiatives further highlights his contributions to emerging technologies in sustainable energy systems, power quality improvement, and advanced control strategies for electric mobility applications.

Research Skills

Gaurav Yadav possesses expertise in power electronics, electric vehicle charging systems, and grid-interactive converters, with strong skills in advanced control strategies, AI-based optimization, and real-time hardware implementation. He is proficient in MATLAB/Simulink, PLECS, PSIM, and LabVIEW, along with hardware platforms such as dSPACE, OPAL-RT, and TI DSP processors. His research integrates AI/ML techniques for power quality enhancement, adaptive filtering, and fault-tolerant designs. Skilled in PCB design using Altium and EasyEDA, he has developed and tested innovative converter topologies, integrating renewable energy systems with electric mobility solutions for improved efficiency, stability, and adaptability under varying operating conditions.

Notable Publications

Stabilizing DC bus voltage using CEEMDAN-XGBoost based adaptive filtering technique in EV chargers
Author: Gaurav Yadav; Poonam Dhaka
Journal: Computers and Electrical Engineering
Year: 2025

Enhancing power quality and stability in grid-interactive electric vehicle chargers using advanced control strategies and disturbance compensation
Author: Gaurav Yadav
Journal: Engineering Research Express
Year: 2025

Optimizing Power Quality in EV Chargers Using Advanced Quadrature Signal Generators and AI‐Driven Adaptive Filtering
Author: Gaurav Yadav; Mukhtiar Singh
Journal: International Journal of Circuit Theory and Applications
Year: 2025

CNISOGI and LLMF Based Controller Design for Grid-Interactive EV Chargers in Wide Voltage Range Scenarios
Author: Gaurav Yadav; Mukhtiar Singh
Journal: 2024 IEEE 4th International Conference on Sustainable Energy and Future Electric Transportation (SEFET)
Year: 2024

Conclusion

Gaurav Yadav is a dedicated academic, researcher, and innovator in the domain of electrical engineering, with a focus on advancing sustainable and intelligent energy systems. His multidisciplinary expertise bridges theoretical modeling, simulation, hardware development, and AI integration for real-world applications. Through his academic role, research contributions, and participation in technical forums, he continues to drive progress in electric vehicle technologies, grid integration, and renewable energy systems. Committed to fostering innovation, he aims to develop impactful solutions addressing modern power system challenges, contributing to the global transition towards cleaner, smarter, and more efficient energy infrastructures.

Somanshi Aggarwal | Engineering | Best Researcher Award

Ms. Somanshi Aggarwal | Engineering | Best Researcher Award

Dr Br Ambedkar National Institute of Technology Jalandhar- India

Author Profile

Early Academic Pursuits:

Somanshi Aggarwal began her academic journey with a strong focus on Civil Engineering, laying the foundation for her future endeavors in Structural and Construction Engineering. Her pursuit of excellence led her to enroll in the prestigious Dr Br Ambedkar National Institute of Technology for her Master of Technology degree.

Professional Endeavors:

As a dedicated student, Somanshi has shown a keen interest in various aspects of her field, specializing in Data Analysis, Machine Learning, and innovative materials like Recycled Coarse Aggregates and Fly Ash based Self Compacting Concrete. Her academic pursuits have been characterized by a deep commitment to learning and staying updated with the latest developments in her field.

Contributions and Research Focus:

Throughout her academic journey, Somanshi has actively engaged in research projects focusing on enhancing the sustainability and efficiency of construction materials and techniques. Her research focus on innovative materials like recycled aggregates and self-compacting concrete demonstrates her commitment to addressing environmental challenges in the construction industry.

Accolades and Recognition:

While still in the early stages of her career, Somanshi’s dedication to her field has not gone unnoticed. Her academic achievements and contributions to research have earned her recognition from her peers and faculty members, setting her apart as a promising talent in the field of Structural and Construction Engineering.

Impact and Influence:

Although at the beginning of her professional journey, Somanshi’s passion for her field and her commitment to excellence have already begun to make an impact. Her innovative research and dedication to sustainable practices have the potential to influence future practices in the construction industry, paving the way for more environmentally friendly and efficient construction methods.

Legacy and Future Contributions:

As Somanshi progresses in her career, she aims to continue her pursuit of excellence in Structural and Construction Engineering. With a focus on research and innovation, she seeks to contribute towards the development of sustainable construction practices that minimize environmental impact while maximizing efficiency and durability. Somanshi envisions leaving a lasting legacy in her field through her dedication to pushing the boundaries of knowledge and practice in Structural and Construction Engineering.