The paper introduces the principles, simulation results, and hardware implementation of ultrawideband (UWB) noise radar for\nobtaining tomographic images of various scenarios of rotating cylindrical objects using independent and identically distributed\nUWB noise waveforms. A UWB noise radar was designed to transmit multiple UWB random noise waveforms over the 3ââ?¬â??5GHz\nfrequency range and to measure the backward scattering data for the validation of the theoretical analysis and numerical simulation\nresults. The reconstructed tomographic images of the rotating cylindrical objects based on experimental results are seen to be in\ngood agreement with the simulation results, which demonstrates the capability of UWB noise radar for complete two-dimensional\ntomographic image reconstruction of various shaped metallic and dielectric target objects.
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