Kyung Ki Kim
Papers
5
Total Citations
67
H-Index
3
About
Kyung Ki Kim is a researcher specializing in neuromorphic circuit design, bio-inspired robotics, and low-power CMOS technologies. His work bridges the gap between neuroscience and electronics engineering, with a particular focus on developing hardware implementations of biological neural systems for robotic applications. Kim's most influential contribution is his 2007 paper on low-power CMOS electronic central pattern generators (CPGs) for biomimetic underwater robots, which has garnered 48 citations and established him as a pioneer in hardware-based neural control systems. This work demonstrated how biologically inspired locomotion patterns could be efficiently implemented in silicon, offering a compelling alternative to computationally expensive software-based approaches. His subsequent research on CMOS neuron oscillators and excitatory synapse circuits further advances this vision, creating compact, energy-efficient building blocks for robot motion control. Beyond neuromorphic hardware, Kim has explored multi-robot cooperation for disaster rescue scenarios and cutting-edge sensor technologies, including carbon nanotube FET-based artificial skin circuits designed for prosthetic and robotic touch sensing. Together, these contributions reflect a cohesive research agenda aimed at making robots more biologically capable, energy-efficient, and adaptable — work that continues to inspire researchers across robotics, circuit design, and human-machine interaction.
Research Focus
Key Achievements
Top Papers
- 1
- 2Cooperation of multi robots for disaster rescue11 citations · 2017
- 3
- 4Sensor Circuit Design using Carbon Nanotube FET for Artificial Skin2 citations · 2014
- 5Implementation of CMOS neuron for robot motion control unit2 citations · 2013