Papers
2
Total Citations
94
H-Index
2
About
Dr. Jing-min Yin is a leading researcher in advanced control systems for electro-hydraulic actuators, with a focus on robust position tracking and disturbance rejection. Her work addresses critical challenges in hydraulic systems, which are essential for heavy machinery, robotics, and aerospace applications. Dr. Yin’s major contributions include the development of parametric adaptive estimation and backstepping control methods, enhanced by decayed memory filters to improve system stability and precision. She also pioneered coupled-disturbance-observer-based control strategies, enabling cascade electro-hydraulic systems to maintain high performance under complex disturbances. Her most-cited paper, "Parametric adaptive estimation and backstepping control of electro-hydraulic actuator with decayed memory filter" (2016), has garnered 59 citations, reflecting its influence on the field. Another notable work, "Coupled-disturbance-observer-based position tracking control for a cascade electro-hydraulic system" (2017), with 35 citations, further demonstrates her impact. Dr. Yin’s research bridges theoretical innovation and practical application, offering robust solutions for real-world hydraulic control challenges. Her achievements have made her a respected figure in mechatronics and control engineering, inspiring students and researchers to explore adaptive and observer-based techniques for nonlinear systems.
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