most citedRough-Terrain Locomotion and Unilateral Contact Force Regulations With a Multi-Modal Legged Robot

2 citations · 2 across the 6 of their papers we have counts for

collaborators

7 papers

cs.RO2021

Generative Design of NU's Husky Carbon, A Morpho-Functional, Legged Robot

Alireza Ramezani, Pravin Dangol, Eric Sihite +2

We report the design of a morpho-functional robot called Husky Carbon. Our goal is to integrate two forms of mobility, aerial and quadrupedal-legged locomotion, within a single pla…

cs.RO2021

An Integrated Mechanical Intelligence and Control Approach Towards Flight Control of Aerobat

Eric Sihite, Atefe Darabi, Pravin Dangol +2

Our goal in this work is to expand the theory and practice of robot locomotion by addressing critical challenges associated with the robotic biomimicry of bat aerial locomotion. Ba…

cs.RO20212 cited

Rough-Terrain Locomotion and Unilateral Contact Force Regulations With a Multi-Modal Legged Robot

Kaier Liang, Eric Sihite, Pravin Dangol +2

Despite many accomplishments by legged robot designers, state-of-the-art bipedal robots are prone to falling over, cannot negotiate extremely rough terrains and cannot directly reg…

cs.RO2021

Mechanical design and fabrication of a kinetic sculpture with application to bioinspired drone design

Andrew Lessieur, Eric Sihite, Pravin Dangol +2

Biologically-inspired robots are a very interesting and difficult branch of robotics dues to its very rich dynamical and morphological complexities. Among them, flying animals, suc…

cs.RO2021

Orientation stabilization in a bioinspired bat-robot using integrated mechanical intelligence and control

Eric Sihite, Andrew Lessieur, Pravin Dangol +2

Our goal in this work is to expand the theory and practice of robot locomotion by addressing critical challenges associated with the robotic biomimicry of bat aerial locomotion. Ba…

cs.RO2020

Mechanism Design of a Bio-inspired Armwing Mechanism for Mimicking Bat Flapping Gait

E. Sihite, P. Kelly, A. Ramezani

The objective of this work is to design and develop a bio-inspired soft and articulated armwing structure which will be an integral component of a morphing aerial co-bot, Aerobat.…