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Distributed Relay-Assignment Protocols for Coverage Expansion in Cooperative Wireless Networks

机译:分布式中继分配协议,用于协作无线网络中的覆盖范围扩展

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One important application of cooperative communications is to extend coverage area in wireless networks without increasing infrastructure. However, a crucial challenge in implementing cooperation protocols is how to select relay-source pairs. In this paper, we address this problem based on the knowledge of the users' spatial distribution which determines the channel statistics. We consider two scenarios at the destination node, when the receiver uses MRC and when no-MRC is used. First, we characterize the optimal relay location to minimize the outage probability. Then, we propose and analyze the performance of two schemes: a distributed nearest neighbor relay assignment in which users can act as relays, and an infrastructure-based relay-assignment protocol in which fixed relay nodes are deployed in the network to help the users forward their data. The outage probabilities of these two schemes are derived. We also derive universal lower bounds on the performance of relay-assignment protocols to serve as a benchmark for our proposed protocols. Numerical results reveal significant gains when applying the proposed simple distributed algorithms over direct transmission in terms of coverage area, transmit power, and spectral efficiency. At 1 percent outage probability, more than 200 percent increase in coverage area can be achieved, 7 dBW savings in the transmitted power, and the system can operate at 2 b/s/Hz higher spectral efficiency.
机译:协作通信的一项重要应用是在不增加基础架构的情况下扩展无线网络的覆盖范围。但是,实现合作协议中的关键挑战是如何选择中继源对。在本文中,我们基于确定通道统计信息的用户空间分布的知识来解决此问题。当接收方使用MRC和不使用MRC时,我们将在目标节点上考虑两种情况。首先,我们确定最佳继电器位置的特性,以最大程度地减少断电概率。然后,我们提出并分析了两种方案的性能:一种分布式的最近邻居中继分配,其中用户可以充当中继;以及一种基于基础架构的中继分配协议,其中,在网络中部署了固定中继节点,以帮助用户转发他们的数据。推导了这两种方案的中断概率。我们还推导了中继分配协议性能的通用下限,以此作为我们提议协议的基准。数值结果表明,在覆盖范围,发射功率和频谱效率方面,将建议的简单分布式算法应用于直接传输时,具有明显的优势。在发生故障的可能性为1%的情况下,可以实现200%以上的覆盖面积增加,发射功率节省7 dBW,并且系统可以在2 b / s / Hz的更高频谱效率下工作。

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