Shahid Iqbal | Engineering | Excellence in Research Award

Dr. Shahid Iqbal | Engineering | Excellence in Research Award

Dr. Shahid Iqbal | Soochow University | China

Dr. Shahid Iqbal is an experienced educator and accomplished researcher in the fields of chemistry, biology, and biochemistry, with over a decade of teaching students from middle school to postgraduate levels. He currently serves as a Biochemistry Teacher at Myddelton College, China, and has held research and academic positions at Soochow University and Kohat University of Science and Technology. His research focuses on food and biochemistry, with specific interests in emulsions, digestion, nutrition, rheology, edible packaging, and food stability. Dr. Iqbal earned his PhD in Chemistry with a specialization in food biopolymers and colloids from Gomal University, Pakistan, conducting significant research at the University of Massachusetts Amherst under Professor David Julian McClements. He has published over fifty research papers and has been cited more than seven hundred times, with an h-index of eighteen. His career reflects a strong commitment to interdisciplinary research, global collaboration, and innovative teaching.

Publication Profile

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Educational Background

Dr. Shahid Iqbal holds a PhD in Chemistry with a specialization in food biopolymers and colloids from the Institute of Chemical Sciences at Gomal University, Pakistan. During his doctoral studies, he conducted major portions of his research at the University of Massachusetts Amherst, USA, under the supervision of the renowned Professor David Julian McClements. His thesis focused on the emulsification of water-in-vegetable oil, exploring advanced mechanisms in food colloid systems. Prior to his doctoral degree, he completed his MPhil in Chemistry at the same institute, where he gained foundational expertise in chemical sciences and research methodologies. His academic journey reflects a strong focus on food science, emulsions, and colloid chemistry, laying the groundwork for his extensive research contributions in biochemistry and food engineering. Through these rigorous academic pursuits, Dr. Iqbal has built a solid scientific foundation, allowing him to contribute significantly to international research and multidisciplinary collaborations.

Professional Experience

Dr. Shahid Iqbal has built a diverse and dynamic professional career across academia and research. He is currently serving as a Biochemistry Teacher at Myddelton College in Jinhua, Zhejiang, China, where he teaches IGCSE and A-Level Chemistry and Biology and supervises research projects, including competitions like ASDAN JSOE and UKChO. Previously, he worked as an Associate Researcher and Foreign Teacher at Soochow University, China, where he focused on food digestion and emulsions while supervising six masterโ€™s students. He also completed a postdoctoral fellowship at the same institution, contributing to projects on protein-polysaccharide-based multiple emulsions and gelation. Earlier, he served as an Assistant Professor at Kohat University of Science and Technology, Pakistan, teaching undergraduate to doctoral-level students. He also held roles as a Visiting Research Fellow at the University of Massachusetts Amherst, Science Teacher at Working Folks Grammar High School, and Research Associate under the Pakistan Science Foundation at Gomal University.

Research Focus

Dr. Shahid Iqbalโ€™s research primarily focuses on food biochemistry, colloid chemistry, and chemical engineering, with an emphasis on emulsions, digestion, rheology, and functional food systems. His work explores the structural and functional behavior of protein-polysaccharide systems, starch, and lipids in various food matrices, particularly under gastrointestinal conditions. A significant part of his research addresses the development and stability of water-in-oil, oil-in-water, and multiple emulsions, including Pickering emulsions and semi-solid lipid systems. He investigates how factors like amylose content, pH, molecular aggregation, and processing methods affect the rheological, microstructural, and digestibility characteristics of foods. His studies extend to edible packaging, shelf-life improvement, and the creation of responsive food-grade materials using natural biopolymers like chitosan. Dr. Iqbalโ€™s interdisciplinary work combines advanced analytical techniques with in vitro digestion models to bridge food structure with nutritional function, making his research highly relevant to both food science innovation and health-focused food engineering.

Publication Top Notes

Amylose content modulates maize starch hydrolysis, rheology, and microstructure during simulated gastrointestinal digestion
Year: 2021
Citations: 74

Pickering emulsions based on the pH-responsive assembly of food-grade chitosan
Year: 2021
Citations: 50

Controlling the rheological properties of oil phases using controlled protein-polysaccharide aggregation and heteroaggregation in water-in-oil emulsions
Year: 2019
Citations: 46

Controlling W/O/W multiple emulsion microstructure by osmotic swelling and internal protein gelation
Year: 2013
Citations: 45

Structuring of water-in-oil emulsions using controlled aggregation of polysaccharide in aqueous phases
Year: 2019
Citations: 42

Controlling the rheological properties of W1/O/W2 multiple emulsions using osmotic swelling: Impact of WPI-pectin gelation in the internal and external aqueous phases
Year: 2020
Citations: 36

Conclusion

Dr. Shahid Iqbal is a strong candidate for the โ€œResearch for Excellence in Research Award”. His prolific research, interdisciplinary collaborations, global mobility, and mentorship record demonstrate his commitment to academic excellence and societal impact. With minor strategic improvements in research dissemination and global visibility, he would not only meet but exceed the standards expected for this prestigious recognition.

Mehrdad Esmaeilipour | Engineering | Industry Impact Award

Mr. Mehrdad Esmaeilipour | Engineering | Industry Impact Award

Mr. Mehrdad Esmaeilipour, Aria Plasma Gostar Pars, Iran

Mr. Mehrdad Esmaeilipour is a results-driven Electronics Engineer with expertise in green technology and sustainable innovation. He currently serves as a Senior Electronics Engineer at Arya Plasma Gostar Pars Company, where he leads the development of advanced air and water purification systems. He is also the founder and CEO of Parsa Pardazesh Booshehr Sanaat Company (PPBS Co.), a successful electronics and IT firm empowering students and young professionals. Mehrdad holds degrees in Electronics Engineering Technology from Islamic Azad University and has authored multiple technical books in English. His notable inventions include a patented smart bracelet for the visually impaired and a cold plasma wastewater treatment system. He has published research in AI, robotics, and control systems, and has been recognized with international awards, including the Best Innovator Award (EBP 2025). As a mentor, speaker, and conference contributor, Mehrdad exemplifies the intersection of environmental sustainability, digital health, and industrial innovation.

Publication Profile

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๐ŸŽ“ Educational Background

Mr. Mehrdad Esmaeilipour possesses a strong academic foundation in electronics, beginning with a Diploma in Electronics from Azadegan Technical High School in 2006, which laid the groundwork for his technical skills and practical understanding of electrical systems. He further advanced his education by earning an Associateโ€™s Degree in Electronics from Islamic Azad University in 2009, where he gained deeper insights into circuit design, microcontroller applications, and system troubleshooting. Demonstrating a commitment to academic and professional growth, he completed his Bachelorโ€™s Degree in Electronics Engineering Technology from the same university in 2012. This program enriched his expertise in advanced electronics, control systems, and design methodologies, effectively equipping him with the theoretical and practical knowledge required for innovation in green technology, robotics, and digital systems. His educational journey has been instrumental in shaping his career as a pioneering engineer, entrepreneur, and inventor with a focus on industrial impact and environmental sustainability.

๐Ÿ’ผ Work History

Mr. Mehrdad Esmaeilipour has demonstrated a robust and impactful professional journey across engineering, entrepreneurship, and mentorship. Since 2017, he has served as Senior Electronics Engineer at Arya Plasma Gostar Pars Company, where he leads the design and development of innovative circuits for air and water purification systems using cold plasma technology. His contributions include optimizing ICs, implementing quality control, and supporting environmental sustainability initiatives. Concurrently, as CEO and Engineer at Parsa Pardazesh Bushehr Sanat Company (PPBS Co.) since 2014, he has fostered technological innovation and employment through various projects such as cybersecurity implementation and telecommunication systems. He has mentored young talents and led cutting-edge installations across academic and commercial institutions. Moreover, Mehrdad has volunteered over 550 hours with the Robotics Team at Islamic Azad University, contributing to robotics circuit design, control systems, and prototype development. His work reflects strong leadership, technical expertise, and a commitment to industry transformation through sustainable technology.

๐Ÿ… Honors, Awards, and Certifications

Mr. Mehrdad Esmaeilipour has received multiple prestigious honors and certifications recognizing his expertise and contributions to engineering and technological innovation. In 2025, he was awarded the Best Innovator Award by the 32nd International Research Excellence and Best Paper Awards (EBP), validating his industry impact. His commitment to professional development is evident through certifications from HP Cert in Cybersecurity Awareness, Business Email, and IT for Business Success (2025). He also earned a research training certificate from Oxford Cert Universal and was recognized as an Electronic Researcher and Troubleshooting Expert by the World Technology Group in Germany (2024). In 2023, he completed a robotics and smart systems course with INT UNIONS and was certified in Solar Photovoltaic System Design by Oxford EDU Academy (2022). Earlier accolades include a letter of appreciation from Electro Sanaat-e Lian (2017) and safety training certifications from 2013 to 2014. These credentials reflect his continuous pursuit of excellence in engineering and sustainability.

๐Ÿ”ฌ Research Focusย 

Mr. Mehrdad Esmaeilipourโ€™s research primarily focuses on Applied Electronics Engineering with interdisciplinary applications in Green Technology, Control Systems, and Artificial Intelligence. His contributions span the design and optimization of intelligent controllers such as Fuzzy Logic and PID systems for robotics and electric motors, highlighting his expertise in automation and motion control. He is also deeply engaged in the development of cold plasma technologies for electronic and environmental applications, including sterilization and wastewater treatment, emphasizing sustainability. His publications and patents reflect a commitment to solving industrial challenges through smart sensor systems, energy-efficient technologies, and wearable health devices like the Smart Bracelet for the visually impaired. Furthermore, his work in photovoltaic system design and lithium-ion battery technologies showcases his role in advancing clean energy systems. Integrating AI with electrical systems is a recurring theme, placing his research at the intersection of electronics, smart systems, and environmental impact, ideal for industrial innovation and societal advancement.

Publication Top Notes

  • Design, Construction and Performance Comparison of Fuzzy Logic Controller and PID Controller for Two-Wheel Balance Robot (Smart Sensors) โ€“ 2025

  • Advanced Design, Simulation, Monitoring, Control, and Maintenance Strategies for Photovoltaic Solar Power Systems (Book) โ€“ 2025

  • Advancements in Cold Plasma Technology for Electronic and Surface Sterilization Applications (JEEE) โ€“ย 2025

  • Advances and Challenges in Lithium-Ion Battery Technology โ€“ 2025

  • Design of an Optimal PID Controller Utilizing AI Techniques for Brushless DC Motor with Phase Shift โ€“ 2025

  • Advancements in Cold Plasma Technology for Electronic and Surface Sterilization Applications โ€“ 2025

  • Design, Construction and Performance Comparison of Fuzzy Logic Controller and PID Controller for Two-Wheel Balance Robot (Conference) โ€“ 2025

  • An Extensive Optimization Framework for Energy Management within Energy Hubs โ€“ 2025

  • Best Innovator Awardee (EBP Award Recognition) โ€“ 2024

  • Fundamental Subject on Advanced Energy Extraction Technologies for Smart Platforms โ€“2024

 

Jinlei Ma | Digital Transformation | Best Researcher Award

Mr. Jinlei Ma | Digital Transformation | Best Researcher Award

Mr. Jinlei Ma, Harbin Institute of Technology, China

Jinlei Ma is a dynamic and accomplished researcher currently pursuing an MBA at Harbin Institute of Technology (Project 985), with a strong academic background in Vehicle Engineering from China Agricultural University (Project 985). Ranked in the top 10% of his class, he has received numerous prestigious awards including the National Scholarship and Grand Prize Scholarship for Graduate Studies. His multidisciplinary research spans electrowetting of gallium-based liquid metals, flexible thermoelectric generation for wearable devices, and corporate performance in digital transformation contexts. Notably, he has published in top-tier journals such as Materials Horizons (IF=12.2, cited 101 times), Applied Energy (IF=10.1, cited 41 times), and Applied Economics (JCR Q2), and holds a patent for a flexible power generation unit. A recipient of several โ€œChallenge Cupโ€ awards, Jinlei has also presented at international conferences and contributed over 250 hours in volunteer work, reflecting a well-rounded profile of academic excellence, innovation, and social engagement.

Publication Profile

Scopus

Educational Background

Jinlei Ma is currently pursuing his Master of Business Administration at the Harbin Institute of Technology (Project 985), School of Economics and Management (2023.09โ€“2025.06). His coursework includes Advanced Statistics, Technology Innovation Management, and Big Data & AI. He has been recognized with the Grand Prize Scholarship and the National Special Award in the China Undergraduate Research English Speaking Competition. Actively involved in student leadership, he serves as Secretary of the Graduate Party Branch and Vice Class Leader. Jinlei earned his Bachelorโ€™s degree in Vehicle Engineering from China Agricultural University (Project 985) with a GPA of 3.53/4.0, ranking in the top 10%. He received numerous honors such as the National Scholarship, First Prize for Academic Excellence, and was named an Outstanding Graduate. Additionally, he contributed to student welfare as a class counselor and committee member. His volunteer contributions exceed 250 hours, reflecting his strong civic commitment.

Research Contributions

Jinlei Ma has led multiple high-impact research projects across engineering and management disciplines. As project leader, he explored the electrowetting deformation mechanisms of gallium-based liquid metals, resulting in a paper published in Materials Horizons (IF=12.2, cited 101 times) and earned national-level awards in the โ€œChallenge Cup.โ€ He also led the development of flexible thermoelectric power generation technology for wearable devices, culminating in a patent (202010209825.X) and a second-author publication in Applied Energy (IF=10.1, cited 41 times). In a related project, he enhanced energy harvesting through foam copper integration, producing a smart headband system and earning top undergraduate thesis awards. Additionally, his interdisciplinary research on executive equity incentives in the context of digital transformation used Hansenโ€™s threshold regression on data from 1789 Chinese firms, leading to a publication in Applied Economics (JCR Q2). These diverse, data-driven studies showcase his innovation, leadership, and scholarly impact across domains.

Research Focus

Jinlei Maโ€™s research primarily focuses on advanced functional materials, wearable energy technologies, and interdisciplinary innovation bridging engineering and management sciences. His work in developing high-performance wearable thermoelectric generators reflects a deep interest in energy harvesting systems, emphasizing thermal resistance optimization and voltage conversion for sustainable, human-integrated electronics. He explores the integration of flexible thermoelectric materials, foam copper for enhanced heat dissipation, and smart wearable devices to enable next-generation power solutions. Additionally, his research in liquid metal electrowetting and semiconductor applications showcases an experimental and materials-driven approach to nanotechnology and electronics. Beyond engineering, his interest extends to corporate performance analytics, demonstrated by his econometric study on executive equity incentives during digital transformation. This multidisciplinary blend highlights his unique research niche at the intersection of materials science, wearable technology, renewable energy, and data-driven decision management, making him a forward-thinking researcher in sustainable innovation and smart systems.

Publication Top Notes

๐Ÿ“„ “A high-performance wearable thermoelectric generator with comprehensive optimization of thermal resistance and voltage boosting conversion”, Applied Energy, 2022 โ€” Cited by: 38 ๐Ÿ”

Mohamed Dokmak | Engineering | Best Academic Researcher Award

Mr. Mohamed Dokmak | Engineering | Best Academic Researcher Award

Mr. Mohamed Dokmak, Housing and building national research center of EGYPT, Egypt

Mohamed Mahmoud Ali Ali Dokmak is an Egyptian structural engineer with over 9 years of experience at the Housing & Building National Research Center (HBRC). He holds a B.Sc. (Honors), M.Sc. in Steel Structures, and a Pre-PhD in Structural Engineering from Shoubra Faculty of Engineering, Benha University. ๐Ÿ—๏ธ A technical committee member for the Egyptian Steel Code and HBRC Development Committee, his research focuses on CFRP-strengthened steel structures and composite systems. ๐Ÿ“š He has published in top journals such as Construction and Building Materials and Structures. ๐Ÿ‡ช๐Ÿ‡ฌ Mohamed is known for blending field expertise with advanced design research

Publication Profile

Scopus

๐ŸŽ“ Educational Background

Mr. Mohamed Dokmak holds a distinguished academic record in structural engineering. He earned his B.Sc. degree in Structural Engineering from Shoubra Faculty of Engineering, Benha University in July 2013, graduating third in his class with an Excellent with Honors grade, and an exceptional steel structure graduation project. ๐Ÿ—๏ธ He continued his studies at the same institution, completing an M.Sc. in Steel Structures in 2019. ๐Ÿ“˜ In 2020, he successfully completed the Pre-PhD year in Structural Engineering with an โ€˜Aโ€™ grade, demonstrating his strong academic foundation and commitment to research excellence.

๐Ÿ—๏ธ Research Experience

Mr. Mohamed Dokmak has been actively engaged in structural engineering research at the Housing & Building National Research Center (HBRC) since July 2015, serving as an Assistant Researcher and Technical Engineer in the Structures and Steel Constructions Institute. ๐Ÿ”ฌ He is a dedicated member of the Technical Secretariat for the development of the Egyptian Code for Steel Buildings since 2019. ๐Ÿ“˜ Additionally, he served on the HBRC Construction Development Committee from 2019 to 2024. ๐Ÿข His work integrates practical engineering knowledge with national standards development, contributing significantly to Egyptโ€™s construction research sector.

๐Ÿ”ฌ Research Focus

Mr. Mohamed Dokmakโ€™s research primarily centers on structural engineering, with a focus on steel structures, composite systems, and structural strengthening using advanced materials like CFRP (Carbon Fiber Reinforced Polymer). ๐Ÿ—๏ธ His studies investigate the behavior and performance of hollow steel sections and the interaction between innovative concrete slabs and CFโ€™S beams. His work integrates experimental analysis, design optimization, and material innovation, contributing to safer and more efficient construction technologies. ๐Ÿ“ His research advances sustainable, high-performance solutions in civil engineering, particularly for buildings and infrastructure systems.

Publication Top Notes

๐Ÿ“˜ “Behavior of hollow steel sections strengthened with CFRP” โ€“ Construction and Building Materials, 2019 โ€“ Cited by 150+ ๐Ÿงช
๐Ÿ”— DOI:10.1016/j.conbuildmat.2019.01.237

๐Ÿ“‘ “Major Parameters Governing the Strength of Hollow Steel Sections Strengthened by CFRP” โ€“ Egypt Steel 19 Conference, 2019 โ€“ Cited by 15+ ๐Ÿ“Š

๐Ÿ—๏ธ “Investigating the composite action between innovative concrete slabs and CFโ€™S beams” โ€“ Structures, 2025 โ€“ New Publication
๐Ÿ”— DOI:10.1016/j.istruc.2025.109399

Weimin Xu | Engineering | Best Researcher Award

Mr. Weimin Xu | Engineering | Best Researcher Awardย 

Associate professor, at Shanghai Maritime University, China.

Dr. Weimin Xu, Ph.D., is an accomplished associate professor specializing in Control Science and Engineering. ๐ŸŽ“ With a career spanning over three decades, Dr. Xu earned his bachelorโ€™s degree in Automation from Northeastern University, China, in 1985, followed by a masterโ€™s in 1992 and a Ph.D. in 1997 from the same institution. He has been actively contributing to academia and research at Shanghai Maritime University since 2009. In 2013, he further enriched his academic exposure through a one-year visiting research program at the University of Southern California ๐Ÿ‡บ๐Ÿ‡ธ. Dr. Xuโ€™s expertise lies in nonlinear systems, adaptive and intelligent control, and robotics. ๐Ÿค– He has authored over 30 academic papers and holds more than 20 invention patents. His work significantly impacts robotics and intelligent systems, blending theoretical foundations with practical applications in automation and control.

Professional Profile

Scopus

๐ŸŽ“ Educationย 

Dr. Weimin Xu pursued all his academic qualifications from Northeastern University, China. He began with a Bachelorโ€™s degree in Automation in 1985, where he gained foundational knowledge in electrical and mechanical systems. With a growing interest in system dynamics and process automation, he continued his studies at the same university, earning a Masterโ€™s degree in Control Science and Engineering in 1992. Driven by a deep curiosity about system behavior and advanced control theories, he completed his Ph.D. in Control Science and Engineering in 1997. ๐Ÿง  His doctoral research laid the groundwork for his current expertise in nonlinear and intelligent control systems. Later, in 2013, Dr. Xu broadened his international academic horizon through a one-year visiting research program at the University of Southern California, where he collaborated with global experts and explored modern advancements in robotics and adaptive control. ๐ŸŒ

๐Ÿ‘จโ€๐Ÿซ Experienceย 

Dr. Xu began his professional journey in academia shortly after completing his Ph.D. in 1997. His early career involved contributing to control engineering projects and mentoring students at various institutions. Since 2009, he has been serving as a faculty member at Shanghai Maritime University, actively involved in teaching, supervising graduate students, and leading advanced research in control systems. ๐Ÿซ His academic responsibilities are complemented by hands-on research in intelligent systems and automation. In 2013, he was a visiting scholar at the University of Southern California, a pivotal experience that allowed him to engage with cutting-edge research and collaborate internationally. Over the years, Dr. Xu has become a recognized expert in the control and automation field, integrating theoretical knowledge with real-world applications in robotics, crane systems, and intelligent automation. โš™๏ธ His contributions have significantly enhanced the university’s research capabilities in engineering and intelligent control.

๐Ÿ” Research Interestsย 

Dr. Xuโ€™s research explores the dynamic landscape of control theory and intelligent systems. His key focus areas include nonlinear system theory, adaptive control, and sliding mode controlโ€”each critical for understanding and controlling complex engineering systems. โš™๏ธ He is particularly passionate about robot manipulator control, where precision and adaptability are essential. In addition, Dr. Xuโ€™s work delves into bridge crane state detection and intelligent control, reflecting his commitment to real-world industrial applications. ๐Ÿšข His research often integrates classical control methodologies with modern AI techniques, creating intelligent, robust, and adaptive control strategies. Dr. Xu continually investigates how automation can enhance operational efficiency and safety in engineering systems. ๐Ÿค– His innovative approaches aim to bridge the gap between control theory and practice, ultimately improving the reliability and intelligence of machinery across various sectors.

๐Ÿ… Awardsย 

Throughout his academic career, Dr. Xu has received multiple awards and recognitions that highlight his contributions to control engineering and intelligent systems. ๐Ÿ† His work on bridge crane detection and robotic control has earned accolades for both innovation and practical relevance. With more than 20 authorized invention patents, many of which focus on automation and intelligent detection, Dr. Xuโ€™s inventive spirit has been consistently celebrated at national and institutional levels. ๐Ÿ‡จ๐Ÿ‡ณ He has also been recognized for excellence in research and teaching at Shanghai Maritime University, where he has played a pivotal role in advancing engineering education. His dedication to integrating cutting-edge research into student learning and real-world applications has made him a valuable mentor and leader. Dr. Xuโ€™s achievements are a testament to his commitment to continuous innovation and the impactful dissemination of knowledge in the engineering community. ๐Ÿ“˜

๐Ÿ“š Top Noted Publicationsย 

Dr. Xu has published over 30 peer-reviewed academic papers, contributing significantly to nonlinear systems and intelligent control. His research is widely cited, reflecting his influence in the academic community. ๐Ÿ“– Some of his representative publications include:

1. Xu, W., et al. (2021)

Title: Adaptive Sliding Mode Control for Robot Manipulators with Input Nonlinearity
Journal: Robotics and Autonomous Systems
Citations: 45

Summary:
This paper presents an adaptive sliding mode control (ASMC) approach designed specifically for robot manipulators with significant input nonlinearities such as dead zones and input saturation. The authors develop a robust controller that adapts in real time to system uncertainties and unmodeled dynamics while preserving stability and convergence.

Key Contributions:

  • A novel ASMC framework incorporating adaptive laws to handle unknown input nonlinearities.

  • Lyapunov-based stability analysis ensures system convergence.

  • Simulation and experimental results on a 2-DOF manipulator show improved trajectory tracking and robustness compared to traditional SMC.

Impact:
Widely cited for its robustness in dealing with non-ideal actuator behavior in robotics applications.

2. Xu, W., et al. (2020)

Title: Intelligent Control of Bridge Crane Based on Sensor Fusion and Neural Networks
Conference: IEEE Conference on Control and Automation
Citations: 30

Summary:
This work proposes an intelligent control strategy for bridge cranes using a combination of sensor fusion (gyroscopes, vision, encoders) and neural network-based control algorithms. The aim is to reduce swing and improve payload accuracy during transport.

Key Contributions:

  • Development of a sensor fusion algorithm to accurately estimate the payload position and velocity.

  • Neural networks are trained to mimic optimal control behavior under different load conditions.

  • Simulation and real-time experiments confirm the effectiveness in swing suppression and trajectory accuracy.

Impact:
Recognized for advancing automation in industrial lifting systems using AI-based techniques.

3. Xu, W., et al. (2019)

Title: Nonlinear Adaptive Control with Observer for Uncertain Systems
Journal: Wireless Networks
Citations: 28

Summary:
This paper addresses the control of nonlinear uncertain systems using a nonlinear adaptive control scheme combined with an observer design to estimate unmeasurable states. The focus is on wireless-enabled systems with uncertain parameters and delays.

Key Contributions:

  • Design of a state observer for nonlinear systems with partially known dynamics.

  • Use of adaptive control to handle parametric uncertainties and time-varying disturbances.

  • Stability proofs using Barbalatโ€™s Lemma and Lyapunov theory.

Impact:
Cited in research on wireless sensor-actuator networks and embedded control in uncertain environments.

4. Xu, W., et al. (2018)

Title: Intelligent Fault Detection in Industrial Systems using Hybrid Neural Models
Journal: Expert Systems with Applications
Citations: 52

Summary:
This paper proposes a hybrid neural network model for fault detection in industrial systems, combining convolutional neural networks (CNNs) and recurrent neural networks (RNNs). It targets early-stage anomaly detection in time-series data from manufacturing sensors.

Key Contributions:

  • A novel hybrid model that captures both spatial features (via CNN) and temporal dynamics (via RNN).

  • A feature fusion strategy for improved diagnostic performance.

  • Evaluation on real-world datasets from manufacturing processes shows high accuracy and low false alarm rates.

Impact:
One of the most cited papers in intelligent maintenance and predictive diagnostics, influencing work on Industry 4.0 and smart manufacturing.

Conclusion

Dr. Weimin Xu is a strong candidate for the Best Researcher Award due to his broad and practical research contributions, notable patent record, and long-standing academic service. His work bridges theoretical advancement and practical application in intelligent control systems, aligning with the priorities of innovation-driven recognition.

Mojtaba Hajiabadi | Electrical Engineering | Best Researcher Award

Assist. Prof. Dr. Mojtaba Hajiabadi | Electrical Engineering | Best Researcher Award

Assist. Prof. Dr. MojtabaHajiabadi at University of Birjand, Iran

Dr. Mojtaba Hajiabadi is an Assistant Professor in the Communication Engineering Group at the University of Birjand, Iran. With expertise in 6G, wireless communications, adaptive filtering, and machine learning, he has significantly contributed to signal processing and telecommunications. He has served as a visiting researcher at KU Leuven, Belgium, and actively reviews for esteemed journals like IEEE Transactions on Signal Processing. His research includes developing advanced wireless systems, adaptive beamforming, and noise cancellation technologies. With numerous publications, patents, and projects, he remains a leading figure in next-generation communication technologies.

Publication Profile

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Academic Background๐ŸŽ“

Dr. Hajiabadi obtained his Ph.D. in Communication Engineering from Ferdowsi University of Mashhad in 2018, following an M.Sc. from the same institution in 2014 and a B.Sc. from the University of Birjand in 2012. His exceptional academic journey began at the National Organization for Development of Exceptional Talents (NODET). In 2019, he further enhanced his expertise as a Visiting Researcher at KU Leuven, Belgium, working on cutting-edge wireless technologies. His education has laid a strong foundation for his research in wireless communications, adaptive systems, and machine learning-based signal processing.

Professional Background๐Ÿ’ผ

Dr. Hajiabadi has diverse academic and industrial experience, including research and teaching at KU Leuven, Ferdowsi University of Mashhad, and the University of Birjand. His professional roles extend to the Iranian Air Force, Telecommunication Infrastructure Company, and KavirTire Corporation. He has led projects on satellite signal processing, carrier synchronization, and military-grade noise cancellation. His hands-on work with software-defined radios (SDR) and real-world signal applications has made him a key contributor to modern telecommunication advancements, bridging theoretical research with practical implementations.

Awards and Honors๐Ÿ†

Dr. Hajiabadi has been recognized for his outstanding contributions to communication engineering through multiple awards and distinctions. His work has been featured in leading IEEE journals and conferences, reflecting its high impact. He has received research funding for pioneering studies in adaptive filtering and 6G communications. His role as a reviewer for IEEE Transactions and other esteemed journals highlights his credibility in the research community. Additionally, his patents in noise cancellation circuits for military aircraft showcase his practical innovations in engineering.

Research Focus๐Ÿ”ฌ

Dr. Hajiabadi specializes in 6G wireless communication, adaptive filters, beamforming, noise cancellation, and machine learning applications in signal processing. His research emphasizes optimizing wireless networks using intelligent systems, including channel estimation, equalizers, and interference suppression. His work extends to satellite communication, reconfigurable intelligent surfaces, and AI-driven adaptive systems, addressing real-world challenges in next-generation telecommunications. With a strong emphasis on both theoretical advancements and hardware implementation, his contributions shape the future of wireless connectivity and intelligent communication networks.

Publication Top Notes

๐Ÿ”น Recursive Maximum Correntropy Learning Algorithm with Adaptive Kernel Size

ย  ย  ย  Year: 2017 ๐Ÿ—“ | Cited by: 36 ๐Ÿ“‘ | IEEE Transactions on Circuits and Systems II: Express Briefs

๐Ÿ”น Adaptive Multitask Network Based on Maximum Correntropy Learning Algorithm

ย  ย  ย  Year: 2017 ๐Ÿ—“ | Cited by: 19 ๐Ÿ“‘ | International Journal of Adaptive Control and Signal Processing

๐Ÿ”น Cooperative Spectrum Estimation Over Largeโ€Scale Cognitive Radio Networks

ย  ย  ย  Year: 2017 ๐Ÿ—“ | Cited by: 15 ๐Ÿ“‘ | IET Signal Processing

๐Ÿ”น Distributed Adaptive LMF Algorithm for Sparse Parameter Estimation in Gaussian Mixture Noise

ย  ย  ย  Year: 2014 ๐Ÿ—“ | Cited by: 14 ๐Ÿ“‘ | 7th International Symposium on Telecommunications (IST’2014)

Conclusion

Dr. Mojtaba Hajiabadi is a distinguished researcher in communication engineering, specializing in 6G, wireless communication, adaptive filters, and AI-driven signal processing. With a Ph.D. from Ferdowsi University of Mashhad and research experience at KU Leuven, he has made significant contributions through high-impact publications in IEEE Transactions and other prestigious journals. His innovative work includes a patent on acoustic noise cancellation and collaborations on satellite signal detection and defense applications. As a dedicated educator and mentor, he shapes future researchers while actively reviewing for top academic journals. His international exposure, industry collaborations, and academic excellence make him a strong candidate for the Best Researcher Award.

 

Manjunath Thindlu Rudrappa | Engineering | Best Researcher Award

Mr. Manjunath Thindlu Rudrappa | Engineering | Best Researcher Award

Mr. Manjunath Thindlu Rudrappa, Fraunhofer Institute for High Frequency Physics and Radar Techniques, Germany

Manjunath Thindlu Rudrappa is an accomplished researcher specializing in radar signal processing, object tracking, and space object characterization. He is currently a Doctoral Researcher at Fraunhofer FHR, Germany, focusing on phased array radar networks. With a strong academic background from RWTH Aachen University and Visvesvaraya Technological University, his expertise spans ISAR imaging, interferometry, and machine learning applications in radar technology. He has contributed significantly to the field through high-impact publications and innovative research in MIMO radar systems. Manjunath has also worked with industry leaders such as Bosch and Fraunhofer, gaining extensive experience in embedded systems and radar post-processing. His research excellence has been recognized with prestigious awards, including the Young Scientist Award and the Argus Science Award. Passionate about advancing radar and space technology, he continues to drive innovation in signal processing and object detection methodologies. ๐Ÿš€๐Ÿ“ก

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๐Ÿ“š Education

Manjunath earned his Bachelor of Engineering (B.E.) in Electronics and Communication from Visvesvaraya Technological University, India, graduating with an impressive 86.41% aggregate. His bachelor thesis focused on developing an intelligent paradigm for electric vehicles using buck-boost converters, super-capacitors, and regenerative braking, under the guidance of Dr. Bhakthavatsalam and Mr. Gowranga K.H from IISc Bangalore. He pursued his Master of Science (M.Sc.) in Communication Engineering at RWTH Aachen University, Germany, achieving a 1.5 aggregate. His master thesis at Fraunhofer FHR was on vital parameter detection of moving persons using MIMO radar, supervised by Prof. Dr.-Ing Peter Knott and Dr.-Ing Reinhold Herschel. Currently, he is a PhD researcher at RWTH Aachen University, working on the characterization of resident space objects using phased array radar networks, pushing the boundaries of radar and space object detection technology. ๐ŸŽ“๐Ÿ“ก

๐Ÿ’ผ Experience

Manjunath began his career as an Embedded Software Engineer at Robert Bosch Engineering and Business Solutions Limited (2014โ€“2017) in India, working on software development for automotive systems. Moving to Bosch Engineering GmbH, Germany, he served as an Embedded Application Software Developer (2018โ€“2019), specializing in software solutions for automotive applications. His transition to Fraunhofer FHR in Germany marked his entry into radar research, where he worked as a Work Student (2019โ€“2020) on vital parameter estimation, detection, tracking, and clustering. Since 2020, he has been a Doctoral Researcher and Wissenschaftlicher Mitarbeiter at Fraunhofer FHR, contributing to advanced radar signal processing, ISAR imaging, interferometry, and object tracking. His research spans both defense and space applications, making significant contributions to radar-based object detection and feature extraction techniques. ๐Ÿ”ฌ๐Ÿš€

๐Ÿ† Awards & Honors

Manjunath has received prestigious recognitions for his contributions to radar signal processing and communication technology. In October 2020, he won the Young Scientist Award at the International Radar Symposium in Warsaw, Poland, for his research on vital parameter detection of non-stationary human subjects using MIMO Radar. His master thesis on signal processing and microwave technology earned him the Argus Science Award 2020 from Hensoldt, Germany, recognizing his exceptional contributions to the field. His work has been highly regarded in the academic and industrial research community, reinforcing his status as a leading researcher in radar technology, space object tracking, and embedded systems. ๐Ÿ…๐Ÿ“ก

๐Ÿ”ฌ Research Focus

Manjunathโ€™s research is centered on radar signal processing, object tracking, and space object characterization. His expertise includes ISAR imaging, interferometry, feature extraction, machine learning, and deep learning for radar applications. He has worked extensively with MIMO radar systems, contributing to human vital sign detection, tracking, and clustering. His PhD research explores phased array radar networks for resident space object characterization, a crucial area in space surveillance and satellite tracking. Additionally, he has experience in embedded systems, automotive radar applications, and defense technology, making significant contributions to intelligent sensing and radar post-processing methodologies. His work bridges the gap between academic research and industrial innovation, shaping the future of radar and communication engineering. ๐ŸŒ๐Ÿ“ก๐Ÿš€

Publication Top Notes

1๏ธโƒฃ Moving human respiration sign detection using mm-wave radar via motion path reconstruction โ€“ Cited by: 17 | Year: 2021 ๐Ÿ“ก๐Ÿ‘ค๐Ÿ’จ
2๏ธโƒฃ Vital parameters detection of non-stationary human subject using MIMO radar โ€“ Cited by: 11 | Year: 2020 ๐Ÿ“ก๐Ÿ”ฌ๐Ÿง
3๏ธโƒฃ Distinguishing living and non-living subjects in a scene based on vital parameter estimation โ€“ Cited by: 8 | Year: 2021 ๐Ÿ”๐Ÿ‘ค๐Ÿ 
4๏ธโƒฃ Characterisation of resident space objects using multistatic interferometric inverse synthetic aperture radar imaging โ€“ Cited by: 4 | Year: 2024 ๐Ÿ›ฐ๏ธ๐Ÿ“ก๐Ÿ“Š
5๏ธโƒฃ 3D reconstruction of resident space objects using radar interferometry and nonuniform fast Fourier transform from sparse data โ€“ Cited by: 4 | Year: 2022 ๐ŸŒ๐Ÿ“ก๐Ÿ“‰
6๏ธโƒฃ Improvements of GESTRAโ€”A phased-array radar network for the surveillance of resident space objects in low-Earth orbit โ€“ Cited by: 2 | Year: 2023 ๐Ÿš€๐Ÿ›ฐ๏ธ๐Ÿ“ถ
7๏ธโƒฃ RSO feature extraction using Super Resolution Wavelets and Inverse Radon Transform โ€“ Cited by: 1 | Year: 2022 ๐Ÿ“ก๐Ÿ“Š๐Ÿ“‰
8๏ธโƒฃ High-resolution human clustering based on complex signal correlation coefficients โ€“ Cited by: 1 | Year: 2022 ๐Ÿ ๐Ÿ“ก๐Ÿ“Š
9๏ธโƒฃ Characterisation of Resident Space Objects and Synchronisation Error Compensation in Multistatic Interferometric Inverse Synthetic Aperture Radar Imaging โ€“ Year: 2025 ๐Ÿ›ฐ๏ธ๐Ÿ“ก๐Ÿ“Š
๐Ÿ”Ÿ Clusterung von Detektionen โ€“ Year: 2022 ๐Ÿ“ก๐Ÿ“๐Ÿ”

Conclusion

Mr. Manjunath Thindlu Rudrappa has a strong research profile, with high-impact contributions in radar signal processing, object tracking, and communication engineering. His awards, affiliations, and research publications make him a highly suitable candidate for the Research for Best Researcher Award. His expertise in machine learning applications in radar, feature extraction, and interferometry aligns with modern advancements in the field, further strengthening his candidacy.

Rania Hamdani | Computer science | Best Researcher Award

Mrs. Rania Hamdani | Computer science | Best Researcher Award

Mrs. Rania Hamdani, University of Luxembourg, Luxembourg

Rania Hamdani is a research scientist specializing in operational research, data management, and cloud architecture for Industry 5.0. Based in Luxembourg, she is currently affiliated with the University of Luxembourg, where she explores advanced methodologies for integrating and managing heterogeneous data sources. She holds an engineering degree in Software Engineering and has extensive experience in software development, AI, and DevOps. Rania has worked on multiple industry and academic projects, publishing three research papers in Ontology-Driven Knowledge Management and Cloud-Edge AI. With a strong background in programming, cloud computing, and AI-driven solutions, she has contributed to platforms ranging from job recommendation systems to adaptive human-computer interaction systems. Her expertise includes Python, SpringBoot, Kubernetes, and Azure DevOps. She is also an active member of IEEE and other technical organizations, promoting innovation and knowledge-sharing in AI and cloud technologies. ๐ŸŒ๐Ÿ’ป๐Ÿ”ฌ

Publication Profile

Orcid

๐ŸŽ“ Education

Rania Hamdani holds an Engineering Degree in Software Engineering from the National Higher School of Engineers of Tunis (2021โ€“2024), where she specialized in advanced design, service-oriented architecture, object-oriented programming, database management, and operational research. Prior to this, she completed a two-year preparatory cycle at the Preparatory Institute for Engineering Studies of Tunis (2019โ€“2021), undertaking intensive coursework in mathematics, physics, and technology to prepare for engineering studies. She also earned a Mathematics-specialized Baccalaureate from Pioneer High School Bourguiba Tunis (2015โ€“2019), graduating with honors. Throughout her academic journey, she gained expertise in artificial intelligence, machine learning, cloud computing, and DevOps methodologies. Her education provided a solid foundation in programming languages, data processing techniques, and full-stack development. Additionally, she holds multiple Microsoft certifications in Azure fundamentals, AI, data security, and compliance, reinforcing her expertise in cloud-based solutions and AI-driven applications. ๐Ÿ“š๐ŸŽ“๐Ÿ’ก

๐Ÿ’ผ Experience

Rania Hamdani is a research scientist at the University of Luxembourg, where she focuses on integrating and managing heterogeneous data sources for cloud-based decision-making. Previously, she was a research intern at the same institution, contributing to Ontology-Driven Knowledge Management and Cloud-Edge AI, with three published papers. She also worked as a part-time software engineer at CareerBoosts in Quebec (2021โ€“2025), specializing in Python, Azure DevOps, Docker, and test automation. She gained industry experience through internships at Qodexia (Paris), Sagemcom (Tunisia), and Tunisie Telecom, working on smart recruitment platforms, employee management systems, and server monitoring solutions using SpringBoot, Angular, and PostgreSQL. Her technical expertise spans full-stack development, DevOps, AI-driven applications, and cloud computing. She has contributed to major projects, including an adaptive human-computer interaction system, a job recommendation system, and a problem-solving platform, demonstrating her versatility in research and software engineering. ๐Ÿš€๐Ÿ–ฅ๏ธ๐Ÿ”

๐Ÿ† Awards & Honors

Rania Hamdani has been recognized for her outstanding contributions to AI-driven cloud computing and operational research. She received excellence awards during her engineering studies at the National Higher School of Engineers of Tunis and was among the top-performing students in her Mathematics-specialized Baccalaureate. Her research papers in Ontology-Driven Knowledge Management and Cloud-Edge AI have been acknowledged in academic circles, contributing to the advancement of Industry 5.0 technologies. She has also earned multiple Microsoft certifications in cloud and AI fundamentals, reinforcing her technical expertise. As an active member of IEEE and the Youth and Science Association, she has been involved in technology outreach and innovation-driven initiatives. Her leadership in ENSIT Junior Enterprise as a project manager further showcases her ability to lead and contribute to tech communities. These recognitions highlight her dedication to research, software development, and cloud-based AI applications. ๐Ÿ…๐Ÿ“œ๐ŸŒŸ

๐Ÿ”ฌ Research Focus

Rania Hamdaniโ€™s research focuses on operational research, data management, cloud-edge AI, and Industry 5.0 applications. She specializes in ontology-driven knowledge management, exploring methodologies for integrating heterogeneous data sources to optimize cloud-based decision-making processes. Her work includes artificial intelligence, machine learning, reinforcement learning, and human-computer interaction systems. She has contributed to projects involving job recommendation systems, adaptive human-computer interaction platforms, and cloud-based problem-solving platforms. Rania is particularly interested in scalable cloud architectures, leveraging technologies like FastAPI, Kubernetes, Docker, and Azure DevOps to build efficient AI-powered solutions. Her research also integrates graph databases, Apache Airflow, and big data analytics for enhanced data processing. By combining AI and cloud computing, she aims to develop innovative, data-driven solutions for automation, decision support, and optimization in various industrial applications. Her expertise bridges the gap between theoretical research and real-world software engineering. โ˜๏ธ๐Ÿค–๐Ÿ“Š

 

Publication Top Notes

Adaptive human-computer interaction for industry 5.0: A novel concept, with comprehensive review and empirical validation