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Epistemic Artificial Intelligence is Essential for Machine Learning Models to Truly 'Know When They Do Not Know'

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arxiv 2505.04950 v3 pith:RP7CZJHA submitted 2025-05-08 cs.AI

classification cs.AI
keywords modelsuncertaintydataknowapproachesartificialepistemichandle
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Despite AI's impressive achievements, including recent advances in generative and large language models, there remains a significant gap in the ability of AI systems to handle uncertainty and generalize beyond their training data. AI models consistently fail to make robust enough predictions when facing unfamiliar or adversarial data. Traditional machine learning approaches struggle to address this issue, due to an overemphasis on data fitting, while current uncertainty quantification approaches suffer from serious limitations. This position paper posits a paradigm shift towards epistemic artificial intelligence, emphasizing the need for models to learn from what they know while at the same time acknowledging their ignorance, using the mathematics of second-order uncertainty measures. This approach, which leverages the expressive power of such measures to efficiently manage uncertainty, offers an effective way to improve the resilience and robustness of AI systems, allowing them to better handle unpredictable real-world environments.

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Cited by 1 Pith paper

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    cs.LG 2025-07 conditional novelty 4.0 of 10

    Last-layer Hamiltonian Monte Carlo is competitive with other probabilistic last-layer methods on driver action and intention recognition, and more samples help OOD detection but not accuracy.

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