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5 months ago

BeLFusion: Latent Diffusion for Behavior-Driven Human Motion Prediction

German Barquero; Sergio Escalera; Cristina Palmero

BeLFusion: Latent Diffusion for Behavior-Driven Human Motion Prediction

Abstract

Stochastic human motion prediction (HMP) has generally been tackled with generative adversarial networks and variational autoencoders. Most prior works aim at predicting highly diverse movements in terms of the skeleton joints' dispersion. This has led to methods predicting fast and motion-divergent movements, which are often unrealistic and incoherent with past motion. Such methods also neglect contexts that need to anticipate diverse low-range behaviors, or actions, with subtle joint displacements. To address these issues, we present BeLFusion, a model that, for the first time, leverages latent diffusion models in HMP to sample from a latent space where behavior is disentangled from pose and motion. As a result, diversity is encouraged from a behavioral perspective. Thanks to our behavior coupler's ability to transfer sampled behavior to ongoing motion, BeLFusion's predictions display a variety of behaviors that are significantly more realistic than the state of the art. To support it, we introduce two metrics, the Area of the Cumulative Motion Distribution, and the Average Pairwise Distance Error, which are correlated to our definition of realism according to a qualitative study with 126 participants. Finally, we prove BeLFusion's generalization power in a new cross-dataset scenario for stochastic HMP.

Code Repositories

BarqueroGerman/BeLFusion
Official
pytorch
Mentioned in GitHub

Benchmarks

BenchmarkMethodologyMetrics
human-pose-forecasting-on-amassBeLFusion
ADE: 0.513
APD: 9.376
APDE: 1.977
FDE: 0.560
human-pose-forecasting-on-human36mBeLFusion
ADE: 372
APD: 7602
CMD: 5.988
FDE: 474
FID: 0.209
MMADE: 473
MMFDE: 507

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BeLFusion: Latent Diffusion for Behavior-Driven Human Motion Prediction | Papers | HyperAI