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

5 citations · 5 across the 8 of their papers we have counts for

collaborators

8 papers

cs.RO2024

Enhanced Capture Point Control Using Thruster Dynamics and QP-Based Optimization for Harpy

Shreyansh Pitroda, Eric Sihite, Taoran Liu +6

Our work aims to make significant strides in understanding unexplored locomotion control paradigms based on the integration of posture manipulation and thrust vectoring. These tech…

cs.RO2024

Conjugate momentum based thruster force estimate in dynamic multimodal robot

Shreyansh Pitroda, Eric Sihite, Taoran Liu +6

In a multi-modal system which combines thruster and legged locomotion such our state-of-the-art Harpy platform to perform dynamic locomotion. Therefore, it is very important to hav…

cs.RO2024

Quadratic Programming Optimization for Bio-Inspired Thruster-Assisted Bipedal Locomotion on Inclined Slopes

Shreyansh Pitroda, Eric Sihite, Kaushik Venkatesh Krishnamurthy +5

Our work aims to make significant strides in understanding unexplored locomotion control paradigms based on the integration of posture manipulation and thrust vectoring. These tech…

cs.RO2024

Enabling steep slope walking on Husky using reduced order modeling and quadratic programming

Kaushik Venkatesh Krishnamurthy, Eric Sihite, Chenghao Wang +4

Wing-assisted inclined running (WAIR) observed in some young birds, is an attractive maneuver that can be extended to legged aerial systems. This study proposes a control method us…

cs.RO2024

Optimization free control and ground force estimation with momentum observer for a multimodal legged aerial robot

Kaushik Venkatesh Krishnamurthy, Chenghao Wang, Shreyansh Pitroda +3

Legged-aerial multimodal robots can make the most of both legged and aerial systems. In this paper, we propose a control framework that bypasses heavy onboard computers by using an…

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…