Papers
27
Total Citations
466
H-Index
12
About
Doik Kim is a robotics researcher whose work spans soft robotics, humanoid systems, robot kinematics, and multi-robot coordination. He has made significant contributions across several interconnected domains, establishing himself as a versatile and impactful figure in modern robotics research. Among his most recognized contributions is the development of the asymmetric bellow flexible pneumatic actuator (AFPA), a novel design for miniature soft grippers with direct applications in medical robotics, which has garnered 71 citations. His work on the anthropomorphic "KITECH Hand" (55 citations) demonstrated practical advances in dexterous robotic manipulation under real-world hardware constraints. Kim has also made foundational contributions to humanoid locomotion, proposing analytical methods for walking pattern generation using CoM Jacobian resolution and ZMP-based trajectory planning, with multiple papers in this area collectively exceeding 100 citations. His earlier theoretical work on reciprocal screw formulation (41 citations) has provided roboticists with elegant analytical tools for kinematic analysis. Beyond locomotion and manipulation, Kim has explored human-robot interaction through motion imitation frameworks using IMU data, speaker localization, and sensor characterization for mobile platforms. His more recent work on distance-based formation control for multi-robot systems reflects a broadening research vision. Across his career, Kim's cumulative citation impact underscores his sustained relevance across both theoretical and applied robotics.
Research Focus
Key Achievements
Top Papers
- 1
- 2Development of a low cost anthropomorphic robot hand with high capability55 citations · 2012
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- 6Characterization of the Hokuyo UBG-04LX-F01 2D laser rangefinder29 citations · 2010
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- 10An Analytical Method to Generate Walking Pattern of Humanoid Robot14 citations · 2006