Jalil Jamali | Vehicle Dynamics| Best Researcher Award

Jalil Jamali
Affiliation Islamic Azad University
Country Iran
Scopus ID 37048841700
Documents 22
Citations 429
h-index 9
Subject Area Vehicle Dynamics
Event Global Automobile Award

Best Researcher Award

Jalil Jamali
Islamic Azad University

This academic article presents an overview of Jalil Jamali, a researcher affiliated with Islamic Azad University, highlighting scholarly activities associated with vehicle dynamics. The page summarizes publicly available bibliometric indicators, research contributions, publication profile, and potential relevance for recognition within the Global Automobile Award. Information is organized in a neutral encyclopedic style using available academic metrics and reference sources. Statements are descriptive rather than evaluative and are intended to provide structured background information regarding research productivity and scholarly impact within the reported subject area.[1]

Abstract

Jalil Jamali is associated with Islamic Azad University and has developed a measurable research profile in vehicle dynamics through peer-reviewed publications indexed by Scopus. Reported bibliometric indicators include twenty-two indexed documents, four hundred twenty-nine citations, and an h-index of nine, reflecting sustained scholarly visibility. Research themes generally relate to vehicle engineering, dynamics, modeling, and performance analysis. These indicators provide objective evidence of scientific activity and academic influence. The information summarized here offers a structured overview for readers seeking concise documentation regarding research achievements and possible consideration for academic recognition programs.[1]

Keywords

Vehicle Dynamics, Automotive Engineering, Scopus, Research Metrics, Citations, h-index, Islamic Azad University, Academic Publications, Engineering Research, Global Automobile Award.

Introduction

Vehicle dynamics remains an important engineering discipline supporting safer, more efficient transportation technologies. Jalil Jamali has contributed through scholarly publications indexed in recognized academic databases, demonstrating continued participation in engineering research and dissemination of scientific findings.[1]

Research Profile

The available bibliometric profile reports twenty-two indexed publications, four hundred twenty-nine citations, and an h-index of nine. These quantitative indicators describe research productivity and citation influence while providing standardized measures frequently referenced in academic evaluation processes.[1]

Research Contributions

Published studies primarily address topics related to vehicle dynamics, engineering analysis, and performance evaluation. Such research contributes to broader scientific understanding by improving analytical methods, supporting engineering applications, and encouraging continued investigation within automotive technology fields.[2]

Publications

The researcher has produced publications indexed within Scopus, representing contributions to peer-reviewed scientific literature. Individual articles include engineering investigations relevant to vehicle dynamics and related technical disciplines, supported by persistent scholarly identifiers including Digital Object Identifiers where assigned.[2]

Research Impact

Citation statistics indicate that published work has received attention from subsequent researchers. Bibliometric measures should be interpreted alongside research quality and disciplinary context, offering objective evidence supporting visibility and continued academic engagement.[1]

Award Suitability

Available academic metrics suggest an established publication record within vehicle dynamics. Eligibility for recognition by the Global Automobile Award ultimately depends upon official selection criteria, independent review procedures, and comprehensive assessment conducted by the organizing committee.[3]

Conclusion

Jalil Jamali demonstrates a documented scholarly profile through indexed publications and citation metrics. The information summarized here provides a concise academic overview intended for reference purposes while maintaining a neutral and evidence-based encyclopedic presentation.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Jalil Jamali, Author ID 37048841700. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=37048841700
  2. Global Automobile Award. Official event information.
    https://automobileaward.com/

Assist. Prof. Dr. Mortadha GRAA | Vehicle Dynamics | Vehicle Dynamics Award

Assist. Prof. Dr. Mortadha GRAA | Vehicle Dynamics | Vehicle Dynamics Award

Doctor Engineer | Laboratory of Mechanical Engineering (LGM)/National Engineering School of Monastir | Tunisia

Assist. Prof. Dr. Mortadha GRAA is an accomplished researcher and academic with extensive experience in mechatronics, mechanical engineering, and technology transfer. He has held leadership roles in research management, notably directing technology transfer initiatives and fostering innovation partnerships between academia and industry. His professional background spans design engineering, project management, and academic instruction in transport technologies and machine dynamics. His research interests include rail vehicle dynamics, vibration control, mechatronic system design, and passenger comfort optimization. He possesses strong skills in modeling, simulation, optimization, and intellectual property management, with recognized contributions through training, certifications, and scientific publications. He has achieved 53 Citations,13 Documents, 3 h-index.

Citation Metrics (Scopus)

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53
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13
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3
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Citations

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Featured Publications


Modeling and control of rail vehicle suspensions: A comparative study based on the passenger comfort

– Proc. IMechE Part C: Journal of Mechanical Engineering Science, 2018

Control and vibration of rail vehicle semi-active suspensions with comfort evaluation

– International Journal of Vehicle Noise and Vibration, 2017

Mechatronic suspension design for full rail vehicle system

– Proc. IMechE Part K: Journal of Multi-body Dynamics, 2017

Jinquan Ding | Vehicle Dynamics | Research Excellence Award

 Prof. Jinquan Ding | Vehicle Dynamics | Research Excellence Award

Senior Engineer  |  Zhengzhou University of Light Industry  | China

Prof. Jinquan Ding is a senior engineer with strong expertise in vehicle system dynamics and advanced automotive engineering, contributing extensively to both theoretical development and applied research. His professional experience focuses on vehicle handling dynamics, intelligent electric chassis systems, and suspension kinematics and compliance analysis, with active involvement in high-impact journal and SAE technical publications addressing multi-axle vehicle dynamics, suspension lateral dynamics, and parameter identification methodologies. His research interests center on vehicle dynamics modeling, suspension system analysis, and intelligent chassis control strategies. He demonstrates advanced research skills in dynamic modeling, kinematic analysis, parameter identification, and numerical evaluation methods. His achievements have been recognized through prestigious provincial science and technology progress awards, reflecting sustained research excellence and industry relevance. Overall, his work significantly advances modern vehicle dynamics research and engineering practice. He has achieved 42 Citations, 10 Documents,3h-index. 

Citation Metrics (Scopus)

42
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10
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42
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10
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3
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Documents

h-index


View Research Gate Profile

View Scopus Profile

Featured Publications

Youqun Zhao | Vehicle Dynamics | Research Excellence Award

Prof. Dr.Youqun Zhao | Vehicle Dynamics | Research Excellence Award

Second-level Professor  |  Nanjing University of Aeronautics and Astronautics  |  China

Prof. Dr. Youqun Zhao is a leading scholar in vehicle engineering and intelligent transportation systems, with extensive contributions spanning green intelligent transport equipment, new-energy and electric vehicles, vehicle safety and control, non-pneumatic mechanical elastic wheels, and human–machine shared control for autonomous driving. Professional experience reflects long-term leadership in advanced vehicle dynamics, handling inverse dynamics, and intelligent control, alongside visiting and collaborative international research roles. Research interests focus on vehicle system dynamics, unmanned and co-driving vehicles, mechanical elastic wheel technology, suspension and steering control, and energy-efficient mobility systems. Research skills include theoretical modeling, inverse dynamics, multi-objective optimization, control algorithms, simulation–experiment integration, and patent development. Awards and honors include multiple national and ministerial science and technology prizes, invention awards, and recognition among the world’s top 2% scientists. Overall, the work demonstrates sustained impact, innovation, and academic excellence in automotive and intelligent vehicle engineering.He has achieved 2904 Citations, 261 Documents, 28 h-index.

 

Citation Metrics (Scopus)

3000
2500
2000
1500
500
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2904
Citations

261
Documents

28
h-index

Citations

Documents

h-index


View Research Gate Profile

View Scopus Profile

View ORCID Profile

Featured Publications

Hongbo Wang | Vehicle Dynamics | Best Researcher Award

Prof. Hongbo Wang | Vehicle Dynamics | Best Researcher Award

Professor  |  Hefei University of Technology  | China

Prof. Hongbo Wang is a distinguished scholar whose work in intelligent vehicle dynamics and control has shaped both academic research and industrial applications, consistently advancing methodologies in vehicle motion modeling, intelligent control algorithms, and automated driving technologies. With extensive experience leading more than forty national, provincial, and municipal projects, his professional contributions span high-impact investigations into off-road vehicle technology, autonomous driving stability, integrated chassis control, and intelligent mobility systems. His research interests focus on vehicle dynamic behavior analysis, intelligent control strategies, computational modeling, and multi-source information fusion for advanced driving systems, supported by strong research skills in algorithm development, real-time system implementation, experimental platform construction, and interdisciplinary engineering integration. His portfolio of scientific achievements includes more than one hundred academic publications, thirty authorized invention patents, six software copyrights, participation in two provincial standard developments, and the publication of two influential monographs, positioning him as a leading contributor to the field’s evolution. His professional experience is complemented by service roles such as External Expert of the Off-Road Vehicle Technology Branch of the Chinese Society of Automotive Engineers, Member of the Vehicle Control and Intelligentization Technical Committee of the Chinese Association of Automation, and Director of the Anhui Society of Automotive Engineers, reflecting broad recognition across national organizations. His awards include the First Prize of the Science and Technology Award of the Chinese Society of Automotive Engineers, the Second Prize of the Machinery Industry Technology Invention Award, and multiple Anhui Provincial Teaching Achievement Awards, underscoring excellence in both research innovation and educational leadership. Overall, his career demonstrates a sustained commitment to advancing intelligent automotive technologies and fostering academic growth in the engineering community. He has achieved 532 Citations,  63 Documents , 12 h-index.

Profile:  Scopus

Featured Publications 

1. Wang, H., et al. (2025). Multi-objective parallel human–machine steering coordination control strategy of intelligent vehicles path tracking based on deep reinforcement learning. Chinese Journal of Mechanical Engineering (English Edition).

2. Wang, H., et al. (2025). Trajectory tracking multi-constraint model predictive control of unmanned vehicles based on sideslip stiffness estimation with XGBoost algorithm. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering.

3. Wang, H., et al. (2025). Yaw stability control of tractor vehicle based on nonsingular fast terminal sliding mode. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering.

4. Wang, H., et al. (2025). Intelligent vehicle path tracking coordinated optimization based on dual-steering cooperative game with fault-tolerant function. Applied Mathematical Modelling.

5. Wang, H., et al. (2025). Identification of intrusion obstacles for underground locomotives based on the fusion of LiDAR and wireless positioning technology. International Journal of Vehicle Performance.

Professor Hongbo Wang’s research advances intelligent vehicle control by integrating reinforcement learning, predictive modeling, and human–machine cooperation to enhance safety, stability, and autonomy. His work contributes directly to next-generation intelligent transportation systems, improves industrial vehicle technologies, and supports global innovation in automated mobility.

Parinaz Hosseini | Steering Systems | Best Researcher Award

Mrs. Parinaz Hosseini | Steering Systems | Best Researcher Award

Student  |  Iran university of science and technology  |  Iran

Mrs. Parinaz Hosseini is an emerging researcher in the field of microwave and terahertz engineering, known for her focused contributions to the study and design of advanced metasurfaces and graphene-based structures. As a dedicated PhD scholar at the Iran University of Science and Technology, her research primarily explores reflectarray and transmitarray antennas operating in the terahertz frequency band, emphasizing innovations that enhance beam steering, power efficiency, and reconfigurability for next-generation communication systems. Her expertise extends to the development of hybrid graphene–metal metasurfaces, where she has made notable progress in achieving fully controllable beam-steering mechanisms at 1-THz, a pioneering advancement in the field. Parinaz’s technical acumen is supported by a strong foundation in microwave circuit design and electromagnetic simulation, with additional research experience in active and passive microwave devices and MRI power amplifiers. Her skills include computational modeling, electromagnetic wave manipulation, device optimization, and practical antenna prototyping, allowing her to bridge theoretical innovation with engineering application. Through her publications in reputable journals such as Scientific Reports and IET Microwaves, Antennas & Propagation, she has demonstrated a consistent focus on precision, creativity, and technological advancement. Though early in her career, her work reflects a growing impact within the scientific community, supported by collaborative endeavors and potential for interdisciplinary innovation in terahertz systems. Parinaz aspires to contribute to the advancement of high-frequency communication technologies and intelligent electromagnetic devices through innovative design and materials integration. Her academic integrity, research productivity, and commitment to scientific excellence make her a strong candidate for recognition through competitive awards and academic honors. She has acheived 11 Citations , 3 Documents , 1 h-index .

Profiles:  ORCID  |  Scopus

Featured Publications

  1. Hosseini, P., & Oraizi, H. (2022). Analysis and design of terahertz reflectarrays based on graphene cell clusters. Scientific Reports, 12(1), Article 22117.

  2. Hosseini, P., & Oraizi, H. (2025). Fully controllable beam-steering 1-THz transmitarray using graphene–metal hybrid metasurface. IET Microwaves, Antennas & Propagation.