两层飞蜂窝网络中的分布式机会介质访问控制

Ben Niu, Chi-Lin Wu, M. Kountouris, Yunzhou Li
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引用次数: 6

摘要

在本文中,我们提出了一种用于移动蜂窝覆盖网络的分布式机会接入技术,其中每个移动蜂窝接入点(FAP)根据本地链路质量信息以分布式方式独立地决定访问介质。具体来说,我们介绍了各种机会性媒介访问策略,即基于信道、基于干扰、基于sir和基于秩的策略,在这些策略下,每个FAP在将某个链路质量度量与预定义阈值进行比较后进行传输。考虑一个fap按齐次泊松点过程定位的网络,从成功率、区域频谱效率和平均数据速率三个方面评价了分布式低开销接入方案的性能。此外,我们确定了在空间重用和网络吞吐量之间提供最佳折衷的概率访问阈值。仿真结果支持分析和量化在不同运行机制下不同访问策略的网络吞吐量增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed opportunistic medium access control in two-tier femtocell networks
In this paper we propose distributed opportunistic access techniques for femtocell-overlaid cellular networks, where each femtocell access point (FAP) decides to access the medium independently and in a distributed manner based on local link quality information. Specifically we introduce various opportunistic medium access policies, namely channel-based, interference-based, SIR-based, and rank-based, under which each FAP transmits after comparing a certain link quality metric with a predefined threshold. Considering a network in which FAPs are located according to a homogeneous Poisson point process, the performance of distributed low-overhead access schemes in terms of success probability, area spectral efficiency, and average data rate is evaluated. Furthermore, we determine the probabilistic access thresholds that provide the best possible tradeoff between spatial reuse and network throughput. Simulation results support the analysis and quantify the network throughput gains of different access policies in various operating regimes.
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