Invariant Components of Synergy, Redundancy, and Unique Information among Three Variables

In a system of three stochastic variables, the Partial Information Decomposition (PID) of Williams and Beer dissects the information that two variables (sources) carry about a third variable (target) into nonnegative information atoms that describe redundant, unique, and synergistic modes of depende...

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Published inEntropy (Basel, Switzerland) Vol. 19; no. 9; p. 451
Main Authors Pica, Giuseppe, Piasini, Eugenio, Chicharro, Daniel, Panzeri, Stefano
Format Journal Article
LanguageEnglish
Published Basel MDPI AG 01.09.2017
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ISSN1099-4300
1099-4300
DOI10.3390/e19090451

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Abstract In a system of three stochastic variables, the Partial Information Decomposition (PID) of Williams and Beer dissects the information that two variables (sources) carry about a third variable (target) into nonnegative information atoms that describe redundant, unique, and synergistic modes of dependencies among the variables. However, the classification of the three variables into two sources and one target limits the dependency modes that can be quantitatively resolved, and does not naturally suit all systems. Here, we extend the PID to describe trivariate modes of dependencies in full generality, without introducing additional decomposition axioms or making assumptions about the target/source nature of the variables. By comparing different PID lattices of the same system, we unveil a finer PID structure made of seven nonnegative information subatoms that are invariant to different target/source classifications and that are sufficient to describe the relationships among all PID lattices. This finer structure naturally splits redundant information into two nonnegative components: the source redundancy, which arises from the pairwise correlations between the source variables, and the non-source redundancy, which does not, and relates to the synergistic information the sources carry about the target. The invariant structure is also sufficient to construct the system’s entropy, hence it characterizes completely all the interdependencies in the system.
AbstractList In a system of three stochastic variables, the Partial Information Decomposition (PID) of Williams and Beer dissects the information that two variables (sources) carry about a third variable (target) into nonnegative information atoms that describe redundant, unique, and synergistic modes of dependencies among the variables. However, the classification of the three variables into two sources and one target limits the dependency modes that can be quantitatively resolved, and does not naturally suit all systems. Here, we extend the PID to describe trivariate modes of dependencies in full generality, without introducing additional decomposition axioms or making assumptions about the target/source nature of the variables. By comparing different PID lattices of the same system, we unveil a finer PID structure made of seven nonnegative information subatoms that are invariant to different target/source classifications and that are sufficient to describe the relationships among all PID lattices. This finer structure naturally splits redundant information into two nonnegative components: the source redundancy, which arises from the pairwise correlations between the source variables, and the non-source redundancy, which does not, and relates to the synergistic information the sources carry about the target. The invariant structure is also sufficient to construct the system’s entropy, hence it characterizes completely all the interdependencies in the system.
Author Pica, Giuseppe
Piasini, Eugenio
Chicharro, Daniel
Panzeri, Stefano
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Snippet In a system of three stochastic variables, the Partial Information Decomposition (PID) of Williams and Beer dissects the information that two variables...
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StartPage 451
SubjectTerms Axioms
Decomposition
information decomposition
information theory
Invariants
Lattices
multivariate dependencies
Redundancy
synergy
Variables
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Title Invariant Components of Synergy, Redundancy, and Unique Information among Three Variables
URI https://www.proquest.com/docview/1952109929
https://doaj.org/article/f02f49bb593b4d369310e839b3cb47bf
Volume 19
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