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Online Diffusion-Based 3D Occupancy Prediction at the Frontier with Probabilistic Map Reconciliation

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arxiv 2409.10681 v1 pith:MYK7W7GN submitted 2024-09-16 cs.RO

classification cs.RO
keywords occupancypredictiondatadiffusionenablegeometriesonlineprobabilistic
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Autonomous navigation and exploration in unmapped environments remains a significant challenge in robotics due to the difficulty robots face in making commonsense inference of unobserved geometries. Recent advancements have demonstrated that generative modeling techniques, particularly diffusion models, can enable systems to infer these geometries from partial observation. In this work, we present implementation details and results for real-time, online occupancy prediction using a modified diffusion model. By removing attention-based visual conditioning and visual feature extraction components, we achieve a 73$\%$ reduction in runtime with minimal accuracy reduction. These modifications enable occupancy prediction across the entire map, rather than being limited to the area around the robot where camera data can be collected. We introduce a probabilistic update method for merging predicted occupancy data into running occupancy maps, resulting in a 71$\%$ improvement in predicting occupancy at map frontiers compared to previous methods. Finally, we release our code and a ROS node for on-robot operation <upon publication> at github.com/arpg/sceneSense_ws.

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Cited by 1 Pith paper

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

  1. MapDiffusion: Generative Diffusion for Vectorized Online HD Map Construction and Uncertainty Estimation in Autonomous Driving

    cs.CV 2025-07 conditional novelty 6.0 of 10

    MapDiffusion uses a diffusion decoder conditioned on a latent BEV grid to sample multiple vectorized HD maps, reporting a 5.3% relative mAP gain over StreamMapNet on nuScenes and uncertainty that increases in occluded areas.

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