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: Design, implement and characterize innovative sensing systems based on different sensing principles such as ultrasonic, optical and chemical sensors. Investigate sensor behavior under varying environmental
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of freedom makes it possible to increase the maximum information transfer rate, for instance through mode-division multiplexing: different modes carrying different angular momentum propagate independently
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at different timescales, exploring trade-offs between different design choices, quantizing the models, and implementing the best-performing ones in custom digital hardware, on FPGA and/or in an application
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and Technology and monitored by UK Research and Innovation (UKRI) . The programme’s mission is to develop innovative methods for designing and integrating microchips manufactured using different
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-key generation. ▪ Simulating wireless communication systems under different adversarial scenarios, including passive eavesdropping, active spoofing, and intentional jamming. ▪ Analyzing the influence
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to investigate vulnerability mechanisms, validate physical attacks, evaluate security countermeasures, and study whether security observations remain valid across different devices, implementations, operating
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, validate physical attacks, evaluate security countermeasures, and study whether security observations remain valid across different devices, implementations, operating conditions, and experimental
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DD sequences into HR-type schemes, and verifying coherence via fringe contrast and Allan deviation. This other objective is to assess robustness against realistic technical noise. To serve that purpose
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. Experience with embedded systems, real-time computing, hardware-software co-design, FPGA development, or hardware-accelerated computing will be considered a strong advantage. Familiarity with efficient
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computing, hardware-software co-design, FPGA development, or hardware-accelerated computing will be considered a strong advantage. Familiarity with efficient-deployment toolflows such as TinyML or FINN is a