Assoc. Prof. Dr. Yizhen wang – Power system stability and control – Best Researcher Award 

Assoc. Prof. Dr. Yizhen wang - Power system stability and control - Best Researcher Award 

Tianjin University - China 

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🎓 Early academic pursuits

Yizhen wang began his academic journey with a strong foundation in electrical engineering. he earned his bachelor's degree from tianjin university in 2010, followed by a master’s degree from the china electric power research institute (cepri) in 2013. determined to deepen his expertise, he pursued a ph.d. at tsinghua university, where he specialized in power system stability and control. his doctoral research laid the groundwork for his future innovations, focusing on the challenges of modern power systems, particularly in maintaining stability and optimizing performance in high-voltage dc (hvdc) networks.

🚀 Professional endeavors

Since 2020, yizhen wang has served as an associate professor at the school of electrical engineering and automation, tianjin university. his work has been instrumental in shaping the field of power system protection and hvdc transmission. his expertise spans various critical areas, including power system stability analysis, voltage source converter (vsc)-hvdc systems, and multi-terminal dc networks. by leading multiple national research projects, he has contributed significantly to enhancing the resilience and efficiency of modern power grids, ensuring stable and reliable electricity transmission in increasingly complex energy networks.

🧐 Contributions and research focus

Yizhen wang’s research is centered on stability control and dc fault ride-through technology for multi-terminal vsc-hvdc systems. his work focuses on three primary aspects: developing a reduced-order small-signal stability model, designing an efficient control system, and formulating an advanced dc fault ride-through strategy. through these innovations, he has provided Power system stability and control valuable solutions to critical challenges in integrating offshore wind power into hvdc networks. his research has strengthened grid stability by optimizing control mechanisms and developing new methodologies for power system protection.

🏆 Accolades and recognition

As a leading researcher in power system engineering, yizhen wang has gained significant recognition for his contributions. he has successfully led two projects funded by the national natural science foundation of china (nsfc), along with three sub-projects under national key research initiatives. his work has also been supported by the china postdoctoral science foundation. his Power system stability and control research output includes 36 sci-indexed publications, with 21 papers authored as either the first or corresponding author. one of his papers has been recognized as an esi highly cited paper, demonstrating the impact of his findings, which have been cited 553 times by other researchers.

👨‍💻 Impact and influence

Yizhen wang’s research has made a profound impact on the field of power system stability and protection. his innovative control strategies and stability models have been adopted in the development of next-generation hvdc networks, particularly for offshore wind power integration. his contributions have influenced the way power grids operate under fluctuating energy Power system stability and control demands and renewable energy sources. through his work, he has helped bridge the gap between theoretical advancements and practical implementation, ensuring that power networks remain efficient, stable, and resilient against disturbances.

🌍 Legacy and future contributions

Looking ahead, yizhen wang aims to further enhance the efficiency and reliability of power systems by integrating artificial intelligence with hvdc control strategies. he is committed to advancing research in multi-spatio-temporal coupling mechanisms and wide-area coordinated control in modern power networks. by mentoring young engineers and collaborating with international researchers, he continues to pave the way for new breakthroughs in power system engineering. his legacy will be defined by his relentless pursuit of innovation, shaping the future of electrical power transmission and ensuring sustainable energy solutions for generations to come.

Notable Publications 

  • Title: A Mode-switching Strategy of Droop Control for VSC-MTDC Systems Considering Maximum DC Voltage Regulation Capability
    Author(s): Wang, Y.; Qiu, F.; Wang, Z.; Ji, Y.; Chen, Z.; Wang, C.
    Journal: CSEE Journal of Power and Energy Systems

  • Title: A Novel Optimal Configuration Method of Energy Storage System for Offshore Isolated Grid
    Author(s): Pei, A.; Huang, C.; Li, G.; Dong, F.; Li, J.; Wang, Y.
    Journal: IEEE Power and Energy Society General Meeting

  • Title: An Improved AC-Link Voltage Matching Control for the Multiport Modular Multilevel DC Transformer in MVDC Applications
    Author(s): Chen, Y.; Yu, S.; Wang, Y.; Yang, R.; Cheng, X.
    Journal: Energies

  • Title: Analysis and Control of DC Voltage Dynamics Based on a Practical Reduced-Order Model of Droop-Controlled VSC-MTDC System in DC Voltage Control Timescale
    Author(s): Wang, Y.; Wang, Z.; Lei, M.; Qiu, F.
    Journal: IEEE Transactions on Power Delivery

  • Title: Low-voltage DC building distribution and utilization system and its implementation in China southern grid
    Author(s): Guo, P.; Zhang, X.-Y.; Yuan, Z.; Zhao, Y.; Wang, Y.; Liu, G.; Man, J.; Wang, Y.; Jiang, Z.; Xiang, M. et al.
    Journal: IET Renewable Power Generation

Assoc. Prof. Dr. Luyi Chen – green innovation adoption – Best Researcher Award

Assoc. Prof. Dr. Luyi Chen - green innovation adoption - Best Researcher Award

Shanghai Research Center for Reform and Development of State-owned Assets and State-owned Enterprises - China 

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🎓 Early academic pursuits

Luyi Chen embarked on an academic journey with a deep commitment to sustainable development and industrial innovation. with a strong foundation in engineering and economic policies, he pursued research that bridged the gap between manufacturing and environmental sustainability. his early academic years were marked by a keen interest in green technologies and policy frameworks that drive sustainable industrial practices. his dedication to exploring innovative methods for reducing environmental impact laid the groundwork for his future contributions in the field of green manufacturing and industrial transformation.

🚀 Professional endeavors

As an associate researcher at the shanghai research center for reform and development of state-owned assets and state-owned enterprises, luyi chen has played a crucial role in shaping policies related to industrial development and sustainability. over the past five years, he has successfully led six major research projects, including the prestigious national natural science foundation of china programs. his work has contributed significantly to policy recommendations and innovative strategies for state-owned enterprises, driving forward china’s industrial modernization. his role as an editorial board member for the special issue of china engineering science and his involvement as a reviewer for top international journals reflect his influence in the field.

🧐 Contributions and research focus

Luyi Chen’s research is centered around green manufacturing, industrial policy, and innovation. his expertise in developing sustainable industrial solutions has led to the publication of over thirty research outputs, including high-impact journal articles and book chapters. his monograph, "transition and innovation of chinese manufacturing: practice and policy," stands as a green innovation adoption significant contribution to understanding the evolution of china’s industrial landscape. his research emphasizes the integration of cutting-edge technologies in industrial systems to enhance efficiency while minimizing environmental harm. through his work, he has successfully developed frameworks that facilitate the transition towards sustainable manufacturing.

🏆 Accolades and recognition

With a growing impact in academia, luyi chen has earned recognition for his research contributions. his citation index of 11 reflects the scholarly influence of his work, particularly in green innovation and industrial transformation. his appointment as an editorial board member and his role as a reviewer for prestigious journals such as the journal of cleaner production and green innovation adoption environmental innovation and societal transitions highlight his standing in the global research community. his work has received acknowledgment not only from academia but also from policymakers and industrial leaders striving for a sustainable future.

👨‍🎓 Impact and influence

Chen’s influence extends beyond academia into the industrial sector, where his research findings have informed policy decisions and practical implementations. his consultancy projects have facilitated industry-wide transitions towards environmentally friendly manufacturing processes. his innovative patents, including water-free and salt-free dyeing methods, have provided green innovation adoption sustainable solutions to the textile industry, reducing waste and environmental pollution. his work has played a key role in shaping industrial policies that support green technologies, ensuring a balance between economic growth and environmental responsibility.

🌍 Legacy and future contributions

As a leading researcher in green manufacturing and industrial development, luyi chen’s contributions continue to pave the way for sustainable industrial transformations. his future research aims to further explore policy innovations and technological advancements that can drive the next phase of industrial sustainability. by mentoring young researchers and fostering collaborations between academia, industry, and policymakers, he is building a legacy of innovation and environmental responsibility. his work will continue to influence the global discourse on sustainable industrial practices, leaving a lasting impact on future generations of researchers and industry leaders.

Notable Publications 

Title: Review of Antifouling Finishing of Textiles: Theme, Evolution and Fabrication Methods
Author(s): Fengmei Ding, Yali Guo, Qingmiao Wang, Zhiqi Xing, Luyi Chen
Journal: Journal of Donghua University (English Edition), 2024

Dr. Luca Socci – Energy and Environmental Engineering – Best Researcher Award

Dr. Luca Socci - Energy and Environmental Engineering - Best Researcher Award

University of Florence - Department of Industrial Engineering - Italy

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🌍 Early academic pursuits

Luca Socci  in florence, italy. his academic journey began with a deep passion for environmental engineering, leading him to pursue higher education at the university of florence. he completed his bachelor's degree in environmental engineering with honors, demonstrating early excellence in thermodynamics and heat transfer. his thesis focused on calibrating instruments for temperature monitoring in an ejector refrigeration cycle prototype, laying the foundation for his expertise in energy-efficient cooling systems. his outstanding academic performance continued into his master’s degree, where he graduated with top honors, further refining his research on efficient data center cooling solutions.

💡 Professional endeavors

As a funded researcher at the thermo group – department of industrial engineering (dief) at the university of florence, luca has been at the forefront of advancing thermodynamics and heat transfer applications. he transitioned seamlessly from academia to research, first as a doctoral student and later as a funded researcher. his work has been instrumental in optimizing hvac systems, particularly in desiccant devices and evaporative cooling technologies. he has actively contributed to educational programs, mentoring students and supporting courses in applied thermodynamics, energy efficiency, and hvac systems for industrial and civil applications.

🌐 Contributions and research focus

Luca’s research has significantly contributed to the understanding and enhancement of heat and mass transfer processes, focusing on sustainable energy solutions. his studies encompass Energy and Environmental Engineering hvac energy optimization, air disinfection methods, building energy efficiency, and the environmental impact of energy systems. he has made notable advances in humidification-dehumidification desalination systems, integrating innovative cooling technologies to boost performance. his numerical simulations and optimization models have provided new insights into efficient hvac equipment design, ensuring improved indoor air quality and energy sustainability.

🌟 Accolades and recognition

Luca’s academic excellence has been evident since his early years, earning him top honors in both his bachelor's and master’s degrees. his research work has been recognized through funding awards, allowing him to further explore groundbreaking developments in thermodynamics. his dedication to education and research has made him a valued member of the university of Energy and Environmental Engineering florence’s scientific community, where he has co-supervised multiple bachelor’s and master’s theses, shaping the next generation of energy engineers.

💪 Impact and influence

Through his innovative research, luca has played a crucial role in advancing sustainable hvac technologies, leading to practical applications that reduce energy consumption and enhance Energy and Environmental Engineering indoor air quality. his contributions to numerical simulations have influenced the design of more efficient cooling and ventilation systems, particularly in data centers, where energy efficiency is paramount. his collaborative efforts with students and researchers have fostered a culture of knowledge-sharing and scientific curiosity in the field of thermodynamics.

🏆 Legacy and future contributions

With a strong foundation in environmental engineering and thermodynamics, luca’s research continues to shape the future of energy-efficient technologies. his ongoing projects in hvac system optimization and desalination systems energy efficiency promise to deliver impactful advancements in the field. as he progresses in his career, his commitment to sustainable energy solutions and innovative research methodologies will leave a lasting legacy, ensuring that his work benefits both academia and industry for years to come.

Notable Publications 

  • Title: Desiccant thermally controlled dehumidification in HVAC systems: Energy and exergy analysis, evaluation of different materials
    Author(s): Luca Socci, Andrea Rocchetti, Martina Lippi, Federica Savelli, Antonio Verzino, Andrea Zini, Lorenzo Talluri, Giampaolo Manfrida, Lorenzo Ciappi
    Journal: Journal of Building Engineering

  • Title: Scenarios for the energy renovation of a residential building
    Author(s): Guglielmo Malevolti, Andrea Rocchetti, Luca Socci
    Journal: E3S Web of Conferences

  • Title: Ceramic Air-to-Air Recuperator for energy recovery in HVAC systems: CFD analysis and comparison with experimental tests
    Author(s): Luca Socci, Javier M. Rey-Hernandez, Andrea Rocchetti, Alberto Rey-Hernandez, Francisco J. Rey-Martínez
    Journal: Sustainable Energy Technologies and Assessments

  • Title: Enhancing third-generation district heating networks with data centre waste heat recovery: analysis of a case study in Italy
    Author(s): Luca Socci, Andrea Rocchetti, Antonio Verzino, Andrea Zini, Lorenzo Talluri
    Journal: Energy

  • Title: Exploiting the Ocean Thermal Energy Conversion (OTEC) technology for green hydrogen production and storage: Exergo-economic analysis
    Author(s): Lorenzo Ciappi, Luca Socci, Mattia Calabrese, Chiara Di Francesco, Federica Savelli, Giampaolo Manfrida, Andrea Rocchetti, Lorenzo Talluri, Daniele Fiaschi
    Journal: International Journal of Hydrogen Energy

Dr. Sadjad Naderi – Renewable Energy Technologies – Best Researcher Award

Dr. Sadjad Naderi - Renewable Energy Technologies - Best Researcher Award

Imperial College London - United Kingdom

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GOOGLE SCHOLAR 

🎓 Early academic pursuits

Sadjad Naderi embarked on his academic journey with a strong foundation in engineering and materials science, leading to a ph.d. focused on failure analysis of reinforced polymer composites. his passion for understanding material behavior under extreme conditions laid the groundwork for his future innovations. throughout his studies, he demonstrated exceptional analytical skills, combining experimental and computational approaches to explore the mechanical properties of heterogeneous materials. his early research provided valuable insights into material degradation, fracture mechanics, and structural optimization, setting the stage for a career dedicated to advancing solid mechanics.

🚀 Professional endeavors

As a senior research associate at imperial college london, sadjad naderi has amassed over nine years of postdoctoral experience at renowned institutions, including university college london, sheffield university, and the university of malaya. his work spans multiple industries, from aerospace and civil engineering to electrical devices and dental applications. he has played a pivotal role in pioneering numerical and experimental analysis techniques, particularly in failure analysis, impact damage assessment, and the optimization of composite structures. his expertise in finite element method (fem), discrete element method (dem), and coupled fem-dem simulations has contributed to significant advancements in computational mechanics.

🧐 Contributions and research focus

Naderi's research has been instrumental in bridging the gap between artificial intelligence and solid mechanics. he has developed cutting-edge methodologies integrating ai-driven simulations with physics-based models, revolutionizing material and structure modeling. his work on digital twin systems for drilling technology optimization has led to substantial improvements in drilling efficiency and cost reduction. by coupling finite-discrete element methods with machine learning, he has enabled real-time prediction of rock fracture behavior, minimizing tool failure rates Renewable Energy Technologies and enhancing operational safety. his research focus extends to material design, multiphysics multiscale modeling, and ai-driven structural analysis, addressing challenges in multifunctional composites and advanced material characterization.

🏆 Accolades and recognition

Naderi’s contributions to applied solid mechanics have been widely recognized within the scientific community. with an impressive citation index of 533 on google scholar and 462 on scopus, his research impact is evident. he has published 18 high-impact journal papers and holds two patents in innovative computational approaches for material behavior prediction. as a chartered Renewable Energy Technologies engineer (ceng) and a member of the institution of mechanical engineers (imeche, uk), he has established himself as a leading expert in his field. his work has gained recognition from both academia and industry, solidifying his reputation as a trailblazer in advanced simulation techniques.

👨‍💻 Impact and influence

Naderi’s research has significantly influenced industrial practices, particularly in drilling technology. his ai-integrated digital twin system has been adopted by leading drilling companies, Renewable Energy Technologies enhancing operational efficiency and reducing tool failure rates by 30%. his innovative hybrid computational approach has created a new paradigm for digital twins, applicable across various engineering sectors requiring rapid fracture prediction. through his collaborations with top universities and industry leaders, including drillco, drillstar, mines paris tech, university of glasgow, and university of utah, he has facilitated knowledge transfer and joint research initiatives, driving innovation at the intersection of academia and industry.

🌍 Legacy and future contributions

As a visionary researcher, naderi continues to push the boundaries of applied solid mechanics. his future work aims to further integrate artificial intelligence with physics-based simulations, expanding the capabilities of digital twin systems for complex material behavior analysis. his commitment to sustainability and efficiency in engineering applications ensures that his contributions will have a lasting impact on multiple industries. by mentoring young researchers and collaborating on international projects, he is shaping the next generation of scientists and engineers, leaving behind a legacy of innovation and excellence in computational mechanics

Notable Publications 

  • Title: Meso-scale modelling of compressive fracture in concrete with irregularly shaped aggregates
    Author(s): S. Naderi, W. Tu, M. Zhang
    Journal: Cement and Concrete Research

  • Title: Meso-scale modelling of static and dynamic tensile fracture of concrete accounting for real-shape aggregates
    Author(s): S. Naderi, M. Zhang
    Journal: Cement and Concrete Composites

  • Title: Low-velocity impact damage of woven fabric composites: Finite element simulation and experimental verification
    Author(s): M.A. Hassan, S. Naderi, A.R. Bushroa
    Journal: Materials & Design

  • Title: 3D meso-scale modelling of tensile and compressive fracture behaviour of steel fibre reinforced concrete
    Author(s): S. Naderi, M. Zhang
    Journal: Composite Structures

  • Title: A novel framework for modelling the 3D mesostructure of steel fibre reinforced concrete
    Author(s): S. Naderi, M. Zhang
    Journal: Computers & Structures

Assoc Prof Dr. Zuhair Alaas – Electrical Engineering – Best Researcher Award

Assoc Prof Dr. Zuhair Alaas - Electrical Engineering - Best Researcher Award

Jazan University - Saudi Arabia

Author Profile

SCOPUS

ORCID

Early academic pursuits 🎓

Zuhair Alaas embarked on his academic journey with a strong foundation in electrical engineering. he earned his bachelor's degree from king fahd university of petroleum and minerals in ksa in 2002. driven by a passion for advancing his knowledge, he pursued a master's degree at the university of newcastle upon tyne in the uk, which he completed in 2007. to further solidify his expertise, he attained a ph.d. in electrical engineering from wayne state university, us, in 2017, focusing on cutting-edge technologies in power electronics and energy systems.

Professional endeavors 🏢

zuhair's professional career is marked by significant roles in academia and the industry. after gaining experience as a lecturer at the technical and vocational training corporation, he served as a power transmission engineer at saudi electric company. his academic journey at jazan university began in 2011, where he progressed from a lecturer to an assistant professor, and eventually to an associate professor. notably, he led the electrical engineering department from february 2019 to april 2023, guiding it through a period of academic excellence and innovation.

Contributions and research focus 🔍

zuhair's research is deeply rooted in the realm of power electronics and renewable energy. he has made significant contributions to the development of ac and dc power converter topologies, multilevel inverters, and battery management systems. his work extends to the Electrical Engineering management of grid-level energy storage systems, machine drives, and the integration of renewable energy sources like photovoltaic systems and wind energy into smart grids. through his research, he has contributed to the advancement of sustainable energy solutions and the optimization of power systems.

Accolades and recognition 🏅

zuhair's expertise and dedication have earned him recognition in the academic and engineering communities. his leadership as the head of the Electrical Engineering electrical engineering department at jazan university was instrumental in fostering a culture of research and innovation. he has been recognized for his contributions to the development of efficient energy systems and his work in integrating renewable energy into existing power grids. his academic and professional achievements have made him a respected figure in the field of electrical engineering.

Impact and influence 🌍

zuhair's work has had a profound impact on the field of electrical engineering, particularly in the areas of power electronics and renewable energy. his research has contributed to the development of more efficient and reliable energy systems, helping to drive the global transition to Electrical Engineering renewable energy sources. his influence extends beyond his research, as he has mentored numerous students and professionals, guiding them toward successful careers in engineering and energy management.

Legacy and future contributions 🔮

zuhair alaas's legacy is characterized by his commitment to advancing the field of electrical engineering through research, teaching, and leadership. his contributions to the development of sustainable energy systems and his dedication to academic excellence have left a lasting impact on the field. as he continues his work at jazan university, his future contributions promise to further enhance the integration of renewable energy into smart grids and the development of advanced power electronics systems, ensuring a sustainable energy future.

Notable Publications