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Network-level performance evaluation of a two-relay cooperative random access wireless system

机译:两中继协同随机接入无线系统的网络级性能评估

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摘要

In wireless networks relay nodes can be used to assist the users transmissions to reach their destination. Work on relay cooperation, from a physical layer perspective, has up to now yielded well-known results. This paper takes a different stance focusing on network-level cooperation. Extending previous results for a single relay, we investigate here the benefits from the deployment of a second one. We assume that the two relays do not generate packets of their own and the system employs random access to the medium; we further consider slotted time and that the users have saturated queues. We obtain analytical expressions for the arrival and service rates of the queues of the two relays and the stability conditions. We investigate a model of the system, in which the users are divided into clusters, each being served by one relay, and show its advantages in terms of aggregate and throughput per user. We quantify the above, analytically for the case of the collision channel and through simulations for the case of multi-packet reception (MPR), and we provide insight on when the deployment of a second relay in the system can yield significant advantages.
机译:在无线网络中,中继节点可用于协助用户传输到达其目的地。从物理层的角度来看,中继合作的工作迄今已产生了众所周知的结果。本文针对网络级合作采取了不同的立场。扩展单个继电器的先前结果,我们在这里研究部署第二个继电器的好处。我们假设这两个中继器不生成自己的数据包,并且系统采用对介质的随机访问;我们进一步考虑了时隙时间,并且用户的队列已经饱和。我们获得了两个中继队列的到达率和服务率以及稳定性条件的解析表达式。我们研究了一个系统模型,在该模型中,将用户分为多个集群,每个集群由一个中继服务,并显示了在每个用户的聚合和吞吐量方面的优势。我们对冲突通道的情况进行了分析,并对多分组接收(MPR)的情况进行了模拟,从而对上述内容进行了量化,并提供了有关何时在系统中部署第二中继器可以产生显着优势的见解。

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