Papers
38
Total Citations
831
H-Index
15
About
Devin Balkcom is a robotics researcher whose work spans robotic manipulation, mobile robot motion planning, and soft modular robotics. He is perhaps best known for pioneering the field of robotic origami folding — his landmark 2004 and 2008 papers, which together have garnered over 250 citations, introduced the world's first origami-folding robot and framed paper sculpture as a rich testbed for fundamental manipulation challenges. This work brought renewed attention to the complexities of deformable object manipulation, a thread he continued with his 2015 research on tight-tolerance insertion of string and rope using virtual magnetic field control. Balkcom has made significant theoretical contributions to mobile robotics, deriving time-optimal and minimum wheel-rotation trajectories for differential-drive and omnidirectional vehicles — results that serve as essential motion primitives for planning in cluttered environments. His generalizations of Dubins curves further extended this geometric approach to rigid body motion in the plane. More recently, Balkcom has turned toward soft robotics and modular systems, developing self-assembling, deformable lattice structures inspired by tensegrity principles. His StarBlocks and soft lattice module projects reflect a broader vision of robots that adapt collectively to changing demands — a fitting evolution from his career-long interest in elegant, mathematically grounded approaches to physical interaction.
Research Focus
Key Achievements
Top Papers
- 1Robotic origami folding192 citations · 2008
- 2Time-optimal Trajectories for an Omni-directional Vehicle75 citations · 2006
- 3Minimum Wheel-Rotation Paths for Differential-Drive Mobile Robots66 citations · 2009
- 4Introducing robotic origami folding64 citations · 2004
- 5An online method for tight-tolerance insertion tasks for string and rope51 citations · 2015
- 6Minimum wheel-rotation paths for differential-drive mobile robots39 citations · 2006
- 7Time optimal trajectories for bounded velocity differential drive robots34 citations · 2002
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- 10Soft Lattice Modules That Behave Independently and Collectively22 citations · 2022