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ReCoRe: Regularized Contrastive Representation Learning of World Model

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arxiv 2312.09056 v2 pith:GUE2JVVA submitted 2023-12-14 cs.LG cs.AIcs.CVcs.ROstat.ML

classification cs.LGcs.AIcs.CVcs.ROstat.ML
keywords learningworldcontrastivemodelimprovesmethodsnavigationrepresentation
verification ladder T0 review T1 audit T2 compute T3 formal
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While recent model-free Reinforcement Learning (RL) methods have demonstrated human-level effectiveness in gaming environments, their success in everyday tasks like visual navigation has been limited, particularly under significant appearance variations. This limitation arises from (i) poor sample efficiency and (ii) over-fitting to training scenarios. To address these challenges, we present a world model that learns invariant features using (i) contrastive unsupervised learning and (ii) an intervention-invariant regularizer. Learning an explicit representation of the world dynamics i.e. a world model, improves sample efficiency while contrastive learning implicitly enforces learning of invariant features, which improves generalization. However, the na\"ive integration of contrastive loss to world models is not good enough, as world-model-based RL methods independently optimize representation learning and agent policy. To overcome this issue, we propose an intervention-invariant regularizer in the form of an auxiliary task such as depth prediction, image denoising, image segmentation, etc., that explicitly enforces invariance to style interventions. Our method outperforms current state-of-the-art model-based and model-free RL methods and significantly improves on out-of-distribution point navigation tasks evaluated on the iGibson benchmark. With only visual observations, we further demonstrate that our approach outperforms recent language-guided foundation models for point navigation, which is essential for deployment on robots with limited computation capabilities. Finally, we demonstrate that our proposed model excels at the sim-to-real transfer of its perception module on the Gibson benchmark.

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  1. Efficient Reinforcement Learning Through Adaptively Pretrained Visual Encoder

    cs.CV 2025-02 conditional novelty 5.0 of 10

    APE pretrains a ResNet18 encoder with adaptively selected augmentations and freezes its early layers during policy learning, improving sample efficiency of DreamerV3 and DrQ-v2 on several visual RL benchmarks.

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