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A Hierarchical Neural Object Classifier for Subsymbolic-Symbolic Coupling.

, , , , , and . DAGM-Symposium, page 27-35. Springer, (1999)

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Schritthaltende Objektklassifikation für einen autonomen mobilen Roboter., , , , and . AMS, page 254-261. Springer, (1999)3D object recognition for autonomous mobile robots utilizing support vector classifiers., , , and . CIRA, page 344-349. IEEE, (2001)Object Classification Using Simple, Colour Based Visual Attention and a Hierarchical Neural Network for Neuro-symbolic Integration., , , , and . KI, volume 1701 of Lecture Notes in Computer Science, page 267-279. Springer, (1999)Concurrent Object Identification and Localization for a Mobile Robot., , , , , , , and . KI, 14 (4): 23-29 (2000)The integration of adaptive elements into high-rise structures, , and . International Journal of High-Rise Buildings, 8 (2): 95--100 (2019)Modellierung aktiver Strukturelemente als Erweiterung zum klassischen Workflow der FE-Analyse, , , , , , and . Berichte der Fachtagung Baustatik - Baupraxis 14 : 23. und 24. März 2020, Universität Stuttgart, page 109-118. Institut für Baustatik und Baudynamik, Universität Stuttgart, (2020)Hierarchical Object Classification for Autonomous Mobile Robots., , , , and . ICANN, volume 2415 of Lecture Notes in Computer Science, page 831-836. Springer, (2002)Designing Actuation Concepts for Adaptive Slabs with Integrated Fluidic Actuators Using Influence Matrices, , , , , and . CivilEng, 3 (3): 809-830 (2022)An Actuator Concept for Adaptive Concrete Columns, , , , , and . Actuators, 10 (10): 273 (2021)Homogenizability of Element Utilization in Adaptive Structures., , , , and . CASE, page 1263-1268. IEEE, (2019)