TY - CHAP A1 - Schmitt, Ingo A1 - Römer, Ronald A1 - Wirsching, Günther A1 - Wolff, Matthias ED - Trouvain, Jürgen ED - Steiner, Ingmar ED - Möbius, Bernd T1 - Semantische Repräsentation strukturierter Objekte im Hilbertraum und deren Verarbeitung nach quantenmechanischen Formalismen T2 - Tagungsband der 28. Konferenz Elektronische Sprachsignalverarbeitung (ESSV), 15.-17.03.2017, Saarbrücken Y1 - 2017 SN - 978-3-95908-094-1 SP - 270 EP - 277 PB - TUDpress CY - Dresden ER - TY - CHAP A1 - Schmitt, Ingo A1 - Wirsching, Günther A1 - Wolff, Matthias ED - Khrennikov, Andrei ED - Melucci, Massimo ED - Bourama, Toni T1 - Quantum-Based Modelling of Database States T2 - Quantum-Like Models for Information Retrieval and Decision-Making Y1 - 2019 UR - https://www.springer.com/de/book/9783030259129 SN - 978-3-030-25912-9 SN - 978-3-030-25913-6 U6 - https://doi.org/10.1007/978-3-030-25913-6 SP - 115 EP - 127 PB - Springer Nature Switzerland AG, Springer International Publishing CY - Cham ET - 1. Auflage ER - TY - GEN A1 - Römer, Ronald A1 - beim Graben, Peter A1 - Huber, Markus A1 - Wolff, Matthias A1 - Wirsching, Günther A1 - Schmitt, Ingo T1 - Behavioral Control of Cognitive Agents Using Database Semantics and Minimalist Grammars T2 - Proceedings 10th IEEE International Conference on Cognitive Infocommunications, CogInfoCom 2019, Oct. 23-25 Y1 - 2019 SN - 978-1-7281-4793-2 SN - 978-1-7281-4792-5 U6 - https://doi.org/10.1109/CogInfoCom47531.2019.9089947 SN - 2380-7350 SP - 73 EP - 78 CY - Naples, Italy ER - TY - CHAP A1 - Wolff, Matthias A1 - Huber, Markus A1 - Wirsching, Günther A1 - Römer, Ronald A1 - Beim Graben, Peter A1 - Schmitt, Ingo T1 - Towards a Quantum Mechanical Model of the Inner Stage of Cognitive Agents T2 - 9th IEEE International Conference on Cognitive Infocommunications (CogInfoCom 2018), proceedings, Aug. 22-24, 2018, Budapest, Hungary N2 - We present a model, inspired by quantum field theory, of the so-called inner stage of technical cognitive agents. The inner stage represents all knowledge of the agent. It allows for planning of actions and for higher cognitive functions like coping and fantasy. By the example of a cognitive mouse agent living in a maze wold, we discuss learning, action planning, and attention in a fully deterministic setting and assuming a totally observable world. We explain the relevance of our approach to cognitive infocommunications. KW - cognitive systems KW - cognitive agents KW - quantum field theory KW - machine learning KW - inner stage KW - veridicality KW - attention modeling KW - ontology inference Y1 - 2018 UR - https://ieeexplore.ieee.org/document/8639892 SN - 978-1-5386-7094-1 U6 - https://doi.org/10.1109/CogInfoCom.2018.8639892 N1 - Best Paper Award SP - 147 EP - 152 PB - IEEE CY - Piscataway, NJ ER - TY - CHAP A1 - Wolff, Matthias A1 - Wirsching, Günther A1 - Huber, Markus A1 - Beim Graben, Peter A1 - Römer, Ronald A1 - Schmitt, Ingo ED - Karpov, Alexey ED - Jokisch, Oliver ED - Potapova, Rodmonga T1 - A Fock Space Toolbox and Some Applications in Computational Cognition T2 - Speech and computer : 20th International Conference, SPECOM 2018, Leipzig, Germany, September 18-22, 2018, proceedings N2 - We present a Matlab toolbox, called “FockBox”, handling Fock spaces and objects associated with Fock spaces: scalars, ket and bra vectors, and linear operators. We give brief application examples from computational linguistics, semantics processing, and quantum logic,demonstrating the use of the toolbox. KW - Fock space KW - Matlab KW - Computational linguistics KW - Semantics processing KW - Cognitive systems KW - Quantum logic KW - Computational cognition Y1 - 2018 SN - 978-3-319-99578-6 U6 - https://doi.org/10.1007/978-3-319-99579-3 PB - Springer International Publishing CY - Cham ER - TY - CHAP A1 - Beim Graben, Peter A1 - Huber, Markus A1 - Römer, Ronald A1 - Schmitt, Ingo A1 - Wolff, Matthias ED - Berton, André ED - Haiber, Udo ED - Minker, Wolfgang T1 - Der Fockraum als Labyrinth: Wissensrepräsentation und Problemlösungen am Beispiel des Mouse-Maze-Problems T2 - Elektronische Sprachsignalverarbeitung, Tagungsband der 29. Konferenz, Ulm, 7.-9. März 2018 Y1 - 2018 UR - http://essv2018.de/de/programm/ SN - 978-3-95908-128-3 SP - 167 EP - 174 PB - TUDpress CY - Dresden ER - TY - GEN A1 - Huber-Liebl, Markus A1 - Römer, Ronald A1 - Wirsching, Günther A1 - Schmitt, Ingo A1 - beim Graben, Peter A1 - Wolff, Matthias T1 - Quantum-inspired Cognitive Agents T2 - Frontiers in Applied Mathematics and Statistics N2 - The concept of intelligent agents is—roughly speaking—based on an architecture and a set of behavioral programs that primarily serve to solve problems autonomously. Increasing the degree of autonomy and improving cognitive performance, which can be assessed using cognitive and behavioral tests, are two important research trends. The degree of autonomy can be increased using higher-level psychological modules with which needs and motives are taken into account. In our approach we integrate these modules in architecture for an embodied, enactive multi-agent system, such that distributed problem solutions can be achieved. Furthermore, after uncovering some weaknesses in the cognitive performance of traditionally designed agents, we focus on two major aspects. On the one hand, the knowledge processing of cognitive agents is based on logical formalisms, which have deficiencies in the representation and processing of incomplete or uncertain knowledge. On the other hand, in order to fully understand the performance of cognitive agents, explanations at the symbolic and subsymbolic levels are required. Both aspects can be addressed by quantum-inspired cognitive agents. To investigate this approach, we consider two tasks in the sphere of Shannon's famous mouse-maze problem: namely classifying target objects and ontology inference. First, the classification of an unknown target object in the mouse-maze, such as cheese, water, and bacon, is based on sensory data that measure characteristics such as odor, color, shape, or nature. For an intelligent agent, we need a classifier with good prediction accuracy and explanatory power on a symbolic level. Boolean logic classifiers do work on a symbolic level but are not adequate for dealing with continuous data. Therefore, we demonstrate and evaluate a quantum-logic-inspired classifier in comparison to Boolean-logic-based classifiers. Second, ontology inference is iteratively achieved by a quantum-inspired agent through maze exploration. This requires the agent to be able to manipulate its own state by performing actions and by collecting sensory data during perception. We suggest an algebraic approach where both kinds of behaviors are uniquely described by quantum operators. The agent's state space is then iteratively constructed by carrying out unitary action operators, while Hermitian perception operators act as observables on quantum eigenstates. As a result, an ontology emerges as the simultaneous solution of the respective eigenvalue equations. Tags: btuktqiai; btuktcogsys; btukttheseus; btuktqtheseus Y1 - 2022 UR - https://www.frontiersin.org/articles/10.3389/fams.2022.909873 U6 - https://doi.org/10.3389/fams.2022.909873 SN - 2297-4687 IS - 8 SP - 1 EP - 31 ER -