Near field tapering with Slepian window: balancing the range angle sidelobe trade off
Near field tapering with Slepian window: balancing the range angle sidelobe trade off
Near-field beamforming enables target discrimination in both range (axial) and angle (lateral) dimensions. Elevated sidelobes along either dimension, however, increase susceptibility to interference and degrade detection performance. Conventional amplitude tapering techniques, designed for far-field scenarios, cannot simultaneously suppress axial and lateral sidelobes in near-field. In this letter, we propose a Slepian-based amplitude tapering approach that maximizes mainlobe energy concentration, achieving significant sidelobe reduction in both dimensions. Numerical results show that the proposed taper improves peak sidelobe suppression by approximately 24 dB in the lateral domain and 10 dB in the axial domain compared to a conventional uniform window.
eess.SP
Hussain, Ahmed
bd09f80b-548a-4524-8df7-758c050cd578
Sultan, Ahmed
a1a7614c-a910-416e-9e67-635af8884ee4
Abdallah, Asmaa
86b80268-48be-4bc8-9577-c989e496e459
Celik, Abdulkadir
f8e72266-763c-4849-b38e-2ea2f50a69d0
Eltawil, Ahmed M.
5eb9e965-5ec8-4da1-baee-c3cab0fb2a72
16 November 2025
Hussain, Ahmed
bd09f80b-548a-4524-8df7-758c050cd578
Sultan, Ahmed
a1a7614c-a910-416e-9e67-635af8884ee4
Abdallah, Asmaa
86b80268-48be-4bc8-9577-c989e496e459
Celik, Abdulkadir
f8e72266-763c-4849-b38e-2ea2f50a69d0
Eltawil, Ahmed M.
5eb9e965-5ec8-4da1-baee-c3cab0fb2a72
[Unknown type: UNSPECIFIED]
Abstract
Near-field beamforming enables target discrimination in both range (axial) and angle (lateral) dimensions. Elevated sidelobes along either dimension, however, increase susceptibility to interference and degrade detection performance. Conventional amplitude tapering techniques, designed for far-field scenarios, cannot simultaneously suppress axial and lateral sidelobes in near-field. In this letter, we propose a Slepian-based amplitude tapering approach that maximizes mainlobe energy concentration, achieving significant sidelobe reduction in both dimensions. Numerical results show that the proposed taper improves peak sidelobe suppression by approximately 24 dB in the lateral domain and 10 dB in the axial domain compared to a conventional uniform window.
Text
2511.12733v1
- Author's Original
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Published date: 16 November 2025
Keywords:
eess.SP
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Local EPrints ID: 507609
URI: http://eprints.soton.ac.uk/id/eprint/507609
PURE UUID: 8117bc5e-6dfc-4eb1-925c-284db888c360
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Date deposited: 15 Dec 2025 17:44
Last modified: 16 Dec 2025 03:11
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Author:
Ahmed Hussain
Author:
Ahmed Sultan
Author:
Asmaa Abdallah
Author:
Abdulkadir Celik
Author:
Ahmed M. Eltawil
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