TY - JOUR
T1 - On the capacity of time-varying channels with periodic feedback
AU - Sadrabadi, Mehdi Ansari
AU - Maddah-Ali, Mohammad Ali
AU - Khandani, Amir Keyvan
PY - 2007/8
Y1 - 2007/8
N2 - The capacity of time-varying channels with periodic feedback at the transmitter is evaluated. It is assumed that the channel-state information (CSI) is perfectly known at the receiver and is fed back to the transmitter at the regular time intervals. The system capacity is investigated in two cases: 1) finite-state Markov channel, and 2) additive white Gaussian noise channel with time-correlated fading. In the first case, it is shown that the capacity is achievable by multiplexing multiple codebooks across the channel. In the second case, the channel capacity and the optimal adaptive coding is obtained. It is shown that the optimal adaptation can be achieved by a single Gaussian codebook, while adaptively allocating the total power based on the side information at the transmitter.
AB - The capacity of time-varying channels with periodic feedback at the transmitter is evaluated. It is assumed that the channel-state information (CSI) is perfectly known at the receiver and is fed back to the transmitter at the regular time intervals. The system capacity is investigated in two cases: 1) finite-state Markov channel, and 2) additive white Gaussian noise channel with time-correlated fading. In the first case, it is shown that the capacity is achievable by multiplexing multiple codebooks across the channel. In the second case, the channel capacity and the optimal adaptive coding is obtained. It is shown that the optimal adaptation can be achieved by a single Gaussian codebook, while adaptively allocating the total power based on the side information at the transmitter.
KW - Adaptive modulation
KW - Channel capacity
KW - Gaussian channel
KW - Periodic feedback
KW - Time-correlated fading
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U2 - 10.1109/TIT.2007.901250
DO - 10.1109/TIT.2007.901250
M3 - Article
AN - SCOPUS:34547887203
SN - 0018-9448
VL - 53
SP - 2910
EP - 2915
JO - IEEE Transactions on Information Theory
JF - IEEE Transactions on Information Theory
IS - 8
ER -