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Towards a Unification of Logic and Information Theory

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arxiv 2301.10414 v4 pith:PJSL6XXI submitted 2023-01-25 cs.IT cs.LOmath.IT

classification cs.ITcs.LOmath.IT
keywords communicationlogictheorycapabilitiesdeductiveinformationsystemsable
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Today, the vast majority of the world's digital information is represented using the fundamental assumption, introduced by Claude Shannon in 1948, that ``...the semantic aspects of communication are irrelevant to the engineering problem (of the design of communication systems)...''. Consider, nonetheless, the observation that we often combine a message with other information in order to deduce new facts, thereby expanding the value of such a message. It is noteworthy that to-date, no rigorous theory of communication has been put forth which postulates the existence of deductive capabilities on the receiver's side. The purpose of this paper is to present such a theory. We formally model such deductive capabilities using logic reasoning, and present a rigorous theory which covers the following generic scenario: Alice and Bob each have knowledge of some logic sentence, and they wish to communicate as efficiently as possible with the shared goal that, following their communication, Bob should be able to deduce a particular logic sentence that Alice knows to be true, but that Bob currently cannot prove. Many variants of this general setup are considered in this article; in all cases we are able to provide sharp upper and lower bounds. Our contribution includes the identification of the most fundamental requirements that we place on a logic and associated logical language for all of our results to apply. Practical algorithms that are in some cases asymptotically optimal are provided, and we illustrate the potential practical value of the design of communication systems that incorporate the assumption of deductive capabilities at the receiver using experimental results that suggest significant possible gains compared to classical systems.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Coding-Logic Correspondence: Turning Information and Communication Networks into Logical Formulae via Hypergraph Heyting Algebra

    cs.IT 2025-12 conditional novelty 8.0 of 10

    Modeling information as confusion hypergraphs makes logical operations on information well-defined, so network coding requirements become logical formulae whose hypergraph entropy bounds the optimal message cost withi...

  2. Breaking through the classical Shannon entropy limit: A new frontier through logical semantics

    cs.IT 2024-12 reject novelty 6.0 of 10

    The authors state a Shannon-style rate bound for communication with deductive reasoning, governed by a function they call logical semantic entropy, but provide no proof in this text.

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