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Projects

Displaying results 1 to 10 of 13.
  1. COPPER – Continual Optical Perception for Dynamic Environments in and around of Vehicles

    COPPER – Continual Optical Perception for Dynamic Environments in and around of Vehicles

    The COPPER project aims to develop new concepts in the context of alternative, advanced training strategies for deep neural networks applied in the field of assisted and autonomous driving. In particu

  2. RIG – Robotics Institute Germany

    RIG – Robotics Institute Germany

    Robotics Institute Germany, national joint project of robotics research in Germany, coordinated by TU Munich The Robotics Institute Germany is an initiative by the Federal Ministry of Education and Re

  3. KI4KL – KI für Kommunale Leistungen

    KI4KL – KI für Kommunale Leistungen

    In Antwort auf die Ausschreibung Nr. 10/4.1-2023-0335 der Stadt Gelsenkirchen hat die Westfälische Hochschule ein Angebot „für den Aufbau und Betrieb eines Anwendungszentrums Künstliche Intelligenz fü

  4. dAIEDGE – A network of excellence for distributed, trustworthy, efficient and scalable AI at the Edge

    dAIEDGE – A network of excellence for distributed, trustworthy, efficient and scalable AI at the Edge

    The dAIEDGE Network of Excellence (NoE) seeks to strengthen and support the development of the dynamic European cutting-edge AI ecosystem under the umbrella of the European AI Lighthourse and to sista

  5. HAIKU – Human AI teaming Knowledge and Understanding for aviation safety

    HAIKU – Human AI teaming Knowledge and Understanding for aviation safety

    It is essential both for safe operations, and for society in general, that the people who currently keep aviation so safe can work with, train and supervise these AI systems, and that future autonomou

  6. MOMENTUM – Robust Learning with Hybrid AI for Trustworthy Interaction of Humans and Machines in Complex Environments

    MOMENTUM – Robust Learning with Hybrid AI for Trustworthy Interaction of Humans and Machines in Complex Environments

    MOMENTUM is a research project dedicated to TRUSTED-AI, which aims to advance the development and application of artificial intelligence by integrating robustness and explainability. The aim of the pr

  7. SensoBike – Modell zur Erkennung von Fehlstellungen des Knies

    SensoBike – Modell zur Erkennung von Fehlstellungen des Knies

    Niederschwellig in den Alltag integriertes Trainings- und Mobilitätssystem zur orthopädischen Prävention am Beispiel von Kniearthrosen. Basis ist ein Pedelec-Ergometer, das erstmals die Belastung der

  8. DOF-Adaptiv – Adaptive Mapping of Degrees of Freedom as User Interface for an Assistive Robot

    DOF-Adaptiv – Adaptive Mapping of Degrees of Freedom as User Interface for an Assistive Robot

    An assistive robot arm is a valuable support for people with severely reduced mobility of arm and hand, but exhausting and time-consuming to use, because the seven movement possibilities (degrees of f

  9. INSYS – INTerpretable monitoring SYStems

    INSYS – INTerpretable monitoring SYStems

    The INSYS project is concerned with the interpretability of learned models and the resulting possibilities for self-monitoring of complex robotic systems working with multimodal data. This will be acc

  10. STAR – Safe and Trusted Human Centric ARtificial Intelligence in Future Manufacturing Lines

    STAR – Safe and Trusted Human Centric ARtificial Intelligence in Future Manufacturing Lines

    STAR is a joint effort of AI and digital manufacturing experts towards enabling the deployment of standard-based secure, safe and reliable human-centric AI systems in real-life manufacturing environme