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Abstract

Liming YU 著者 at IgMin Research

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Biography

Dr. Liming Yu is a distinguished researcher and academic at Beihang University’s School of Automation Science and Electrical Engineering in Beijing, China (Beijing 100083). With a robust foundation in automation, control systems, and biomedical engineering, Dr. Yu has contributed across multiple cutting-edge fields including machine learning, artificial intelligence, automation, and biomedical engineering.

His scholarly output includes a notable mini‑review titled “From Motor Augmentation to Body Enhancement, the Harmony…”, where he explored the integration of wearable interactive technologies with human motor systems—a synergy vital for the evolution of regenerative and augmentative devices. Dr. Yu’s engagement with the aviation sector is well recognized through his research on intelligent aviation pumps, including works like “Review of Key Technologies for Aviation Intelligent Pumps” (Nov 2024) and “Effect of Structural Parameters on Output 

Characteristics of a Novel Self‑Supplied Aviation Intelligent Pump” (May 2024), showcasing his expertise in advanced mechatronic systems and intelligent hydraulic controls.

Beyond pure research, Dr. Yu is active in the academic community—lecturing postgraduate courses at Beihang and mentoring within its School of Automation Science and Electrical Engineering. His academic journey includes an MSc in Automation Science and Electrical Engineering from Beihang University in 2003.

With over 17 publications and nearly 100 citations on ResearchGate, Dr. Yu’s multidisciplinary approach bridges theoretical controls, intelligent systems, and real-world applications in aviation and biomedical devices . He remains at the forefront of innovation in intelligent electromechanical systems, contributing significantly to both technological advancement and academic leadership.

Research Interest

Dr. Liming Yu’s research interests lie at the intersection of automation, intelligent control systems, and biomedical engineering. He is particularly focused on the development of intelligent mechatronic systems, including aviation hydraulic pumps and wearable bio-interactive devices. His work integrates advanced modeling, control theory, and system optimization to enhance the performance, efficiency, and adaptability of electro-mechanical systems. In recent years, Dr. Yu has explored human–machine interaction technologies, especially in motor augmentation and body enhancement applications, leveraging wearable sensors and AI algorithms to create seamless integration between humans and machines. He also investigates structural dynamics and fluid behavior in intelligent pumps for aerospace engineering, aiming to improve safety and reliability. With a commitment to innovation and interdisciplinary collaboration, Dr. Yu continues to contribute to both theoretical advancements and applied research across automation, artificial intelligence, biomedical device integration, and aerospace engineering—bridging complex systems with real-world impact.

Engineering Group (1)

Mini Review Article ID: igmin212
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Open Access Policy refers to a set of principles and guidelines aimed at providing unrestricted access to scholarly research and literature. It promotes the free availability and unrestricted use of research outputs, enabling researchers, students, and the general public to access, read, download, and distribute scholarly articles without financial or legal barriers. In this response, I will provide you with an overview of the history and latest resolutions related to Open Access Policy.

From Motor Augmentation to Body Enhancement, the Harmony between Human Body and Artificial Parts
by Liming YU, Bohan LV, Xin LI, Yuhang Wang and Ifeoluwa David Oyename

Based on the recent study of the Third Thumb at the University of Cambridge, one profound question is arising: Do human beings and the human body need a Third Thumb? This article introduces briefly motor augmentation and human augmentation emerging in decades compared to human enhancement, then focuses on three concerns deriving from the methodology of engineering system design including the relationship of system and part, main function and auxiliary function, and engineering system evolution and human evolution, so as to discuss the coordinat...ion between the human body and artificial parts generated by wearable interactive technology employed in motor augmentation.

Biomedical Engineering Automation and Control SystemsArtificial IntelligenceMachine Learning
Liming YU

Author

仕事内容

 Beihang University

 School of Automation Science and Electrical Engineering, Beihang University, Beijing 100083, China

 China

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