Calibrated Test-Time Guidance for Bayesian Inference
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Abstract
Test-time guidance is a widely used mechanism for steering pretrained diffusion models toward outcomes specified by a reward function.
Existing approaches, however, focus on maximizing reward rather than sampling from the true Bayesian posterior, leading to miscalibrated inference.
In this work, we show that common test-time guidance methods do not recover the correct posterior distribution and identify the structural approximations responsible for this failure.
We then propose consistent alternative estimators that enable calibrated sampling from the Bayesian posterior.
We significantly outperform previous methods on a set of Bayesian inference tasks, and set a new state-of-the-art PSNR in black hole image reconstruction.