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A parametric approach to optimal soft signal relaying in wireless parallel-relay systems

机译:无线并行中继系统中优化软信号中继的参数方法

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This paper proposes an optimal estimate-forward strategy, termed Z-forwarding, for 2-hop parallel-relay systems. The previous tanh-forwarding strategy, which is optimized for the single-relay system is shown to be no longer optimal for a parallel-relay system. Instead, a new, parametrically-optimized Z-forwarding strategy is proposed, where the relay re-transmits a nonlinear but piece-wise linear function of the log-likelihood ratio (LLR) of the source signal. By analytically formulating the end-to-end bit error rate (BER), optimal thresholds that minimize the BER are computed as a function of all the source-relay and relay-destination channels. Maximum likelihood (ML) detector is also developed for the destination to recoup all the diversity gains from the multiple relays. It is shown that Z-forwarding strategy delivers a performance comparable to tanh-forwarding in a single relay system, but considerably better than tanh-forwarding (as well as amplify-forward and decode-forward) in a parallel-relay system.
机译:本文提出了一种针对两跳并行中继系统的最优估计转发策略,称为Z转发。对于单继电器系统进行了优化的先前的tanh-forwarding策略已显示对于并行继电器系统而言不再是最佳的。取而代之的是,提出了一种新的,经过参数优化的Z转发策略,其中,中继器重新传输源信号的对数似然比(LLR)的非线性但分段线性函数。通过解析公式化的端到端误码率(BER),可以将BER最小化的最佳阈值计算为所有源中继和中继目标通道的函数。还为目的地开发了最大似然(ML)检测器,以补偿来自多个中继的所有分集增益。结果表明,Z转发策略在单个中继系统中提供的性能与tanh转发相当,但比并行中继系统中的tanh转发(以及放大转发和解码转发)要好得多。

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