Organisation: Automation & Robotics Research Group
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Research Projects Pages
Next gEneration Architectures and TECHnologies for telecom digital processors (NEATECH)
Learn moreThe NEATECH project aims to develop advanced processor architectures using strategies that prioritise high integration and low power consumption. The primary goal is to significantly reduce power usage, mass, and volume while improving integration efficiency. The project will propose processor technologies and architectures that are scalable, capable of handling high data rates, and designed for…
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Core Research Projects
Next gEneration Architectures and TECHnologies for telecom digital processors (NEATECH)
Learn moreThe NEATECH project aims to develop advanced processor architectures using strategies that prioritise high integration and low power consumption. The primary goal is to significantly reduce power usage, mass, and volume while improving integration efficiency. The project will propose processor technologies and architectures that are scalable, capable of handling high data rates, and designed for…
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Research Projects Pages
Automated Investment Advice using Artificial Intelligence on Satellite Data (FinSat)
Learn moreThe FinSAT project explores AI-driven investment solutions that use satellite data to generate real-time, automated financial insights for informed decision-making.
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Research Projects Pages
Efficient Digital Beamforming technique compatible with Non-Uniform Beam andArray lattices (EMMANUELE)
Learn moreThe 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)
Learn moreThe 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
Automated Investment Advice using Artificial Intelligence on Satellite Data (FinSat)
Learn moreThe FinSAT project explores AI-driven investment solutions that use satellite data to generate real-time, automated financial insights for informed decision-making.
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News
[Series: SnT Young Researchers] Jose Luis Sanchez-Lopez on Situationally-Aware Robots
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Research Projects Pages
Advanced Navigation and 3D Information Collection for Mobile Robots on Construction Sites (ARG-Stugalux)
Learn moreA three-year research partnership focusing on advancing navigation capabilities of mobile robots for 3D information collection on construction sites.
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Core Research Projects
Advanced Navigation and 3D Information Collection for Mobile Robots on Construction Sites (ARG-STUGALUX)
Learn moreA three-year research partnership focusing on advancing navigation capabilities of mobile robots for 3D information collection on construction sites.