Flexible Direction-of-Arrival Simulation for Automotive Radar Target Simulators

被引:17
作者
Schoeder, Pirmin [1 ]
Janoudi, Vinzenz [1 ]
Meinecke, Benedikt [1 ]
Werbunat, David [1 ]
Waldschmidt, Christian [1 ]
机构
[1] Ulm Univ, Inst Microwave Engn, D-89077 Ulm, Germany
来源
IEEE JOURNAL OF MICROWAVES | 2021年 / 1卷 / 04期
关键词
Automotive radar; chirp-sequence modulation; direction of arrival; FMCW radar; radar target simulator;
D O I
10.1109/JMW.2021.3103647
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In order to simulate realistic traffic scenarios, a radar target simulator must be able to generate multiple radar targets with different directions of arrival. The presented concept is able to generate an arbitrary amount of targets with individual directions of arrival for the radar under test. By measuring the radar channel, the novel approach enables target simulators to simulate arbitrary directions of arrival, while minimizing the required hardware. The optimum setup is derived for radars with a uniform linear receive antenna array. The compensation of placement errors for automotive chirp-sequence frequency modulated continuous wave radars is demonstrated. Finally, the calibration for the setup is provided, and the performance of the presented approach is validated.
引用
收藏
页码:930 / 940
页数:11
相关论文
共 20 条
[1]   Radar Target Simulator and Antenna Positioner for Real-Time Over-the-air Stimulation of Automotive Radar Systems [J].
Asghar, M. E. ;
Buddappagari, S. ;
Baumgaertner, F. ;
Graf, S. ;
Kreutz, F. ;
Loeffler, A. ;
Nagel, J. ;
Reichmann, T. ;
Stephan, R. ;
Hein, M. A. .
EURAD 2020 THE 17TH EUROPEAN RADAR CONFERENCE, 2021, :95-98
[2]   Over-the-Air Vehicle-in-the-Loop Test System for Installed- Performance Evaluation of Automotive Radar Systems in a Virtual Environment [J].
Buddappagari, Sreehari ;
Asghar, M. E. ;
Baumgaertner, F. ;
Graf, S. ;
Kreutz, F. ;
Loffler, A. ;
Nagel, J. ;
Reichmann, T. ;
Stephan, R. ;
Hein, Matthias A. .
EURAD 2020 THE 17TH EUROPEAN RADAR CONFERENCE, 2021, :278-281
[3]  
Dickmann J, 2016, IEEE RAD CONF, P782
[4]  
Engelhardt M, 2016, EUROP RADAR CONF, P245
[5]  
Gruber A, 2017, EUROP RADAR CONF, P147, DOI 10.23919/EURAD.2017.8249168
[6]   A Near-Range Radar Target Simulator for Automotive Radar Generating Targets of Vulnerable Road Users [J].
Iberle, Johannes ;
Rippl, Patrick ;
Walter, Thomas .
IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2020, 30 (12) :1213-1216
[7]   A Radar Target Simulator Concept for Close-Range Targets with Micro-Doppler Signatures [J].
Iberle, Johannes ;
Mutschler, Marc A. ;
Scharf, Philipp A. ;
Walter, Thomas .
2019 12TH GERMAN MICROWAVE CONFERENCE (GEMIC), 2019, :198-201
[8]   Driving to safety: How many miles of driving would it take to demonstrate autonomous vehicle reliability? [J].
Kalra, Nidhi ;
Paddock, Susan M. .
TRANSPORTATION RESEARCH PART A-POLICY AND PRACTICE, 2016, 94 :182-193
[9]  
Maples V.H., 1987, U.S. Patent, Patent No. 4660041
[10]  
MILNE-THOMSON L. M., 1933, The Calculus of Finite Differences