A Mean Field Theory of Nonlinear Filtering - Inria - Institut national de recherche en sciences et technologies du numérique Access content directly
Reports (Research Report) Year : 2008

A Mean Field Theory of Nonlinear Filtering

Abstract

We present a mean field particle theory for the numerical approximation of Feynman-Kac path integrals in the context of nonlinear filtering. We show that the conditional distribution of the signal paths given a series of noisy and partial observation data is approximated by the occupation measure of a genealogical tree model associated with mean field interacting particle model. The complete historical model converges to the McKean distribution of the paths of a nonlinear Markov chain dictated by the mean field interpretation model. We review the stability properties and the asymptotic analysis of these interacting processes, including fluctuation theorems and large deviation principles. We also present an original Laurent type and algebraic tree-based integral representations of particle block distributions. These sharp and non asymptotic propagations of chaos properties seem to be the first result of this type for mean field and interacting particle systems.
Fichier principal
Vignette du fichier
RR-6437.pdf (486.3 Ko) Télécharger le fichier
Origin : Files produced by the author(s)
Loading...

Dates and versions

inria-00238398 , version 1 (04-02-2008)
inria-00238398 , version 2 (04-02-2008)
inria-00238398 , version 3 (05-02-2008)

Identifiers

  • HAL Id : inria-00238398 , version 3

Cite

Pierre del Moral, Frédéric Patras, Sylvain Rubenthaler. A Mean Field Theory of Nonlinear Filtering. [Research Report] RR-6437, INRIA. 2008. ⟨inria-00238398v3⟩
531 View
1165 Download

Share

Gmail Facebook X LinkedIn More