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The performance of multistage cooperation in relay networks

机译:中继网络中多阶段协作的性能

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We analyze the performance of multistage cooperation in decode-and-forward relay networks where the transmission between source and destination takes place in T ??? 2 equal duration and orthogonal time phases with the help of relays. The source transmits only in the first time phase. All relays that can decode the source's transmission forward the source's message to the destination in the second time phase, using a space-time code. During subsequent time phases, the relays that have successfully decoded the source message using information from all previous transmitting relays, transmit the space-time coded symbols for the source's message. The non-decoding relays keep accumulating information and transmit in the later stages when they are able to decode. This process continues for T cooperation phases. We develop and analyze the outage probability of multistage cooperation protocol under orthogonal relaying. Through analytical results, we obtain the near-optimal placement strategy for relays that gives the best performance when compared with most other candidate relay location strategies of interest. For different relay network topologies, we also investigate an interesting tradeoff between an increased SNR and decreased spectral efficiency as the number of cooperation stages is increased. It is also shown that the largest multistage cooperation gain is obtained in the low and moderate SNR regime.
机译:我们分析了解码转发中继网络中多级协作的性能,其中源与目的地之间的传输发生在T ???中。在继电器的帮助下,两个相等的持续时间和正交时间相位。源仅在第一时间阶段发送。所有可以解码源传输的中继都将使用时空代码在第二时间阶段将源消息转发到目标。在随后的时间阶段中,已经使用来自所有先前发送中继器的信息成功解码了源消息的中继器发送了源消息的时空编码符号。当非解码中继能够解码时,它们会继续积累信息并在以后的阶段进行发送。对于T合作阶段,此过程将继续进行。我们开发并分析了正交中继下多阶段合作协议的中断概率。通过分析结果,我们获得了与其他大多数感兴趣的候选中继定位策略相比可提供最佳性能的近最佳中继​​布局策略。对于不同的中继网络拓扑,我们还研究了随着协作级数的增加,SNR增大和频谱效率降低之间的有趣折衷。还表明,在低和中等SNR体制下可获得最大的多级协作增益。

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