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Join TU Delft and work together with NXP to build low-power AI accelerators for self-healing analog/RF calibration, fixing noise/offset. Co-design algorithms & hardware and validate on real silicon
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computer systems. The modeling, analysis and optimization of the extra-functional aspects of these systems, such as performance, power/energy consumption, thermals, reliability, security or verifiability but
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intact at high speeds). The power electronics connecting the generator to the electric power system will probably be commercial off the shelf. However, the power electronics determine the current waveforms
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magnetic circuit). Mechanical design (how to keep the rotor mechanically intact at high speeds). The power electronics connecting the generator to the electric power system will probably be commercial off
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photonic integrated circuits. (PICs). Specifically, we will be looking at optical amplifiers, lasers and photodetectors, with a focus on noise and high-power behavior. Such compact models will propel
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solid mechanics, sensing and signal processing, and robotics? If so, you might be an excellent candidate. Information The demand for autonomous robots capable of physically interacting with the world in
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. The goals are to test fundamental theories of physics (like Quantum Electrodynamics), to determine fundamental constants (like the proton-electron mass ratio), and to search for physics beyond the Standard
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with disabilities through inclusive Human-Computer Interaction (HCI) and participatory design methods. This PhD project will focus on methods and experiences in co-designing with stakeholders, especially
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Social Participation). TACIT focuses on the co-design of inclusive and accessible AI and other technologies for people with disabilities through inclusive Human-Computer Interaction (HCI) and participatory
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Background Energy systems are undergoing rapid changes, both in terms of electrical power generation, but also in the fast transition taking place in other energy-intensive sectors such as heating