Evidential Turing Processes

Melih Kandemir · Abdullah Akgül · Manuel Haussmann · Gozde Unal


Keywords: [ attention ] [ neural processes ]

[ Abstract ]
[ Visit Poster at Spot C1 in Virtual World ] [ Slides [ OpenReview
Mon 25 Apr 2:30 a.m. PDT — 4:30 a.m. PDT


A probabilistic classifier with reliable predictive uncertainties i) fits successfully to the target domain data, ii) provides calibrated class probabilities in difficult regions of the target domain (e.g. class overlap), and iii) accurately identifies queries coming out of the target domain and reject them. We introduce an original combination of Evidential Deep Learning, Neural Processes, and Neural Turing Machines capable of providing all three essential properties mentioned above for total uncertainty quantification. We observe our method on three image classification benchmarks to consistently improve the in-domain uncertainty quantification, out-of-domain detection, and robustness against input perturbations with one single model. Our unified solution delivers an implementation-friendly and computationally efficient recipe for safety clearance and provides intellectual economy to an investigation of algorithmic roots of epistemic awareness in deep neural nets.

Chat is not available.