On the Diversity Behavior for Fixed-Gain Amplify-and-Forward Relaying Over Frequency-Selective Channels Based on Linearly Precoded OFDM

01 June 2012

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Recent research has shown that the diversity gain of cooperation among fixed-gain amplify-and-forward (FG-AF) relays is not a simple function of power of signal-to-noise ratio (SNR), where a factor of the logarithm of SNR might be involved. It is more suitable to use the diversity gain function (DGF) of rho(-y) (log rho)(x), with rho denoting the SNR and nonnegative integers x and y, to describe such diversity performance. In this letter, we consider the use of FG-AF relaying over frequency-selective channel based on the orthogonal frequency-division multiplexing (OFDM) transmission employing linear precoding (LP) and present comprehensive analysis of the resulting DGF. Suppose that the number of multipath components for the channel from source to relay is L-1 and that from relay to destination is L-2. Theoretical analysis shows that, if L-1 not equal L-2, the optimal DGF is precisely rho(-L), with L = min{L-1, L-2}, which can be achieved as long as the precoding group size J >= L + 1, whereas only a DGF of rho(-J) (log rho)(J) is obtained by precoding with size J = L. In the case of L-1 = L-2, we show that the best achievable DGF is rho(-L) log rho, which can be guaranteed by choosing J >= 2L - 1. We also demonstrate that these results can be easily extended to the multirelay case.