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Excellent writing and communication skills Background in wireless communications, robotics, optimization, and ML/AI is a plus Good programming skills (C/C++, MATLAB, Python, etc.) Experience with platforms
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, 6G communication, and wireless sensor networks, as well as research and education in Life Science, health technology, smart electronic sensors, and medical systems. The Department of Electrical
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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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distributed IT systems, Internet of Things, IoT, cybersecurity, data science, artificial intelligence (AI), blockchain technologies, quantum and photonic technologies, wireless systems (6G) and digital
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-increasing demands of society, e.g. wireless data bandwidth, antenna and RF systems are exhibiting a higher degree of complexity in materials, geometries, and length scales. As a result, the design of
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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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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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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
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the form of MRI applications, automotive radars, and 5G/6G applications, respectively. To meet the ever-increasing demands of society, e.g. wireless data bandwidth, antenna and RF systems are exhibiting a