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Learning Predictive Features in Affordance based Robotic Perception Systems.

, , , , and . IROS, page 3642-3647. IEEE, (2006)

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Robust and Computationally Efficient Navigation in Domestic Environments., , and . RoboCup, volume 5949 of Lecture Notes in Computer Science, page 104-115. Springer, (2009)Computational visual attention systems and their cognitive foundations: A survey., , and . ACM Trans. Appl. Percept., 7 (1): 6:1-6:39 (2010)Visual Learning of Affordance Based Cues., , , , , and . SAB, volume 4095 of Lecture Notes in Computer Science, page 52-64. Springer, (2006)Co-operating with Municipal Partners on Indicator Identification and Data Acquisition., , , and . Simul. Notes Eur., 29 (4): 159-168 (2019)Security and privacy in cloud-assisted cyber-physical systems., , and . Comput. Networks, (2018)Learning fusion strategies for visual object detection., and . IROS, page 1446-1452. IEEE, (2000)Using ontologies for the federated simulation of critical infrastructures., , , , , , and . ICCS, volume 1 of Procedia Computer Science, page 2301-2309. Elsevier, (2010)Managing the Complexity of Critical Infrastructures: A Modelling and Simulation Approach, , , and . (2017)Learning of Active Object Detection in Mobile Robots., and . Künstliche Intell., 17 (2): 18- (2003)The RESIN Climate Change Adaptation Project and its Simple Modeling Approach for Risk-oriented Vulnerability Assessment., , , , , , and . Simul. Notes Eur., 28 (2): 49-54 (2018)