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by providing a crucial enabling medical diagnostics, transportation, and communication in the form of MRI applications, automotive radars, and 5G/6G applications, respectively. To meet the ever
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advanced light detectors to accelerate wireless communication? As the demand for wireless communication surges, the transition from 5G to the next generation of technology is imperative. This new phase
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optimisation, and performance evaluation using modern wireless communication signals relevant to 5G, 6G, and industrial wireless applications. The research may also investigate adaptive and self-learning
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defined radios ▪ Prior knowledge of wireless communication systems (MIMO-OFDM, LTE, 5G-NR) ▪ Prior knowledge of information theory Our offer ▪ Access to state‑of‑the‑art lab facilities at the TUM ACES Lab
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terrestrial 5G/6G networks and Low Earth Orbit (LEO) satellites. Rather than relying solely on dedicated positioning technologies such as GNSS, the research investigates how communication signals themselves can
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the form of MRI applications, automotive radars, and 5G/6G applications, respectively. To meet the ever-increasing demands of society, e.g. wireless data bandwidth, antenna and RF systems are exhibiting a
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accurate localisation, tracking, and collision avoidance of unmanned vehicles (UAVs) using terrestrial 5G/6G networks and Low Earth Orbit (LEO) satellites. Rather than relying solely on dedicated positioning