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LangNav: Language as a Perceptual Representation for Navigation

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arxiv 2310.07889 v2 pith:SQZNZFIO submitted 2023-10-11 cs.CV cs.AIcs.CLcs.RO

classification cs.CVcs.AIcs.CLcs.RO
keywords languagenavigationapproachmodelperceptualrepresentationpretrainedenvironment
verification ladder T0 review T1 audit T2 compute T3 formal
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We explore the use of language as a perceptual representation for vision-and-language navigation (VLN), with a focus on low-data settings. Our approach uses off-the-shelf vision systems for image captioning and object detection to convert an agent's egocentric panoramic view at each time step into natural language descriptions. We then finetune a pretrained language model to select an action, based on the current view and the trajectory history, that would best fulfill the navigation instructions. In contrast to the standard setup which adapts a pretrained language model to work directly with continuous visual features from pretrained vision models, our approach instead uses (discrete) language as the perceptual representation. We explore several use cases of our language-based navigation (LangNav) approach on the R2R VLN benchmark: generating synthetic trajectories from a prompted language model (GPT-4) with which to finetune a smaller language model; domain transfer where we transfer a policy learned on one simulated environment (ALFRED) to another (more realistic) environment (R2R); and combining both vision- and language-based representations for VLN. Our approach is found to improve upon baselines that rely on visual features in settings where only a few expert trajectories (10-100) are available, demonstrating the potential of language as a perceptual representation for navigation.

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Cited by 2 Pith papers

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

  1. MSNav: Zero-Shot Vision-and-Language Navigation with Dynamic Memory and LLM Spatial Reasoning

    cs.CV 2025-08 conditional novelty 5.0 of 10

    MSNav integrates dynamic map pruning, fine-tuned spatial reasoning (Qwen-Sp), and GPT-4o planning to improve zero-shot vision-and-language navigation on R2R and REVERIE.

  2. Cross from Left to Right Brain: Adaptive Text Dreamer for Vision-and-Language Navigation

    cs.CV 2025-05 conditional novelty 5.0 of 10

    A dual-branch text-imagination system, with one LLM branch for state estimation and one for candidate-direction description, improves R2R navigation success over prior LLM-based VLN methods.

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