Kim

Papers

6

Total Citations

29

H-Index

4

About

Kim’s research lies at the intersection of robotic welding, human-robot interaction, and automated construction systems. Their most influential work introduces a fuzzy regression model to predict bead geometry in robotic gas metal arc welding, addressing the longstanding challenge of integrating artificial intelligence into welding systems. By modeling relationships between process variables and weld quality—bead height, penetration, width, and area—this approach enables precise prediction and optimization, earning 11 citations and establishing a foundation for intelligent manufacturing. Kim also explores alternative human-robot interaction with projector-based systems, moving beyond anthropomorphic designs to enhance communication in industrial settings. Their contributions extend to construction robotics, including an auto VRS-GPS surveying system for hazardous environments, and impedance control strategies for connector assembly, both critical for automating dangerous tasks. With additional work on humanoid robot kinematics and offline programming for die polishing, Kim demonstrates a sustained commitment to advancing robotic autonomy and precision. Their research, spanning from welding to assembly and surveying, has practical implications for safety and efficiency, making them a notable figure in applied robotics.

Research Focus

Key Achievements

4
H-Index
6
Papers
29
Total Citations
5
Avg Citations/Paper
🏆 Most Cited Paper
FUZZY REGRESSION MODEL TO PREDICT THE BEAD GEOMETRY IN THE ROBOTIC WELDING PROCESS
11 citations · 2007
📈 Most Prolific Year: 2012 (2 Papers)
🤝 Key Collaborators: 18

Top Papers

  1. 1
  2. 2
  3. 3
  4. 4
  5. 5
  6. 6

Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago