Title :
A reactance domain fourth-order MUSIC algorithm using 13-element ESPAR antenna
Author :
Bong-Jun Kim ; Changyoung An ; Heung-Gyoon Ryu
Author_Institution :
Dept. of Electron. & Eng., Chungbuk Nat. Univ., Cheongju, South Korea
Abstract :
Electronically steerable parasitic array radiator (ESPAR) antenna is well known for its low-power consumption, small-size antenna. In this paper, a novel fourth-order MUSIC algorithm using a 13-element ESPAR antenna for direction of fourth-order MUSIC algorithm is that it is insensitive to additive Gaussian noise regardless of whether it is white or colored so it can improve the precision of the DOA estimation. By comparing with the conventional algorithm, our proposed algorithm can obtain more than 45dB gain under SNR=10dB, which can obviously show an outstanding performance improvement. Finally, computer simulation results show that the novel algorithm can resolve up to one impinging signal with less than 0.15° under SNR=0dB and provide an estimation with less than 0.6° under SNR=5dB for two impinging signals coming from different angles.
Keywords :
Gaussian noise; antenna arrays; direction-of-arrival estimation; signal classification; DOA estimation; ESPAR antenna; additive Gaussian noise; electronically steerable parasitic array radiator antenna; novel reactance domain fourth-order MUSIC algorithm; Antenna arrays; Arrays; Direction-of-arrival estimation; Estimation; Multiple signal classification; Signal to noise ratio; DOA; ESPAR antenna; MUSIC algorithm; fourth-order MUSIC algorithm;
Conference_Titel :
Consumer Communications and Networking Conference (CCNC), 2015 12th Annual IEEE
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-4799-6389-8
DOI :
10.1109/CCNC.2015.7158006