Rahim Zahedi | Research Excellence Award | Energy Systems

Research Excellence Award

Rahim Zahedi
University of Tehran, Iran

Rahim Zahedi
Affiliation University of Tehran
Country Iran
Scholar ID uMoggwwAAAAJ
Documents 100
Citations 5,128
h-index 38
Subject Area Energy Systems
Event International Research Awards on Network Science & Graph Analytics
ORCID 0000-0001-6837-8729

Rahim Zahedi is a researcher affiliated with the University of Tehran whose academic profile is associated with the field of Energy Systems. The supplied scholarly profile records 100 documents, 5,128 citations, and an h-index of 38, indicating an established publication and citation record in research related to energy systems and associated scientific and engineering domains. [1]

Abstract

This academic recognition profile presents Rahim Zahedi in connection with the Research Excellence Award and the International Research Awards on Network Science & Graph Analytics. Based on the supplied scholarly metrics, Zahedi has an academic record comprising 100 documents, 5,128 citations, and an h-index of 38. His identified subject area is Energy Systems, a multidisciplinary field encompassing energy conversion, infrastructure, system analysis, optimization, sustainability, and the integration of emerging technologies. [1]

Keywords

Rahim Zahedi; Research Excellence Award; University of Tehran; Energy Systems; energy research; energy-system analysis; sustainable energy; energy technology; scholarly impact; research publications; citation impact; network science; graph analytics.

Introduction

Energy systems research has become increasingly interdisciplinary as researchers address reliability, efficiency, sustainability, integration of technologies, and the changing structure of modern energy infrastructure. Within this environment, scholarly assessment commonly considers publication activity alongside citation indicators and broader research contributions. Rahim Zahedi’s supplied profile indicates a substantial scholarly record in Energy Systems, with 100 documents and 5,128 citations and an h-index of 38. [1]

Research Profile

Zahedi’s stated subject area is Energy Systems, positioning his research profile within a field that connects engineering, applied science, mathematical analysis, computational methods, and sustainable infrastructure. His institutional affiliation with the University of Tehran provides an academic setting for research and scholarly collaboration. The supplied Google Scholar identifier is uMoggwwAAAAJ, which can be used to review the available public scholarly record. [1]

  • Primary subject area: Energy Systems.
  • Institutional affiliation: University of Tehran.
  • Reported scholarly documents: 100.
  • Reported citations: 5,128.
  • Reported h-index: 38.

Research Contributions

The available information supports recognition of Zahedi’s contribution primarily through the scale and visibility of his scholarly record rather than through individual publication-level claims. A portfolio of 100 documents provides evidence of sustained research activity, while 5,128 reported citations indicate that the associated scholarly output has received substantial academic attention. [1] In the broader context of Energy Systems, such research activity can contribute to the development and assessment of analytical approaches for complex energy challenges.

Publications

The supplied data identifies 100 scholarly documents associated with the research profile. Individual article titles, journals, publication years, and DOI identifiers were not included in the source information provided for this page; therefore, no specific publication titles or DOI records are attributed to Zahedi without verification. The public Google Scholar profile provides a suitable starting point for reviewing the researcher’s publication record and citation information. [1]

Research Impact

Research impact can be considered through several complementary dimensions, including scholarly productivity, citation activity, research continuity, and relevance to an established scientific field. Zahedi’s reported 5,128 citations and h-index of 38 provide quantitative indicators of scholarly visibility within the supplied profile. [1] These indicators should be interpreted alongside publication quality, methodological contribution, collaboration, practical relevance, and independent assessment when evaluating the overall significance of research.

Award Suitability

Rahim Zahedi’s supplied academic profile is relevant to consideration for a Research Excellence Award because it combines an identified specialization in Energy Systems with a substantial reported publication and citation record. The 100 documents and h-index of 38 indicate sustained scholarly activity and measurable citation visibility. [1] Final award assessment should remain subject to the official evaluation procedures, supporting documentation, publication evidence, and independent review established by the International Research Awards on Network Science & Graph Analytics. [2]

Conclusion

Rahim Zahedi’s supplied profile represents an established research record associated with Energy Systems and the University of Tehran. With 100 reported documents, 5,128 citations, and an h-index of 38, the profile demonstrates sustained scholarly productivity and measurable academic visibility. [1] These characteristics provide a substantive basis for academic recognition while leaving detailed evaluation of individual research contributions to the relevant award review process.

References

  1. Google Scholar. (n.d.). Rahim Zahedi, Google Scholar author profile. Author ID uMoggwwAAAAJ.https://scholar.google.com/citations?user=uMoggwwAAAAJ&hl=en
  2. International Research Awards on Network Science & Graph Analytics. (n.d.). Award information and nomination website.https://networkscience-conferences.researchw.com/

Sowrov Komar Shib | Renewable Energy | Young Researcher Award

Mr. Sowrov Komar Shib | Renewable Energy | Young Researcher Award

Research Assistant, American International University-Bangladesh (AIUB), Bangladesh

Sowrov Komar Shib is an ambitious and driven Electrical and Electronics Engineering student at American International University-Bangladesh (AIUB), with a focus on IoT, renewable energy systems, power electronics, and VLSI design. Recognized for his award-winning ideas and research, Sowrov has published and presented papers at international conferences. He is passionate about advancing technology through collaborative leadership, innovation, and lifelong learning.

🔹Professional Profile:

Google Scholar Profile

🎓Education Background

Bachelor of Science in Electrical and Electronics Engineering (EEE)
American International University-Bangladesh (AIUB)
January 2021 – Present (Expected Graduation: May 2025)
CGPA: 3.94/4.00
Relevant Courses: Power System Analysis, Renewable Energy Systems, Digital System Design, Programming Language, VLSI, Telecommunication Engineering

💼 Professional Development

  • Research Assistant at ReGED (Dec 2023 – Nov 2024)
    Collaborated on renewable energy integration research, which led to an IEEE publication. Designed simulations using MATLAB, Python, and Simulink, contributing to data analysis and presentation of findings.

  • General Student Member at IEEE AIUB Student Branch (Sep 2023 – Present)
    Actively participated in networking, technical workshops, webinars, and publication initiatives with fellow members and professionals in Electrical and Electronics Engineering.

🔬Research Focus

Sowrov has authored several papers in notable international conferences and journals. His most recent work, “Perspectives and Pathways to a Carbon-free Advanced Power Network (CAPN) in Bangladesh for Sustainable Development,” is under review with Elsevier, highlighting his research on sustainable energy solutions. He has also presented at IEEE TENCON 2024 and SAGE-Grace 2024, further showcasing his contributions to the field of renewable energy.

📈Author Metrics:

Sowrov has authored several papers in notable international conferences and journals. His most recent work, “Perspectives and Pathways to a Carbon-free Advanced Power Network (CAPN) in Bangladesh for Sustainable Development,” is under review with Elsevier, highlighting his research on sustainable energy solutions. He has also presented at IEEE TENCON 2024 and SAGE-Grace 2024, further showcasing his contributions to the field of renewable energy.

🏆Awards and Honors:

  • Dean’s Awards for outstanding academic performance (Multiple semesters)

  • Magna Cum Laude (Silver Medal) – Graduating with distinction from AIUB, Class of 2025 (Expected)

  • 70% Academic Scholarship for consistent excellence

  • Best Paper Award at UMYGRACE 2024, Indonesia for “Smart IoT-enabled Solar Power Supervision and Regulation System”

  • VLSI Competition at MindSpark23 – Secured 5th Position in a national-level competition

  • IEEE TENCON 2024, SAGE-Grace 2024, ICA-SYMP’2025, and I-Coste 2024 – Accepted and presented papers in international conferences.

📝Publication Top Notes

1. IoT-based Smartgrid System for Continuous Power Supply in Smart Cities

  • Authors: SK Shib, DR Dipto, MTI Mim, MA Islam, R Akter, A Shufian
  • Conference: 2024 3rd International Conference on Advancement in Electrical and Electronics Engineering
  • Year: 2024
  • Abstract: This paper explores the potential of IoT technologies in smart grids for ensuring continuous and reliable power supply in smart cities. It discusses the integration of IoT-based solutions to monitor, control, and manage power distribution efficiently, thereby enhancing the resilience and sustainability of urban power systems.

2. Smart IoT-enabled Solar Power Supervision and Regulation System

  • Authors: SK Shib, MT Rahman, DR Dipto, A Shufian, MSR Zishan, R Basak
  • Publication: BIO Web of Conferences 144, 02004
  • Year: 2024
  • Abstract: The paper presents an IoT-enabled solar power supervision and regulation system. It discusses the use of IoT sensors to monitor the performance of solar power systems in real-time and regulate their output to optimize energy distribution. This system is especially useful for integrating renewable energy sources into the grid efficiently.

3. Design and Feasibility of Off-Grid Photovoltaic Charging Stations for EVs in Remote Areas

  • Authors: MI Hossain, SK Shib, DR Dipto, T Banik, A Shufian, MMH Emon
  • Conference: 2024 International Conference on Innovation and Intelligence for Informatics and Computing
  • Year: 2024
  • Abstract: This research investigates the design and feasibility of off-grid photovoltaic (solar) charging stations for electric vehicles (EVs) in remote areas. The study highlights the potential of using renewable energy in areas with limited access to grid electricity, providing an eco-friendly and sustainable solution for electric vehicle charging.

4. Perspectives and Pathways to a Carbon-free Advanced Power Network (CAPN) in Bangladesh for Sustainable Development

  • Authors: A Shufian, MT Rahman, SK Shib, DR Dipto, S Kabir, SA Fattah
  • Publication: Cleaner Energy Systems 10, 100172
  • Year: 2025
  • Abstract: This paper proposes a carbon-free advanced power network (CAPN) for Bangladesh, aiming to transition the country toward sustainable energy solutions. It discusses the pathways to integrate renewable energy sources into the national grid, with a focus on policy recommendations, technical challenges, and the economic impact of such a transition.

5. Fuzzy Logic-controlled Three-phase Dynamic Voltage Restorer for Enhancing Voltage Stabilization and Power Quality

  • Authors: A Shufian, SK Shib, DR Dipto, MT Rahman, N Hannan, SA Fattah
  • Publication: International Journal of Electrical Power & Energy Systems 166, 110517
  • Year: 2025
  • Abstract: This research introduces a fuzzy logic-controlled three-phase dynamic voltage restorer (DVR) designed to improve voltage stabilization and power quality in electrical systems. The paper presents the design and simulation results for a DVR that uses fuzzy logic to dynamically adjust the voltage to compensate for power quality issues, ensuring stable and reliable power delivery.

Conclusion:

Sowrov Komar Shib is a highly deserving candidate for the Young Researcher Award based on his exceptional academic record, innovative research contributions, and demonstrated passion for renewable energy and smart grid systems. His work not only advances the field of electrical and electronics engineering but also contributes to global sustainability efforts, particularly in renewable energy integration and IoT-based power solutions. With a strong foundation and the potential for further development, Sowrov’s research will undoubtedly continue to shape the future of energy systems.

To maximize his potential, focusing on broadening his research collaborations, increasing practical applications of his work, and publishing in high-impact journals will allow him to refine his skills and make an even greater impact in his field.