Performance of MIMO FMCW Radar in Detecting Small Vessels
This paper evaluated the performance of range detection of a MIMO FMCW radar system detecting small vessels in maritime environments, through numerical simulations. The targets were modeled as Swerling1 targets, which resemble target with slow-changing radar cross sections (RCS). A MIMO FMCW system...
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2-s2.0-85073233844 Zainuddin S.; Pasya I.; Rashid N.E.A.; Abdullah R.S.A.R.; Abdullah A.R. Performance of MIMO FMCW Radar in Detecting Small Vessels 2018 RFM 2018 - 2018 IEEE International RF and Microwave Conference, Proceedings 10.1109/RFM.2018.8846475 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85073233844&doi=10.1109%2fRFM.2018.8846475&partnerID=40&md5=9be2ddc1568372a55e5125343d5ad1e2 This paper evaluated the performance of range detection of a MIMO FMCW radar system detecting small vessels in maritime environments, through numerical simulations. The targets were modeled as Swerling1 targets, which resemble target with slow-changing radar cross sections (RCS). A MIMO FMCW system utilizing two transmitting antennas emitting two FMCW signals in different frequency bands, and two receiving antennas for MIMO processing - is proposed. In the MIMO scheme, a waveform design comprises of two sub-bands with an interval band, is suggested to avoid co-band interference between the two signals emitted from two transmitting antennas. At the receiver, the receiving signals were combined by means of spectrum averaging, before implementation of peak detection to estimate the target range. The performance of the proposed system is observed in terms of probability of range error, simulated over a range of signal-to-noise-ratio (SNR). Simulation results indicated that MIMO processing yields approximately 3 dB improvements of probability of range error against SNR, compared to SISO case observed at 20% range error probability. In addition, the effects of interval band deployment on the quality of beat frequency was also discussed. © 2018 IEEE. Institute of Electrical and Electronics Engineers Inc. English Conference paper |
author |
Zainuddin S.; Pasya I.; Rashid N.E.A.; Abdullah R.S.A.R.; Abdullah A.R. |
spellingShingle |
Zainuddin S.; Pasya I.; Rashid N.E.A.; Abdullah R.S.A.R.; Abdullah A.R. Performance of MIMO FMCW Radar in Detecting Small Vessels |
author_facet |
Zainuddin S.; Pasya I.; Rashid N.E.A.; Abdullah R.S.A.R.; Abdullah A.R. |
author_sort |
Zainuddin S.; Pasya I.; Rashid N.E.A.; Abdullah R.S.A.R.; Abdullah A.R. |
title |
Performance of MIMO FMCW Radar in Detecting Small Vessels |
title_short |
Performance of MIMO FMCW Radar in Detecting Small Vessels |
title_full |
Performance of MIMO FMCW Radar in Detecting Small Vessels |
title_fullStr |
Performance of MIMO FMCW Radar in Detecting Small Vessels |
title_full_unstemmed |
Performance of MIMO FMCW Radar in Detecting Small Vessels |
title_sort |
Performance of MIMO FMCW Radar in Detecting Small Vessels |
publishDate |
2018 |
container_title |
RFM 2018 - 2018 IEEE International RF and Microwave Conference, Proceedings |
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container_issue |
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doi_str_mv |
10.1109/RFM.2018.8846475 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85073233844&doi=10.1109%2fRFM.2018.8846475&partnerID=40&md5=9be2ddc1568372a55e5125343d5ad1e2 |
description |
This paper evaluated the performance of range detection of a MIMO FMCW radar system detecting small vessels in maritime environments, through numerical simulations. The targets were modeled as Swerling1 targets, which resemble target with slow-changing radar cross sections (RCS). A MIMO FMCW system utilizing two transmitting antennas emitting two FMCW signals in different frequency bands, and two receiving antennas for MIMO processing - is proposed. In the MIMO scheme, a waveform design comprises of two sub-bands with an interval band, is suggested to avoid co-band interference between the two signals emitted from two transmitting antennas. At the receiver, the receiving signals were combined by means of spectrum averaging, before implementation of peak detection to estimate the target range. The performance of the proposed system is observed in terms of probability of range error, simulated over a range of signal-to-noise-ratio (SNR). Simulation results indicated that MIMO processing yields approximately 3 dB improvements of probability of range error against SNR, compared to SISO case observed at 20% range error probability. In addition, the effects of interval band deployment on the quality of beat frequency was also discussed. © 2018 IEEE. |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
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language |
English |
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Conference paper |
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scopus |
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Scopus |
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1809677784108236800 |