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tools for the processing of signals or images acquired with biomedical sensor networks (cardiology, neurosciences) or in geosciences (seismology and marine ecology), but also in wireless communications
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. Job description Wireless communication can make control systems cheaper and easier to deploy, but bandwidth and energy limitations, as well as vulnerability to cyber-attacks, restrict its use in
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by providing a crucial enabling medical diagnostics, transportation, and communication in the form of MRI applications, automotive radars, and 5G/6G applications, respectively. To meet the ever
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shape. The Department of Electronics and ICT Engineering Technology in the Faculty of Applied Engineering is looking for a full-time (100%) doctoral scholarship holder in the field of Wireless
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the physical properties of optical and wireless communication media and use quantum effects to increase digital security.
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on information and communication theory and its applications including classical and quantum optical and wireless communication systems. This PhD sits within "QuNEST – Quantum Enhanced Optical Communication
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following areas: Robotics and Autonomous Systems Artificial Intelligence and Machine Learning Wireless Communication Systems Ultra-Wideband (UWB) Technologies Industrial Automation and Industry 5.0 Industrial
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mHealth systems integrating smartphones and wireless sensors with signal processing algorithms and artificial intelligence (AI) models for unobtrusive sleep apnea detection, multi-night monitoring
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of photonic microsystems, related technologies including nanoelectronics and wireless communication solutions, we create - in flexible and interdisciplinary teams - technologies for innovative products in a
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nuclear facilities make wireless communications difficult. Expected Outcomes The PhD aims to deliver: Novel technologies enabling safe human-robot collaboration New safety and assurance methodologies