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Intuitive linguistic Joint Object Reference in Human-Robot Interaction: Human Spatial Reference Systems and Function-Based Categorization for Symbol Grounding.

. AAAI, page 1483-1488. AAAI Press, (2006)

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Cognitively adequate modelling of spatial reference in human-robot interaction., and . ICTAI, page 222-228. IEEE Computer Society, (2000)Kognitive Modellierung von Sprach- und Bildverstehen., , , and . KONVENS, page 2-13. de Gruyter, (1996)Qualitative Spatial Arrangements and Natural Object Categories as a Link Between 3D-Perception and Speech., , and . PRICAI, volume 3157 of Lecture Notes in Computer Science, page 1003-1004. Springer, (2004)Intuitive linguistic Joint Object Reference in Human-Robot Interaction: Human Spatial Reference Systems and Function-Based Categorization for Symbol Grounding.. AAAI, page 1483-1488. AAAI Press, (2006)Spatial Knowledge Representation for Human-Robot Interaction., , , and . Spatial Cognition, volume 2685 of Lecture Notes in Computer Science, page 263-286. Springer, (2003)Capacity of Structured Multilayer Networks with Shared Weights., and . ICANN, volume 1112 of Lecture Notes in Computer Science, page 543-550. Springer, (1996)Relations Between Spatial Calculi About Directions and Orientations (Extended Abstract)., and . IJCAI, page 5040-5044. ijcai.org, (2017)Qualitative Spatial Reasoning about Line Segments., , and . ECAI, page 234-238. IOS Press, (2000)Qualitative reasoning about relative direction of oriented points., and . Artif. Intell., (2012)Automatic Object Recognition within an Office Environment., and . CRV, page 104-109. IEEE Computer Society, (2004)