Improved pseudolikelihood regularization and decimation methods on non-linearly interacting systems with continuous variables

Author:

Marruzzo Alessia12,Tyagi Payal2,Antenucci Fabrizio32,Pagnani Andrea45,Leuzzi Luca26ORCID

Affiliation:

1. CINECA

2. Istituto di Nanotecnologia

3. University of Paris-Saclay

4. Human Genetics Foundation

5. Italian Institute for Genomic Medicine

6. Sapienza University of Rome

Abstract

We propose and test improvements to state-of-the-art techniques of Bayeasian statistical inference based on pseudolikelihood maximization with \ell_11 regularization and with decimation. In particular, we present a method to determine the best value of the regularizer parameter starting from a hypothesis testing technique. Concerning the decimation, we also analyze the worst case scenario in which there is no sharp peak in the tilded-pseudolikelihood function, firstly defined as a criterion to stop the decimation. Techniques are applied to noisy systems with non-linear dynamics, mapped onto multi-variable interacting Hamiltonian effective models for waves and phasors. Results are analyzed varying the number of available samples and the externally tunable temperature-like parameter mimicing real data noise. Eventually the behavior of inference procedures described are tested against a wrong hypothesis: non-linearly generated data are analyzed with a pairwise interacting hypothesis. Our analysis shows that, looking at the behavior of the inverse graphical problem as data size increases, the methods exposed allow to rule out a wrong hypothesis.

Funder

European Research Council

Ministero dell’Istruzione, dell’Università e della Ricerca

Publisher

Stichting SciPost

Subject

General Physics and Astronomy

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