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20202025
most citedAn Addendum to NeBula: Towards Extending TEAM CoSTAR's Solution to Larger Scale Environments

10 citations · 22 across the 4 of their papers we have counts for

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cs.RO202510 cited

An Addendum to NeBula: Towards Extending TEAM CoSTAR's Solution to Larger Scale Environments

Ali Agha, Kyohei Otsu, Benjamin Morrell +86

This paper presents an appendix to the original NeBula autonomy solution developed by the TEAM CoSTAR (Collaborative SubTerranean Autonomous Robots), participating in the DARPA Sub…

cs.RO20227 cited

Adaptive Conformal Prediction for Motion Planning among Dynamic Agents

Anushri Dixit, Lars Lindemann, Skylar Wei +3

This paper proposes an algorithm for motion planning among dynamic agents using adaptive conformal prediction. We consider a deterministic control system and use trajectory predict…

cs.RO20221 cited

Moving Obstacle Avoidance: a Data-Driven Risk-Aware Approach

Skylar X. Wei, Anushri Dixit, Shashank Tomar +1

This paper proposes a new structured method for a moving agent to predict the paths of dynamically moving obstacles and avoid them using a risk-aware model predictive control (MPC)…

cs.RO2021

NeBula: Quest for Robotic Autonomy in Challenging Environments; TEAM CoSTAR at the DARPA Subterranean Challenge

Ali Agha, Kyohei Otsu, Benjamin Morrell +69

This paper presents and discusses algorithms, hardware, and software architecture developed by the TEAM CoSTAR (Collaborative SubTerranean Autonomous Robots), competing in the DARP…

cs.RO2021

STEP: Stochastic Traversability Evaluation and Planning for Risk-Aware Off-road Navigation

David D. Fan, Kyohei Otsu, Yuki Kubo +3

Although ground robotic autonomy has gained widespread usage in structured and controlled environments, autonomy in unknown and off-road terrain remains a difficult problem. Extrem…

cs.RO2020

The Kinematics of Tracked Vehicles via the Power Dissipation Method

Anushri Dixit, Joel Burdick

This paper develops a new quasi-static modeling framework for tracked robots based on the power dissipation method. Given a set of track speeds, this method predicts the vehicle's…