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Learning to Fold Real Garments with One Arm: A Case Study in Cloud-Based Robotics Research

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arxiv 2204.10297 v1 pith:DSIKJHGJ submitted 2022-04-21 cs.RO cs.AI

classification cs.ROcs.AI
keywords algorithmsphysicalrobotroboticsdatafabricfoldinghardware
verification ladder T0 review T1 audit T2 compute T3 formal
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Autonomous fabric manipulation is a longstanding challenge in robotics, but evaluating progress is difficult due to the cost and diversity of robot hardware. Using Reach, a cloud robotics platform that enables low-latency remote execution of control policies on physical robots, we present the first systematic benchmarking of fabric manipulation algorithms on physical hardware. We develop 4 novel learning-based algorithms that model expert actions, keypoints, reward functions, and dynamic motions, and we compare these against 4 learning-free and inverse dynamics algorithms on the task of folding a crumpled T-shirt with a single robot arm. The entire lifecycle of data collection, model training, and policy evaluation is performed remotely without physical access to the robot workcell. Results suggest a new algorithm combining imitation learning with analytic methods achieves 84% of human-level performance on the folding task. See https://sites.google.com/berkeley.edu/cloudfolding for all data, code, models, and supplemental material.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Reactive In-Air Clothing Manipulation with Confidence-Aware Dense Correspondence and Visuotactile Affordance

    cs.RO 2025-09 conditional novelty 6.0 of 10

    A dual-arm robot folds and hangs crumpled shirts in mid-air using confidence-aware visual correspondences and touch-supervised grasp affordance.

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