Sparse antenna arrays are effective at reducing array cost, but their design is challenging due to the large element spacings causing grating lobes. Aperiodic element spacing can remove the grating lobes, but random element positions increase the sidelobe levels and cluster some of the elements too close together. This paper explores the use of nonuniform element spacing based on Poisson-disk sampling. Array pattern results are presented for planar arrays with circular apertures with element spacings larger than one wavelength and we show that this approach is capable of removing the grating lobes and reducing the sidelobe level while keeping the elements from being too close together.
Sparse Circular Aperture Arrays Based on Poisson Disk Sampling / Torres, Travis; Nayeri, Payam; Haupt, Randy; Rocca, Paolo. - (2022), pp. 266-267. (Intervento presentato al convegno 2022 United States National Committee of URSI National Radio Science Meeting (USNC-URSI NRSM) tenutosi a Boulder, CO, USA nel 4th-8th January 2022) [10.23919/USNC-URSINRSM57467.2022.9881427].
Sparse Circular Aperture Arrays Based on Poisson Disk Sampling
Haupt, Randy;Rocca, Paolo
2022-01-01
Abstract
Sparse antenna arrays are effective at reducing array cost, but their design is challenging due to the large element spacings causing grating lobes. Aperiodic element spacing can remove the grating lobes, but random element positions increase the sidelobe levels and cluster some of the elements too close together. This paper explores the use of nonuniform element spacing based on Poisson-disk sampling. Array pattern results are presented for planar arrays with circular apertures with element spacings larger than one wavelength and we show that this approach is capable of removing the grating lobes and reducing the sidelobe level while keeping the elements from being too close together.File | Dimensione | Formato | |
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