Innovative Research Award
Sina Samadi Gharehveran
Tabriz Islamic Art University, Iran
| Sina Samadi Gharehveran | |
|---|---|
| Affiliation | Tabriz Islamic Art University |
| Country | Iran |
| Scopus ID | 57741285600 |
| Documents | 21 |
| Citations | 367 |
| h-index | 11 |
| Subject Area | Optimization |
| Event | Math Scientist Awards |
| ORCID | 0000-0001-5442-2485 |
Sina Samadi Gharehveran is a researcher affiliated with Tabriz Islamic Art University, Iran, whose documented research profile is associated with optimization and computational approaches to complex engineering and scientific problems. The researcher has 21 indexed documents, 367 citations, and an h-index of 11, providing a measurable basis for academic recognition. The profile is considered in the context of the Math Scientist Awards.
Abstract
Sina Samadi Gharehveran’s research profile reflects scholarly activity in optimization, with applications extending to electric vehicles, adaptive cybersecurity, intelligent agricultural diagnosis, and predictive construction materials research. Available bibliographic indicators document 21 research documents, 367 citations, and an h-index of 11. Recent publications demonstrate the application of multi-objective optimization, reinforcement learning, active vision, and interpretable machine-learning techniques to multidisciplinary problems.
Keywords
- Optimization
- Multi-objective optimization
- Electric vehicles
- Reinforcement learning
- Artificial intelligence
- Predictive modeling
Introduction
Optimization research addresses the systematic selection of solutions under defined objectives and constraints. In contemporary computational research, optimization increasingly intersects with artificial intelligence and machine learning to address complex, data-intensive systems. Gharehveran’s recent publication record illustrates this multidisciplinary orientation, particularly through work involving multi-objective optimization and intelligent computational methods. [1]
Research Profile
The research profile is associated with 21 documents indexed in Scopus, 367 citations, and an h-index of 11. These indicators provide quantitative evidence of research dissemination and citation influence within the indexed scholarly literature. The primary subject area identified for the researcher is Optimization, while the publication portfolio shows applications across engineering, cybersecurity, agriculture, and materials-related computational research. [2]
Research Contributions
A notable research direction concerns the optimization of battery quantity and arrangement in electric vehicles through multi-objective optimization. This work addresses a practical engineering design problem in which competing performance considerations must be evaluated systematically. [3] Other recent work applies graph-aware reinforcement learning to adaptive advanced persistent threat hunting in dynamic enterprise networks, demonstrating the relevance of intelligent optimization strategies to cybersecurity environments. [4]
Publications
- Optimization of the Number of Batteries and their Arrangement in Electric Vehicles Based on Multi-Objective Optimization. Passive Defense, 2026. [3]
- Graph-Aware Reinforcement Learning for Adaptive APT Threat Hunting in Dynamic Enterprise Networks. Technologies, 2026. [4]
- RAVA: a robust recurrent active vision agent for plant disease diagnosis under severe environmental noise. Scientific Reports, 2026. [5]
- Interpretable Prediction of Geopolymer Concrete Compressive Strength Using DBO–CatBoost and SHAP Analysis. Buildings, 2026. [6]
Research Impact
The combination of 367 citations and an h-index of 11 indicates an established level of scholarly visibility within indexed literature. The range of application domains represented in the recent publications also suggests a research approach that connects optimization with practical computational problems. Citation indicators should, however, be interpreted alongside publication quality, disciplinary norms, collaboration patterns, and the characteristics of individual research fields. [2]
Award Suitability
The available profile provides a reasonable scholarly basis for consideration for an Innovative Research Award. The evidence includes measurable citation impact, an established h-index, and recent research addressing optimization and intelligent computational methods in several application areas. The award assessment should consider the complete publication record and applicable evaluation criteria in addition to bibliometric indicators. [1]
Conclusion
Sina Samadi Gharehveran’s documented research profile combines optimization-focused scholarship with interdisciplinary applications involving electric vehicles, cybersecurity, plant disease diagnosis, and predictive materials research. With 21 documents, 367 citations, and an h-index of 11, the profile demonstrates measurable academic impact. Recent publications further indicate engagement with contemporary computational methods, supporting consideration for recognition through the Innovative Research Award.
External Links
References
- Elsevier. (n.d.). Scopus author details: Sina Samadi Gharehveran, Author ID 57741285600. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=57741285600 - Scopus. (n.d.). Author metrics and indexed publication record: Sina Samadi Gharehveran. Elsevier.
- Passive Defense. (2026). Optimization of the Number of Batteries and their Arrangement in Electric Vehicles Based on Multi-Objective Optimization.
https://doi.org/10.47176/pd.2026.1490 - MDPI. (2026). Graph-Aware Reinforcement Learning for Adaptive APT Threat Hunting in Dynamic Enterprise Networks. Technologies.
https://doi.org/10.3390/technologies14100624 - Nature Portfolio. (2026). RAVA: a robust recurrent active vision agent for plant disease diagnosis under severe environmental noise. Scientific Reports.
https://doi.org/10.1038/s41598-026-67160-2 - MDPI. (2026). Interpretable Prediction of Geopolymer Concrete Compressive Strength Using DBO–CatBoost and SHAP Analysis. Buildings.
https://doi.org/10.3390/buildings16163326