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A real‐world rational agent: unifying old and new AI

Paul F. M. J. Verschure, Philipp Althaus

Year
2003
Citations
107
Access
Open access

Abstract

Abstract Explanations of cognitive processes provided by traditional artificial intelligence were based on the notion of the knowledge level. This perspective has been challenged by new AI that proposes an approach based on embodied systems that interact with the real‐world. We demonstrate that these two views can be unified. Our argument is based on the assumption that knowledge level explanations can be defined in the context of Bayesian theory while the goals of new AI are captured by using a well established robot based model of learning and problem solving, called Distributed Adaptive Control (DAC). In our analysis we consider random foraging and we prove that minor modifications of the DAC architecture renders a model that is equivalent to a Bayesian analysis of this task. Subsequently, we compare this enhanced, “rational,” model to its “non‐rational” predecessor and a further control condition using both simulated and real robots, in a variety of environments. Our results show that the changes made to the DAC architecture, in order to unify the perspectives of old and new AI, also lead to a significant improvement in random foraging.

Keywords

Cognitive architectureComputer scienceArtificial intelligenceVariety (cybernetics)Bayesian probabilityContext (archaeology)Embodied cognitionRobotArchitectureArgument (complex analysis)

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