Akinola Michael Aruwaji | Digital Twin Technology | Research Excellence Award

Global VR Research Awards

Akinolo Michael Aruwaji
Durban University of Technology, Durban, South Africa
Akinolo Michael Aruwaji
Affiliation Durban University of Technology
Country South Africa
Google Scholar ID 1nWsatUAAAAJ
Documents 20
Citations 179
h-index 5
Subject Area Digital Twin Technology
Event Global VR Research Awards
ORCID 0000-0002-0663-5272

Akinolo Michael Aruwaji is a researcher affiliated with Durban University of Technology, South Africa, whose scholarly activities encompass Digital Twin Technology and related virtual systems research. His publication record, citation metrics, and interdisciplinary research profile demonstrate continuing contributions to emerging digital technologies, particularly where simulation, virtual environments, intelligent systems, and engineering applications intersect. His academic work reflects growing engagement with internationally recognized research themes that support innovation within immersive technologies and digital transformation initiatives.[1]

Abstract

Digital Twin Technology has become an essential component of modern engineering, manufacturing, smart infrastructure, and virtual simulation. The academic profile of Akinolo Michael Aruwaji demonstrates engagement with these evolving research domains through peer-reviewed scholarly publications and measurable research impact.[1][2]

Keywords

Digital Twin Technology, Virtual Reality, Simulation, Smart Manufacturing, Cyber-Physical Systems, Engineering Research, Digital Transformation, Immersive Technology, Artificial Intelligence, Virtual Environments.

Introduction

The advancement of immersive technologies has accelerated interdisciplinary research connecting virtual reality, digital twins, artificial intelligence, and intelligent manufacturing. Researchers working within these domains contribute to improved operational efficiency, predictive analysis, and data-driven decision making across industrial and academic environments.[2]

Research Profile

According to publicly available academic indexing services, the researcher has produced twenty scholarly documents receiving approximately one hundred seventy-nine citations with an h-index of five. These indicators illustrate an active research profile and continuing scholarly engagement within Digital Twin Technology and associated computational disciplines.[1]

Research Contributions

The research contributions associated with this academic profile include investigations into intelligent digital systems, simulation-based methodologies, cyber-physical integration, and emerging virtual technologies. Such studies contribute to improved understanding of digital modelling, optimization, predictive maintenance, and industrial innovation through Digital Twin methodologies.[2]

Publications

The researcher’s publication portfolio includes peer-reviewed journal articles and conference contributions addressing Digital Twin Technology and related computational engineering topics. These publications collectively demonstrate sustained academic participation and contribute to the growing body of literature supporting intelligent virtual systems.[1]

Research Impact

Citation performance and publication activity indicate that the research has achieved measurable academic visibility. Contributions within Digital Twin Technology continue to support broader developments in virtual engineering, smart manufacturing, simulation science, and intelligent digital infrastructure. These outcomes demonstrate scholarly relevance within rapidly evolving technological disciplines.[1][2]

Award Suitability

The research profile aligns with the objectives of the Global VR Research Awards through demonstrated scholarly engagement in Digital Twin Technology and virtual innovation. Objective indicators including publication output, citation record, interdisciplinary relevance, and continued academic contributions support consideration within research recognition programs.[3]

Conclusion

Akinolo Michael Aruwaji has established a developing academic profile within Digital Twin Technology through scholarly publications, measurable citation impact, and interdisciplinary research activities. His contributions support continuing advances in virtual engineering and intelligent digital systems while reflecting the broader evolution of immersive research and simulation technologies.[1]

References

  1. Google Scholar (2026). Author Profile: Akinolo Michael Aruwaji.
    https://scholar.google.com/citations?user=1nWsatUAAAAJ&hl=en
  2. The impact of AI-Integrated ESG reporting on firm valuation in emerging markets: a multimodal analytical approach.
    https://www.mdpi.com/1911-8074/18/12/675
  3. Global VR Research Awards (2026). Official Award Website.
    https://vrresearchaward.com/

Venkatramanan | Automotive & Manufacturing VR | Best Experimental Research in Immersive Technologies Award 

Dr. Venkatramanan | Automotive & Manufacturing VR | Best Experimental Research in Immersive Technologies Award 

Suguna College of Engineering, Coimbatore | India

Dr. Venkatramanan R is an accomplished Assistant Professor and researcher with extensive expertise in solar thermal applications and renewable energy systems, particularly in the design and performance optimization of evacuated tube solar air heaters for industrial process heating. He completed his Ph.D. at the Solar Energy Research Centre, Coimbatore Institute of Engineering and Technology (CIET), under a full-time DST-funded project, focusing on evacuated tube collector systems for low-temperature industrial applications. Dr. Venkatramanan holds a Master’s degree in Thermal Engineering from R.V.S. College of Engineering and Technology and a Bachelor’s degree in Mechanical Engineering from Paavai Engineering College, consistently achieving first-class academic distinction. With over nine years of professional experience, he has contributed significantly as an Assistant Professor at Suguna College of Engineering and CIET, mentoring students, developing syllabi, coordinating departmental activities, and leading technical clubs and laboratories, including the Solar Energy Research Centre, Renewable Energy Club, and Thermal Engineering Lab. His research portfolio is impressive, encompassing numerous high-impact international journal publications, book chapters, and patents in solar energy technologies, energy efficiency, and IoT-based renewable energy solutions. Notable publications include studies on thermal and enviro-economic performance of evacuated tube solar air collectors and innovative designs such as twisted tape inserts, baffles, and jet impingement systems. He has been actively involved in funded research and consultancy projects, including DST and MSME-supported initiatives, and has served as a reviewer for reputed international journals like Energy Engineering, Scientific Reports, and Journal of Renewable Energy and Environment. Dr. Venkatramanan has also completed several professional certifications and MOOC courses, enhancing his expertise in energy auditing, waste-to-energy conversion, solar energy engineering, steam and gas power systems, and refrigeration and air conditioning. Recognized for his academic contributions, he has received certificates of recognition from Anna University for publishing in Q1 journals and has guided teams achieving awards in national design competitions. He maintains professional memberships with ISME, ISTE, SESI, WSSET, and the Institution of Engineers (India), reflecting his commitment to advancing mechanical and renewable energy engineering.

Profiles: Orcid | Google Scholar

Featured Publications

Kumar, A. V., Arjunan, T. V., Seenivasan, D., Venkatramanan, R., & Vijayan, S. (2021). Thermal performance of an evacuated tube solar collector with inserted baffles for air heating applications. Solar Energy, 215, 131–143.

Veera Kumar, A., Arjunan, T. V., Seenivasan, D., Venkatramanan, R., & Vijayan, S. (2021). Techno-economic evaluation of an evacuated tube solar air collector with inserted baffles. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 235(4), 1027–1038.

Kumar, A. V., Arjunan, T. V., Seenivasan, D., Venkatramanan, R., Vijayan, S., & Matheswaran, M. M. (2021). Influence of twisted tape inserts on energy and exergy performance of an evacuated tube-based solar air collector. Solar Energy, 225, 892–904.

Venkatramanan, R., Arjunan, T. V., Seenivasan, D., & Kumar, A. V. (2022). Parametric study of evacuated tube collector solar air heater with inserted baffles on thermal network for low-temperature applications. Journal of Cleaner Production, 350, 132941.

Venkatramanan, R., Arjunan, T. V., Seenivasan, D., Veerakumar, A., Vijayan, S., & Matheswaran, M. M. (2025). Energetic and enviro-economic performance of medium-scale evacuated tube solar air heating system for industrial applications. Journal of Power and Energy, 239(2), 388–399.

Karthickmunisamy, T., Veerakumar, A., Vijayan, S., & Venkatramanan, R. (2025). Experimental investigation of an evacuated tube solar air heater with baffles and perforated twisted tapes for air heating applications. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering. (Accepted for publication).