Optimal design of anti‐interrupted sampling repeater jamming waveform for missile‐borne radar based on an improved genetic algorithm

Abstract The optimal design of transmitted waveforms to improve the performance of missile‐borne radar in suppressing interrupted sampling repeater jamming (ISRJ) is studied here. The waveform diversity property requires that the waveform group has excellent orthogonality (good auto‐ and cross‐corre...

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Main Authors: Fei Cao, Zi‐han Chen, Xiao‐wei Feng, Chuan He, Jian‐feng Xu
Format: Article
Language:English
Published: Wiley 2021-12-01
Series:IET Signal Processing
Subjects:
Online Access:https://doi.org/10.1049/sil2.12066
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author Fei Cao
Zi‐han Chen
Xiao‐wei Feng
Chuan He
Jian‐feng Xu
author_facet Fei Cao
Zi‐han Chen
Xiao‐wei Feng
Chuan He
Jian‐feng Xu
author_sort Fei Cao
collection DOAJ
description Abstract The optimal design of transmitted waveforms to improve the performance of missile‐borne radar in suppressing interrupted sampling repeater jamming (ISRJ) is studied here. The waveform diversity property requires that the waveform group has excellent orthogonality (good auto‐ and cross‐correlation properties), which is an effective waveform optimisation design method for missile‐borne radar electronic counter‐countermeasures. The principle of orthogonal phase coding waveform against ISRJ is studied and the use of chaotic sequences is proposed to initialise the population, as well as a simulated annealing selection operator, which improves the convergence speed of the improved genetic algorithm (IGA) and enhances the global optimisation ability. The IGA improves the shortcomings of GA, that is, easily falling into a local optimum and slow search speed, and can realise a global search for longer orthogonal polyphase coding sequence sets. The simulation examples demonstrate the good jamming suppression performance of the proposed method.
format Article
id doaj-art-9d3c3e1e36e14f229a2ca8498b85a8c8
institution Kabale University
issn 1751-9675
1751-9683
language English
publishDate 2021-12-01
publisher Wiley
record_format Article
series IET Signal Processing
spelling doaj-art-9d3c3e1e36e14f229a2ca8498b85a8c82025-08-20T03:38:39ZengWileyIET Signal Processing1751-96751751-96832021-12-0115962263210.1049/sil2.12066Optimal design of anti‐interrupted sampling repeater jamming waveform for missile‐borne radar based on an improved genetic algorithmFei Cao0Zi‐han Chen1Xiao‐wei Feng2Chuan He3Jian‐feng Xu4PLA Rocket Force University of Engineering Xi'an ChinaPLA Rocket Force University of Engineering Xi'an ChinaPLA Rocket Force University of Engineering Xi'an ChinaPLA Rocket Force University of Engineering Xi'an ChinaPLA Rocket Force University of Engineering Xi'an ChinaAbstract The optimal design of transmitted waveforms to improve the performance of missile‐borne radar in suppressing interrupted sampling repeater jamming (ISRJ) is studied here. The waveform diversity property requires that the waveform group has excellent orthogonality (good auto‐ and cross‐correlation properties), which is an effective waveform optimisation design method for missile‐borne radar electronic counter‐countermeasures. The principle of orthogonal phase coding waveform against ISRJ is studied and the use of chaotic sequences is proposed to initialise the population, as well as a simulated annealing selection operator, which improves the convergence speed of the improved genetic algorithm (IGA) and enhances the global optimisation ability. The IGA improves the shortcomings of GA, that is, easily falling into a local optimum and slow search speed, and can realise a global search for longer orthogonal polyphase coding sequence sets. The simulation examples demonstrate the good jamming suppression performance of the proposed method.https://doi.org/10.1049/sil2.12066electronic countermeasuresgenetic algorithmsjammingmissilesoptimisationphase coding
spellingShingle Fei Cao
Zi‐han Chen
Xiao‐wei Feng
Chuan He
Jian‐feng Xu
Optimal design of anti‐interrupted sampling repeater jamming waveform for missile‐borne radar based on an improved genetic algorithm
IET Signal Processing
electronic countermeasures
genetic algorithms
jamming
missiles
optimisation
phase coding
title Optimal design of anti‐interrupted sampling repeater jamming waveform for missile‐borne radar based on an improved genetic algorithm
title_full Optimal design of anti‐interrupted sampling repeater jamming waveform for missile‐borne radar based on an improved genetic algorithm
title_fullStr Optimal design of anti‐interrupted sampling repeater jamming waveform for missile‐borne radar based on an improved genetic algorithm
title_full_unstemmed Optimal design of anti‐interrupted sampling repeater jamming waveform for missile‐borne radar based on an improved genetic algorithm
title_short Optimal design of anti‐interrupted sampling repeater jamming waveform for missile‐borne radar based on an improved genetic algorithm
title_sort optimal design of anti interrupted sampling repeater jamming waveform for missile borne radar based on an improved genetic algorithm
topic electronic countermeasures
genetic algorithms
jamming
missiles
optimisation
phase coding
url https://doi.org/10.1049/sil2.12066
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AT zihanchen optimaldesignofantiinterruptedsamplingrepeaterjammingwaveformformissileborneradarbasedonanimprovedgeneticalgorithm
AT xiaoweifeng optimaldesignofantiinterruptedsamplingrepeaterjammingwaveformformissileborneradarbasedonanimprovedgeneticalgorithm
AT chuanhe optimaldesignofantiinterruptedsamplingrepeaterjammingwaveformformissileborneradarbasedonanimprovedgeneticalgorithm
AT jianfengxu optimaldesignofantiinterruptedsamplingrepeaterjammingwaveformformissileborneradarbasedonanimprovedgeneticalgorithm