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the research on Integrated Sensing and Communications (ISAC) with Reconfigurable Intelligent Metasurfaces (RIS). Key Responsibilities: Design the algorithm for Integrated Sensing and Communications
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, emission via the spintronic THz emitter, and detection using a photoconductive antenna. Development of computational algorithms to achieve high-resolution THz imaging. Prepare, write, and contribute
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principles problem formulations, algorithm development, systems designs, software implementations, and collection methods for specialized engineering applications, employing expertise in electrical and/or
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collaborative research in electromagnetic sensor systems, including theoretical analysis, numerical modeling, AI-assisted sensing algorithm development, and experimental validation Qualifications: An earned PhD
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collaborative research in electromagnetic sensor systems, including theoretical analysis, numerical modeling, AI-assisted sensing algorithm development, and experimental validation Qualifications: An earned PhD
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theory, such as method of moment (MoM). • Experienced in computational algorithm on Finite Element Method (FEM) • Possess knowledge of electromagnetic theory, such as Dyadic Green’s function and
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-defined, multi-band, multi-channel sensing station based on RFSoC technology where in Multichannel Spectrum Sensing with Sparse Wideband Antenna Arrays is performed. The tasks associated with this project
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29.07.2026, Academic staff The project aims to develop, implement, test, and demonstrate physical-layer security strategies that exploit wireless channel characteristics, multi-antenna transmission
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Wideband Antenna Arrays is performed. The tasks associated with this project involve, but are not limited to, Sensor node hardware design and antenna evaluation RFSoC-based multichannel acquisition and
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antenna arrays, mixers and oscillators, as well as contribute to new areas in digital signal processing (DSP) and software defined radio (SDR) to support the emerging integrated circuits. This exciting and