Pengjie Xiang
Papers
3
Total Citations
40
H-Index
2
About
Pengjie Xiang is a rising researcher at the intersection of electromechanical design and intelligent robotic assembly. His primary research areas include structural topology optimization for electromagnetic performance, tactile sensing, and contact-state recognition for precision manufacturing. Xiang’s most notable contribution is his work on enhancing permanent-magnet (PM) machines, where he developed novel structural topology designs that significantly improve electromagnetic performance—critical for applications in electric vehicles, robotics, and aerospace. This flagship paper has already garnered 33 citations, underscoring its impact on the field. In parallel, Xiang has advanced robotic assembly through tactile skewness analysis and wrist-force fusion, enabling more reliable assembly of flexible printed circuits (FPCs) and avionics connectors. His work addresses real-world challenges in the 3C industry, such as interference fit and low-stiffness connections, with citation counts of 5 and 2, respectively. By bridging electromagnetic design and intelligent manufacturing, Xiang’s research promises to drive efficiency in both high-performance machines and automated assembly lines, marking him as a promising contributor to modern engineering.
Research Focus
Key Achievements
Top Papers
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