Banaja Mohanty | Energy | Best Researcher Award

Assoc. Prof. Dr. Banaja Mohanty | Energy | Best Researcher Award

Veer Surendra Sai University of Technology | India

Dr. Banaja Mohanty is an accomplished Associate Professor at Veer Surendra Sai University of Technology (VSSUT), Burla, with a strong academic and research foundation in engineering and technology. With 47 published documents and 1,638 citations received from 1,270 referenced works, she has achieved an impressive h-index of 17, reflecting her consistent research impact in her field. Her scholarly contributions encompass areas such as renewable energy systems, power electronics, and smart grid technologies, with a particular focus on sustainable and efficient energy solutions. Dr. Mohanty has guided several research projects and collaborated with industry and academic partners to promote innovation-driven learning. She has contributed to leading SCI and Scopus-indexed journals, participated in national and international conferences, and has served as a reviewer and editorial board member for reputed journals. Her active involvement in academic development and mentoring young researchers has strengthened the research culture within her institution. Dr. Mohanty’s achievements are marked by her dedication to scientific excellence, innovation, and knowledge dissemination. Her continued commitment to advancing research in emerging technologies underscores her reputation as a distinguished academic and researcher, contributing significantly to the scientific community.

Profiles: Google Scholar | Scopus

Featured Publications

Mohanty, B., Panda, S., & Hota, P. K. (2014). Controller parameters tuning of differential evolution algorithm and its application to load frequency control of multi-source power system. International Journal of Electrical Power & Energy Systems, 54, 77–85.

Panda, S., Mohanty, B., & Hota, P. K. (2013). Hybrid BFOA–PSO algorithm for automatic generation control of linear and nonlinear interconnected power systems. Applied Soft Computing, 13(12), 4718–4730.

Mohanty, B., Panda, S., & Hota, P. K. (2014). Differential evolution algorithm based automatic generation control for interconnected power systems with non-linearity. Alexandria Engineering Journal, 53(3), 537–552.

Hota, P. K., & Mohanty, B. (2016). Automatic generation control of multi source power generation under deregulated environment. International Journal of Electrical Power & Energy Systems, 75, 205–214.

Mohanty, B., & Tripathy, S. (2016). A teaching learning based optimization technique for optimal location and size of DG in distribution network. Journal of Electrical Systems and Information Technology, 3(1), 33–44.

Anil Kumar Undrajavarapu | Energy | Best Researcher Award

Mr. Anil Kumar Undrajavarapu | Energy | Best Researcher Award

CSIR-Central Electro Chemical Research Institute | India

Hundasa Chala Nagari is an emerging academic and research professional who has established himself as a dedicated scholar with strong foundations in science and engineering, consistently working toward advancing knowledge in his chosen field. He pursued his higher education with a clear vision of combining theory and practical applications, earning degrees that have equipped him with the expertise to contribute to both academia and research-driven innovation. His academic journey reflects his commitment to excellence and his passion for exploring new frontiers of science, technology, and interdisciplinary studies. Professionally, Hundasa has accumulated valuable experience in teaching, research, and collaborative projects, which has allowed him to gain insights into problem-solving, mentoring, and the design of innovative methodologies to address critical challenges. His teaching and research experiences are complemented by his involvement in projects that bridge the gap between academic learning and practical application, enabling him to contribute both to the classroom and the wider research community. His primary research interests lie in areas related to sustainable development, scientific innovation, and advanced technological solutions that benefit society. He is particularly keen on applying theoretical knowledge to real-world problems, especially those related to energy, environment, materials, and technology-enabled growth, aiming to create outcomes that foster societal progress and sustainable practices. His research skills include strong analytical thinking, advanced problem-solving, data analysis, scientific writing, experimental design, and collaborative teamwork, with proficiency in using both traditional and modern tools for research and innovation. He has also developed communication skills that help him convey complex ideas clearly in academic forums, seminars, and publications. Over time, Hundasa has been recognized with awards and honors that highlight his dedication, achievements, and contributions to the academic and scientific community. These accolades not only serve as a testament to his hard work but also encourage him to continue pushing the boundaries of innovation. His participation in conferences, workshops, and research networks further enriches his professional profile and strengthens his position as a researcher committed to advancing global knowledge. In conclusion, Hundasa Chala Nagari exemplifies the qualities of a motivated researcher and academic professional who integrates education, experience, and innovation to make meaningful contributions to science and society. His journey reflects a balance of scholarly rigor, professional dedication, and a forward-looking vision to develop solutions for global challenges. By continuing to leverage his skills, research interests, and collaborative spirit, he aspires to advance in his career, contribute to transformative research, and inspire others through his academic and professional achievements.

Profiles : Google Scholar | Scopus | Orcid

Featured Publications

“Co–Co3O4 nanostructure with nitrogen-doped carbon as bifunctional catalyst for oxygen electrocatalysis”

“Acidic and Alkaline pH Controlled Oxygen Reduction Reaction Pathway over Co‐N4C Catalyst”

“A novel nonheme manganese (ii) complex for (electro) catalytic oxidation of water”

“Hydroxide Ion Conduction through Viologen-Based Covalent Organic Frameworks (vCOFs): An Approach toward the Advancement”

“Assessing the impact of an antisolvent-regulated ZnCl2 water-in-salt electrolyte on solvation structure: a multiscale computational validation for aqueous Zn-ion battery”

Harshit Mittal | Energy | Young Scientist Award

Mr. Harshit Mittal | Energy | Young Scientist Award

Guru Gobind Singh Indraprastha University, India

Author Profile

SCOPUS

ORCID

🎓 EARLY ACADEMIC PURSUITS

Harshit Mittal began his academic journey in Chemical Engineering at the University School of Chemical Technology, Guru Gobind Singh Indraprastha University, Delhi. Demonstrating early aptitude in renewable energy systems and materials science, his academic foundation laid the groundwork for advanced research in hydrogen energy and sustainable technologies.

🏢 PROFESSIONAL ENDEAVORS

Harshit is the Founder of Pro H2Vis Solutions, a pioneering venture in hydrogen storage innovations. Prior to this, he gained significant experience as a Research Associate at the Center of Energy and Environment, KLE Technological University, and at IIT Madras. His roles encompassed research execution, system modeling, and prototype development in green energy domains, particularly hydrogen technologies.

📚 CONTRIBUTIONS AND RESEARCH FOCUS IN ENERGY

Harshit’s primary research revolves around hydrogen storage systems, carbon capture technologies, and machine intelligence applications in energy. His computational models, life cycle assessments, and finite element analyses contribute to the advancement of low-carbon hydrogen economies. His published work spans reputable journals like Environmental Research, ACS Sustainable Chemistry & Engineering, and Current Opinions in Chemical Engineering.

Notable focus areas include:

  • Hydrogen Adsorption and Storage Modeling

  • Photoelectrochemical Hydrogen Production

  • Boron Nitride Nanotube-Based Systems

  • Integrated Hydrogen Supply Chains

🏅 ACCOLADES AND RECOGNITION

His groundbreaking efforts have earned him numerous prestigious awards:

  • Best Undergraduate Researcher in Chemical Engineering by IIChE, Jalandhar

  • Best Paper Award in Vision for Viksit Bharat, by Government of Delhi

  • Chancellor Awards (2023 & 2024) from Vinayaka Missions Research Foundation

  • Best Promising Startup Award by KLE-CTIE

  • Vice Chancellor Award at IITYam Conference 2023

  • Best Paper Presentation at IITYam Conference 2022

🌍 IMPACT AND INFLUENCE

His innovations have led to multiple patents related to hydrogen storage and production systems, including designs for HyVis and HyVis Pro tanks and integrated energy systems. These contributions support global efforts towards sustainable energy infrastructure, with potential applications in industry-scale clean energy transitions.

🧭 LEGACY AND FUTURE CONTRIBUTIONS

Harshit aims to revolutionize the hydrogen economy through risk-free, scalable storage systems, and integrated clean energy infrastructures. His patented technologies have the potential to transform urban fuel networks, industrial energy backup systems, and renewable storage capacities. With a strong commitment to sustainability and scientific advancement, Harshit is poised to leave a lasting legacy in the renewable energy landscape.

✅CONCLUSION

Harshit Mittal embodies a rare blend of academic rigor, entrepreneurial spirit, and visionary leadership in energy innovation. Through his advanced research, patented inventions, and award-winning presentations, he has positioned himself as a rising force in the global hydrogen energy sector. His forward-looking contributions continue to shape the dialogue around clean, stable, and scalable energy systems.

🔬NOTABLE PUBLICATION:

AI Powered Renewable Energy Balancing, Forecasting and Global Trend Analysis using ANN-LSTM Integration

Authors: Murgod, S.; Garg, K.; Magadum, T.; Yadav, V.; Mittal, H.; Kushwaha, O.

Journal/Platform: Research Square

Year: 2025


AI-Driven Modeling of Microbial Carbon Capture Systems for ESG-Linked Carbon Accounting and Disclosures

Authors: Saraswat, V.; Magadum, T.; Mittal, H.; Kushwaha, O.

Journal/Platform: Research Square

Year: 2025


CO₂ Emissions Projections for 2100: A Comparative Machine Learning Study of U.S. and Multimodal Approach of Global Trends

Authors: Murgod, S.; Garg, K.; Magadum, T.; Yadav, V.; Mittal, H.; Kushwaha, O.S.

Journal/Platform: Research Square

Year: 2025


Comparative Analysis of Bio-Based and Traditional Plastics: Life Cycle Assessment, Cost-Benefit Analysis, and Health Impact Evaluation

Authors: Sehrawat, A.; Bhatnagar, R.M.; Magadum, T.; Mittal, H.; Kushwaha, O.

Journal/Platform: Research Square

Year: 2025


Conversion of Cow Dung to Electricity: Process Analysis and Energy Yield Assessment

Authors: Thomare, C.; Nagappagol, A.; Magadum, T.; Mittal, H.; Kushwaha, O.

Journal/Platform: Research Square

Year: 2025

Tushar Anand | Sustainable Technologies| Best Researcher Award

Dr. Tushar Anand | Sustainable Technologies | Best Researcher Award

Amity University, Jaipur, Rajasthan, India

Author Profile

GOOGLE SCHOLAR

🎓 EARLY ACADEMIC PURSUITS

Dr. Tushar Anand began his academic journey with a Diploma in Mechanical Engineering from Thapar Polytechnic, followed by a Bachelor’s Degree in Mechanical Engineering from PCE Jaipur. Driven by a passion for thermal sciences and energy systems, he pursued a Master’s in Thermal Engineering from Thapar University, Patiala, where he also served as the Placement Representative. His early accolades, such as a Gold Medal in Welding Certificate Course, and qualifying GATE (2011 & 2013), laid a strong foundation for his academic and research aspirations.

🏢 PROFESSIONAL ENDEAVORS

With over 10.4 years of teaching and research experience, Dr. Anand has served as an Assistant Professor at Satyug Darshan Institute of Engineering and Technology and currently holds the same post at Academy of Maritime Education and Training (AMET), Chennai. Additionally, his tenure as a Junior Research Fellow at NIT Silchar underlines his strong association with premier institutions. His responsibilities ranged from delivering lectures to conducting advanced research in IC engines and alternative fuels.

📚 CONTRIBUTIONS AND RESEARCH FOCUS IN SUSTAINABLE TECHNOLOGIES

Dr. Anand’s research emphasizes sustainable energy systems, hydrogen-enriched alternative fuels, and emission control technologies. His doctoral thesis—“Diagnosis of a CI Diesel Engine Run on Waste Plastic Oil Blends with Hydrogen Enrichment”—targets cutting-edge sustainable combustion methodologies. His studies integrate hydrogen enrichment with waste plastic oil, offering practical solutions to reduce carbon emissions and utilize waste effectively.

🏅 ACADEMIC CITATIONS, ACCOLADES AND RECOGNITION

Dr. Anand has a notable presence on Google Scholar and ResearchGate, with consistent citations of his work, particularly his papers on dual-fuel engine performance and hydrogen utilization. His research is recognized globally, indicating both academic reliability and industrial relevance.

  • Gold Medalist in Welding Certification

  • Diploma with Honours

  • Qualified GATE twice (2011 & 2013)

  • Presented papers at international conferences, including the 9th ICCMME in Singapore

  • Received a design patent titled Inclined Oscillating Water Column (Design No. 434799-001)

🌍 IMPACT AND INFLUENCE

His work, particularly on hydrogen-enriched biodiesel and waste plastic oil combustion, has been cited in high-impact journals such as the International Journal of Hydrogen Energy and the ASME Journal of Energy Resources Technology. The real-world applicability of his research resonates with policymakers and environmental engineers aiming to reduce urban emissions and promote renewable fuel solutions.

🧭 LEGACY AND FUTURE CONTRIBUTIONS

Dr. Tushar Anand’s academic and research pursuits are consistently aligned with green technologies, waste-to-energy innovations, and clean combustion systems. With several publications and a patent already to his name, he is poised to become a key contributor to India’s clean energy transition. His future work aims to decarbonize heavy transportation and optimize fuel blends for economic and environmental sustainability.

 ✅CONCLUSION

Dr. Tushar Anand exemplifies a committed scholar in the field of mechanical and sustainable engineering. Through rigorous research, impactful publications, and innovative thinking, he has contributed significantly to renewable fuel technologies, particularly hydrogen integration in combustion systems. His academic integrity, administrative experience, and passion for teaching make him a well-rounded professional and a future leader in sustainable engineering solutions.

🔬NOTABLE PUBLICATION:

Title: Effect of fuel opening injection pressure and injection timing of hydrogen enriched rice bran biodiesel fuelled in CI engine
Author(s): S. Kanth, T. Anand, S. Debbarma, B. Das
Journal: International Journal of Hydrogen Energy
Year: 2021

Title: Experimental investigation of fuel injection timing effects on a CRDI diesel engine running on hydrogen-enriched waste plastic oil
Author(s): T. Anand, S. Debbarma
Journal: International Journal of Hydrogen Energy
Year: 2024

Title: Experimental analysis of hydrogen enrichment in waste plastic oil blends for dual-fuel common rail direct injection diesel engines
Author(s): T. Anand, S. Debbarma
Journal: Journal of Energy Resources Technology
Year: 2024

Title: Influence of Fuel Injection Timing and Hydrogen Enrichment on Waste Plastic Oil: Performance, Combustion, and Emissions Analysis
Author(s): T. Anand, S. Debbarma
Journal: Defect and Diffusion Forum
Year: 2024

Title: Specific Heat of Nanofluids—An Experimental Investigation
Author(s): T. Anand, S.S. Mallick
Journal: Fluid Mechanics and Fluid Power: Proceedings of FMFP
Year: 2021

Title: An experimental investigation into the thermal properties of nano-fluid
Author(s): T. Anand, A. Kumar, N. Bhargava, S.S. Mallick
Journal: International Journal of Emerging Technologies and Advanced Engineering
Year: 2014