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  1. A purely geometric module in the rat's spatial representation.Ken Cheng - 1986 - Cognition 23 (2):149-178.
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  • Modeling Spatial Knowledge.Benjamin Kuipers - 1978 - Cognitive Science 2 (2):129-153.
    A person's cognitive map, or knowledge of large‐scale space, is built up from observations gathered as he travels through the environment. It acts as a problem solver to find routes and relative positions, as well as describing the current location. The TOUR model captures the multiple representations that make up the cognitive map, the problem‐solving strategies it uses, and the mechanisms for assimilating new information. The representations have rich collections of states of partial knowledge, which support many of the performance (...)
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  • Spatial cognitive maps in animals: New hypotheses on their structure and neural mechanisms.Bruno Poucet - 1993 - Psychological Review 100 (2):163-182.
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  • Prototypes, Location, and Associative Networks (PLAN): Towards a Unified Theory of Cognitive Mapping.Eric Chown, Stephen Kaplan & David Kortenkamp - 1995 - Cognitive Science 19 (1):1-51.
    An integrated representation of large‐scale space, or cognitive map, colled PLAN, is presented that attempts to address a broader spectrum of issues than has been previously attempted in a single model. Rather than examining way‐finding as a process separate from the rest of cognition, one or the fundamental goals of this work is to examine how the wayfinding process is integrated into general cognition. One result of this approach is that the model is “heads‐up,” or scene‐based, because it takes advantage (...)
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  • Qualitative navigation for mobile robots.Tod S. Levitt & Daryl T. Lawton - 1990 - Artificial Intelligence 44 (3):305-360.
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  • Towards a computational theory of cognitive maps.Wai K. Yeap - 1988 - Artificial Intelligence 34 (3):297-360.
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  • Intensity, visible-surface, and volumetric representations.H. K. Nishihara - 1981 - Artificial Intelligence 17 (1-3):265-284.
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