Publication: EM-based sequence estimation for wireless systems with orthogonal transmit diversity
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IEEE
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Abstract
In this paper, an optimum sequence estimation algorithm for wireless systems with Alamouti's two transmitter diversity in the presence of multipath fading is proposed. The algorithm is based on a jointly iterative channel and sequence estimation according to the maximum likelihood (ML) criterion, using the expectation-maximization (EM) algorithm employing M-PSK modulation scheme with additive Gaussian noise. The discrete multipath channel is represented in terms of the channel gains from each transmit antenna to the receive antenna. The derived EM algorithm jointly estimates the complex channel parameters of each channel and the data sequence transmitted, iteratively, which converges to the true ML solution. The channel estimation is achieved in a simple way through the iterative equations by decoupling of the signals transmitted from different antennas. The algorithm is applied to the trellis coded modulation systems and efficiency of the algorithm proposed has been shown by the computer simulations. Simulation results show that the EM algorithm converges quickly for fast fading channels. The performance of the EM-based decoder approaches that of the ML receiver which has perfect knowledge of the channel.
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IEEE International Conference on Communications, 2003. ICC '03.
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CLOSED
Keywords
Signal processing, Decoder, Orthogonal transmit diversity, Diversity reception, Iterative methods, Maximum likelihood criterion, Channel estimation, Fading channels, Optimum sequence estimation algorithm, Multipath channels, Additive Gaussian noise, Discrete multipath channel, Gaussian noise, Iterative channel, Codes, Channel gains, Wireless systems, M-PSK modulation, Expectation-maximization algorithm, Transmitting antennas, Wireless telecommunication systems, Multipath fading, Alamouti two transmitter diversity, Iterative algorithms, Maximum likelihood estimation, Maximum likelihood receiver, Transmitters, Algorithm, Maximum likelihood sequence estimation, Fading, Additive noise, Receiving antennas, Trellis codes, Estimates the complex channel parameters, Gaussian noise (electronic), Trellis coded modulation systems