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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Distributed Opportunistic Two-Hop Relaying With Backoff-Based Contention Among Spatially Random Relays
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Distributed Opportunistic Two-Hop Relaying With Backoff-Based Contention Among Spatially Random Relays

机译:空间随机中继之间基于退避竞争的分布式机会两跳中继

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摘要

Cooperative transmission can exploit the broadcast nature of a wireless medium and leverage relay nodes to forward overheard data from the source to the destination. To optimize the performance gain, effective cooperation strategies are essential to identify the best relay(s) with a minimum overhead and enable forwarding with high success probability. In this paper, we focus on an opportunistic relaying scenario and develop two distributed cooperation strategies. Both adopt a backoff-based intergroup coordination, whereas the intragroup contention is based on either the forwarding probability or backoff timer. In particular, we employ stochastic geometry to address the impact of spatial distribution of relays. Considering a Poisson point process for random relays, we derive the probability distributions of the average received signal-to-noise ratio (SNR) and transmission success probability of potential relays. Making use of such statistics and location information, each relay can independently determine its contention parameters such as backoff time and/or a forwarding probability. We analytically evaluate the relaying performance and validate the accuracy with simulations. The results demonstrate the improvement over a pure probabilistic scheme and the gap to the upper bound of a centralized scheme with the preselected best relay.
机译:协作传输可以利用无线介质的广播性质,并利用中继节点将监听到的数据从源转发到目的地。为了优化性能增益,有效的合作策略对于以最小的开销确定最佳中继并以高成功概率进行转发至关重要。在本文中,我们关注机会中继场景并开发两种分布式合作策略。两者都采用基于退避的组间协调,而组内竞争基于转发概率或退避计时器。特别是,我们采用随机几何来解决继电器空间分布的影响。考虑随机继电器的泊松点过程,我们得出了潜在继电器的平均接收信噪比(SNR)和传输成功概率的概率分布。利用这些统计信息和位置信息,每个中继站可以独立地确定其竞争参数,例如退避时间和/或转发概率。我们通过分析评估中继性能,并通过仿真验证准确性。结果证明了对纯概率方案的改进以及与预选最佳中继的集中方案上限之间的差距。

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