Liqun Yin
Papers
1
Total Citations
3
H-Index
1
About
Liqun Yin’s research centers on wireless power transmission, with a particular focus on magnetic coupling mechanisms for dynamic charging systems. His most-cited work, “Design of magnetic coupling mechanism for wireless power transmission system based on magnetic flux analysis” (2022), addresses a critical challenge in powering smart robots and other devices that move freely in three-dimensional space. Yin proposed a novel magnetic coupling mechanism combining disc and spiral coils, which effectively avoids frequency splitting—a common issue that degrades efficiency in short-range wireless charging. This innovation enables stable, efficient power transfer even as the receiver’s position changes dynamically. While his citation count is still growing, reflecting an emerging career, his contribution is notable for its practical relevance to autonomous robotics and industrial automation. By tackling the problem of spatial flexibility in wireless charging, Yin is helping pave the way for truly untethered, self-sustaining robotic systems. His work demonstrates a keen understanding of electromagnetic theory applied to real-world engineering challenges, marking him as a promising researcher in the evolving field of wireless energy transfer.
Research Focus
Key Achievements
Top Papers
- 1