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Adaptive modulation and coding with queue awareness in cognitive incremental decode-and-forward relay networks

机译:认知增量式解码转发中继网络中具有队列意识的自适应调制和编码

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This paper studies the performance of adaptive modulation and coding in a cognitive incremental decode-and-forward relaying network where a secondary source can directly communicate with a secondary destination or via an intermediate relay. To maximize transmission efficiency, a policy which flexibly switches between the relaying and direct transmission is proposed. In particular, the transmission, which gives higher average transmission efficiency, will be selected for the communication. Specifically, the direct transmission will be chosen if its instantaneous signal-to-noise ratio (SNR) is higher than one half of that of the relaying transmission. In this case, the appropriate modulation and coding scheme (MCS) of the direct transmission is selected only based on its instantaneous SNR. In the relaying transmission, since the MCS of the transmissions from the source to the relay and from the relay to the destination are implemented independently to each other, buffering of packets at the relay is necessary. To avoid buffer overflow at the relay, the MCS for the relaying transmission is selected by considering both the queue state and the respective instantaneous SNR. Finally, a finite-state Markov chain is modeled to analyze key performance indicators such as outage probability and average transmission efficiency of the cognitive relay network.
机译:本文研究了认知增量式解码转发中继网络中的自适应调制和编码的性能,在该网络中,辅助源可以直接与辅助目标进行通信,也可以通过中间中继进行通信。为了最大化传输效率,提出了一种在中继和直接传输之间灵活切换的策略。特别地,将选择具有较高平均传输效率的传输进行通信。具体而言,如果直接传输的瞬时信噪比(SNR)高于中继传输的信噪比的一半,则将选择直接传输。在这种情况下,仅基于直接传输的瞬时SNR选择适当的直接传输的调制和编码方案(MCS)。在中继传输中,由于相互独立地实现了从源到中继以及从中继到目的地的传输的MCS,因此需要在中继处缓冲分组。为了避免中继器上的缓冲区溢出,通过同时考虑队列状态和相应的瞬时SNR来选择用于中继传输的MCS。最后,对有限状态马尔可夫链进行建模,以分析关键性能指标,例如认知中继网络的中断概率和平均传输效率。

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