English

On Feynman--Kac training of partial Bayesian neural networks

Machine Learning 2024-02-28 v3 Machine Learning

Abstract

Recently, partial Bayesian neural networks (pBNNs), which only consider a subset of the parameters to be stochastic, were shown to perform competitively with full Bayesian neural networks. However, pBNNs are often multi-modal in the latent variable space and thus challenging to approximate with parametric models. To address this problem, we propose an efficient sampling-based training strategy, wherein the training of a pBNN is formulated as simulating a Feynman--Kac model. We then describe variations of sequential Monte Carlo samplers that allow us to simultaneously estimate the parameters and the latent posterior distribution of this model at a tractable computational cost. Using various synthetic and real-world datasets we show that our proposed training scheme outperforms the state of the art in terms of predictive performance.

Keywords

Cite

@article{arxiv.2310.19608,
  title  = {On Feynman--Kac training of partial Bayesian neural networks},
  author = {Zheng Zhao and Sebastian Mair and Thomas B. Schön and Jens Sjölund},
  journal= {arXiv preprint arXiv:2310.19608},
  year   = {2024}
}

Comments

In AISTATS 2024