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Maximum Secondary Stable Throughput of a Cooperative Secondary Transmitter–Receiver Pair: Protocol Design and Stability Analysis

机译:辅助二次收发器对的最大二次稳定吞吐量:协议设计和稳定性分析

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摘要

In this paper, we investigate the impact of cooperation between a secondary transmitter–receiver pair and a primary transmitter on the maximum stable throughput of the primary–secondary network. Each transmitter, either primary or secondary, has a buffer for storing its own traffic. In addition to its own buffer, the secondary transmitter has a buffer for storing a fraction of the undelivered primary packets due to channel impairments. Moreover, the secondary destination has a relaying queue (buffer) for storing a fraction of the undelivered primary packets. In our proposed cooperative system, the secondary transmitter and the secondary destination increase the spectrum availability for the secondary packets by relaying the unsuccessfully transmitted packets of the primary transmitter. We consider two multiple-access strategies to be used by the secondary transmitter and the secondary destination to utilize the silence sessions of the primary transmitter. Numerical results demonstrate the gains of our proposed cooperative system over the noncooperation case and the systems when the secondary transmitter is the only cooperating node in the network.
机译:在本文中,我们研究了辅助发送器-接收器对和主要发送器之间的协作对主要-辅助网络的最大稳定吞吐量的影响。每个主要的或次要的发送器都有一个缓冲区,用于存储自己的流量。除了其自身的缓冲器之外,次要发射机还具有缓冲器,用于存储由于信道损伤而导致的未传递的主要分组的一部分。此外,次要目的地具有中继队列(缓冲区),用于存储未交付的主要数据包的一部分。在我们提出的协作系统中,次要发送器和次要目的地通过中继未成功发送的主要发送器数据包来增加次要数据包的频谱可用性。我们认为辅助发射机和辅助目的地将使用两种多址策略来利用主发射机的静默会话。数值结果证明了我们提出的协作系统在非协作情况下以及当次要发射机是网络中唯一协作节点时的系统的收益。

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