Papers
21
Total Citations
337
H-Index
9
About
Alan Bowling is a prominent robotics researcher whose work centers on dynamic performance analysis, legged locomotion, and robotic manipulator design. He is perhaps best known for developing the **Dynamic Capability Equations (DCE)**, introduced in his highly cited 2005 paper (98 citations), which provide a powerful mathematical framework for characterizing a robot's ability to accelerate its end-effector and apply forces to its environment — tools that have since become foundational in manipulator performance analysis. Bowling's research extends robustly into multi-legged robotics, where he has made significant contributions to understanding navigability, agility, and mobility. His 2006 work on six-legged robot navigation (45 citations) demonstrated practical improvements through integrated compass and landmark-based error correction, while his studies on dynamic performance of multilegged systems (34 citations) established methods for evaluating how ground contact drives body acceleration. His broader portfolio reflects a consistent drive to bridge theoretical rigor with engineering application — from reliability-based design optimization under uncertainty, to modeling impact forces and compliance in legged locomotion, to analyzing velocity effects on manipulator performance. Collectively, his work has garnered over 280 citations, offering students and engineers alike essential frameworks for designing more capable, reliable, and agile robotic systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2Navigability of multi-legged robots45 citations · 2006
- 3Dynamic Performance, Mobility, and Agility of Multilegged Robots34 citations · 2005
- 4Reliability-Based Design Optimization of Robotic System Dynamic Performance28 citations · 2006
- 5
- 6Impact forces and agility in legged robot locomotion17 citations · 2010
- 7Velocity Effects on Robotic Manipulator Dynamic Performance12 citations · 2006
- 8
- 9Reliability-Based Design Optimization of Robotic System Dynamic Performance10 citations · 2006
- 10Mobility and Dynamic Performance of Legged Robots8 citations · 2006