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STDCC radar at 24 GHz: first measurement trials

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STDCC radar at 24 GHz First measurement trials.pdfThis paper presents the first measurement trials for performance assessment of a real-time and high resolution monostatic radar operating at 24 GHz. The proposed real-time radar, which operates based on the sliding correlation of pseudo-noise (PN) sequences, provides a high time resolution better than 4 ns, useful for moving target identification (MTI) in the presence of highly dense clutter, under harsh environments and severe weather conditions (fog, snow and fire smoke or plume). The STDCC radar target detection capability is demonstrated in this paper, by measuring and identifying the radar data for 4 distinct scenarios, composed of multiple targets (up to 8), inside an anechoic chamber, demonstrating the potential of the proposed radar architecture.2.49 MBAdobe PDF Download

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Abstract(s)

This paper presents the first measurement trials for performance assessment of a real-time and high resolution monostatic radar operating at 24 GHz. The proposed real-time radar, which operates based on the sliding correlation of pseudo-noise (PN) sequences, provides a high time resolution better than 4 ns, useful for moving target identification (MTI) in the presence of highly dense clutter, under harsh environments and severe weather conditions (fog, snow and fire smoke or plume). The STDCC radar target detection capability is demonstrated in this paper, by measuring and identifying the radar data for 4 distinct scenarios, composed of multiple targets (up to 8), inside an anechoic chamber, demonstrating the potential of the proposed radar architecture.

Description

Article number - 9232154; Conference date - 29 August 2020 - 5 September 2020; Conference code - 164213
EISBN - 978-9-4639-6800-3

Keywords

Smoke Tracking radar Radar measurement

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Citation

A. Sardo, J. R. Reis, L. Duarte, N. Leonor, C. Ribeiro and R. F. S. Caldeirinha, "STDCC radar at 24 GHz: first measurement trials," 2020 XXXIIIrd General Assembly and Scientific Symposium of the International Union of Radio Science, Rome, Italy, 2020, pp. 1-4, doi: https://doi.org/10.23919/URSIGASS49373.2020.9232154.

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IEEE Canada

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Without CC licence

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