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Principled Limitations on Self-Representation for Generic Physical Systems

Chris Fields, James F. Glazebrook, Michael Levin

Year
2024
Citations
16
Access
Open access

Abstract

The ideas of self-observation and self-representation, and the concomitant idea of self-control, pervade both the cognitive and life sciences, arising in domains as diverse as immunology and robotics. Here, we ask in a very general way whether, and to what extent, these ideas make sense. Using a generic model of physical interactions, we prove a theorem and several corollaries that severely restrict applicable notions of self-observation, self-representation, and self-control. We show, in particular, that adding observational, representational, or control capabilities to a meta-level component of a system cannot, even in principle, lead to a complete meta-level representation of the system as a whole. We conclude that self-representation can at best be heuristic, and that self models cannot, in general, be empirically tested by the systems that implement them.

Keywords

Representation (politics)Self representationComputer scienceHeuristicArtificial intelligenceControl (management)Component (thermodynamics)RoboticsPhysical systemTheoretical computer science

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