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. Would you like to develop new wireless positioning methods for challenging non-line-of-sight environments and validate them through real radio experiments? We are looking for a Doctoral Researcher in
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systems, sensing, wireless technologies and bio-inspired engineering. The successful applicant will focus primarily on the RF, high-frequency and experimental characterisation of externally fabricated
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. This PhD will develop AI-enhanced flexible antenna systems for resilient next-generation wireless networks. By exploiting flexible antenna technologies, the project will investigate AI-driven approaches
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removed before the deadline. This PhD will develop AI-enhanced flexible antenna systems for resilient next-generation wireless networks. By exploiting flexible antenna technologies, the project will
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be removed once the position has been filled. This fully funded PhD explores AI-native and sensing-aware wireless systems where communications and sensing are co-designed end-to-end. You will unify
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Learning for Wireless Networks at King’s College London. You will be a conscientious, innovative scientist who has successfully completed a BSc (or equivalent) in computer science, Telecoms, and engineering
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group and iTwins-lab have a strong track record on wireless communications projects focussing on Open RAN for next generation radio access networks. The project is a large multi-partner project
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Society – aims to deliver the reconfigurable terahertz topological states for the application in the next generation of wireless communications. To be successful in this role, you will have: a PhD or
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Society – aims to deliver the reconfigurable terahertz topological states for the application in the next generation of wireless communications. To be successful in this role, you will have: a PhD or
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understanding of wireless technology. You will be self-motivated with an ability to develop and deliver pragmatic networking solutions within NTU established standards as appropriate to requirements, timescales