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20192022
most citedRobust Quadrupedal Locomotion on Sloped Terrains: A Linear Policy Approach

6 citations · 16 across the 5 of their papers we have counts for

collaborators

5 papers

cs.RO20226 cited

Rapid Locomotion via Reinforcement Learning

Gabriel B Margolis, Ge Yang, Kartik Paigwar +2

Agile maneuvers such as sprinting and high-speed turning in the wild are challenging for legged robots. We present an end-to-end learned controller that achieves record agility for…

cs.RO2021

Learning to Jump from Pixels

Gabriel B. Margolis, Tao Chen, Kartik Paigwar +4

Today's robotic quadruped systems can robustly walk over a diverse range of rough but continuous terrains, where the terrain elevation varies gradually. Locomotion on discontinuous…

cs.RO20206 cited

Robust Quadrupedal Locomotion on Sloped Terrains: A Linear Policy Approach

Kartik Paigwar, Lokesh Krishna, Sashank Tirumala +7

In this paper, with a view toward fast deployment of locomotion gaits in low-cost hardware, we use a linear policy for realizing end-foot trajectories in the quadruped robot, Stoch…

cs.RO2020

Learning Stable Manoeuvres in Quadruped Robots from Expert Demonstrations

Sashank Tirumala, Sagar Gubbi, Kartik Paigwar +6

With the research into development of quadruped robots picking up pace, learning based techniques are being explored for developing locomotion controllers for such robots. A key pr…

cs.RO20194 cited

Gait Library Synthesis for Quadruped Robots via Augmented Random Search

Sashank Tirumala, Aditya Sagi, Kartik Paigwar +5

In this paper, with a view toward fast deployment of learned locomotion gaits in low-cost hardware, we generate a library of walking trajectories, namely, forward trot, backward tr…