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Hierarchical Object Classification for Autonomous Mobile Robots., , , , and . ICANN, volume 2415 of Lecture Notes in Computer Science, page 831-836. Springer, (2002)Homogenizability of Element Utilization in Adaptive Structures., , , , and . CASE, page 1263-1268. IEEE, (2019)An Actuator Concept for Adaptive Concrete Columns, , , , , and . Actuators, 10 (10): 273 (2021)Designing Actuation Concepts for Adaptive Slabs with Integrated Fluidic Actuators Using Influence Matrices, , , , , and . CivilEng, 3 (3): 809-830 (2022)Object classification with simple visual attention and a hierarchical neural network for subsymbolic-symbolic coupling., , , , and . CIRA, page 244-249. IEEE, (1999)Using Influence Matrices as a Design and Analysis Tool for Adaptive Truss and Beam Structures, , , and . Frontiers in Built Environment : Computational Methods in Structural Engineering, (2020)Input modeling for active structural elements : extending the established FE-Workflow for modeling of adaptive structures, , , , , , , and . 2020 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (AIM), page 1595-1600. IEEE, (2020)Actuation concepts for adaptive high-rise structures subjected to static wind loading, , , , and . Enginieering Structures, 267 (114670): 1-12 (September 2022)Masseneinsparungspotential beim Einsatz adaptiver Strukturelemente in Hochhaustragwerken, , , , and . 14. Fachtagung Baustatik - Baupraxis, 23.-24. März 2020, Stuttgart, page 787--794. (2020)Ableitung von Typologien adaptiver Hochhausstabtragwerke mittels der Methode der Einflussmatrizen. Universität Stuttgart, Stuttgart, Dissertation, (2023)