ICLR 2023poster12 citations

Calibrating Transformers via Sparse Gaussian Processes

Wenlong Chen, Yingzhen Li

Abstract

Transformer models have achieved profound success in prediction tasks in a wide range of applications in natural language processing, speech recognition and computer vision. Extending Transformer’s success to safety-critical domains requires calibrated uncertainty estimation which remains under-explored. To address this, we propose Sparse Gaussian Process attention (SGPA), which performs Bayesian inference directly in the output space of multi-head attention blocks (MHAs) in transformer to calibrate its uncertainty. It replaces the scaled dot-product operation with a valid symmetric kernel and uses sparse Gaussian processes (SGP) techniques to approximate the posterior processes of MHA outputs. Empirically, on a suite of prediction tasks on text, images and graphs, SGPA-based Transformers achieve competitive predictive accuracy, while noticeably improving both in-distribution calibration and out-of-distribution robustness and detection.

TransformersGaussian processesBayesian neural networksuncertainty estimationvariational inference
BibTeX
@inproceedings{
chen2023calibrating,
title={Calibrating Transformers via Sparse Gaussian Processes},
author={Wenlong Chen and Yingzhen Li},
booktitle={The Eleventh International Conference on Learning Representations },
year={2023},
url={https://openreview.net/forum?id=jPVAFXHlbL}
}
Calibrating Transformers via Sparse Gaussian Processes · ICLR 2023