Faris Sewailem | Smart Manufacturing System | Innovative Research Award

Innovative Research Award

Faris Sewailem
Affiliation KACST
Country Saudi Arabia
Scopus ID 6505741762
Documents 40
Citations 1,394
h-index 14
Subject Area Fiber Reinforced Polymers
Event International Robotics and Automation Awards
ORCID 0000-0002-5251-7330

Faris Sewailem

KACST

Faris Sewailem is a researcher affiliated with KACST whose scholarly work has contributed to the advancement of fiber reinforced polymer technologies and structural engineering applications. His publications demonstrate sustained research activity involving composite materials, rehabilitation of infrastructure, and innovative strengthening techniques for civil engineering systems. The breadth of his scientific contributions and citation record reflects continuing influence within materials and structural engineering research communities.[1]

Abstract

Faris Sewailem has established a research profile centered on fiber reinforced polymers, structural rehabilitation, and advanced composite applications for civil infrastructure. His publications investigate the mechanical behavior, durability, and strengthening performance of composite materials under diverse loading conditions while supporting safer and more sustainable engineering practices. Through interdisciplinary collaboration and consistent scholarly productivity, his work has contributed to improved structural design methodologies and practical engineering solutions. His publication record, citation performance, and measurable academic influence demonstrate sustained engagement with internationally recognized research activities that continue to support innovation across structural engineering and advanced construction materials.[2]

Keywords

Fiber Reinforced Polymers, Composite Structures, Structural Engineering, Infrastructure Rehabilitation, Civil Engineering, Structural Strengthening, Advanced Materials, Durability Assessment, Sustainable Construction, Engineering Materials.

Introduction

Research involving fiber reinforced polymers has become increasingly important because advanced composite materials provide efficient solutions for strengthening, repairing, and extending the service life of civil infrastructure. The discipline integrates material science with structural engineering to improve safety, durability, and sustainability. Faris Sewailem has contributed to this evolving research landscape through investigations that emphasize engineering performance, analytical evaluation, and practical implementation of composite systems within modern infrastructure projects.[3]

Research Profile

The research profile of Faris Sewailem reflects sustained scholarly activity supported by forty indexed publications, more than one thousand citations, and an h-index of fourteen. His investigations encompass structural strengthening technologies, composite material characterization, and engineering applications that bridge theoretical understanding with practical infrastructure challenges. The overall publication record demonstrates continuous participation in internationally indexed engineering research and collaborative scientific development.[1]

Research Contributions

His research contributions focus on evaluating the structural efficiency of fiber reinforced polymer systems for rehabilitation, seismic strengthening, and long-term durability improvement. The published studies combine laboratory experimentation, numerical analysis, and engineering evaluation to improve understanding of composite material behavior. These investigations support evidence-based engineering decisions while encouraging broader adoption of advanced strengthening technologies within modern construction and infrastructure management.[4]

Publications

The publication portfolio includes peer-reviewed journal articles addressing composite structural systems, reinforced concrete rehabilitation, and advanced engineering materials. These studies have appeared in internationally recognized engineering journals and collectively contribute to ongoing research concerning infrastructure resilience, material optimization, and structural safety. The documented publication record illustrates consistent scientific productivity and meaningful engagement with contemporary engineering challenges across academic and applied environments.[2]

Research Impact

The measurable research impact is reflected through citation performance, sustained publication activity, and continued relevance within structural engineering literature. His work provides valuable references for researchers investigating advanced composite materials while also informing engineers seeking practical rehabilitation strategies. The integration of scientific rigor with engineering applicability has strengthened the visibility and usefulness of his research across academic and professional communities.[1]

Award Suitability

The Innovative Research Award recognizes researchers demonstrating sustained scholarly excellence, measurable scientific influence, and meaningful contributions within their respective disciplines. Based on documented publication metrics, research consistency, and recognized expertise in fiber reinforced polymers, Faris Sewailem demonstrates characteristics commonly associated with this recognition. His work supports scientific advancement through practical engineering innovation while maintaining strong academic visibility within internationally indexed literature.[1]

Conclusion

Faris Sewailem has developed a respected academic profile through sustained research involving fiber reinforced polymers and structural engineering. His publication record, citation performance, and continued scientific contributions demonstrate an enduring commitment to advancing engineering knowledge. The combination of research productivity, practical relevance, and measurable scholarly influence supports recognition through academic award programs celebrating innovation and impactful scientific achievement.[1]

References

  1. Elsevier. (n.d.). Scopus Author Details: Faris Sewailem, Author ID 6505741762. Scopus.
    https://www.scopus.com/pages/authors/6505741762
  2. Google Scholar. (n.d.). Faris Sewailem Citation Profile.
    https://scholar.google.com/citations?user=oLEP2rcAAAAJ&hl=en&oi=sra
  3. Faris Sewailem (2018).Preparation and characterization of glass fiber–reinforced polyethylene terephthalate/linear low density polyethylene (GF-PET/LLDPE) composites.
    https://doi.org/10.1002/pat.4088
  4. Faris Sewailem (2009). Preparation and Characterization of Polymer/Date Pits Composites
    https://doi.org/10.1177/0731684409337339

Dr. Laila Dami | Automatic control | Best Researcher Award

Dr. Laila Dami | Automatic control | Best Researcher Award

Cadi Ayyad University | Morocco

Dr. Laila Dami, is a dedicated researcher and educator in the field of electrical engineering and automation. She earned her doctorate in génie électrique et automatique from the université cadi-ayad, faculté des sciences semlalia, marrakech, with the distinction of très honorable avec félicitations du jury. Her academic background also includes a master’s degree in contrôle informatique industrielle, signaux et systèmes, and a professional licence in génie électrique et informatique industrielle. She has served as a primary school teacher under the ministère de l’éducation nationale du préscolaire et des sports, while actively engaging in higher education through practical teaching assignments at the faculté des sciences semlalia, department of physics. Her academic involvement covers key domains such as optics, Automatic control, digital electronics, and applied electricity. Dr. Dami’s research contributions are reflected in her scholarly metrics, with 12 published documents, 54 citations across 33 documents, and an h-index of 5, underscoring her growing impact in the scientific community. Her expertise bridges theoretical research and practical application, contributing to the advancement of electrical engineering and automation education in morocco.

Profiles: Scopus | Orcid

Featured Publications

Dami, L., Badie, K., Naami, G., & Benzaouia, A. (2025, December). Stabilization of delayed fractional-order Takagi–Sugeno fuzzy positive systems. International Journal of Dynamics and Control.

Badie, K., Dami, L., & Chalh, Z. (2024). H∞ fault detection for 2D discrete Markovian jump systems. International Journal of Systems, Control and Communications.

Dami, L., Benzaouia, A., & Badie, K. (2024, December). Stabilization of continuous two-dimensional fractional-order positive Takagi–Sugeno fuzzy systems with delays. Journal of Control, Automation and Electrical Systems.

Dami, L., & Benzaouia, A. (2023, December). Stabilization of switched two-dimensional fractional-order positive systems modeled by the Roesser model. Journal of Control, Automation and Electrical Systems.

Dami, L., & Benzaouia, A. (2023, December 18). H∞ control for 2D continuous singular systems described by the Roesser model. In 2023 IEEE 11th International Conference on Systems and Control (ICSC).

Dr. Sumit Kumar Pandey | Control System | Best Researcher Award

Dr. Sumit Kumar Pandey | Control System | Best Researcher Award

Jharkhand Rai University | India

Author Profiles

SCOPUS

ORCID

Summary

Dr. Sumit Kumar Pandey is an accomplished academic and administrator with over a decade of experience in electrical engineering education. he holds a ph.d. from nit durgapur and an m.e. with distinction from b.i.t. mesra. his career spans key roles such as associate professor, dean academics, vice principal, and head of department. his research and teaching focus on power electronics, renewable energy integration, and applied electrical systems. through scholarly publications, mentorship, and leadership in examination and curriculum processes, he has significantly contributed to advancing engineering education.

Early academic pursuits

Dr. Sumit Kumar Pandey began his academic journey with a strong foundation in electrical and electronics engineering, earning his b.tech from u.p.t.u. lucknow with a commendable performance. he pursued his m.e. in electrical engineering from b.i.t. mesra, ranchi, graduating with distinction. later, he advanced his expertise by earning a ph.d. from nit durgapur, focusing on Control System, electrical engineering, where his interests included power electronics, control systems, and applied electrical technologies. his early education in j.i.e.c. ranchi and j.s.e.b. ranchi provided a robust base in mathematics and science.

Professional endeavors

With over a decade of teaching and administrative experience, Dr. Pandey has served in multiple academic roles. currently, he is associate professor and dean academics in the electrical engineering department Control System at jharkhand rai university, ranchi. earlier, he worked as an assistant professor at the same university and as a lecturer at the institute of engineering & technology, sitapur. his leadership includes roles as vice principal, head of department, and assistant examination controller, reflecting a blend of teaching expertise and institutional governance.

Contributions and research focus

Dr. Pandey’s research interests lie in electrical engineering with a special emphasis on power electronics, renewable energy integration, and advanced electrical systems. he has contributed to academia not only through classroom teaching but also by guiding practical projects, setting examination papers, and evaluating technical coursework. his scholarly work aims to advance efficient electrical conversion and control, Control System positioning power electronics as a key enabler for sustainable energy solutions.

Impact and influence

Through his roles in academia, Dr. Pandey has mentored numerous engineering students, preparing them for industry and research careers. his administrative initiatives have streamlined examination processes, enhanced curriculum standards, and improved departmental operations. his influence extends to shaping future engineers’ understanding of applied electrical engineering, Control System particularly in emerging areas of power electronics and automation.

Academic cites

Dr. Pandey’s academic profile on google scholar reflects his active engagement in publishing and knowledge dissemination. his works contribute to the growing literature in electrical engineering and provide valuable references for students, Control System researchers, and professionals in related fields.

Legacy and future contributions

Dr. Pandey’s legacy lies in his commitment to academic excellence, leadership in engineering education, and dedication to student development. going forward, he is poised to deepen his research footprint, expand collaborations, and explore innovative applications of power electronics in industrial and renewable contexts. his vision includes fostering research-oriented Control System learning environments and contributing to sustainable technology advancements.

Publications

Title: Modified Kharitonov Theorem Based Optimal PID Controller Design for MIMO Systems
Authors: Sumit Kumar Pandey, Jayati Dey, Subrata Banerjee
Journal: Journal of Electrical Engineering & Technology
Publication Date: May 2023

Title: Generalized discrete decoupling and control of MIMO systems
Authors: Sumit Kumar Pandey, Jayati Dey, Subrata Banerjee
Journal: Asian Journal of Control
Publication Date: November 2022

Title: Design of Optimal PID Controller for Control of Twin Rotor MIMO System (TRMS)
Authors: S.K. Pandey, J. Dey, S. Banerjee
Book: Lecture Notes in Electrical Engineering
Publication Date: 2020

Title: Generalized Decoupling and Robust Control of Unstable MIMO System
Authors: S.K. Pandey, J. Dey, S. Banerjee
Book: Lecture Notes in Electrical Engineering
Publication Date: 2020

Title: Decoupling control of TRMS based on a relative gain array (RGA) and Kharitonov theorem
Authors: S.K. Pandey, J. Dey, S. Banerjee
Conference: Emerging Trends in Engineering, Science and Technology for Society, Energy and Environment – Proceedings of the International Conference in Emerging Trends in Engineering, Science and Technology
Publication Date: 2018

Conclusion

With a strong academic foundation, leadership capabilities, and a research focus in power electronics, Dr. Pandey has established himself as a respected figure in electrical engineering. his influence is evident in student success, institutional improvements, and scholarly contributions. looking ahead, his continued work promises to further enhance technological innovation and academic excellence, leaving a lasting legacy in engineering education.