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Amine Elhafsi

5 accepted papers

2026

Scan, Materialize, Simulate: A Generalizable Framework for Physically Grounded Robot Planning

ICRA 2026poster

Autonomous robots must reason about the physical consequences of their actions to operate effectively in unstructured, real-world environments. We present Scan, Materialize, Simulate (SMS), a unified framework that combines 3D Gaussian Splatting for accurate scene reconstruction, visual foundation m…

2024

Real-Time Anomaly Detection and Reactive Planning with Large Language Models

RSS 2024poster

Foundation models, e.g., large language models (LLMs), trained on internet-scale data possess zero-shot generalization capabilities that make them a promising technology towards detecting and mitigating out-of-distribution failure modes of robotic systems. Fully realizing this promise, however, pose…

Cited by 38SourcePDFScholar
2020

MATS: An Interpretable Trajectory Forecasting Representation for Planning and Control

CoRL 2020

Reasoning about human motion is a core component of modern human-robot interactive systems. In particular, one of the main uses of behavior prediction in autonomous systems is to inform robot motion planning and control. However, a majority of planning and control algorithms reason about system dyna

2019

Network Offloading Policies for Cloud Robotics: A Learning-Based Approach

RSS 2019poster

Today's robotic systems are increasingly turning to computationally expensive models such as deep neural networks (DNNs) for tasks like localization, perception, planning, and object detection. However, resource-constrained robots, like low-power drones, often have insufficient on-board compute reso…