Single-pixel polarimetric direction of arrival estimation using programmable coding metasurface aperture.

Sci Rep

Institute of Electronics, Communications, and Information Technology (ECIT), Queen's University Belfast, Belfast, BT3 9DT, UK.

Published: December 2021

This paper presents a single-pixel polarimetric compressive sensing (CS)-based direction of arrival (DoA) estimation technique using a cavity backed programmable coding metasurface aperture. The single-pixel DoA retrieval technique relies on a dynamically modulated waveform diversity, enabling spatially incoherent radiation masks to encode the incoming plane waves on the radar aperture using a single channel. The polarimetric nature of the wave-chaotic coded metasurface ensures that the DOA estimation is sensitive to the polarization state of the incoming waves. We show that the polarimetric single-pixel DoA concept can be realized by encoding the polarization information of the incoming waves at the physical layer level within the antenna. A dynamically reconfigurable wave-chaotic metasurface, which possesses a structured sparsity of dual-polarized coded metamaterial elements, is proposed for the proof of concept. It is shown that by encoding and compressing the source generated far-field incident waves into a single channel, we can retrieve high fidelity polarimetric DoA information from compressed measurements.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8668895PMC
http://dx.doi.org/10.1038/s41598-021-03228-5DOI Listing

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