activity
20222024
most citedA Letter on Progress Made on Husky Carbon: A Legged-Aerial, Multi-modal Platform

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

collaborators

5 papers

cs.RO2024

Conjugate Momentum-Based Estimation of External Forces for Bio-Inspired Morphing Wing Flight

Bibek Gupta, Eric Sihite, Alireza Ramezani

Dynamic morphing wing flights present significant challenges in accurately estimating external forces due to complex interactions between aerodynamics, rapid wing movements, and ex…

cs.RO2024

Capture Point Control in Thruster-Assisted Bipedal Locomotion

Shreyansh Pitroda, Aditya Bondada, Kaushik Venkatesh Krishnamurthy +8

Despite major advancements in control design that are robust to unplanned disturbances, bipedal robots are still susceptible to falling over and struggle to negotiate rough terrain…

cs.RO2024

Modeling and Controls of Fluid-Structure Interactions (FSI) in Dynamic Morphing Flight

Bibek Gupta, Eric Sihite, Alireza Ramezani

The primary aim of this study is to enhance the accuracy of our aerodynamic Fluid-Structure Interaction (FSI) model to support the controlled tracking of 3D flight trajectories by…

cs.RO2023

Hovering Control of Flapping Wings in Tandem with Multi-Rotors

Aniket Dhole, Bibek Gupta, Adarsh Salagame +7

This work briefly covers our efforts to stabilize the flight dynamics of Northeastern's tailless bat-inspired micro aerial vehicle, Aerobat. Flapping robots are not new. A plethora…

cs.RO20225 cited

A Letter on Progress Made on Husky Carbon: A Legged-Aerial, Multi-modal Platform

Adarsh Salagame, Shoghair Manjikian, Chenghao Wang +8

Animals, such as birds, widely use multi-modal locomotion by combining legged and aerial mobility with dominant inertial effects. The robotic biomimicry of this multi-modal locomot…