A Novel Smeared Synthesized LFM TC-OLA Radar System: Design and Performance Evaluation

This paper introduces a novel smeared synthesized LFM (SSLFM) time compression overlap-add (TC-OLA) radar system. The new system allows us to control the signal to noise ratio level, and, therefore, obtain a higher processing gain compared to the traditional LFM-PC radar systems. In addition, it all...

Full description

Bibliographic Details
Main Authors: Ahmed Youssef, Peter F. Driessen, Fayez Gebali, Belaid Moa
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8610215/
id doaj-682027cb2d3e4f9eb1fd4a708a3a11c8
record_format Article
spelling doaj-682027cb2d3e4f9eb1fd4a708a3a11c82021-03-29T22:21:29ZengIEEEIEEE Access2169-35362019-01-017185741858910.1109/ACCESS.2019.28921138610215A Novel Smeared Synthesized LFM TC-OLA Radar System: Design and Performance EvaluationAhmed Youssef0https://orcid.org/0000-0003-1491-8851Peter F. Driessen1Fayez Gebali2https://orcid.org/0000-0001-5189-3409Belaid Moa3Department of Electrical and Computer Engineering, University of Victoria, Victoria, CanadaDepartment of Electrical and Computer Engineering, University of Victoria, Victoria, CanadaDepartment of Electrical and Computer Engineering, University of Victoria, Victoria, CanadaCompute Canada, WestGrid, University Systems, University of Victoria, Victoria, CanadaThis paper introduces a novel smeared synthesized LFM (SSLFM) time compression overlap-add (TC-OLA) radar system. The new system allows us to control the signal to noise ratio level, and, therefore, obtain a higher processing gain compared to the traditional LFM-PC radar systems. In addition, it allows us to control the signal spectrum spreading, making it more immune to noise jamming. The new SSLFM signal is obtained by either multiplying the LFM waveform with a complex unit signal with the random phase or by encoding the time compression signal with the random phase at the transmitter. A denoising processor, placed either before or after the OLA processor, is used to remove the random phase from the SSLFM and forward the resulted LFM signal to the rest of the conventional LFM-PC radar receiver system. The new SSLFM TC-OLA radar system enjoys a better low probability of intercept feature while maintaining the LFM time sidelobe and Doppler tolerance properties. Moreover, the additional modules in the new radar system do not require changing the core LFM radar components. Using TC-OLA and denoising requires a synchronization system (SS) to properly recover the LFM signal. We, therefore, offer three SSs. The performance evaluation of the new radar system shows its superiority over the traditional LFM, the wideband LFM, and the TC-OLA-based LFM radars, especially under powerful noise jamming. The synchronization system is implemented and tested experimentally using software-defined radar.https://ieeexplore.ieee.org/document/8610215/Communication systemsradar systemssynchronization systemstime compression overlap-addlinear frequency modulationsignal to noise ratio
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed Youssef
Peter F. Driessen
Fayez Gebali
Belaid Moa
spellingShingle Ahmed Youssef
Peter F. Driessen
Fayez Gebali
Belaid Moa
A Novel Smeared Synthesized LFM TC-OLA Radar System: Design and Performance Evaluation
IEEE Access
Communication systems
radar systems
synchronization systems
time compression overlap-add
linear frequency modulation
signal to noise ratio
author_facet Ahmed Youssef
Peter F. Driessen
Fayez Gebali
Belaid Moa
author_sort Ahmed Youssef
title A Novel Smeared Synthesized LFM TC-OLA Radar System: Design and Performance Evaluation
title_short A Novel Smeared Synthesized LFM TC-OLA Radar System: Design and Performance Evaluation
title_full A Novel Smeared Synthesized LFM TC-OLA Radar System: Design and Performance Evaluation
title_fullStr A Novel Smeared Synthesized LFM TC-OLA Radar System: Design and Performance Evaluation
title_full_unstemmed A Novel Smeared Synthesized LFM TC-OLA Radar System: Design and Performance Evaluation
title_sort novel smeared synthesized lfm tc-ola radar system: design and performance evaluation
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description This paper introduces a novel smeared synthesized LFM (SSLFM) time compression overlap-add (TC-OLA) radar system. The new system allows us to control the signal to noise ratio level, and, therefore, obtain a higher processing gain compared to the traditional LFM-PC radar systems. In addition, it allows us to control the signal spectrum spreading, making it more immune to noise jamming. The new SSLFM signal is obtained by either multiplying the LFM waveform with a complex unit signal with the random phase or by encoding the time compression signal with the random phase at the transmitter. A denoising processor, placed either before or after the OLA processor, is used to remove the random phase from the SSLFM and forward the resulted LFM signal to the rest of the conventional LFM-PC radar receiver system. The new SSLFM TC-OLA radar system enjoys a better low probability of intercept feature while maintaining the LFM time sidelobe and Doppler tolerance properties. Moreover, the additional modules in the new radar system do not require changing the core LFM radar components. Using TC-OLA and denoising requires a synchronization system (SS) to properly recover the LFM signal. We, therefore, offer three SSs. The performance evaluation of the new radar system shows its superiority over the traditional LFM, the wideband LFM, and the TC-OLA-based LFM radars, especially under powerful noise jamming. The synchronization system is implemented and tested experimentally using software-defined radar.
topic Communication systems
radar systems
synchronization systems
time compression overlap-add
linear frequency modulation
signal to noise ratio
url https://ieeexplore.ieee.org/document/8610215/
work_keys_str_mv AT ahmedyoussef anovelsmearedsynthesizedlfmtcolaradarsystemdesignandperformanceevaluation
AT peterfdriessen anovelsmearedsynthesizedlfmtcolaradarsystemdesignandperformanceevaluation
AT fayezgebali anovelsmearedsynthesizedlfmtcolaradarsystemdesignandperformanceevaluation
AT belaidmoa anovelsmearedsynthesizedlfmtcolaradarsystemdesignandperformanceevaluation
AT ahmedyoussef novelsmearedsynthesizedlfmtcolaradarsystemdesignandperformanceevaluation
AT peterfdriessen novelsmearedsynthesizedlfmtcolaradarsystemdesignandperformanceevaluation
AT fayezgebali novelsmearedsynthesizedlfmtcolaradarsystemdesignandperformanceevaluation
AT belaidmoa novelsmearedsynthesizedlfmtcolaradarsystemdesignandperformanceevaluation
_version_ 1724191738092847104