Theoretical performance bounds on radar tasks in distributed radar networks with the use of large reflective surfaces and robust estimation algorithms; Novel high mobility joint radar and communication systems exploring novel architectures (ultra-massive MIMO, intelligent surfaces), new modulation techniques exploiting available dimensions in next generation sub-THz/THz systems; Novel approaches to radar based health monitoring, including vital sign monitoring in the absence of a controlled environment through the use of distributed sensors; erif; font-size: 12px; ">Novel algorithms and architectures for distributed point cloud processing for target detection, identification and tracking
Requirements:
The candidate should possess (or be in the process of completing) a master degree or equivalent in Electrical/Electronic Engineering, Computer Science or Applied Mathematics or Physics with electromagnetic background
Text:
PhD candidates - Spontaneous Applications for Next Generation Radar Sensing Networks Theoretical performance bounds on radar tasks in distributed radar networks with the use of large reflective surfaces and robust estimation algorithms; Novel high mobility joint radar and communication systems exploring novel architectures (ultra-massive MIMO, intelligent surfaces), new modulation techniques exploiting available dimensions in next generation sub-THz/THz systems; Novel approaches to radar based health monitoring, including vital sign monitoring in the absence of a controlled environment through the use of distributed sensors; erif; font-size: 12px; "> Novel algorithms and architectures for distributed point cloud processing for target detection, identification and tracking The candidate should possess (or be in the process of completing) a master degree or equivalent in Electrical/Electronic Engineering, Computer Science or Applied Mathematics or Physics with electromagnetic background
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