Detail View

A Low-Complexity Joint TOAs and AOAs Parameter Estimator using Dimension Reduction for FMCW Radar Systems
Citations

WEB OF SCIENCE

Citations

SCOPUS

Metadata Downloads

Title
A Low-Complexity Joint TOAs and AOAs Parameter Estimator using Dimension Reduction for FMCW Radar Systems
DGIST Authors
Kim, SangdongJu, YeonghwanLee, Jonghun
Issued Date
2018-08
Citation
Kim, Sangdong. (2018-08). A Low-Complexity Joint TOAs and AOAs Parameter Estimator using Dimension Reduction for FMCW Radar Systems. doi: 10.5755/j01.eie.24.4.21480
Type
Article
Article Type
Article
Author Keywords
Joint delay and angle2D-MUSICLow complexityDimension reductionDFT-MUSIC
Keywords
DELAY ESTIMATIONDOA ESTIMATIONMIMO RADARANGLE
ISSN
1392-1215
Abstract
We propose a low-complexity of joint time delay of arrivals (TOAs) and angles of arrivals (AOAs) using dimension reduction for frequency modulated continuous-wave (FMCW) radar systems. In the road environment, the FMCW radar can obtain the position of other vehicles accurately since the radar system is able to estimate spatial-temporal parameters such as TOAs and AOAs of multiple targets. The requirement of FMCW radar is increasing in terms of the parameter accuracy and resolution over time. In order to accomplish high accuracy and resolution of the parameters such as range, velocity, and angle, conventional two dimensional- discrete Fourier transform (2D-DFT) have reduced performance of the parameter estimation. To enhance the estimation performance of parameter, proposed high resolution based methods, which are two dimensional-multiple signal classification (2D-MUSIC), is utilized. However, conventional high-resolution methods are not used in real-time systems due to their high complexity situation. In order to meet resolution ability and automotive radar system requirements, we present a joint TOAs and AOAs parameter estimator using dimension reduction with combination of the DFT and the MUSIC algorithm for low-complexity FMCW radar systems. In experimental results of multi-target environments, in terms of the estimation performance, the proposed method is better than 2D-MUSIC. © 2018 Kauno Technologijos Universitetas. All rights reserved.
URI
http://hdl.handle.net/20.500.11750/9352
DOI
10.5755/j01.eie.24.4.21480
Publisher
Kauno Technologijos Universitetas
Show Full Item Record

File Downloads

  • There are no files associated with this item.

공유

qrcode
공유하기

Related Researcher

김상동
Kim, Sangdong김상동

Division of Mobility Technology

read more

Total Views & Downloads