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Information Geometry and Classical Cramér-Rao Type Inequalities

Handbook of Statistics (HS), 2021
Abstract

We examine the role of information geometry in the context of classical Cram\ér-Rao (CR) type inequalities. In particular, we focus on Eguchi's theory of obtaining dualistic geometric structures from a divergence function and then applying Amari-Nagoaka's theory to obtain a CR type inequality. The classical deterministic CR inequality is derived from Kullback-Leibler (KL)-divergence. We show that this framework could be generalized to other CR type inequalities through four examples: α\alpha-version of CR inequality, generalized CR inequality, Bayesian CR inequality, and Bayesian α\alpha-CR inequality. These are obtained from, respectively, IαI_\alpha-divergence (or relative α\alpha-entropy), generalized Csisz\ár divergence, Bayesian KL divergence, and Bayesian IαI_\alpha-divergence.

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