activity
20202023
most citedRough-Terrain Locomotion and Unilateral Contact Force Regulations With a Multi-Modal Legged Robot

2 citations · 5 across the 10 of their papers we have counts for

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11 papers · 1 filter

cs.RO20231 cited

How Strong a Kick Should be to Topple Northeastern's Tumbling Robot?

Adarsh Salagame, Neha Bhattachan, Andre Caetano +16

Rough terrain locomotion has remained one of the most challenging mobility questions. In 2022, NASA's Innovative Advanced Concepts (NIAC) Program invited US academic institutions t…

cs.RO20221 cited

Bang-Bang Control Of A Tail-less Morphing Wing Flight

Eric Sihite, Xintao Hu, Bozhen Li +3

Bats' dynamic morphing wings are known to be extremely high-dimensional, and they employ the combination of inertial dynamics and aerodynamics manipulations to showcase extremely a…

cs.RO20221 cited

Efficient Path Planning and Tracking for Multi-Modal Legged-Aerial Locomotion Using Integrated Probabilistic Road Maps (PRM) and Reference Governors (RG)

Eric Sihite, Benjamin Mottis, Paul Ghanem +2

There have been several successful implementations of bio-inspired legged robots that can trot, walk, and hop robustly even in the presence of significant unplanned disturbances. D…

cs.RO2021

Unilateral Ground Contact Force Regulations in Thruster-Assisted Legged Locomotion

Eric Sihite, Pravin Dangol, Alireza Ramezani

In this paper, we study the regulation of the Ground Contact Forces (GRF) in thruster-assisted legged locomotion. We will employ Reference Governors (RGs) for enforcing GRF constra…

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…