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for channel estimation, beamforming, and real-time network optimisation. The goal is to enable adaptive 6G systems with improved reliability, energy efficiency, coverage, and resilience in complex and dynamic
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investigate AI-driven approaches for channel estimation, beamforming, and real-time network optimisation. The goal is to enable adaptive 6G systems with improved reliability, energy efficiency, coverage, and
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, and validated through simulation and experiments. For experiments, IDLab-UAntwerp's world-class research infrastructure, including GPU Lab, Software Defined Radios and programmable beamformers, as
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, advanced acquisition strategies, multi-static beamforming methods, and semi-tomographic reconstruction algorithms that enable high-quality 3D visualization of the abdominal aorta. In addition, you will
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-static beamforming methods, and semi-tomographic reconstruction algorithms that enable high-quality 3D visualization of the abdominal aorta. In addition, you will develop algorithms for segmentation
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: ▪ Implementing physical-layer security strategies derived from theoretical work, such as wiretap codes, artificial-noise transmission, secure beamforming, physical-layer authentication, and channel-based secret
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links with low intercept probability from advanced MIMO/beamforming solutions). contribute to the design of transceiver architectures in cross-disciplinary teams. lead and execute (funded) projects
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of photonic technologies into future wireless infrastructures. You will investigate how photonic integrated circuits can enable scalable and energy-efficient signal generation, beamforming, distribution, and
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Software Defined Radios and programmable beamformers to conduct real-world ISAC experiments. Find out more about working at the University of Antwerp here . Want to apply? You can apply for this vacancy
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beamforming strategies for multi-antenna systems to enable precise and stealthy transmission of signals, minimising detection while maximising operational effectiveness. This scholarship will be filled upon