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Yuling Yao

5 accepted papers

2026

Predictive variational inference: Learn the predictively optimal posterior distribution

ICML 2026poster

Vanilla variational inference finds an optimal approximation to the Bayesian posterior distribution, but even the exact Bayesian posterior is often not meaningful under model misspecification. We propose predictive variational inference (PVI): a general inference framework that seeks and samples fro…

Cited by 7SourceScholar
2023

Discriminative Calibration: Check Bayesian Computation from Simulations and Flexible Classifier

NeurIPS 2023poster

To check the accuracy of Bayesian computations, it is common to use rank-based simulation-based calibration (SBC). However, SBC has drawbacks: The test statistic is somewhat ad-hoc, interactions are difficult to examine, multiple testing is a challenge, and the resulting p-value is not a divergence…

2023

Variational Inference with Gaussian Score Matching

NeurIPS 2023poster

Variational inference (VI) is a method to approximate the computationally intractable posterior distributions that arise in Bayesian statistics. Typically, VI fits a simple parametric distribution to be close to the target posterior, optimizing an appropriate objective such as the evidence lower b…

Cited by 13SourcePDFScholar
2018

Yes, but Did It Work?: Evaluating Variational Inference

ICML 2018oral

While it’s always possible to compute a variational approximation to a posterior distribution, it can be difficult to discover problems with this approximation. We propose two diagnostic algorithms to alleviate this problem. The Pareto-smoothed importance sampling (PSIS) diagnostic gives a goodness…