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首页> 外文期刊>IEEE Transactions on Communications >Cooperative Communications Using Reliability-Forwarding Relays
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Cooperative Communications Using Reliability-Forwarding Relays

机译:使用可靠性转发中继的协作通信

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摘要

This study presents a new relay strategy and associated diversity combining technique for improving the communication performance in semi-blind cooperative networks. In constructing the network model, it is assumed that each relay can obtain the perfect channel state information (CSI) from the source to itself, and the destination can acquire the perfect CSI from all the relays to itself, but does not require the CSI from the source to the participating relays. In performing the considered semi-blind cooperative communications, the relays forward their reliability to the destination using a quantized reliability-relaying (QRR) scheme. Specifically, the relays partition their reliability into three levels in accordance with the log-likelihood ratio (LLR) value of the received signal, and forward a regenerative symbol to the destination if the quantized reliability falls within the "send +1" or "send -1" region; and remain silent otherwise. It is shown theoretically that the QRR scheme achieves a higher deflection coefficient than the regular decode-and-forward (DF) scheme, in which all the participating relays forward their regenerative messages to the destination irrespective of their reliability. Moreover, the simulation results show that given the same semi-blind model, the QRR scheme achieves a lower bit error rate (BER) than existing relay selection DF schemes for all considered values of the average input signal-to-noise ratio (SNR).
机译:这项研究提出了一种新的中继策略和相关的分集组合技术,以改善半盲合作网络中的通信性能。在构建网络模型时,假设每个中继都可以从源到其自身获取完美的信道状态信息(CSI),而目的地可以从所有中继到其自身获取完美的CSI,但不需要从参与中继的源。在执行考虑的半盲协作通信时,中继站使用量化的可靠性中继(QRR)方案将其可靠性转发到目的地。具体地,中继器根据接收信号的对数似然比(LLR)值将其可靠性划分为三个级别,并且如果量化的可靠性落在“发送+1”或“发送”之内,则将再生符号转发到目的地。 -1“区域;否则保持沉默。从理论上可以看出,QRR方案比常规的解码转发(DF)方案具有更高的偏转系数,在该方案中,所有参与的中继都将其再生消息转发到目的地,而不管其可靠性如何。此外,仿真结果表明,对于相同的半盲模型,对于所有考虑的平均输入信噪比(SNR)值,QRR方案均比现有的中继选择DF方案实现更低的误码率(BER)。 。

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