Title :
A Computationally Efficient Iterative MLE for GPS AOA Estimation
Author :
Xin Chen ; Morton, Yu. ; Dovis, Fabio
Author_Institution :
Informative Technol. & Electr. Eng. Res. Inst., Shanghai Jiao Tong Univ., Shanghai, China
Abstract :
This paper presents a computationally efficient algorithm for GPS signal angle of arrival (AOA) estimation based on an iterative maximum likelihood estimator (iMLE) operating on an antenna array output. The iMLE has global convergence and therefore can estimate the true AOA MLE, regardless of the initial value, and has a simple mathematical form without any derivative or matrix decomposition computation. Simulations are performed for signals with different antenna array parameters, and the performances are compared with that of conventional MUSIC and CAPON methods. The results demonstrate that the iMLE can achieve better noise performance even with a small number of antenna elements. The paper also presents a tracking mode for the iMLE that further improves its performance for signals with low signal-to-noise ratio (SNR) and greatly extends its application into weak GPS signal or multipath environments.
Keywords :
Global Positioning System; antenna arrays; direction-of-arrival estimation; iterative methods; maximum likelihood estimation; signal classification; AOA MLE; CAPON methods; GPS AOA estimation; GPS signal angle of arrival estimation; MUSIC methods; SNR; antenna array output; antenna array parameters; antenna elements; computationally efficient algorithm; computationally efficient iterative MLE; global convergence; iMLE; iterative maximum likelihood estimator; mathematical form; matrix decomposition computation; multipath environments; signal-to-noise ratio; weak GPS signal; Correlation; Global Positioning System; Maximum likelihood estimation; Multiple signal classification; Signal to noise ratio;
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
DOI :
10.1109/TAES.2013.6621847