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The minimal representation of a system with interacting units using Boltzmann machines

Research Output: Chapter in Book/Report/Conference proceeding Conference contribution Peer-review

Publication Information

Output type

Research Output: Chapter in Book/Report/Conference proceeding Conference contribution Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 98-103 (6 pages)

Publication milestones

  • Published - 27/10/2022

Publication status

Published - 27/10/2022

Publisher

Association for Computing Machinery

Publication series

  • Publication series name: ACM International Conference Proceeding Series

ISBN (Electronic)

9781450397308

Publication IDs

  • Scopus: 85148472530

Host publication title

ESSE 2022 - 2022 3rd European Symposium on Software Engineering

Abstract

This paper presents an alternative methodology to find a network model with the least amount of critical bonds necessary to represent the behavior of the interacting elements of a system. The model is based on a network of couplings inferred by an non-restricted Boltzmann machine, which allows finding a maximum entropy distribution (ME). For N elements, the process starts by removing from the set of N(N-1)/2 bonds, those with the lowest intensity and calculating the Kullback-Leibler divergence (KL) in each step. The edge removal process stops before there is a drastic increase in the KL divergence. This process was applied to the European market indices over two different periods. The results provide an interesting description of the most significant interactions driving the market and, at the same time, identify markets with higher system importance.