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Marcus Baum

    Die Wissenszurechnung
    Laser consolidation of ITO nanoparticles for the generation of thin conductive layers on transparent substrates
    Simulation Science
    Simultaneous Tracking and Shape Estimation of Extended Objects
    • 2018

      Simulation Science

      First International Workshop, SimScience 2017, Göttingen, Germany, April 27–28, 2017, Revised Selected Papers

      • 284 pages
      • 10 hours of reading

      This book constitutes the thoroughly refereed proceedings of the Clausthal-Göttingen International Workshop on Simulation Science, held in Göttingen, Germany, in April 2017. The 16 full papers presented were carefully reviewed and selected from 40 submissions. The papers are organized in topical sections on simulation and optimization in networks, simulation of materials, distributed simulations.

      Simulation Science
    • 2016

      Transparent conductive layers are an essential component of devices like solar cells or displays. Today these layers are typically generated by physical vapour deposition methods. In this work an alternative method of layer generation by nanoparticle deposition and subsequent laser consolidation under ambient atmosphere is investigated. The aim is to provide a method compatible with modern production techniques such as printed electronics and roll-to-roll processing.

      Laser consolidation of ITO nanoparticles for the generation of thin conductive layers on transparent substrates
    • 2014

      Simultaneous Tracking and Shape Estimation of Extended Objects

      Dissertationsschrift

      • 186 pages
      • 7 hours of reading

      Focusing on advanced techniques for tracking and shape estimation, this work addresses the challenges posed by nonlinearity and high-dimensionality in mobile extended object detection. It introduces innovative methods to manage computational complexity and tackles the uncertainties arising from unknown measurement sources, aiming to enhance accuracy in noisy sensor environments.

      Simultaneous Tracking and Shape Estimation of Extended Objects