Rampelli Manojkumar | Power and Energy Systems | Young Researcher Award

Young Researcher Award

Rampelli Manojkumar
BVRIT HYDERABAD College of Engineering for Women, India
Rampelli Manojkumar
Affiliation BVRIT HYDERABAD College of Engineering for Women
Country India
Scopus ID 57191369036
Documents 43
Citations 514
h-index 12
Subject Area Power and Energy Systems
Event International Young Scientists Award
ORCID 0000-0002-8141-0321

Rampelli Manojkumar in the field of Power and Energy Systems. Affiliated with BVRIT HYDERABAD College of Engineering for Women, India, the researcher has contributed to engineering and energy-related scientific investigations through publications, citation impact, and interdisciplinary technological studies.[1] The recognition reflects continued involvement in scientific communication, energy innovation, and engineering research associated with sustainable and efficient power systems.[3]

Abstract

Rampelli Manojkumar is an academic researcher whose work is associated with Power and Energy Systems, sustainable engineering, and modern technological applications in electrical and energy sciences. His scholarly profile includes significant publication output and citation-based academic visibility within engineering research communities.[1] The Young Researcher Award acknowledges his scientific contributions, interdisciplinary engineering activities, and involvement in advancing research communication related to energy technologies and power systems engineering.[2]

Keywords

Power and Energy Systems; Young Researcher Award; Energy Engineering; Sustainable Power Systems; Smart Grid Research; Electrical Engineering; Renewable Energy; Scientific Innovation; Engineering Research; Academic Excellence.

Introduction

The development of Power and Energy Systems remains an essential component of modern engineering and technological advancement. Research in this field contributes to sustainable energy solutions, efficient power distribution, smart grid integration, and the improvement of energy infrastructure. Scientific awards dedicated to emerging researchers encourage academic innovation and strengthen interdisciplinary collaboration within engineering sciences.[3]

Research Profile

Affiliated with BVRIT HYDERABAD College of Engineering for Women, India, Rampelli Manojkumar has developed a scholarly profile that reflects active engagement in Power and Energy Systems research. His academic metrics include forty-three research documents, more than five hundred citations, and an h-index of twelve, demonstrating measurable academic visibility and research influence.[1]

Research Contributions

The research activities of Rampelli Manojkumar contribute to the advancement of Power and Energy Systems through engineering-oriented scientific investigations and interdisciplinary studies. His work reflects involvement in research areas associated with electrical engineering, sustainable energy systems, and smart technological solutions.[1]

Publications

The publication record of Rampelli Manojkumar includes research outputs related to electrical engineering, energy systems, renewable technologies, and engineering innovation. These publications contribute to academic dissemination and scientific communication within international engineering research communities.[1]

Research Impact

Research impact in engineering sciences is commonly evaluated through citation performance, publication quality, technological relevance, and interdisciplinary collaboration. The academic profile of Rampelli Manojkumar demonstrates substantial scholarly visibility through citation metrics and publication activity within engineering and energy research communities.[1] [2]

Award Suitability

The academic profile and scholarly activities of Rampelli Manojkumar align with the objectives of the International Young Scientists Award. His measurable research visibility, publication record, and interdisciplinary engineering contributions demonstrate continued engagement in scientific advancement and technological innovation within Power and Energy Systems research.[3]

Conclusion

The Young Researcher Award article highlights the academic achievements and scientific contributions of Rampelli Manojkumar in the field of Power and Energy Systems. Through engineering research, publication activity, and citation-based academic visibility, his work contributes to sustainable technological development and modern energy engineering. The recognition further emphasizes the importance of supporting emerging researchers whose scientific activities strengthen innovation, interdisciplinary collaboration, and the advancement of engineering sciences within global academic communities.[3]

References

  1. Elsevier. (n.d.). Scopus author details: Rampelli Manojkumar, Author ID 57191369036. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57191369036
  2. ORCID. (n.d.). ORCID record for Rampelli Manojkumar.
    https://orcid.org/0000-0002-8141-0321
  3. International Young Scientists Award. (n.d.). Recognition platform for emerging scientific researchers and innovators.
    https://youngscientistawards.com/
  4. DOI Foundation. (n.d.). Digital Object Identifier system for scholarly and engineering publications.
    https://doi.org/10.1016/j.rser.2020.109789

Nabila Tabassum | Chemical Engineering | Excellence in Research Award

Ms. Nabila Tabassum | Chemical Engineering
| Excellence in Research Award

Shiv Nadar Institution fo Eminence, Greater Noida | India

Ms. Nabila Tabassum research trajectory focuses on the intersection of computational materials science, catalysis, and high-temperature materials engineering, emphasizing atomistic simulations and experimental validation for sustainable technological advancement. The work encompasses Density Functional Theory (DFT) and Molecular Dynamics (MD) simulations for understanding the structural, mechanical, and thermal behavior of High Entropy Alloys (HEAs), High Entropy Ceramics (HECs), and High Entropy Oxides (HEOs), specifically for applications in thermal barrier coatings and energy systems. The studies explore thermal stability, phase transformations, and electronic properties of multi-component alloys such as AlCoCrFeNi, contributing to the prediction of thermodynamic behavior and optimization of mechanical strength under extreme conditions. Experimental research complements computational findings through synthesis, sintering, and characterization of high entropy materials, bridging modeling with practical performance. Additional work includes catalytic conversion of ethanol and methanol into hydrocarbons, glycerol reforming for hydrogen generation, and development of amine–ionic liquid-based solvents for CO₂ capture, aligning with global sustainability goals. The outcomes, disseminated through peer-reviewed journals, book chapters, and international conferences, demonstrate a cohesive integration of computational chemistry, thermomechanical modeling, and green energy research, advancing the understanding and design of next-generation materials for energy-efficient and environmentally resilient applications.

Featured Publication

Tabassum, N. (2025). Thermal stability assessment of mixed phase AlCoCrFeNi high entropy alloy: In silico studies. Physica B: Condensed Matter. https://doi.org/[Insert DOI if available]

Fareed Ahmad | Power system | Best Researcher Award

Dr. Fareed Ahmad | Power system | Best Researcher Award

Assistant Professor, SND College of Engineering and Research Center, Yeola, Nashik, India

Fareed Ahmad, MIEEE, Ph.D., is an Assistant Professor in the Department of Electrical Engineering at SND COE & RC, SPPU, Nashik, India. He is passionate about driving impactful research and inspiring students in the field of Electrical Engineering. With a focus on power systems, electric vehicle (EV) integration, and renewable energy, Dr. Ahmad’s expertise lies in energy management strategies, distribution network reliability, and sustainable grid solutions. He has presented his research internationally, including at the 50th IECON conference in Chicago, USA, and has earned numerous awards for his contributions, including the IEEE ECCE and IEEE IAS Annual Meeting’s Third Best Paper Award. 🧑‍🏫⚡

Publication Profile

Scopus

Education

Dr. Ahmad completed his Ph.D. in Electrical Engineering from Aligarh Muslim University, India, in 2023. His thesis focused on the “Optimal Deployment and Sizing of PEVs Charging Station in Urban Areas.” Prior to that, he obtained an M.Tech. in Electrical Engineering from Aligarh Muslim University in 2016 and a B.Tech. in Electrical Engineering from Gautama Buddha Technical University in 2013. 🎓📚

Experience

Dr. Ahmad currently holds multiple leadership roles, including Dean of R&D, Dean Academic, and PG Coordinator at SND COE & RC, SPP University, Pune, India. He has also worked as a Consultant for Engineering Claims and has held academic positions at MIT&RC, Alwar, and DNS College of Engineering, Amroha. His extensive experience includes teaching, research, and administrative duties in academia, alongside guidance for numerous research projects. 🔧📝

Awards and Honors

Dr. Ahmad has received numerous recognitions for his research and academic contributions. These include the Third Best Paper Award at the IEEE ECCE and IEEE IAS Annual Meeting in 2024, the Best Presentation Recognition at the 50th IECON 2024 conference in Chicago, and an International Travel Support (ITS) award as a Young Scientist by the Government of India. He has also received fellowships from UGC, Ministry of HRD, and various GATE recognitions. 🏆🎖️

Research Focus

Dr. Ahmad’s research interests focus on power systems, EV charging infrastructure, renewable energy integration, and energy management strategies. His work also explores demand-side management, vehicle-to-grid strategies, and the reliability of distribution networks in sustainable grid solutions. His significant contributions are helping shape the future of smart grid technologies and energy-efficient transportation systems. ⚡🔋🌱

Conclusion

Dr. Fareed Ahmad is a dedicated academic and researcher with a strong track record of awards, publications, and international presentations. His research aims to provide sustainable solutions for the energy sector and to contribute significantly to the advancement of electrical engineering and smart grid technologies. 🌍🔧

Publications

Placement and Capacity of EV Charging Stations by Considering Uncertainties with Energy Management Strategies, IEEE Transactions on Industry Applications, 2023, Link (SCI-Index Q1 Journal, Impact factor 4.4)

Energy management strategies and cost benefits analysis at electric vehicle parking lots incorporating photovoltaic energy generation and energy storage system, Journal of Energy Storage, 2024, Link (SCI-Index Q1 Journal, Impact factor 9.4)

Nonlinear adaptive neural control of power converter-driven dc motor system: Design and experimental validation, Engineering Reports, 2024, Link (SCI-Index Q2 Journal, Impact factor 1.8)

Zernike radial basis neural network control of dc–dc power converter driven permanent magnet dc motor: design and experimental validation, Electrical Engineering, 2024, Link (SCI-Index Q2 Journal, Impact factor 1.6)

Techno-economic evaluation and sensitivity analysis of renewable energy based designing of plug-in electric vehicle load considering load following strategy, Applied Energy, 2024, Link (SCI-Index Q1 Journal, Impact factor 10.2)