Title :
Achievable Rates over Doubly Selective Rician-Fading Channels under Peak-Power Constraint
Author :
Passerieux, Jean-Michel ; Socheleau, Francois-Xavier ; Laot, Christophe
Author_Institution :
Thales Underwater Syst., Sophia Antipolis, France
Abstract :
We derive a lower bound on the capacity of discrete-time Rician-fading channels that are selective both in time and frequency. The noncoherent setting is considered, where neither the transmitter nor the receiver knows a priori the actual channel realization. Single-input single-output communications subject to both average and peak power constraints are investigated. The lower bound assumes independent and identically distributed input data and is expressed as a difference between two terms. The first term is the information rate of the coherent channel with a weighted signal-to-noise ratio that results from the peak-power limitation. The second term is a penalty term, explicit in the Doppler spectrum of the channel, that captures the effect of the channel uncertainty induced by the noncoherent setting. The impact of channel selectivity and power constraints are discussed, and numerical applications on an experimental Rician channel surveyed in an underwater acoustic environment are also provided.
Keywords :
MIMO communication; Rician channels; channel capacity; Doppler spectrum; channel realization; channel selectivity; channel uncertainty; coherent channel; discrete-time Rician-fading channel capacity; doubly selective Rician-fading channels; lower bound; peak-power constraint; peak-power limitation; penalty term; receiver; single-input single-output communications; transmitter; underwater acoustic environment; weighted signal-to-noise ratio; Covariance matrix; Doppler effect; Fading; Information rates; Receivers; Signal to noise ratio; Vectors; Noncoherent capacity; PAPR; doubly selective channel; peak-limited power; underwater acoustic communications;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2012.122212.111812