A framework for causal discovery in non-intervenable systems
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American Institute of Physics
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Many frameworks exist to infer cause and effect relations in complex nonlinear systems, but a complete theory is lacking. A new framework
is presented that is fully nonlinear, provides a complete information theoretic disentanglement of causal processes, allows for nonlinear inter-
actions between causes, identifies the causal strength of missing or unknown processes, and can analyze systems that cannot be represented
on directed acyclic graphs. The basic building blocks are information theoretic measures such as (conditional) mutual information and a new
concept called certainty that monotonically increases with the information available about the target process. The framework is presented in
detail and compared with other existing frameworks, and the treatment of confounders is discussed. While there are systems with structures
that the framework cannot disentangle, it is argued that any causal framework that is based on integrated quantities will miss out poten-
tially important information of the underlying probability density functions. The framework is tested on several highly simplified stochastic
processes to demonstrate how blocking and gateways are handled and on the chaotic Lorentz 1963 system. We show that the framework pro-
vides information on the local dynamics but also reveals information on the larger scale structure of the underlying attractor. Furthermore,
by applying it to real observations related to the El-Nino–Southern-Oscillation system, we demonstrate its power and advantage over other
methodologies.
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Nonlinear systems, Attractors, Information and communication theory, Causal inference, Statistical analysis, Stochastic processes
Citación
Van Leeuwen, Peter-Jan, et al., 2021. A framework for causal discovery in non-intervenable systems. Chaos: An Interdisciplinary Journal of Nonlinear Science. Melville: American Institute of Physics, vol. 31, p. 1-19. E-ISSN 1089-7682. DOI https://doi.org/10.1063/5.0054228
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