DocumentCode :
740865
Title :
Joint DFT-ESPRIT Estimation for TOA and DOA in Vehicle FMCW Radars
Author :
Kim, Sangdong ; Oh, Daegun ; Lee, Jonghun
Author_Institution :
Advanced Radar Techonology (ART) Lab, Robotics Research Division, Daegu Gyeongbuk Institute of Science & Technology, Republic of Korea
Volume :
14
fYear :
2015
fDate :
7/7/1905 12:00:00 AM
Firstpage :
1710
Lastpage :
1713
Abstract :
This letter proposes a joint discrete Fourier transform (DFT)—estimation of signal parameters via rotational invariance techniques (ESPRIT) estimator for time-of-arrival (TOA) and direction-of-arrival (DOA) in vehicle frequency-modulated continuous-wave (FMCW) radars. Since the vehicle FMCW radar should recognize vehicles in the side/rear area when the driver initiates a lane change, the estimation of the joint TOA/DOA between the radar and targets is an important issue for solving complicated location tasks. However, conventional joint estimation methods such as 2D-ESPRIT and 2D-multiple signal classification (MUSIC) cannot be adopted for real-time implementation due to their high computational loads. To satisfy the required accuracy specifications and reduce complexity compared with the conventional estimator, we propose a low-complexity joint TOA and DOA estimator that uses the combined DFT-ESPRIT algorithm for FMCW radars. The performance of the proposed estimation in multitarget environments was derived and compared with the Monte Carlo simulation results. The root-mean-square error (RMSE) of the proposed method was compared with that of 2D-ESPRIT with various parameters. To verify the performance of the proposed combination method, we implemented the FMCW radar and verified its performance in an anechoic chamber environment.
Keywords :
Arrays; Complexity theory; Direction-of-arrival estimation; Estimation; Joints; Radar; Vehicles; 2D-ESPRIT; joint TOA/DOA; low complexity; vehicle radar;
fLanguage :
English
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
Publisher :
ieee
ISSN :
1536-1225
Type :
jour
DOI :
10.1109/LAWP.2015.2420579
Filename :
7096966
Link To Document :
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