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Sudeep Dasari

18 accepted papers

2026

A Taxonomy for Evaluating Generalist Robot Manipulation Policies

ICRA 2026poster

Machine learning for robot manipulation promises to unlock generalization to novel tasks and environments. But how should we measure the progress of these policies towards generalization? Evaluating and quantifying generalization is the Wild West of modern robotics, with each work proposing and meas…

2025

The Ingredients for Robotic Diffusion Transformers

ICRA 2025

In recent years roboticists have achieved remarkable progress in solving increasingly general tasks on dexterous robotic hardware by leveraging high capacity Transformer network architectures and generative diffusion models. Unfortunately, combining these two orthogonal improvements has proven surpr

Cited by 66SourcecodeScholar
2024

DROID: A Large-Scale In-The-Wild Robot Manipulation Dataset

RSS 2024poster

The creation of large, diverse, high-quality robot manipulation datasets is an important stepping stone on the path toward more capable and robust robotic manipulation policies. However, creating such datasets is challenging: collecting robot manipulation data in diverse environments poses logistica…

Cited by 216SourcePDFScholar
2024

Octo: An Open-Source Generalist Robot Policy

RSS 2024poster

Large policies pretrained on diverse robot datasets have the potential to transform robotic learning: instead of training new policies from scratch, such generalist robot policies may be finetuned with only a little in-domain data, yet generalize broadly. However, to be widely applicable across a ra…

Cited by 327SourcePDFScholar
2024

Open X-Embodiment: Robotic Learning Datasets and RT-X Models : Open X-Embodiment Collaboration

ICRA 2024

Large, high-capacity models trained on diverse datasets have shown remarkable successes on efficiently tackling downstream applications. In domains from NLP to Computer Vision, this has led to a consolidation of pretrained models, with general pretrained backbones serving as a starting point for man

Cited by 910SourcecodeScholar
2024

Open X-Embodiment: Robotic Learning Datasets and RT-X Models : Open X-Embodiment Collaboration0

ICRA 2024poster

Large, high-capacity models trained on diverse datasets have shown remarkable successes on efficiently tackling downstream applications. In domains from NLP to Computer Vision, this has led to a consolidation of pretrained models, with general pretrained backbones serving as a starting point for man…

Cited by 259SourcecodeScholar
2024

Scaling Cross-Embodied Learning: One Policy for Manipulation, Navigation, Locomotion and Aviation

CoRL 2024poster

Modern machine learning systems rely on large datasets to attain broad generalization, and this often poses a challenge in robotic learning, where each robotic platform and task might have only a small dataset. By training a single policy across many different kinds of robots, a robotic learning met…

Cited by 53SourceScholar
2023

Learning Dexterous Manipulation from Exemplar Object Trajectories and Pre-Grasps

ICRA 2023poster

Learning diverse dexterous manipulation behaviors with assorted objects remains an open grand challenge. While policy learning methods offer a powerful avenue to attack this problem, these approaches require extensive per-task engineering and algorithmic tuning. This paper seeks to escape these cons…

Cited by 48SourcecodeScholar
2023

Manipulate by Seeing: Creating Manipulation Controllers from Pre-Trained Representations

ICCV 2023oral

The field of visual representation learning has seen explosive growth in the past years, but its benefits in robotics have been surprisingly limited so far. Prior work uses generic visual representations as a basis to learn (task-specific) robot action policies (e.g., via behavior cloning). While th…

Cited by 18PDFcodeScholar
2021

Model-Based Visual Planning with Self-Supervised Functional Distances

ICLR 2021spotlight

A generalist robot must be able to complete a variety of tasks in its environment. One appealing way to specify each task is in terms of a goal observation. However, learning goal-reaching policies with reinforcement learning remains a challenging problem, particularly when hand-engineered reward fu…

2021

RB2: Robotic Manipulation Benchmarking with a Twist

NeurIPS 2021poster

Benchmarks offer a scientific way to compare algorithms using objective performance metrics. Good benchmarks have two features: (a) they should be widely useful for many research groups; (b) and they should produce reproducible findings. In robotic manipulation research, there is a trade-off between…

Cited by 25SourceScholar
2019

RoboNet: Large-Scale Multi-Robot Learning

CoRL 2019

Robot learning has emerged as a promising tool for taming the complexity and diversity of the real world. Methods based on high-capacity models, such as deep networks, hold the promise of providing effective generalization to a wide range of open-world environments. However, these same methods typic

Cited by 0SourcePDFScholar
2018

One-Shot Imitation from Observing Humans via Domain-Adaptive Meta-Learning

RSS 2018poster

Humans and animals are capable of learning a new behavior by observing others perform the skill just once. We consider the problem of allowing a robot to do the same -- learning from a video of a human, even when there is domain shift in the perspective, environment, and embodiment between the robot…

Cited by 435SourcePDFScholar
2018

Robustness via Retrying: Closed-Loop Robotic Manipulation with Self-Supervised Learning

CoRL 2018

Prediction is an appealing objective for self-supervised learning of behavioral skills, particularly for autonomous robots. However, effectively utilizing predictive models for control, especially with raw image inputs, poses a number of major challenges. How should the predictions be used? What hap

Cited by 0SourcePDFScholar