Radar and communication integration based on complete complementary codes

In modern electronic warfare, integration of radar and communication plays an important role in maximising resource utilisation and reducing electromagnetic interference, especially for the integrated waveform design technology based on signal sharing. Here, the authors introduce polyphase complete...

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Main Authors: Linlin Qi, Yuan Yao, Guangxin Wu
Format: Article
Language:English
Published: Wiley 2019-09-01
Series:The Journal of Engineering
Subjects:
ccc
Online Access:https://digital-library.theiet.org/content/journals/10.1049/joe.2019.0754
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spelling doaj-56410030aea246dd87a6f0fd9f10c9c52021-04-02T08:23:33ZengWileyThe Journal of Engineering2051-33052019-09-0110.1049/joe.2019.0754JOE.2019.0754Radar and communication integration based on complete complementary codesLinlin Qi0Yuan Yao1Guangxin Wu2Nanjing Research Institute of Electronic TechnologyNanjing Research Institute of Electronic TechnologyNanjing Research Institute of Electronic TechnologyIn modern electronic warfare, integration of radar and communication plays an important role in maximising resource utilisation and reducing electromagnetic interference, especially for the integrated waveform design technology based on signal sharing. Here, the authors introduce polyphase complete complementary codes (CCC) into the integration of spread spectrum radar and communication. According to the correlation property of CCC, they deduce the analytical expression of the ambiguity function of CCC and introduce the integration system based on CCC. Simulation results show the superiority of CCC in correlation, which means that it can be used as a spread spectrum sequence in the radar and communication integration field.https://digital-library.theiet.org/content/journals/10.1049/joe.2019.0754electromagnetic interferencespread spectrum communicationradar signal processingcodesspread spectrum radarelectronic warfareradiofrequency interferencepolyphase complete complementary codescccspread spectrum radarcorrelation propertyintegration systemspread spectrum sequencecommunication integration fieldmodern electronic warfareresource utilisationreducing electromagnetic interferenceintegrated waveform design technologysignal sharing
collection DOAJ
language English
format Article
sources DOAJ
author Linlin Qi
Yuan Yao
Guangxin Wu
spellingShingle Linlin Qi
Yuan Yao
Guangxin Wu
Radar and communication integration based on complete complementary codes
The Journal of Engineering
electromagnetic interference
spread spectrum communication
radar signal processing
codes
spread spectrum radar
electronic warfare
radiofrequency interference
polyphase complete complementary codes
ccc
spread spectrum radar
correlation property
integration system
spread spectrum sequence
communication integration field
modern electronic warfare
resource utilisation
reducing electromagnetic interference
integrated waveform design technology
signal sharing
author_facet Linlin Qi
Yuan Yao
Guangxin Wu
author_sort Linlin Qi
title Radar and communication integration based on complete complementary codes
title_short Radar and communication integration based on complete complementary codes
title_full Radar and communication integration based on complete complementary codes
title_fullStr Radar and communication integration based on complete complementary codes
title_full_unstemmed Radar and communication integration based on complete complementary codes
title_sort radar and communication integration based on complete complementary codes
publisher Wiley
series The Journal of Engineering
issn 2051-3305
publishDate 2019-09-01
description In modern electronic warfare, integration of radar and communication plays an important role in maximising resource utilisation and reducing electromagnetic interference, especially for the integrated waveform design technology based on signal sharing. Here, the authors introduce polyphase complete complementary codes (CCC) into the integration of spread spectrum radar and communication. According to the correlation property of CCC, they deduce the analytical expression of the ambiguity function of CCC and introduce the integration system based on CCC. Simulation results show the superiority of CCC in correlation, which means that it can be used as a spread spectrum sequence in the radar and communication integration field.
topic electromagnetic interference
spread spectrum communication
radar signal processing
codes
spread spectrum radar
electronic warfare
radiofrequency interference
polyphase complete complementary codes
ccc
spread spectrum radar
correlation property
integration system
spread spectrum sequence
communication integration field
modern electronic warfare
resource utilisation
reducing electromagnetic interference
integrated waveform design technology
signal sharing
url https://digital-library.theiet.org/content/journals/10.1049/joe.2019.0754
work_keys_str_mv AT linlinqi radarandcommunicationintegrationbasedoncompletecomplementarycodes
AT yuanyao radarandcommunicationintegrationbasedoncompletecomplementarycodes
AT guangxinwu radarandcommunicationintegrationbasedoncompletecomplementarycodes
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