Young‐Kyun Kim
Papers
1
Total Citations
5
H-Index
1
About
Young-Kyun Kim is a researcher specializing in the design and modeling of electric motors, particularly for robotic applications. His key contributions lie in advancing analytical methods for slotless brushless DC (BLDC) motors, offering efficient alternatives to computationally intensive finite element analysis. His most-cited work, “A design of slotless BLDC motor for robot using equivalent magnetic circuit model” (2011, 5 citations), introduces a novel equivalent magnetic circuit model for a four-pole, twelve-coil motor. A standout achievement is the introduction of a winding forming factor that accounts for hexagonal winding shapes, enabling precise calculation of the back EMF constant. This work bridges theoretical modeling and practical motor design, providing engineers with a streamlined tool for optimizing robotic actuators. While his citation count is modest, Kim’s focus on analytical simplicity and accuracy underscores his commitment to making motor design more accessible and efficient for robotics and automation fields.
Research Focus
Key Achievements
Top Papers
- 1