Vishal Murali
Papers
3
Total Citations
18
H-Index
3
About
Vishal Murali is a roboticist whose research focuses on achieving graceful, efficient locomotion in legged robots—specifically bipedal walkers and hoppers. His core contributions lie in developing theoretical frameworks for smooth transitions between distinct periodic gaits, addressing a fundamental challenge in legged robotics: how to change speed or adapt to terrain without jarring, unstable movements. Murali’s work on “Graceful Transitions between Periodic Walking Gaits of Fully Actuated Bipedal Robots” (2020, 7 citations) introduced a method using continuously varying constrained optimization to generate a family of hybrid periodic orbits, effectively creating a “fiber bundle” of gaits for seamless speed changes. He extended this concept to hopping robots on deformable terrain (2018, 6 citations) and further refined it with optimal control strategies under the Partial Hybrid Zero Dynamics (PHZD) framework (2019, 5 citations). Though early in his career, Murali’s systematic approach to gait transition—moving beyond static, single-gait solutions—has established him as a promising voice in nonlinear hybrid systems and legged locomotion, offering a principled path toward more adaptive, human-like robot movement.
Research Focus
Key Achievements
Top Papers
- 1
- 2Graceful Gait Transitions for Hopping Robots on Deformable Terrain6 citations · 2018
- 3Optimal Walking Speed Transitions for Fully Actuated Bipedal Robots5 citations · 2019