Organisation: Signal Processing and Communications (SIGCOM)

  • Research Projects Pages

    Efficient Digital Beamforming technique compatible with Non-Uniform Beam andArray lattices (EMMANUELE)

    The EMMANUELE project aims to surmount the limitations associated with Fast Fourier Transform (FFT) uniformity using Non-Uniform FFT (NUFFT). Accordingly, a power-efficient digital beamforming technique will be devised to accommodate irregular arrays and beam lattices, enabling full steering flexibility for a high number of beams. This approach is particularly relevant for many satellite communication systems,…

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  • Core Research Projects

    Efficient Digital Beamforming technique compatible with Non-Uniform Beam and Array Lattices (EMMANUELE)

    The EMMANUELE project aims to surmount the limitations associated with Fast Fourier Transform (FFT) uniformity using Non-Uniform FFT (NUFFT). Accordingly, a power-efficient digital beamforming technique will be devised to accommodate irregular arrays and beam lattices, enabling full steering flexibility for a high number of beams. This approach is particularly relevant for many satellite communication systems,…

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  • News

    40 kilometers that changed quantum history in Luxembourg

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  • News

    [Series: SnT young researchers] Chandan Sheemar on sensing for 6G non-terrestrial networks

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  • News

    Improving satellite communication with the power of AI

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  • News

    One year of exchanging quantum keys in Luxembourg

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  • News

    ETHER, a unified network of networks to revolutionise connectivity

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  • Research Projects Pages

    5G+ Evolution to Multiorbital Multiband Networks (TRANTOR)

    The aim of TRANTOR is to perform a significant step forward by paving the path for the 5G NTN evolution towards 6G. To do so, TRANTOR targets the in-orbit validation of a complete satellite value chain involving an automated management of satellite resources across multiple bands, satellites, and orbits, and a converged radio access network.…

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  • Core Research Projects

    5G+ Evolution to Multiorbital Multiband Networks (TRANTOR)

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  • Research Projects Pages

    Leveraging AI to Empower the Next Generation of Satellite Communications (SmartSpace)

    SmartSpace investigates what Artificial Intelligence (AI) can bring to satellite communications. SmartSpace does not only study direct applicability of Machine Learning (ML) techniques to communications satellite problems but also brings new contributions to the table by exploiting the background of the team in terms of communication and signal processing knowledge and the industrial advice from…

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