Bo‐Yeon Lee
Papers
2
Total Citations
13
H-Index
2
About
Bo-Yeon Lee is a rising innovator in the field of magnetic sensor and energy harvesting technologies, with a focus on creating robust, application-ready devices for industrial and robotic environments. His research bridges the gap between fundamental magnetic phenomena and practical engineering, particularly in the development of pressure-insensitive sensors and energy scavenging systems for smart manufacturing. Lee’s most cited work, a 2024 study on a "Pressure-insensitive magnetic shear force sensor with pillar structure," has garnered 8 citations for its novel design that enables versatile, high-precision force sensing without interference from external pressure—a critical advancement for robotics and automation. Complementing this, his 2022 paper on "Pulsed direct current magnetic energy harvesting by robotic spot-welding" (5 citations) demonstrates a pioneering method to capture waste magnetic energy from industrial processes, directly powering sensors in smart automotive factories. These contributions highlight Lee’s talent for transforming theoretical concepts into tangible solutions that enhance efficiency and sustainability. As a researcher committed to interdisciplinary impact, his work is paving the way for more resilient, self-powered sensing systems in next-generation manufacturing and robotics.
Research Focus
Key Achievements
Top Papers
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