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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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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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Description Do you want to build 6G networks that keep working when everything else fails? Join the Division of Communications, Antennas and Optical Networks at the Electrical Engineering Department at Chalmers
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Do you want to build 6G networks that keep working when everything else fails? Join the Division of Communications, Antennas and Optical Networks at the Electrical Engineering Department at Chalmers
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wireless communication systems and standards. Our research spans fundamental theory, algorithm design, system-level analysis, and practical implementations for 6G and beyond wireless technologies. We work
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at Tampere University focuses on next-generation wireless communication systems and standards. Our research spans fundamental theory, algorithm design, system-level analysis, and practical implementations
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Processing and Antennas. Cross-disciplinary research is central and encouraged through projects across different groups within the Department. About us At the Department of Electrical Engineering (E2