Assoc. Prof. Dr. Junpeng Ma | Team Building and Team Management | Best Researcher Award

Assoc. Prof. Dr. Junpeng Ma | Team Building and Team Management | Best Researcher Award

sichuan university, China

Author Profile

Scopus

🎓 Early Academic Pursuits

Dr. Junpeng Ma began his academic journey in the field of electrical engineering at Southwest Jiaotong University in Chengdu, China. His intellectual curiosity and deep interest in energy systems quickly distinguished him among his peers. He completed his Bachelor of Science (B.S.) degree in 2013, laying a strong foundation in electrical circuits, power electronics, and systems engineering. Fueled by a desire to contribute to the rapidly evolving energy sector, he continued his academic pursuit at the same institution, earning his Ph.D. in 2018. During his doctoral studies, Dr. Ma focused on the intricate dynamics of modern energy systems, with particular attention to renewable energy integration and high-voltage transmission.

In a pivotal phase of his academic development, Dr. Ma expanded his horizons internationally by joining Aalborg University in Denmark as a Guest Ph.D. Student from November 2017 to May 2018. Aalborg is renowned for its excellence in power electronics and smart energy systems, and this experience gave Dr. Ma access to advanced methodologies and a global network of researchers. It not only sharpened his technical acumen but also enriched his cultural and collaborative skills—traits that would become central to his later work as an educator and innovator.

👨‍🏫 Professional Endeavors

Upon completion of his doctoral degree, Dr. Ma began his professional academic career at Sichuan University, one of China’s most prestigious institutions. He now serves as an Associate Professor in the College of Electrical Engineering, where he combines his passion for teaching with a deep commitment to cutting-edge research. In this role, he has been instrumental in educating future engineers and leading advanced research initiatives in energy systems.

Dr. Ma’s professional focus encompasses both classroom instruction and the development of research projects that address national and global energy challenges. He is actively engaged in supervising graduate students, designing curricula in line with the latest technological trends, and publishing research that informs the design and optimization of power grids. His position enables him to contribute to Sichuan University’s growing reputation in power system innovation while continuing his own journey of academic excellence.

🔬 Contributions and Research Focus

Dr. Ma’s research centers on two of the most critical elements of modern energy infrastructure: the modeling and control of new energy clusters and high-voltage direct current (HVDC) systems. As global energy networks pivot toward renewable sources, the challenge of managing their intermittent and decentralized nature has come to the forefront. Dr. Ma’s work addresses these challenges through advanced modeling techniques and control strategies designed to improve reliability and efficiency.

New energy clusters often integrate wind, solar, battery storage, and other distributed energy resources. Dr. Ma develops frameworks that allow these systems to function cohesively under changing environmental and load conditions. In parallel, his research on HVDC systems—which are essential for long-distance power transmission—focuses on optimizing their operation to reduce losses, manage faults, and enable more flexible energy exchange between regions. His contributions in these areas are instrumental in supporting China’s—and the world’s—transition to a low-carbon energy future.

🏆 Accolades and Recognition

Dr. Ma’s dedication to impactful research has been recognized through a series of prestigious awards from major scientific and professional bodies. He was awarded the Second Prize of the Science and Technology Progress Award by the China Electrotechnical Society, where he was recognized as the leading contributor (1st out of 10). This accolade reflects the technical depth and relevance of his work in the field of power systems.

He also received the First Prize of the Science and Technology Progress Award from the China Association of Work Safety (2nd out of 15), honoring his contributions to the safety and reliability of energy infrastructure—an area of increasing importance in the era of energy transition. Additionally, he was honored with the Second Prize of the Science and Technology Progress Award of Sichuan Province (3rd out of 8), further affirming his regional influence and scientific merit. These awards underscore his ability to translate complex research into practical innovations that benefit both industry and society.

🌍 Impact and Influence

Beyond his academic achievements, Dr. Ma’s work exerts a significant influence on the practical development of smart and sustainable energy systems. His research findings are routinely cited and applied in projects focused on grid modernization and renewable integration. In China’s ambitious move toward energy decarbonization, his contributions support essential initiatives aimed at improving grid flexibility, enhancing power quality, and ensuring energy security.

As an educator, Dr. Ma plays a transformative role in shaping the minds and careers of young engineers. His students are not only equipped with technical skills but are also inspired by his example of research-driven societal contribution. His influence extends beyond the university, as he participates in technical committees, delivers lectures at academic conferences, and collaborates with research institutes and industry partners across China and internationally.

🔮 Legacy and Future Contributions

Looking forward, Dr. Junpeng Ma is positioned to be a thought leader and innovator in the global transition toward intelligent, decarbonized energy systems. His continued research promises to yield further breakthroughs in the areas of renewable energy management, smart grid resilience, and advanced control systems for HVDC technologies. These advancements will not only shape technical practices but also inform policy-making and investment in sustainable energy infrastructure.

His legacy will likely be defined by a combination of academic rigor, technological innovation, and societal impact. As he mentors future researchers and deepens his contributions to global energy solutions, Dr. Ma stands as a vital figure in the evolution of electrical engineering in the 21st century. His work today lays the groundwork for a cleaner, smarter, and more resilient energy future for all.

📝Notable Publications

Prediction Method and Optimal Control of Subsequent Commutation Failure in LCC-HVDC System Based on Dynamic Extinction Angle Equation

Author(s): Zhiwei Lei, Junpeng Ma, Shunliang Wang, Ning Jiao, Tianqi Liu
Journal: Dianli Xitong Baohu yu Kongzhi / Power System Protection and Control
Year: 2025

Stability Analysis of Power Self-Synchronization Control of Grid-Forming Converters in Wide Range of Short-Circuit Ratio Conditions

Author(s): Junpeng Ma, Lei Li, Chengbin Chi, Shunliang Wang, Tianqi Liu
Journal: Dianli Xitong Baohu yu Kongzhi / Power System Protection and Control
Year: 2025

Adaptive Control Strategy of Disturbance Voltage for Impedance Measurement

Author(s): Jingbo Zhao, Qian Zhou, Wenli Yang, Junpeng Ma
Journal: Journal of Power Supply
Year: 2025

A Thyristor-Based Solid-State DC Circuit Breaker With a Three-Winding Coupled Inductor

Author(s): Shunliang Wang, Ming Li, Kejun Qin, Nie Hou, Tianqi Liu
Journal: IEEE Transactions on Power Electronics
Year: 2025

 An Asymmetric Hybrid Phase-Leg Modular Multilevel Converter With Small Volume, Low Cost, and DC Fault-Blocking Capability

Author(s): Rui Zhang, Shunliang Wang, Junpeng Ma, Tianqi Liu, Yun Yang
Journal: IEEE Transactions on Power Electronics
Year: 2025

Dr. Youming Wang | Team Building and Team Management | Best Researcher Award

Dr. Youming Wang | Team Building and Team Management | Best Researcher Award

Xi’an University of Posts and Telecommunications, China

Author Profile

Scopus

🎓 Early Academic Pursuits

Youming Wang’s journey in academia began with a strong foundation in mechanical engineering, earning his Master of Science degree from Xi’an University of Technology in 2006. His early academic endeavors reflected a growing curiosity about mechanical systems, particularly how they behave under stress, wear, and fluctuating environmental conditions. Driven by a desire to delve deeper into the intricacies of engineering systems, Wang continued his academic journey at Xi’an Jiaotong University, one of China’s most prestigious institutions, where he obtained his Ph.D. in Mechanical Engineering in 2010.

During his formative academic years, Wang developed a keen interest in the dynamic behavior of mechanical structures. His research during this period focused on laying a solid theoretical foundation in fault detection, signal processing, and vibration analysis—areas that would later define the trajectory of his career. His doctoral studies equipped him not only with rigorous technical expertise but also with a vision to address real-world mechanical challenges using cutting-edge engineering principles.

🛠️ Professional Endeavors

Following the completion of his Ph.D., Professor Youming Wang began his academic and research career at the Xi’an University of Posts and Telecommunications, where he currently serves as a full professor. In this role, he has been instrumental in shaping both the academic curriculum and research direction within the department of mechanical and electrical engineering.

His professional life is marked by a balance of scholarly excellence and practical engineering application. At the university, Wang has mentored numerous graduate students and led several projects, bridging the gap between theoretical research and industry needs. His role also includes collaboration with industrial partners to apply research in fault detection and vibration control to complex engineering systems in telecommunications and manufacturing sectors.

🔬 Contributions and Research Focus

Professor Wang’s research is centered on fault diagnosis, vibration control, and structural health management—fields that are crucial to the reliability and safety of modern mechanical systems. His work involves the development of diagnostic algorithms and predictive maintenance tools that allow engineers to detect faults in complex machinery before catastrophic failures occur.

By integrating advanced signal processing techniques, artificial intelligence, and sensor-based monitoring, Wang has contributed to the evolution of smart maintenance systems. These systems are especially important in industries where downtime due to mechanical failure can lead to significant financial losses or safety risks. His research has helped establish frameworks for real-time structural monitoring, ensuring early detection of issues in bridges, turbines, and high-precision equipment.

🏅 Accolades and Recognition

Over the years, Professor Wang has received widespread recognition for his contributions to mechanical engineering and applied diagnostics. Notably, he is a Fellow of the Chinese Communications Society, reflecting his interdisciplinary engagement with engineering and communications technologies. He is also a Director of the Fault Diagnosis Branch of the Chinese Society of Vibration Engineering, a role that underscores his leadership in advancing the field at the national level.

These distinctions highlight Wang’s professional esteem and validate the significance of his contributions to both academia and industry. His leadership roles also position him as a key figure in setting national research agendas and fostering innovation in structural health technologies.

🌏 Impact and Influence

The impact of Professor Wang’s work extends far beyond the university classroom or laboratory. His research has direct applications in several high-stakes industries, including transportation, energy, aerospace, and civil infrastructure. By enabling early fault detection and precision control, his methods help reduce maintenance costs, enhance operational safety, and extend the life span of critical assets.

Wang’s publications have influenced scholars and practitioners across the globe, contributing to a growing body of literature that blends traditional mechanical engineering with emerging digital tools such as machine learning and IoT-enabled diagnostics. His role in mentoring young researchers has also ensured the continuity and evolution of research in this vital area.

🌟 Legacy and Future Contributions

As Professor Youming Wang continues to advance in his career, his focus remains firmly on innovation and interdisciplinary integration. With the growing emphasis on smart cities, cyber-physical systems, and sustainable infrastructure, his expertise in fault diagnosis and structural health monitoring positions him to make lasting contributions to these emerging areas.

Looking ahead, Wang is likely to expand his work into AI-driven fault prediction systems, collaborative robotic diagnostics, and the development of integrated health management frameworks for next-generation infrastructure. His blend of academic rigor, technical proficiency, and visionary leadership ensures that his legacy will be marked by continued influence on both the engineering community and society at large.

An extended iterative filtering and composite multiscale fractional-order Boltzmann-Shannon interaction entropy for rolling bearing fault diagnosis

Author(s): Y. Wang (Youming), X. Wang (Xianzhi), G. Chen (Gaige)
Journal: Applied Acoustics
Year: 2025

 Res-TCEANet: An expansive attention mechanism with positional correspondence based on semi-supervised temporal convolutional network for RUL estimation

Author(s): Y. Wang (Youming), Y. Huang (Yirun)
Journal: Measurement: Journal of the International Measurement Confederation
Year: 2025

A fault diagnosis method of rolling bearings based on masking differential iterative filtering and Euclidean mixed entropy

Author(s): Y. Wang (Youming), X. Yang (Xing), S. Jiao (Shiting)
Journal: Measurement Science and Technology
Year: 2025

 A Multilevel Attitude-Aware Denoising Network for Bearing Fault Diagnosis

Author(s): Y. Wang (Youming), Y. Kang (Yezi), Y. Huang (Yirun)
Journal: IEEE Transactions on Industrial Informatics
Year: 2025

 A Fault Diagnosis Model Based on IFSS-CK-Means Algorithm for the Bolted Structure

Author(s): X. Yang (Xingdong), Y. Wang (Youming), X. Gao (Xiang), J. Tan (Jiyong)
Journal: Conference Paper
Year: (Not specified, assumed 2025 based on others)

Assoc Prof Dr. Xiaoqing Xiong | Team Building and Team Management | Best Researcher Award

Assoc Prof Dr. Xiaoqing Xiong | Team Building and Team Management | Best Researcher Award

Dalian Polytechnic University, China

Profile 

Scopus

Early Academic Pursuits 🎓✨

Dr. Xiong Xiaoqing’s academic journey reflects a passion for excellence and dedication to the field of chemistry. She completed her Ph.D. in December 2014 at the prestigious State Key Laboratory of Fine Chemicals at Dalian University of Technology, majoring in Applied Chemistry. This rigorous program provided her with a robust foundation in chemical engineering, where she cultivated a deep understanding of fine chemicals and their applications. Her early academic years were marked by a commitment to advancing knowledge, honing her expertise in engineering principles, and developing innovative research skills that would define her career.

Professional Endeavors 🏛️🔬

Currently, Dr. Xiong serves as an associate professor at Dalian Polytechnic University, where she actively contributes to both academia and research. Her professional journey is characterized by leadership in cutting-edge projects and dedication to mentoring the next generation of scientists. Beyond teaching, she has taken on numerous research initiatives, securing funding from prominent organizations such as the National Natural Science Foundation of China for Young Scientists, the Department of Science and Technology of Liaoning Province, and the Department of Education of Liaoning Province.

Dr. Xiong has led her team in exploring innovative approaches to chemistry and engineering, fostering an environment that encourages curiosity and interdisciplinary collaboration. Her leadership extends to driving technological innovation in Dalian, positioning the city as a hub for scientific research.

Contributions and Research Focus 🧪📚

Dr. Xiong’s research contributions are significant and far-reaching. Over the years, she has published more than 30 SCI-indexed papers as the first author or corresponding author in highly regarded international journals, including the Journal of the American Chemical Society, J. Controlled Release, and ACS Sustainable Chemistry & Engineering. These publications highlight her expertise in applied chemistry, sustainable engineering, and controlled release mechanisms.

Her inventive prowess is further demonstrated by the granting of seven invention patents. These patents reflect her commitment to translating scientific discoveries into practical applications, addressing real-world challenges, and driving industrial progress. Dr. Xiong’s work bridges the gap between theoretical knowledge and practical solutions, underscoring her role as an innovator in the chemical sciences.

Accolades and Recognition 🏆🌟

Dr. Xiong’s outstanding achievements have earned her numerous prestigious honors. She was named a “Top Talent in the ‘One Hundred, One Thousand, Ten Thousand Talents Project’ of Liaoning Province,” recognizing her as one of the leading figures in her field. Additionally, she has been celebrated as a “Science and Technology Star of Dalian,” a testament to her influential contributions to the region’s scientific and technological advancements.

Among her many accolades is the first prize for the “Liaoning Provincial Natural Science Academic Achievement Award,” which highlights her impactful research in natural sciences. These awards affirm her status as a trailblazer, inspiring both her peers and aspiring scientists to pursue excellence.

Impact and Influence 🌍🤝

Dr. Xiong’s work has a broad impact that extends beyond academic boundaries. Her research not only advances scientific understanding but also contributes to sustainable engineering solutions, emphasizing the importance of environmentally friendly practices in applied chemistry. By integrating innovative technologies into her work, she addresses pressing global challenges, particularly in resource management and chemical engineering.

Her mentorship of young scientists fosters a culture of inquiry and innovation, ensuring that the next generation of researchers is well-equipped to tackle emerging challenges. Dr. Xiong’s influence is evident in the academic and professional growth of her students and colleagues.

Legacy and Future Contributions 🌟🚀

Dr. Xiong’s legacy is one of inspiration, innovation, and impact. Her contributions to the fields of applied chemistry and sustainable engineering have laid the groundwork for future advancements in these areas. As a thought leader, her vision extends to fostering collaborative research networks, both locally and internationally, to drive transformative changes in science and technology.

Looking ahead, Dr. Xiong remains committed to exploring new frontiers in chemical sciences. Her ongoing projects and dedication to sustainable practices promise to leave a lasting impact on the global scientific community. With her combination of expertise, creativity, and leadership, Dr. Xiong continues to shape the future of applied chemistry, inspiring others to push the boundaries of what is possible.

Summary 🎯✨

Dr. Xiong Xiaoqing’s journey from a dedicated student to an esteemed associate professor exemplifies the power of perseverance, innovation, and excellence. Through her groundbreaking research, influential publications, and commitment to mentorship, she has made remarkable strides in applied chemistry and sustainable engineering. Her accolades and recognition underscore her role as a leading figure in her field, while her vision for the future ensures that her impact will continue to resonate in the years to come.

📝Notable Publications

Construction and application of fluorescent probe and sensing aerogel with ability to detect hydrogen sulfide

Authors: Qian, Y.; Cui, H.; Lu, Z.; Jiao, C.; Xiong, X.

Journal: Microchemical Journal

Year: 2024

Polyacrylonitrile In-Situ reinforced polyimide superhydrophobic porous fibers: A miraculous thermal insulation and flame-retardant material

Authors: Ji, X.; Xiang, Y.; Guo, J.; Li, Z.; Sun, J.

Journal: Chemical Engineering Journal

Year: 2024

Effect of Esterification of Natural Dyes with Glycosides on Dyeing Properties of Natural Fibers in Supercritical Carbon Dioxide

Authors: Xu, J.; Zhao, H.; Zhao, Q.; Zheng, L.; Jiao, C.

Journal: Fibers and Polymers

Year: 2024

Preparation and performance of 3-D woven triboelectric nanogenerators with integrated friction and spacer layers

Authors: Li, Z.; Jin, G.; Ma, Y.; Dong, K.; Lyu, L.

Journal: Composite Structures

Year: 2023

Bending property of novel 3D woven variable thickness composites: Experiment and finite element analysis

Authors: Liu, A.; Zhou, X.; Gao, Y.; Xiong, X.; Lyu, L.-H.

Journal: Polymer Composites

Year: 2023