Mingyue Zhang | Technological Networks | Best Researcher Award
School of Mechanical Engineering of Dalian University of Technology | China
Author Profile
BIOGRAPHY OF MINGYUE ZHANG: A VISIONARY IN RECONFIGURABLE ANTENNA TECHNOLOGIES
EARLY ACADEMIC PURSUITS
Mingyue Zhang was born in Henan province, China, and has demonstrated an unwavering passion for engineering and technology from a young age. His academic journey began at Henan Polytechnic University, where he earned both his Bachelor’s (2014–2018) and Master’s (2018–2021) degrees from the School of Mechanical and Power Engineering. Fueled by curiosity and a drive for innovation, he progressed to pursue his Ph.D. in Mechanical Engineering at the prestigious Dalian University of Technology starting in September 2021, where he continues to immerse himself in cutting-edge research.
PROFESSIONAL ENDEAVORS
Although currently a doctoral candidate, Mingyue Zhang has already made significant strides in academia and engineering. His research output—comprising ten peer-reviewed journal articles—demonstrates his evolving leadership in antenna design and battery management systems. Through collaboration with academic peers and specialists across China, he has contributed to both theoretical frameworks and practical applications, showing promise not only as a researcher but as an innovator.
CONTRIBUTIONS AND RESEARCH FOCUS ON TECHNOLOGICAL NETWORKS
Mingyue Zhang's primary research interests center around topology optimization in electromagnetics, reconfigurable antennas, and phased arrays, firmly placing him in the subdomain of Technological Networks, particularly reconfigurable antennas. His work explores intelligent antenna structures capable of adjusting their parameters dynamically—critical for advanced wireless communication and next-generation radar systems.
His notable contributions include:
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Development of band-notched UWB antennas using novel C-shaped slot designs.
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Innovations in pattern reconfigurable antennas with controllable main lobe deflection.
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Comprehensive reviews and future-oriented studies on the state of reconfigurable antenna technology.
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Breakthroughs in battery management systems (BMS) using advanced state of charge (SOC) estimation techniques.
IMPACT AND INFLUENCE
Mingyue Zhang’s work is increasingly gaining attention in the international academic community. His articles have been published in high-impact journals such as:
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International Journal of Antennas and Propagation
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Smart Materials and Structures
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Nano Letters
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International Journal of Electric and Hybrid Vehicles
His interdisciplinary research has bridged gaps between electromagnetics, signal processing, and sustainable energy technologies—establishing a solid foundation for future collaborative and applied research across domains such as IoT, 5G, electric mobility, and smart systems.
ACADEMIC CITES AND SCHOLARLY CONTRIBUTIONS
Mingyue’s journal articles are increasingly cited by fellow researchers, particularly those in the fields of antenna design, wireless sensor networks, and electrical vehicles. His reviews and design methodologies have been pivotal in advancing the academic conversation around reconfigurable antenna performance and energy management systems. With an impressive citation trajectory, his work supports not only academic understanding but also industrial implementation.
LEGACY AND FUTURE CONTRIBUTIONS
As a budding expert in the field of reconfigurable antenna technologies, Mingyue Zhang is poised to become a leading voice in shaping the next generation of wireless communication infrastructure. His future research will likely focus on:
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Smart reconfigurable arrays for adaptive communication environments.
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Topology optimization for performance-driven, energy-efficient antenna systems.
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Hybrid integration of antenna design with AI and machine learning for real-time adaptive systems.
His early success, combined with a rigorous academic background and a visionary approach to applied electromagnetics, cements his reputation as a rising star in technological networks. Mingyue Zhang is not only contributing to today's innovations but also laying the groundwork for tomorrow's intelligent communication systems.
OTHER NOTABLE HIGHLIGHTS
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Educational Milestones:
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Ph.D. Scholar, Dalian University of Technology (2021–present)
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Master’s Degree, Henan Polytechnic University (2018–2021)
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Bachelor’s Degree, Henan Polytechnic University (2014–2018)
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Published Works:
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Authored 10 scholarly articles, with leading contributions in antenna design and electric vehicle energy management systems.
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Collaborative Excellence:
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Worked alongside respected researchers such as Renjing Gao, Guangyu Xu, and Xiaobin Fan.
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CONCLUSION
Mingyue Zhang exemplifies the future of smart wireless and electronic system innovation. His journey—from a student in Henan to a research leader in Dalian—stands as a testament to dedication, intellectual curiosity, and scientific impact. His work continues to inspire peers and promises to shape modern communication and power systems on a global scale.
NOTABLE PUBLICATIONS
"A Novel Design Method of C‐Shaped Slots for Reconfigurable Band‐Notched UWB Antenna"
- Author: Mingyue Zhang; Renjing Gao
- Journal: International Journal of Communication Systems
- Year: 2025
"Pattern reconfigurable antenna with specified main lobe deflection and stable bandwidth by using bistable composite laminates"
- Author: Mingyue Zhang; Wei Tong; Guangyu Xu; Qi Wang; Renjing Gao
- Journal: Smart Materials and Structures
- Year: 2024
"Reconfigurable Antennas for Wireless Communication: Design Mechanism, State of the Art, Challenges, and Future Perspectives"
- Author: Mingyue Zhang; Guangyu Xu; Renjing Gao; Rakesh Chowdhury
- Journal: International Journal of Antennas and Propagation
- Year: 2024
"Design and implementation of software and hardware of battery management system based on a novel state of charge estimation method"
- Author: Mingyue Zhang; Xiaobin Fan
- Journal: International Journal of Electric and Hybrid Vehicles
- Year: 2022
"Design of battery management system based on improved ampere-hour integration method"
- Author: Mingyue Zhang; Xiaobin Fan
- Journal: International Journal of Electric and Hybrid Vehicles
- Year: 2022