DocumentCode :
51391
Title :
Low-Complexity Range-Azimuth FMCW Radar Sensor Using Joint Angle and Delay Estimation Without SVD and EVD
Author :
Daegun Oh ; Jong-Hun Lee
Author_Institution :
Adv. Radar Res. Div., Daegu Gyeongbuk Inst. of Sci. & Technol., Daegu, South Korea
Volume :
15
Issue :
9
fYear :
2015
fDate :
Sept. 2015
Firstpage :
4799
Lastpage :
4811
Abstract :
A low complexity range-azimuth frequency-modulated continuous-waveform (FMCW) radar sensor using joint angle and delay estimation method without singular value decomposition (SVD) and eigenvalue decomposition (EVD) is presented in this paper. Conventional joint angle and delay estimation techniques exploit the dual-shift-invariant structure of received signals through matrix decompositions, such as SVD and EVD, which increases the computational burden. The proposed method utilizes the dual-shift-invariant structure through matrix inversion and performs angle and delay estimation using extended one-dimensional pseudospectrum searching instead of two-dimensional pseudospectrum searching to reduce the computational complexity. We demonstrate the effectiveness of the proposed method through Monte-Carlo simulations. The proposed algorithm is also verified by processing real FMCW data collected in an anechoic chamber.
Keywords :
CW radar; FM radar; Monte Carlo methods; anechoic chambers (electromagnetic); matrix algebra; EVD; Monte-Carlo simulations; SVD; anechoic chamber; dual-shift-invariant structure; eigenvalue decomposition; extended one-dimensional pseudospectrum searching; joint angle and delay estimation method; low complexity range-azimuth frequency-modulated continuous-waveform radar sensor; low-complexity range-azimuth FMCW radar sensor; matrix inversion; singular value decomposition; Delay estimation; Estimation; Joints; Multiple signal classification; Noise; Radar; Sensors; FMCW; azimuth; low complexity; radar detection; range;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2015.2428814
Filename :
7100865
Link To Document :
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