Vishesh Vikas
Tufts University, University of Alabama, University of Florida
Papers
23
Total Citations
552
H-Index
10
About
Vishesh Vikas is a pioneering robotics researcher whose work sits at the intersection of soft robotics, bio-inspired locomotion, and deformable robot design. His research has fundamentally advanced our understanding of how robots built from compliant, non-rigid materials can safely and effectively navigate complex, unstructured environments — qualities increasingly vital for assistive and medical applications. Vikas's most influential contribution, "Softworms" (2016, 220 citations), introduced non-pneumatic, 3D-printed soft robots capable of lifelike locomotion, demonstrating that deformable machines could be both practical and controllable. His earlier work on inching and crawling locomotion (2013, 150 citations) established foundational principles for how soft-bodied robots propagate mechanical energy through their structures, drawing inspiration from biological organisms. Beyond locomotion, he has made notable contributions in tensegrity robot design, modular reconfigurable soft systems, and foam-based actuation, broadening the toolkit available to soft robotics engineers. Vikas has also contributed to the field's theoretical foundations, offering formal definitions of soft materials for robotics contexts and developing sensing methodologies for joint angle estimation using MEMS-based devices. Across his body of work, accumulating over 500 citations, Vikas has consistently bridged the gap between materials science, manufacturing innovation, and practical robot design, making him a distinctive and impactful voice in modern robotics research.
Research Focus
Key Achievements
Top Papers
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- 3Design and Manufacturing of Tendon-Driven Soft Foam Robots27 citations · 2019
- 4Compact Shape Morphing Tensegrity Robots Capable of Locomotion25 citations · 2019
- 5A Definition of Soft Materials for Use in the Design of Robots20 citations · 2017
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- 8Joint Angle Estimation Using Accelerometer Arrays and Model-Based Filtering12 citations · 2022
- 9
- 10Shape-centric Modeling for Soft Robot Inchworm Locomotion10 citations · 2021