Crosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar

Abstract This study investigates crosstalk and leakage in the Software Defined Radio implementation of Frequency Modulated Continuous Wave (FMCW) radar systems. Empirical measurements of leakage power were conducted during the implementation of FMCW radar using National Instruments Universal Softwar...

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Autores principales: Faran Awais Butt, Matthew Ritchie, Hugh Griffiths, Wenda Li, Ijaz Haider Naqvi
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Lenguaje:EN
Publicado: Wiley 2021
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Acceso en línea:https://doaj.org/article/5e6cc9b615b24d619cecabbf94e2da6e
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spelling oai:doaj.org-article:5e6cc9b615b24d619cecabbf94e2da6e2021-11-12T15:34:29ZCrosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar1751-87921751-878410.1049/rsn2.12150https://doaj.org/article/5e6cc9b615b24d619cecabbf94e2da6e2021-12-01T00:00:00Zhttps://doi.org/10.1049/rsn2.12150https://doaj.org/toc/1751-8784https://doaj.org/toc/1751-8792Abstract This study investigates crosstalk and leakage in the Software Defined Radio implementation of Frequency Modulated Continuous Wave (FMCW) radar systems. Empirical measurements of leakage power were conducted during the implementation of FMCW radar using National Instruments Universal Software Radio Peripheral (USRP) boards. Mono‐static and bi‐static/distributed Transmitter‐Receiver configurations are compared for low power micro‐Doppler applications. The impact of crosstalk on the dynamic range of the target is also investigated. The impact of electric noise generated by a windy source on the receiving USRP is also investigated. Furthermore, a simple splitter based approach is proposed to overcome the challenge of synchronisation or recovery of transmitted waveform in distributed configurations.Faran Awais ButtMatthew RitchieHugh GriffithsWenda LiIjaz Haider NaqviWileyarticleTelecommunicationTK5101-6720ENIET Radar, Sonar & Navigation, Vol 15, Iss 12, Pp 1607-1621 (2021)
institution DOAJ
collection DOAJ
language EN
topic Telecommunication
TK5101-6720
spellingShingle Telecommunication
TK5101-6720
Faran Awais Butt
Matthew Ritchie
Hugh Griffiths
Wenda Li
Ijaz Haider Naqvi
Crosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar
description Abstract This study investigates crosstalk and leakage in the Software Defined Radio implementation of Frequency Modulated Continuous Wave (FMCW) radar systems. Empirical measurements of leakage power were conducted during the implementation of FMCW radar using National Instruments Universal Software Radio Peripheral (USRP) boards. Mono‐static and bi‐static/distributed Transmitter‐Receiver configurations are compared for low power micro‐Doppler applications. The impact of crosstalk on the dynamic range of the target is also investigated. The impact of electric noise generated by a windy source on the receiving USRP is also investigated. Furthermore, a simple splitter based approach is proposed to overcome the challenge of synchronisation or recovery of transmitted waveform in distributed configurations.
format article
author Faran Awais Butt
Matthew Ritchie
Hugh Griffiths
Wenda Li
Ijaz Haider Naqvi
author_facet Faran Awais Butt
Matthew Ritchie
Hugh Griffiths
Wenda Li
Ijaz Haider Naqvi
author_sort Faran Awais Butt
title Crosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar
title_short Crosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar
title_full Crosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar
title_fullStr Crosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar
title_full_unstemmed Crosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar
title_sort crosstalk in modern software defined radio for the implementation of frequency modulated continuous wave radar
publisher Wiley
publishDate 2021
url https://doaj.org/article/5e6cc9b615b24d619cecabbf94e2da6e
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