Time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radar

Abstract The beam steering of phased array (PA) radar is fixed in one direction for all the ranges, thus the resulting beampattern is angle‐dependent but range‐independent. Compared with the PA radar, the frequency diverse array (FDA) radar can achieve range‐angle dependent beampattern by employing...

Full description

Bibliographic Details
Main Authors: Zeeshan Ahmad, Zhiguo Shi, Chengwei Zhou
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:IET Radar, Sonar & Navigation
Online Access:https://doi.org/10.1049/rsn2.12014
id doaj-b9a41a2522e749f881203c98b681fda1
record_format Article
spelling doaj-b9a41a2522e749f881203c98b681fda12021-08-02T08:30:15ZengWileyIET Radar, Sonar & Navigation1751-87841751-87922021-01-01151627410.1049/rsn2.12014Time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radarZeeshan Ahmad0Zhiguo Shi1Chengwei Zhou2College of Information Science and Electronic Engineering Zhejiang University Hangzhou PR ChinaCollege of Information Science and Electronic Engineering Zhejiang University Hangzhou PR ChinaCollege of Information Science and Electronic Engineering Zhejiang University Hangzhou PR ChinaAbstract The beam steering of phased array (PA) radar is fixed in one direction for all the ranges, thus the resulting beampattern is angle‐dependent but range‐independent. Compared with the PA radar, the frequency diverse array (FDA) radar can achieve range‐angle dependent beampattern by employing a small frequency increment across the array elements. Numerous studies have been conducted using linear FDAs, while other array configurations are seldom studied. On the other hand, the range‐angle dependent beampattern generated by the FDA is also time‐variant. However, previous studies on time‐invariant spatial‐focusing FDA beampatterns neglected the propagation process of the transmitted signals, leading the focused beampattern difficult to achieve when the transmit delay caused by wave propagation is considered. Taking the time‐variant property of the FDA beampatterns into consideration, in this study, we propose a novel uniform circular FDA (UC‐FDA) radar for short‐range beampattern synthesis. The UC‐FDA radar has the ability to scan azimuthally through 360°, which is a potential solution for applications requiring three‐dimensional beam steering. Furthermore, the proposed UC‐FDA radar adopts a pulse‐dependent non‐linear frequency offsets based on logistic map, together with multi‐carrier technique to achieve a dot‐shaped time‐variant focusing beampattern with minimum sidelobe levels and high‐resolution. The effectiveness of the proposed UC‐FDA radar is validated with simulated experiments.https://doi.org/10.1049/rsn2.12014
collection DOAJ
language English
format Article
sources DOAJ
author Zeeshan Ahmad
Zhiguo Shi
Chengwei Zhou
spellingShingle Zeeshan Ahmad
Zhiguo Shi
Chengwei Zhou
Time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radar
IET Radar, Sonar & Navigation
author_facet Zeeshan Ahmad
Zhiguo Shi
Chengwei Zhou
author_sort Zeeshan Ahmad
title Time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radar
title_short Time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radar
title_full Time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radar
title_fullStr Time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radar
title_full_unstemmed Time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radar
title_sort time‐variant focusing range‐angle dependent beampattern synthesis by uniform circular frequency diverse array radar
publisher Wiley
series IET Radar, Sonar & Navigation
issn 1751-8784
1751-8792
publishDate 2021-01-01
description Abstract The beam steering of phased array (PA) radar is fixed in one direction for all the ranges, thus the resulting beampattern is angle‐dependent but range‐independent. Compared with the PA radar, the frequency diverse array (FDA) radar can achieve range‐angle dependent beampattern by employing a small frequency increment across the array elements. Numerous studies have been conducted using linear FDAs, while other array configurations are seldom studied. On the other hand, the range‐angle dependent beampattern generated by the FDA is also time‐variant. However, previous studies on time‐invariant spatial‐focusing FDA beampatterns neglected the propagation process of the transmitted signals, leading the focused beampattern difficult to achieve when the transmit delay caused by wave propagation is considered. Taking the time‐variant property of the FDA beampatterns into consideration, in this study, we propose a novel uniform circular FDA (UC‐FDA) radar for short‐range beampattern synthesis. The UC‐FDA radar has the ability to scan azimuthally through 360°, which is a potential solution for applications requiring three‐dimensional beam steering. Furthermore, the proposed UC‐FDA radar adopts a pulse‐dependent non‐linear frequency offsets based on logistic map, together with multi‐carrier technique to achieve a dot‐shaped time‐variant focusing beampattern with minimum sidelobe levels and high‐resolution. The effectiveness of the proposed UC‐FDA radar is validated with simulated experiments.
url https://doi.org/10.1049/rsn2.12014
work_keys_str_mv AT zeeshanahmad timevariantfocusingrangeangledependentbeampatternsynthesisbyuniformcircularfrequencydiversearrayradar
AT zhiguoshi timevariantfocusingrangeangledependentbeampatternsynthesisbyuniformcircularfrequencydiversearrayradar
AT chengweizhou timevariantfocusingrangeangledependentbeampatternsynthesisbyuniformcircularfrequencydiversearrayradar
_version_ 1721238188775702528