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Conditional Flow Variational Autoencoders for Structured Sequence Prediction

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arxiv 1908.09008 v3 pith:A5MF2TRK submitted 2019-08-24 cs.CV cs.LGstat.ML

classification cs.CVcs.LGstat.ML
keywords predictionconditionalsequencestructuredflowprioragentsautoencoders
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Prediction of future states of the environment and interacting agents is a key competence required for autonomous agents to operate successfully in the real world. Prior work for structured sequence prediction based on latent variable models imposes a uni-modal standard Gaussian prior on the latent variables. This induces a strong model bias which makes it challenging to fully capture the multi-modality of the distribution of the future states. In this work, we introduce Conditional Flow Variational Autoencoders (CF-VAE) using our novel conditional normalizing flow based prior to capture complex multi-modal conditional distributions for effective structured sequence prediction. Moreover, we propose two novel regularization schemes which stabilizes training and deals with posterior collapse for stable training and better fit to the target data distribution. Our experiments on three multi-modal structured sequence prediction datasets -- MNIST Sequences, Stanford Drone and HighD -- show that the proposed method obtains state of art results across different evaluation metrics.

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  1. TopoDiffuser: A Diffusion-Based Multimodal Trajectory Prediction Model with Topometric Maps

    cs.RO 2025-08 reject novelty 4.0 of 10

    A conditional diffusion model for trajectory prediction uses an OSM route including future waypoints as conditioning, reporting large but likely leakage-inflated gains on KITTI.

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