Complementary frequency modulated radar waveforms and optimised receive processing

Abstract Design methodologies are developed for complementary frequency modulated (FM) waveforms and for optimised complementary mismatched filtering (MMF) of arbitrary non‐repeating waveforms. The former is a sub‐class of random FM waveforms denoted as complementary FM (Comp‐FM) while the latter ex...

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Main Authors: Christian C. Jones, Charles A. Mohr, Patrick M. McCormick, Shannon D. Blunt
Format: Article
Language:English
Published: Wiley 2021-07-01
Series:IET Radar, Sonar & Navigation
Online Access:https://doi.org/10.1049/rsn2.12068
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author Christian C. Jones
Charles A. Mohr
Patrick M. McCormick
Shannon D. Blunt
author_facet Christian C. Jones
Charles A. Mohr
Patrick M. McCormick
Shannon D. Blunt
author_sort Christian C. Jones
collection DOAJ
description Abstract Design methodologies are developed for complementary frequency modulated (FM) waveforms and for optimised complementary mismatched filtering (MMF) of arbitrary non‐repeating waveforms. The former is a sub‐class of random FM waveforms denoted as complementary FM (Comp‐FM) while the latter extends a practical instantiation of least‐squares mismatched filtering yielding the mismatched complementary‐on‐receive filtering (MiCRFt) scheme. Both of these approaches have an emphasis on the non‐ideal physical effects of the radar transmitter and receiver, thereby permitting high‐fidelity simulation analysis and subsequent experimental demonstration of their efficacy using open‐air measurements.
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spelling doaj.art-0c4c42a45ebd426a865150897535aceb2022-12-22T03:47:33ZengWileyIET Radar, Sonar & Navigation1751-87841751-87922021-07-0115770872310.1049/rsn2.12068Complementary frequency modulated radar waveforms and optimised receive processingChristian C. Jones0Charles A. Mohr1Patrick M. McCormick2Shannon D. Blunt3Radar Systems Lab (RSL) University of Kansas Lawrence Kansas United StatesRadar Systems Lab (RSL) University of Kansas Lawrence Kansas United StatesAir Force Research Laboratory (AFRL) Sensors Directorate WPAFB Ohio United StatesRadar Systems Lab (RSL) University of Kansas Lawrence Kansas United StatesAbstract Design methodologies are developed for complementary frequency modulated (FM) waveforms and for optimised complementary mismatched filtering (MMF) of arbitrary non‐repeating waveforms. The former is a sub‐class of random FM waveforms denoted as complementary FM (Comp‐FM) while the latter extends a practical instantiation of least‐squares mismatched filtering yielding the mismatched complementary‐on‐receive filtering (MiCRFt) scheme. Both of these approaches have an emphasis on the non‐ideal physical effects of the radar transmitter and receiver, thereby permitting high‐fidelity simulation analysis and subsequent experimental demonstration of their efficacy using open‐air measurements.https://doi.org/10.1049/rsn2.12068
spellingShingle Christian C. Jones
Charles A. Mohr
Patrick M. McCormick
Shannon D. Blunt
Complementary frequency modulated radar waveforms and optimised receive processing
IET Radar, Sonar & Navigation
title Complementary frequency modulated radar waveforms and optimised receive processing
title_full Complementary frequency modulated radar waveforms and optimised receive processing
title_fullStr Complementary frequency modulated radar waveforms and optimised receive processing
title_full_unstemmed Complementary frequency modulated radar waveforms and optimised receive processing
title_short Complementary frequency modulated radar waveforms and optimised receive processing
title_sort complementary frequency modulated radar waveforms and optimised receive processing
url https://doi.org/10.1049/rsn2.12068
work_keys_str_mv AT christiancjones complementaryfrequencymodulatedradarwaveformsandoptimisedreceiveprocessing
AT charlesamohr complementaryfrequencymodulatedradarwaveformsandoptimisedreceiveprocessing
AT patrickmmccormick complementaryfrequencymodulatedradarwaveformsandoptimisedreceiveprocessing
AT shannondblunt complementaryfrequencymodulatedradarwaveformsandoptimisedreceiveprocessing