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communications, optical antennas, optoelectronics, and signal propagation and channel modeling, as well as machine learning for digital communications, with a number of contributions of strong impact at
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University of Denmark (DTU). The supervisory teams have a rich experience and confirmed expertise in the fields underwater optical communications, optical antennas, optoelectronics, and signal propagation and
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using simple digital modulation in the ISM frequency bands by simply adding an antenna to the FPGA component. During a previous work, our team showed that it was possible to use FPGA components at RF
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) the reflecting surface (ice, sea, land), and iii) the number of antennas (typically one for ground-based applications, and two in airborne/spaceborne receivers); the system/receiver provides different results
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for the physical layer of digital communications systems. A major focus of the activities will be the modelling and study of the energy cost/eqCO2 of information transmission in a massively multi-antenna network