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Mathematics as Information Compression via the Matching and Unification of Patterns

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  • J. Gerard Wolff

Abstract

This paper describes a novel perspective on the foundations of mathematics: how mathematics may be seen to be largely about “information compression (IC) via the matching and unification of patterns” (ICMUP). That is itself a novel approach to IC, couched in terms of nonmathematical primitives, as is necessary in any investigation of the foundations of mathematics. This new perspective on the foundations of mathematics reflects the facts that mathematics is almost exclusively the product of human brains, and has been developed, as an aid to human thinking, mathematics is likely to be consonant with much evidence for the importance of IC in human learning, perception, and cognition. This perspective on the foundations of mathematics has grown out of a long-term programme of research developing the SP Theory of Intelligence and its realization in the SP Computer Model , a system in which a generalised version of ICMUP—the powerful concept of SP-multiple-alignment —plays a central role. This paper shows with an example how mathematics, without any special provision, may achieve compression of information. Then, it describes examples showing how variants of ICMUP may be seen in widely used structures and operations in mathematics. Examples are also given to show how several aspects of the mathematics-related disciplines of logic and computing may be understood as ICMUP. Also discussed is the intimate relation between IC and concepts of probability, with arguments that there are advantages in approaching AI, cognitive science, and concepts of probability via ICMUP. Also discussed is how the close relation between IC and concepts of probability relates to the established view that some parts of mathematics are intrinsically probabilistic, and how that latter view may be reconciled with the all-or-nothing, “exact,” forms of calculation or inference that are familiar in mathematics and logic. There are many potential benefits and applications of the mathematics-as-IC perspective.

Suggested Citation

  • J. Gerard Wolff, 2019. "Mathematics as Information Compression via the Matching and Unification of Patterns," Complexity, Hindawi, vol. 2019, pages 1-25, December.
  • Handle: RePEc:hin:complx:6427493
    DOI: 10.1155/2019/6427493
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    1. J. Gerard Wolff, 2019. "Information Compression as a Unifying Principle in Human Learning, Perception, and Cognition," Complexity, Hindawi, vol. 2019, pages 1-38, February.
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    Cited by:

    1. J. Gerard Wolff, 2021. "How the SP System May Promote Sustainability in Energy Consumption in IT Systems," Sustainability, MDPI, vol. 13(8), pages 1-21, April.

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    1. J. Gerard Wolff, 2021. "How the SP System May Promote Sustainability in Energy Consumption in IT Systems," Sustainability, MDPI, vol. 13(8), pages 1-21, April.

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