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Analysis of a Cooperative Strategy for a Large Decentralized Wireless Network

机译:大型分散无线网络的合作策略分析

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This paper investigates the benefits of cooperation and proposes a relay activation strategy for a large wireless network with multiple transmitters. In this framework, some nodes cooperate with a nearby node that acts as a relay, using the decode-and-forward protocol, and others use direct transmission. The network is modeled as an independently marked Poisson point process, and the source nodes may choose their relays from the set of inactive nodes. Although cooperation can potentially lead to significant improvements in the performance of a communication pair, relaying causes additional interference in the network, increasing the average noise that other nodes see. We investigate how source nodes should balance cooperation versus interference to obtain reliable transmissions, and for this purpose, we study and optimize a relay activation strategy with respect to the outage probability. Surprisingly, in the high reliability regime, the optimized strategy consists on the activation of all the relays or none at all, depending on network parameters. We provide a simple closed-form expression that indicates when the relays should be active, and we introduce closed-form expressions that quantify the performance gains of this scheme with respect to a network that only uses direct transmission.
机译:本文研究了合作的好处,并针对具有多个发射机的大型无线网络提出了一种中继激活策略。在此框架中,一些节点使用解码转发协议与充当中继的附近节点协作,而其他节点则使用直接传输。网络被建模为一个独立标记的泊松点过程,源节点可以从非活动节点集中选择其中继。尽管合作可以潜在地显着提高通信对的性能,但中继会在网络中引起额外的干扰,从而增加其他节点看到的平均噪声。我们研究了源节点应如何在协作与干扰之间取得平衡,以获得可靠的传输,为此,我们针对中断概率研究并优化了中继激活策略。出乎意料的是,在高可靠性方案中,优化的策略取决于所有继电器的激活或完全不激活,这取决于网络参数。我们提供了一个简单的封闭形式的表达式来指示何时应该激活中继,并且我们引入封闭形式的表达式来量化该方案相对于仅使用直接传输的网络的性能收益。

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