Imaging radar for automated driving functions

This work presents the implementation of a synthetic aperture radar (SAR) at 77 GHz, for automotive applications. This implementation is unique in the sense that it is a radar-only solution for most use-cases. The set-up consists of two radar sensors, one to calculate the ego trajectory and the seco...

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Published inInternational journal of microwave and wireless technologies Vol. 13; no. 7; pp. 682 - 690
Main Authors Iqbal, Hasan, Löffler, Andreas, Mejdoub, Mohamed Nour, Zimmermann, Daniel, Gruson, Frank
Format Journal Article
LanguageEnglish
Published Cambridge, UK Cambridge University Press 01.09.2021
Subjects
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ISSN1759-0787
1759-0795
DOI10.1017/S1759078721000465

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Abstract This work presents the implementation of a synthetic aperture radar (SAR) at 77 GHz, for automotive applications. This implementation is unique in the sense that it is a radar-only solution for most use-cases. The set-up consists of two radar sensors, one to calculate the ego trajectory and the second for SAR measurements. Thus the need for expensive GNSS-based dead reckoning systems, which are in any case not accurate enough to fulfill the requirements for SAR, is eliminated. The results presented here have been obtained from a SAR implementation which is able to deliver processed images in a matter of seconds from the point where the targets were measured. This has been accomplished using radar sensors which will be commercially available in the near future. Hence the results are easily reproducible since the deployed radars are not special research prototypes. The successful widespread use of SAR in the automotive industry will be a large step forward toward developing automated parking functions which will be far superior to today's systems based on ultrasound sensors and radar (short range) beam-forming algorithms. The same short-range radar can be used for SAR, and the ultrasound sensors can thus be completely omitted from the vehicle.
AbstractList This work presents the implementation of a synthetic aperture radar (SAR) at 77 GHz, for automotive applications. This implementation is unique in the sense that it is a radar-only solution for most use-cases. The set-up consists of two radar sensors, one to calculate the ego trajectory and the second for SAR measurements. Thus the need for expensive GNSS-based dead reckoning systems, which are in any case not accurate enough to fulfill the requirements for SAR, is eliminated. The results presented here have been obtained from a SAR implementation which is able to deliver processed images in a matter of seconds from the point where the targets were measured. This has been accomplished using radar sensors which will be commercially available in the near future. Hence the results are easily reproducible since the deployed radars are not special research prototypes. The successful widespread use of SAR in the automotive industry will be a large step forward toward developing automated parking functions which will be far superior to today's systems based on ultrasound sensors and radar (short range) beam-forming algorithms. The same short-range radar can be used for SAR, and the ultrasound sensors can thus be completely omitted from the vehicle.
Author Iqbal, Hasan
Mejdoub, Mohamed Nour
Löffler, Andreas
Zimmermann, Daniel
Gruson, Frank
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Copyright Copyright © The Author(s), 2021. Published by Cambridge University Press in association with the European Microwave Association
Copyright © The Author(s), 2021. Published by Cambridge University Press in association with the European Microwave Association. This work is licensed under the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
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Keywords synthetic aperture radar
automotive radar
short range radar (SRR)
SAR
Imaging radar
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Snippet This work presents the implementation of a synthetic aperture radar (SAR) at 77 GHz, for automotive applications. This implementation is unique in the sense...
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SubjectTerms Algorithms
Automation
Automobile industry
Bandwidths
Beamforming
Dead reckoning
Imaging radar
Radar imaging
Research Paper
Sensors
Synthetic aperture radar
Ultrasonic imaging
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Title Imaging radar for automated driving functions
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