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Investigating Selective Prediction Approaches Across Several Tasks in IID, OOD, and Adversarial Settings

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arxiv 2203.00211 v1 pith:RADD4GH2 submitted 2022-03-01 cs.CL cs.AIcs.LG

Investigating Selective Prediction Approaches Across Several Tasks in IID, OOD, and Adversarial Settings

classification cs.CL cs.AIcs.LG
keywords approachesacrosstaskspredictionselectivesettingsdatasetsseveral
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In order to equip NLP systems with selective prediction capability, several task-specific approaches have been proposed. However, which approaches work best across tasks or even if they consistently outperform the simplest baseline 'MaxProb' remains to be explored. To this end, we systematically study 'selective prediction' in a large-scale setup of 17 datasets across several NLP tasks. Through comprehensive experiments under in-domain (IID), out-of-domain (OOD), and adversarial (ADV) settings, we show that despite leveraging additional resources (held-out data/computation), none of the existing approaches consistently and considerably outperforms MaxProb in all three settings. Furthermore, their performance does not translate well across tasks. For instance, Monte-Carlo Dropout outperforms all other approaches on Duplicate Detection datasets but does not fare well on NLI datasets, especially in the OOD setting. Thus, we recommend that future selective prediction approaches should be evaluated across tasks and settings for reliable estimation of their capabilities.

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