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Physical Layer Security and Hardware Demonstrator Development Physical-layer security is becoming increasingly important for protecting next-generation wireless networks against eavesdropping, spoofing
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assisted ISAC framework available at the TUM ACES Lab. ▪ Conducting real world experiments to analyze performance deviations between theoretical models, software simulations, and hardware behavior. ▪ Working
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eavesdropping, thus endangering security and stability of communication. At the same time, the strict latency and security requirements can no longer be satisfied with classical cryptographic protocols
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23.01.2026, Academic staff The Chair of Theoretical Information Technology is seeking a highly motivated research associate (m/f/d) for our research project focused on developing secure
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trajectory planning in safety-critical scenarios. For this purpose, we focus on modeling and quantifying risks in order to subsequently incorporate them into trajectory planning. The goal is to enable safe and
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involving Prof. Dr. Michael Bader (TUM CIT, Hardware-aware algorithms for HPC) , Prof. Dr. Felix Dietrich (TUM CIT, Physics-enhanced Machine Learning) , and Prof. Dr. Hartwig Anzt (TUM CIT, Computational
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problem. Do a theoretical analysis of the assigned problem using tools from information theory and related fields. Design a solution which is implementable on a computer and in hardware. Collaborate with
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. Swinkels, B. Dúzs, O. Skarsetz, K. Nishiyama, A. Walther, "Soft Hardware, Flowing Software: Reconfigurable Microfluidics for Adaptable Chemical Computation," Advanced Materials, e73669 (2026). W. Chen, R
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spectroscopy technologies (i.e. optical hardware). • Molecular biology / protein biochemistry expertise. • Experience in analyzing protein structural data (not necessarily acquiring the data). • Having already
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Degree PhD Course location Leipzig In cooperation with Centre for Peace and Security Studies (CPSS), Addis Ababa University (Ethiopia) Teaching language English Languages English at C1 level Full