Lagrangian and Hamiltonian dynamics for probabilities on the statistical bundle

Author:

Chirco Goffredo1,Malagò Luigi2,Pistone Giovanni3

Affiliation:

1. Dipartimento di Fisica Ettore Pancini, Universitá di Napoli Federico II & INFN Sezione di Napoli, Napoli, Italy

2. Transylvanian Institute of Neuroscience, Cluj-Napoca, Romania

3. de Castro Statistics, Collegio Carlo Alberto, Torino, Italy

Abstract

We provide an Information-Geometric formulation of accelerated natural gradient on the Riemannian manifold of probability distributions, which is an affine manifold endowed with a dually-flat connection. In a non-parametric formalism, we consider the full set of positive probability functions on a finite sample space, and we provide a specific expression for the tangent and cotangent spaces over the statistical manifold, in terms of a Hilbert bundle structure that we call the Statistical Bundle. In this setting, we compute velocities and accelerations of a one-dimensional statistical model using the canonical dual pair of parallel transports and define a coherent formalism for Lagrangian and Hamiltonian mechanics on the bundle. We show how our formalism provides a consistent framework for accelerated natural gradient dynamics on the probability simplex, paving the way for direct applications in optimization.

Funder

European Regional Development Fund

SMIS code

Publisher

World Scientific Pub Co Pte Ltd

Subject

Physics and Astronomy (miscellaneous)

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4. The Statistical Analysis of Compositional Data

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