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networks and developing technologies for 6G? We foresee a future where lasers will light up the sky to enable high-bandwidth and secure communications to every corner of the Earth. This PhD will combine free
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, enabling more frequent, scalable, and data-driven asset management. The project will investigate the integration of Axle Box Acceleration (ABA), Laser Doppler Vibrometry (LDV), and Track Geometry (TG) data
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measurement system (e.g., based on Axle Box Acceleration (ABA) or Laser Doppler Vibrometry (LDV)) will be designed and implemented to collect additional data for incorporation into the Health Passport. Advanced
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Acceleration (ABA), Laser Doppler Vibrometry (LDV), and Track Geometry (TG) data to enable indirect and frequent assessments of railway embankment conditions. Using measurement data collected by the CTO
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on selected instrumented railway bridges. Building on these insights, an on-board measurement system (e.g., based on Axle Box Acceleration (ABA) or Laser Doppler Vibrometry (LDV)) will be designed and
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wet-chemistry techniques (clean laboratory work), TIMS and MC-ICPMS mass spectrometry (PhD1), and by in situ Laser Ablation MC-ICPMS (PhD2) and SIMS techniques (PhD3). Applicants thus preferably have