Kiran Sree Pokkuluri | Machine Learning and Statistics | Excellence in Research Award

Prof. Dr. Kiran Sree Pokkuluri | Machine Learning and Statistics | Excellence in Research Award

Shri Vishnu Engineering College For Women | India

Prof. Dr. Kiran Sree Pokkuluri is a distinguished academician, researcher, and innovator in the field of Artificial Intelligence and Machine Learning with an illustrious career of academic and research excellence. Currently serving as Professor and Head of the Department of Computer Science and Engineering at Shri Vishnu Engineering College for Women, he has significantly contributed to advancing computational intelligence and data-driven innovation in academia and industry. He holds a Ph.D. in Artificial Intelligence from JNTU-Hyderabad and has an impressive scholarly record with over 100 research publications in reputed SCI and Scopus-indexed journals, a citation count exceeding 653, an h-index above 13, and an Documents exceeding 152, reflecting the global impact of his research. His research areas include Deep Learning, Healthcare Analytics, Bioinformatics, IoT Power Optimization, Big Data Analytics, and Cloud Computing. Dr. Sree has authored six textbooks with ISBNs on Artificial Intelligence, Machine Learning, and Deep Learning, and has filed and published six patents in the domains of AI and intelligent systems. His innovations such as the Hybrid Deep Neural ZF Network (HDNZF-Net) have set new benchmarks in real-time speech enhancement for speech-impaired individuals and IoT optimization. He has completed five major funded projects and collaborated with premier institutions including Stanford University through the UIF program, fostering cross-disciplinary innovation. A recognized thought leader, Dr. Sree serves as Editor-in-Chief, editorial board member, and reviewer for multiple international journals. His remarkable achievements have earned him prestigious recognitions like the Bharat Excellence Award and Rashtriya Ratan Award, and he has been featured in Marquis Who’s Who in the World. As Global Vice President of the World Statistical Data Analysis Research Association (WSA) and a member of professional bodies such as IEEE, ISTE, CSI, and IAENG, Dr. Kiran Sree continues to inspire excellence in AI-driven research, education, and technological innovation.

Profiles: Scopus Google Scholar | Orcid

Featured Publications

Venkatachalam, B., Pokkuluri, K. S., Suguna Kumar, S., Dhandapani, A., & Bhonsle, M. (2025). Adaptive fuzzy heuristic algorithm for dynamic data mining in IoT integrated big data environments. Journal of Fuzzy Extension and Applications, 6(3), 615–636.

Pokkuluri, K. S., Sarkar, P., Birchha, V., Mathariya, S. K., Veeramachaneni, V., & others. (2025). Intelligent reasonable optimization for virtual machine provisioning in hybrid cloud using fuzzy AHP and cost-effective autoscaling. SN Computer Science, 6(7), 1–15.

Sivanuja, M., Raju, P. J. R. S., Prasad, M., RR, P. B. V., Kumar, K. S., & Pokkuluri, K. S,. (2025). A novel ensemble-based deep learning framework combining CNN and transfer learning models for enhanced wildfire detection. In Proceedings of the 2025 International Conference on Computational Robotics, Testing and Applications.

Alzubi, J. A., Pokkuluri, K. S., Arunachalam, R., Shukla, S. K., Venugopal, S., & others. (2025). A generative adversarial network-based accurate masked face recognition model using dual scale adaptive efficient attention network. Scientific Reports, 15(1), 17594.

Pokkuluri, K. S., Chandanan, A. K., Mishra, A. K., Jyothi, D., Lavanya, M. S. S. L., & others. (2025). Deep learning-enhanced intrusion detection and privacy preservation for IIoT networks. In Proceedings of the 2025 4th International Conference on Distributed Computing and Electrical Systems.

Ahmad Abuhani | Machine Learning and Statistics | Best Researcher Award

Assist Prof. Dr. Ahmad Abuhani | Machine Learning and Statistics | Best Researcher Award

Middle East University | Jordan

Assist Prof. Dr. Ahmad Abuhani is an accomplished Assistant Professor of Interior Design at the Faculty of Engineering and Design, Middle East University, Amman, Jordan, known for his distinguished academic, artistic, and research achievements. He earned his B.Sc., M.Sc., and Ph.D. in Interior Design from the Moscow State University of Applied Arts named after S.G. Stroganov, Russia, where he specialized in interior composition, architectural planning, and the artistic formation of traditional Jordanian housing. His doctoral research, titled “The Construction System and Technical Composition of the Interior Design of the Jordanian Home,” demonstrates his dedication to blending cultural identity with modern design principles. Dr. Abu Hani has held several academic and administrative positions, including Head of the Interior Design Department at Middle East University, Amman University, and Yarmouk University. His teaching expertise covers a wide range of design areas such as architectural drawing, color theory, space planning, and professional practice. His scholarly contributions include publications in international journals and conferences focusing on design aesthetics, visual communication, and creative methodology. His research interests span fine and applied arts, architectural design, descriptive geometry, and color theory. A member of the Fine Artists Association (Amman) and the International Council of Societies of Industrial Design (ICSID), he also serves as a reviewer for Horizon Research Publishing and participates in multiple academic committees and juries. Dr. Abu Hani has exhibited his work in 15 personal and 9 collective exhibitions across Jordan and Russia, receiving prestigious awards including first place in national art competitions and recognition from the Ministry of Culture, Dr. Abu Hani continues to make impactful contributions to the fields of interior design, applied arts, and creative education, combining innovation with cultural and academic excellence.

Profiles: OrcidGoogle Scholar 

Yongsheng Wang | Descriptive and Inferential Statistics | Excellence in Research Award

Assoc Prof. Dr. Yongsheng Wang | Descriptive and Inferential Statistics | Excellence in Research Award

Taiyuan University of Technology | China

Assoc Prof. Dr. Yongsheng Wang is an Associate Professor in the College of Materials Science & Engineering at Taiyuan University of Technology, China. His research focuses on alloy materials and coating design, fabrication, and characterization, including high-entropy alloys, additive manufacturing, diamond coatings, and surface treatments. He obtained his Ph.D. from the University of Science & Technology Beijing and completed postdoctoral research at Beihang University, with a visiting scholar experience at Purdue University, United States. Dr. Wang has made significant contributions to the development of advanced alloy systems and surface engineering technologies. He has published over 60 peer-reviewed scientific papers in reputed international journals, authored several high-impact studies on metallic glass composites, Ti-based alloys, and high-entropy materials, and holds nine patents, including one granted in the United States. His work has received multiple financial supports from the National Natural Science Foundation of China, the China Postdoctoral Science Foundation, the Shanxi Provincial Natural Science Foundation, and the State Key Laboratory of Advanced Metal Materials. With an impressive h-index of 18, over 1,013 citations, and approximately 91 research documents, his research has established him as a leading expert in materials science. Dr. Wang’s technical expertise covers a wide range of experimental techniques such as scanning electron microscopy, X-ray diffraction, nanoindentation, and additive manufacturing, contributing to the understanding and optimization of mechanical properties, microstructures, and performance of next-generation alloy materials.

Profiles: Scopus | Orcid 

Featured Publications

Qi, J., Wu, Y., Zhang, C., Yu, S., Wang, Y., Liu, Y., & Hei, H. (2025). Ultraviolet photodetector of TiO₂ film in different phase on various substrates. Ceramics International.

Mu, Y., Liang, Y., Sheng, J., Zhang, C., Guo, Z., Yang, G., Sun, T., Wang, Y., & Lin, J. (2025). A novel approach to coating for improving the comprehensive high-temperature service performance of TiAl alloys. Journal name, volume(issue), page range.

Sun, D., Wang, H., Wang, Y., Guo, Y., Liang, Y., & Lin, J. (2025). Microstructural evolution and densification behavior of high-Nb TiAl produced by powder forging.

Sun, D., Wang, H., Wang, Y., Guo, Y., Liang, Y., & Lin, J. (2025). Low-temperature deposition of CVD diamond films on HfNbTaMo medium entropy alloy: Morphology, process and wear properties. Surface and Coatings Technology, 509, 130887.

Wang, Y., Hou, M., Huang, Z., Xu, Y., Tan, C., & Xiao, H. (2025). Effect of heat treatment on microstructure and mechanical properties of a new alpha-titanium alloy Ti-6.0Al-3.0Zr-0.5Sn-1.0Mo-1.5Nb-1.0V. Journal of Materials Engineering and Performance, 34, 12348–12358.

Haifa Jammeli | Operations Research and Statistical Optimization | Best Researcher Award

Dr. Haifa Jammeli | Operations Research and Statistical Optimization | Best Researcher Award

Normasys | France

Dr. Haifa Jammeli is a research fellow at the Institut Supérieur de Gestion de Tunis, specializing in business computing and operations research. She holds a PhD from the Higher Institute of Management in Tunisia and a Master’s degree in Logistics and Transportation Sciences from the Higher Institute of Logistics and Transportation, Sousse University. Her academic and professional journey spans over a decade, with significant contributions to supply chain optimization, AI in logistics, and sustainable urban planning. She is a part-time instructor at Paris Nanterre University and NEOMA Business School, teaching courses in supply chain management, operations research, data analysis, and IT project management. Her research focuses on optimizing transportation routes for COVID-19 patients and cash logistics using tools like CPLEX, QGIS, and Python, and she has developed AI models to forecast urban solid waste generation and propose green logistics solutions for household waste collection. With over 70 citations across nine publications, her work has been presented at international conferences and published in journals such as IEEE Transactions on Engineering Management and Annals of Operations Research. Her h-index is 10, reflecting both productivity and impact in her field. She has received awards including the Perficio Award for Best Woman Entrepreneur of the Year and was a finalist for the IFROS Prize for Operational Research in Development. Fluent in English, French, and Arabic, she combines strong technical skills (CPLEX, MATLAB, Python, R, SQL, QGIS) with experience in teaching, project leadership, and applying AI-based decision models to real‐world sustainability challenges.

Profiles: Scopus | Orcid

Featured Publications

Alaya, H., Jammeli, H., Ben Abdelaziz, F., Masmoudi, M., & Verny, J. (2024). Sustainable logistics for transfer of COVID-19 patients: Lesson learned from France. International Transactions in Operational Research.

Jammeli, H., & Verny, J. (2024). A multi-objective model for two-level distribution system in the city of Paris. Annals of Operations Research. (Accepted for publication)

Jammeli, H., Khefacha, A., Sellei, B., & Verny, J. (2023, October 18–21). The impact of AI tools in education environment. In 2023 IEEE ASEE Frontiers in Education Conference, College Station, Texas.

Jammeli, H., Alaya, H., & Verny, J. (2023, October 23–25). An analysis of the role of the Internet of Things and sensor technologies in optimizing waste management in the city of Sousse, Tunisia . World Recycling Convention, Madrid, Spain.

Jammeli, H., & Verny, J. (2022). A literature review for green smart home delivery problem in urban environments. In 2022 International Conference on Decision Aid Sciences and Applications (DASA) (pp. 756–760). IEEE.

Saikat Biswas | Operations Research and Statistical Optimization | Best Researcher Award

Dr. Saikat Biswas | Operations Research and Statistical Optimization | Best Researcher Award

IIT Roorkee | India

Dr. Saikat Biswas is an Indian chemical engineer and academic whose research primarily focuses on computational fluid dynamics (CFD), multiphase flow, and microfluidics, with a special emphasis on droplet dynamics including breakup, splitting, and the transition from dripping to jetting in complex microchannel geometries. He earned his PhD in Chemical Engineering from the Indian Institute of Technology Guwahati (2016–2023), where his doctoral work investigated droplet breakup dynamics in confined microscale flows, and previously completed both his M.Tech and B.Tech in Chemical Engineering at the National Institute of Technology Agartala. Throughout his academic journey, he has published 14 documents, accumulating 41 citations and achieving an h-index of 3, reflecting his growing impact in the field. His contributions include both numerical and computational studies, such as two-dimensional and three-dimensional simulations of droplet splitting at T-junctions and multifurcating channels, investigations of flow-focusing geometries, and analyses of the role of viscosity ratio, surface tension, and channel design in influencing microfluidic droplet behaviour. Skilled in advanced tools such as ANSYS Fluent, COMSOL Multiphysics, OpenFOAM, and MATLAB, he integrates computational methods with engineering applications to address fundamental and applied challenges. Recognized as hard-working, adaptable, and collaborative, Biswas continues to contribute to the advancement of microfluidics and multiphase flow research.

Profiles: Scopus | Google Scholar | Orcid

Featured Publications

“Digital electronic based portable device for colorimetric quantification of ketones and glucose level in human urine”

“Droplet splitting in multifurcating microchannel: A three-dimensional numerical simulation study”

“3D simulation of dripping and jetting phenomena in a flow-focusing geometry”

“A computational study on transition mechanism of dripping to jetting flow in a flow focusing geometry”

“Influence of microchannel geometry on droplet breakup dynamics: A computational study”

Hexin Zhang | Descriptive and Inferential Statistics | Best Paper Award

Dr. Hexin Zhang | Descriptive and Inferential Statistics | Best Paper Award

Dr. Hexin Zhang | Harbin Engineering University | China

Dr. Hexin Zhang serves as an Associate Professor and Ph.D. Supervisor at the School of Materials Science and Chemical Engineering, Harbin Engineering University. His academic journey has been guided by a dedication to advancing the field of high-temperature composite materials, superalloys, and additive manufacturing. With consistent contributions to research and education, Dr. Zhang has established himself as a recognized scholar whose work bridges fundamental understanding with industrial application. His expertise reflects not only in his technical research but also in the mentorship of students and the leadership of collaborative projects. Through his professional efforts, he has nurtured an academic path marked by innovation, curiosity, and the pursuit of impactful scientific progress. His work remains committed to developing solutions that align with the evolving challenges of materials science while setting benchmarks that inspire colleagues and students alike across research and industrial communities.

Profile

Scopus

Education

Dr. Zhang pursued rigorous academic training in materials science, which laid the foundation for his impactful career. His undergraduate education provided a comprehensive grounding in chemistry and material fundamentals, equipping him with the tools to navigate complex research challenges. His postgraduate journey deepened this knowledge through advanced study in high-temperature materials and structural applications, allowing him to build expertise in addressing technical frontiers of engineering innovation. The doctoral training he received emphasized both theoretical understanding and experimental practice, guiding him to investigate emerging material systems with precision and creativity. His educational background combines strong academic discipline with applied problem-solving, reinforcing his ability to contribute meaningfully to both scientific discovery and industrial implementation. This solid academic pathway has directly shaped his role as a researcher, educator, and supervisor, positioning him to guide future generations while continuing to explore new research possibilities in his chosen fields.

Experience

Dr. Zhang has successfully led and contributed to projects supported by various funding bodies, including national foundations, special research programs, and regional initiatives. His portfolio includes collaborations with both academic and industrial partners, reflecting his commitment to transforming laboratory findings into practical technologies. Through these roles, he has gained invaluable experience in project management, cross-disciplinary teamwork, and academic leadership. His efforts span from fundamental research into high-performance materials to applied studies that directly serve industrial needs. By working with industry collaborators, he has fostered the integration of cutting-edge knowledge into real-world applications, enhancing technological progress in key sectors. His role as a Ph.D. Supervisor highlights his ability to mentor students and nurture talent, ensuring the sustainability of research excellence. Collectively, his experience exemplifies a dynamic balance between scholarly inquiry, practical application, and academic mentorship within the evolving domain of materials science.

Research Interests

Dr. Zhang’s research interests revolve around the development and optimization of high-temperature composite materials, superalloys, and additive manufacturing techniques. He explores structural design strategies that improve material performance under demanding conditions, with particular emphasis on durability, thermal stability, and mechanical resilience. His work aims to refine the performance of engineering materials to meet the growing challenges of modern industries such as aerospace, energy, and advanced manufacturing. He also investigates innovative methods in additive manufacturing to enhance precision, reduce costs, and create complex structures that were previously unattainable with conventional techniques. By combining experimental approaches with theoretical insights, his research offers comprehensive solutions that bridge academic exploration and industrial need. This multidisciplinary focus underscores his commitment to fostering new knowledge while addressing practical challenges, making his contributions relevant both in academia and in fields that depend on advanced material technologies.

Award Recognitions

Dr. Zhang has received recognition for his contributions to scientific research and academic leadership. His achievements have been acknowledged through competitive research grants, invitations to contribute to academic committees, and opportunities to collaborate on high-impact projects. These distinctions reflect his capacity to lead with innovation and to make lasting contributions within his area of expertise. His consistent pursuit of excellence, coupled with his ability to align research with industrial needs, highlights his distinguished role within the scientific community. His awards and honors not only represent personal success but also underscore the collective progress of his teams and collaborators. Each recognition reinforces the importance of his research in advancing material science applications, while also motivating future endeavors aimed at solving critical technological challenges. His professional acknowledgments illustrate his standing as a respected scholar and an influential contributor to the global research landscape.

Publication Top Notes

Impact of Secondary γ’ Precipitate on the High-Temperature Creep Properties of DD6 Alloy

Journal: Metals and Materials International
Authors: Xiaopeng Li, Shan Yu, Yao Huang, Yuqi Wang, Hexin Zhang, Chengzhi Zhao

Microstructural Evolution and Its Effect on Tensile Properties of 10Cr-2W-3Co Martensitic Steel During Thermal Exposure

Journal: Materials Today Communications
Authors: Yuqi Wang, Yihan Zhao, Yao Huang, Shan Yu, Jiaxin Shang, Chengkun Yang, Hexin Zhang, Chengzhi Zhao

Microstructure Evolution and Mechanical Properties of Ti-6Al-4V Alloy Fabricated by Directed Energy Deposition Assisted with Dual Ultrasonic Vibration

Journal: Materials Science and Engineering A
Authors: Fang Chao Peng, Chunhuan Guo, Fengchun Jiang, Hexin Zhang, Sergey Konovalov

Effect of powder particle size on the microscopic morphology and mechanical properties of 316 L stainless steel hollow spheres

Journal: Granular Matter
Authors: Jianliang Li, Xu Cui, Qianfei Sun, Chunhuan Guo, Fengchun Jiang, Hexin Zhang

Study on Hot-Compressive Deformation Behavior and Microstructure Evolution of 12Cr10Co3MoWVNbNB Martensitic Steel

Journal: Steel Research International
Authors: Yuqi Wang, Yao Huang, Shan Yu, Chengkun Yang, Hexin Zhang, and Chengzhi Zhao

Conclusion

Dr. Zhang’s academic journey illustrates a consistent pursuit of excellence in scientific exploration, technological innovation, and educational mentorship. His contributions to high-temperature materials, superalloys, and additive manufacturing highlight his ability to merge theoretical knowledge with practical application, thereby fostering advancements that resonate across industries and research domains. As an active leader in research projects and an accomplished author of widely cited publications, he exemplifies the qualities of a researcher committed to addressing contemporary challenges. His mentorship of students and collaborations with industrial partners further amplify the impact of his work, ensuring its continued relevance and contribution to both knowledge and application. In light of his achievements, he stands as a highly deserving candidate for recognition, embodying the spirit of academic excellence, innovation, and professional dedication. His continued efforts will undoubtedly shape the future trajectory of materials science and inspire new generations of researchers.