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Existence and construction of noncoherent unitary space-time codes
101
Citations
17
References
2002
Year
Diversity TechniqueRepresentation TheoryDiversity Advantage RmSpace-time ProcessingChannel Capacity EstimationCooperative DiversityChannel CoefficientsFading ChannelQuantum EntanglementMulti-terminal Information TheorySignal ProcessingVariable-length CodeM Receive Antennas
We consider transmission using N transmit and reception using M receive antennas in a wireless environment assuming that neither the transmitter nor the receiver knows the channel coefficients. For the scenario that the transmission employs noncoherent T /spl times/ N unitary space-time codes and for a block-fading channel model where the channel is static during T channel uses and varies from T channel uses to the other, we establish the bound r /spl les/ min(T-N, N) on the diversity advantage rM provided by the code. In order to show that the requirement r /spl les/ min(T-N, N) cannot be relaxed, for any given R, N, T, and r /spl les/ min(T-N, N), we then construct unitary T /spl times/ N space-time codes of rate R that guarantee diversity advantage rM. Two constructions are given that are also amenable to simple encoding and noncoherent maximum-likelihood (ML) decoding algorithms.
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