Title :
Comparative study of IQML and MODE for direction-of-arrival estimation
Author :
Li, Jian ; Stoica, Petre ; Liu, Zheng-She
Author_Institution :
Dept. of Electr. & Comput. Eng., Florida Univ., Gainesville, FL, USA
Abstract :
We present a comparative study of using the IQML (iterative quadratic maximum likelihood) algorithm and the MODE (method of direction estimation) algorithm for direction-of-arrival estimation with a uniform linear array. The consistent condition and the theoretical mean-squared error for the parameter estimates of IQML are presented. The computational complexities of both algorithms are also compared. We show that the frequency estimates obtained via MODE are asymptotically statistically efficient, while those obtained via IQML are almost always inconsistent and hence inefficient. We also show that the amount of computations required by IQML is usually much larger than that required by MODE, especially for low signal-to-noise ratio and large number of snapshots
Keywords :
array signal processing; computational complexity; direction-of-arrival estimation; frequency estimation; iterative methods; linear antenna arrays; maximum likelihood estimation; DOA estimation; IQML algorithm; MODE algorithm; array processing; asymptotically statistically efficient estimates; computational complexity; direction-of-arrival estimation; frequency estimates; inconsistent estimates; inefficient estimates; iterative quadratic maximum likelihood algorithm; low signal-to-noise ratio; mean-squared error; method of direction estimation algorithm; parameter estimation; uniform linear array; Computational complexity; Covariance matrix; Direction of arrival estimation; Frequency estimation; Gaussian noise; Iterative algorithms; Maximum likelihood estimation; Parameter estimation; Signal processing; Stochastic processes;
Conference_Titel :
Acoustics, Speech, and Signal Processing, 1997. ICASSP-97., 1997 IEEE International Conference on
Conference_Location :
Munich
Print_ISBN :
0-8186-7919-0
DOI :
10.1109/ICASSP.1997.604621