Mathematical foundation of Information Field Dynamics (revised version)
Christian M\"unch

TL;DR
This paper establishes a rigorous mathematical foundation for Information Field Dynamics (IFD), enabling precise simulation of physical processes from data without assumptions on subgrid structures, and demonstrates its application to a Klein-Gordon field example.
Contribution
It introduces a measure-theoretic and probabilistic framework for IFD, formalizes the mathematical setting, and derives explicit update equations for data simulation.
Findings
Mathematically formalized IFD with measure theory and probability.
Derived matrix relations for IFD data updates.
Constructed a direct, non-iterative equation for data evolution.
Abstract
Information Field Dynamics (IFD) by Torsten En{\ss}lin provides a tool to construct simulation schemes for data vectors from measurements which describe certain features of a physical process (signal), without any concrete assumptions about the subgrid structure of the problem. In this work, the measure theoretical fundament and the necessary probabilistic framework for IFD are introduced first. The notation for the rest of the work is established and essential properties are developed. Afterwards, the general setting for IFD is described, consisting of the signal with its evolution equation and its linear connection to the data by a response operator. The developed environment is then used, to step by step imbed the physical language, used in Torsten En{\ss}lin's work, into a mathematical framework. Also a general approach for the approximation of an evolution equation is…
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Taxonomy
Topicsstochastic dynamics and bifurcation · Advancements in Semiconductor Devices and Circuit Design · Neural Networks and Applications
