Prof. Ming Yang | Team Building and Team Management | Best Researcher Award
Guizhou University, China
Profile
Early Academic Pursuits ✨
Ming Yang’s academic journey began with a strong foundation in engineering and technology, nurtured in his native province of Guizhou. Born in December 1990 and belonging to the Tujia ethnic minority, he displayed an early interest in precision measurement and calibration techniques. His academic path led him to Guizhou University, where he developed a deep understanding of monocular vision-based measurement systems, an area that would later define his professional contributions. His doctoral studies were instrumental in honing his expertise, allowing him to engage with cutting-edge research in vibration calibration and sensor technology.
Professional Endeavors and Research Focus 🔬
Ming Yang’s career is marked by a relentless pursuit of innovation in measurement and calibration technologies. As a researcher and academic at Guizhou University, he has been at the forefront of projects that blend monocular vision with dynamic calibration methods. His work primarily revolves around vibration measurement, sensor calibration, and quantity-value traceability, ensuring accuracy in engineering applications. With a robust research background, he has led numerous high-impact projects, securing funding from prestigious institutions such as the National Natural Science Foundation of China and the National Key R&D Program of China.
From 2021 to the present, he has presided over multiple projects aimed at advancing low-frequency multi-component vibration calibration methods. His research on monocular vision-based measurement techniques has provided groundbreaking insights into the field, offering enhanced accuracy in vibration testing and calibration. His expertise extends to the development of control and calibration software, specifically for medium-frequency shakers, contributing to advancements in the transport sector through collaborations with the Institute of Water Transport Science, Ministry of Transport.
Contributions and Impact 🌟
Ming Yang’s research contributions have significantly influenced the field of metrology and precision engineering. His work on the “Integrated Application Demonstration of NQI Key Technologies for Heavy-haul Electric Locomotives” has provided crucial technological advancements in railway transport, ensuring the accuracy and reliability of dynamic testing methodologies. Through his leadership in multiple research projects, he has developed and refined calibration techniques that enhance the performance of vibration sensors, essential for various industrial applications.
His research has also played a pivotal role in bridging the gap between theoretical advancements and real-world engineering applications. His findings have not only been disseminated through academic publications but have also been practically implemented in national institutes and industrial settings. By leading projects such as the “Development of Gravity Field Orientation Device” in collaboration with the National Institute of Metrology, he has demonstrated his ability to translate complex scientific principles into functional and impactful technological solutions.
Accolades and Recognition 🏆
Ming Yang’s dedication to his field has earned him recognition within the scientific community. His role as the principal investigator in numerous prestigious projects highlights the trust and confidence placed in his expertise by national research institutions. The Guizhou University Project on “Discipline Multiplication and Improvement” specifically recognized his contributions to enhancing international academic influence. Additionally, his selection for the “Youth Science and Technology Talents Development Project” of the Guizhou Education Department underscores his status as a promising researcher committed to technological advancement.
Legacy and Future Contributions 💡
Looking ahead, Ming Yang’s research is poised to leave a lasting impact on the field of precision measurement and calibration. His ongoing projects continue to push the boundaries of sensor technology and vibration analysis, with far-reaching applications in transportation, industrial quality control, and scientific instrumentation. With his firm commitment to advancing monocular vision-based measurement methodologies, he is set to shape the future of dynamic calibration and quantity-value traceability.
His influence extends beyond research; as an educator, he plays a crucial role in mentoring the next generation of engineers and researchers. His contributions to Guizhou University and his collaborations with national institutes ensure that his knowledge and innovations are passed down to future scholars. By continuing to lead cutting-edge projects and fostering international research collaborations, Ming Yang is paving the way for future advancements in the field of metrology and sensor calibration, ensuring his legacy as a visionary in precision engineering.
📝Notable Publications
Economic-environmental dispatch of isolated microgrids based on dynamic classification sparrow search algorithm
Authors: G. Xie, M. Zhang, D. Wang, M. Yang
Journal: Expert Systems with Applications
Year: 2025
Monocular vision-based key feature point positioning method for micro-vibration measurement of building structures
Authors: W. Xie, M. Yang, G. Tan, C. Liang, D. Wang
Journal: Engineering Structures
Year: 2025
Deep learning-based interpretable prediction and compensation method for improving pose accuracy of parallel robots
Authors: X. Zhu, H. Zhang, Z. Liu, M. Yang, H. Chen
Journal: Expert Systems with Applications
Year: 2025
NHBBWO: A novel hybrid butterfly-beluga whale optimization algorithm with the dynamic strategy for WSN coverage optimization
Authors: X. Chen, M. Zhang, M. Yang, D. Wang
Journal: Peer-to-Peer Networking and Applications
Year: 2025
Quantum particle swarm optimization with chaotic encoding schemes for flexible job-shop scheduling problem
Authors: Y. Xu, D. Wang, M. Zhang, M. Yang, C. Liang
Journal: Swarm and Evolutionary Computation
Year: 2025