Title :
Pilot-Assisted and Blind Joint Data Detection and Channel Estimation in Partial-Time Jamming
Author :
Moon, Jang-Wook ; Wong, Tan F. ; Shea, John M.
Author_Institution :
Florida Univ., Gainesville, FL
Abstract :
We consider a communication scenario in which a message is received in the presence of partial-time Gaussian jamming and additive white Gaussian noise. We consider a quasi-static channel, in which the amplitude and phase are constant over each packet transmission. The receiver does not know the amplitude and phase of the incoming signal, which symbols are jammed, or even the statistics of the jammer, such as the jamming power and jamming probability. In this scenario, the receiver must accurately estimate the parameters of the channel and the jamming to achieve good performance. We apply the expectation-maximization (EM) algorithm to iteratively approximate the maximum-likelihood (ML) estimator for all of the parameters. We find that the overall performance of the EM algorithm is very sensitive to the initial estimates, so we propose a new initial estimator that offers good performance. The EM algorithm approach requires pilot symbols to resolve a phase ambiguity. Thus, we also present a blind estimation algorithm to avoid the reduction in overall code rate from the use of pilot symbols
Keywords :
AWGN channels; channel estimation; expectation-maximisation algorithm; jamming; radiocommunication; signal detection; additive white Gaussian noise; blind estimation algorithm; blind joint data detection; expectation-maximization algorithm; iterative approximation; maximum-likelihood estimator; parameter estimation; partial-time jamming; pilot-assisted channel estimation; receiver; Additive white noise; Channel estimation; Decoding; Fading; Interference; Iterative algorithms; Jamming; Maximum likelihood estimation; Moon; Phase detection; Iterative channel estimation; iterative decoding; iterative processing; partial-time jamming;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2006.881400