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Priyanka Bhovad
Priyanka Bhovad
PhD Mechanical Engineering, Clemson University, Bionaut Labs
Verified email at clemson.edu - Homepage
Title
Cited by
Cited by
Year
Architected origami materials: how folding creates sophisticated mechanical properties
S Li, H Fang, S Sadeghi, P Bhovad, KW Wang
Advanced materials 31 (5), 1805282, 2019
2762019
Peristaltic locomotion without digital controllers: Exploiting multi-stability in origami to coordinate robotic motion
P Bhovad, J Kaufmann, S Li
Extreme Mechanics Letters 32, 100552, 2019
1182019
Harnessing the multistability of kresling origami for reconfigurable articulation in soft robotic arms
J Kaufmann, P Bhovad, S Li
Soft Robotics 9 (2), 212-223, 2022
882022
Physical reservoir computing with origami and its application to robotic crawling
P Bhovad, S Li
Scientific Reports 11 (1), 13002, 2021
652021
Actuation performance of fluidic origami cellular structure: A holistic investigation
H Sane, P Bhovad, S Li
Smart Materials and Structures 27 (11), 115014, 2018
212018
Using multi-stable origami mechanism for peristaltic gait generation: A case study
P Bhovad, S Li
International Design Engineering Technical Conferences and Computers and …, 2018
152018
Peristaltic locomotion without digital controllers: Exploiting multi-stability in origami to coordinate robotic motion, Extreme Mech. Lett. 32 (2019) 100552
P Bhovad, J Kaufmann, S Li
52019
Physical reservoir computing with origami: a feasibility study
P Bhovad, S Li
Behavior and Mechanics of Multifunctional Materials XV 11589, 1158903, 2021
22021
Locomotion of an origami inspired nonholonomic system
V Fedonyuk, P Bhovad, S Li, P Tallapragada
Dynamic Systems and Control Conference 59148, V001T03A005, 2019
12019
Peristaltic locomotion without digital controllers: Exploiting the origami multi-stability to coordinate robotic motions
P Bhovad, J Kaufmann, S Li
arXiv preprint arXiv:1906.04091, 2019
12019
Developing Design and Analysis Framework for Hybrid Mechanical-Digital Control of Soft Robots: from Mechanics-Based Motion Sequencing to Physical Reservoir Computing
PB Bhovad
Clemson University, 2021
2021
Fabrication and actuation performance of the plant-inspired fluidic origami cellular structure (Conference Presentation)
H Sane, P Bhovad, S Li
Active and Passive Smart Structures and Integrated Systems XII 10595, 105950Z, 2018
2018
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