Norbert Stoll
University of Rostock
106 Papers
635 Citations
Norbert Stoll is an academic researcher from University of Rostock. The author has contributed to research in topics: Mobile robot & Automation. The author has an hindex of 18, co-authored 106 publications.
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Papers
A Flexible and Pervasive IoT-Based Healthcare Platform for Physiological and Environmental Parameters Monitoring
Mostafa Haghi,Sebastian Neubert,Andre Geissler,Heidi Fleischer,Norbert Stoll,Regina Stoll,Kerstin Thurow +6 more
TL;DR: An innovative wrist-worn prototype for ambient monitoring and a flexible IoT gateway that measures the most critical parameters from an ambient domain is developed and widely may be applied whether in daily routine or medical research investigation.
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Human–automation interaction strategies and models for life science applications
David B. Kaber,Norbert Stoll,Kerstin Thurow,Rebecca S. Green,Sang Hwan Kim,Prithima R. Mosaly +5 more
TL;DR: Current and future approaches to the design of automated systems for life science processes, including humans in control loops, in applications such as high-throughput compound screening and high-performance analytical chemistry are identified.
Influence of the geometry of equal-transect oblique tunnel portal on compression wave and micro-pressure wave generated by high-speed trains entering tunnels
TL;DR: In this article, the authors investigated the influence of three main factors (portal shape, slope value, and aperture ratio) of the equal-transect oblique tunnel portal on the pressure gradient and micro-pressure wave induced by a high-speed train entering a tunnel.
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Influence of tunnel aerodynamic effects by slope of equal-transect ring oblique tunnel portal
TL;DR: In this paper, the authors used a three-dimensional, compressible, turbulence model to investigate the alleviation effect on tunnel aerodynamics of equal-transect ring oblique tunnel portals with different slope values.
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Mobile Robot for Life Science Automation
TL;DR: The paper presents a control system for mobile robots in distributed life science laboratories that covers all technical aspects of laboratory mobile robotics and a hybrid planning strategy based on a Floyd algorithm and a Genetic Algorithm is proposed.
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