Second-Order Asymptotically Optimal Statistical Classification

June 03, 2018 Β· Declared Dead Β· πŸ› International Symposium on Information Theory

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Authors Lin Zhou, Vincent Y. F. Tan, Mehul Motani arXiv ID 1806.00739 Category cs.IT: Information Theory Cross-listed cs.LG Citations 36 Venue International Symposium on Information Theory Last Checked 6 months ago
Abstract
Motivated by real-world machine learning applications, we analyze approximations to the non-asymptotic fundamental limits of statistical classification. In the binary version of this problem, given two training sequences generated according to two {\em unknown} distributions $P_1$ and $P_2$, one is tasked to classify a test sequence which is known to be generated according to either $P_1$ or $P_2$. This problem can be thought of as an analogue of the binary hypothesis testing problem but in the present setting, the generating distributions are unknown. Due to finite sample considerations, we consider the second-order asymptotics (or dispersion-type) tradeoff between type-I and type-II error probabilities for tests which ensure that (i) the type-I error probability for {\em all} pairs of distributions decays exponentially fast and (ii) the type-II error probability for a {\em particular} pair of distributions is non-vanishing. We generalize our results to classification of multiple hypotheses with the rejection option.
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