Bit-wise combining for decode-and-forward relays

Namshik Kim, J. Barry
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Abstract

We consider the problem of combining the signals received from a decode-and-forward relay with those received from the source. As an alternative to the high-complexity maximum-likelihood combining strategy, we propose a bit-wise combining strategy in which the received signals are first converted to log-likelihood values before being combined. We show that, subject to the bit-wise constraint, the optimal combining strategy for binary alphabets - minimizing the probability of error - applies a sigmoidal nonlinearity to the relay log-likelihood values before adding to the source log-likelihood values. Unlike the maximal-ratio combining strategy, which has no diversity for the Rayleigh-fading decode-and-forward relay channel, the proposed strategy exhibits the maximum diversity order of two.
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解码和转发继电器的逐位组合
我们考虑将从译码转发中继接收到的信号与从源接收到的信号相结合的问题。作为高复杂性最大似然组合策略的替代方案,我们提出了一种比特组合策略,该策略首先将接收到的信号转换为对数似然值,然后再进行组合。我们表明,在位约束下,二进制字母的最佳组合策略-最小化错误概率-在添加源对数似然值之前对中继对数似然值应用s型非线性。与最大比组合策略不同的是,该策略在瑞利衰落的译码转发中继信道中没有分集,而该策略的分集阶最大为2。
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