认知小蜂窝网络的停机性能分析

M. Mishra, A. Trivedi
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引用次数: 1

摘要

频谱效率(SE)和能量效率(EE)是下一代蜂窝网络(NGCN)面临的关键挑战。小蜂窝部署和有利于无线电频谱有效利用的认知无线电是NGCN发展的有前途的技术。在异构蜂窝网络(HCN)设计中,干扰是一个重要的问题,中断概率是一个基本的性能度量。本文采用基于随机几何的模型,推导了受干扰和瞬时信号功率限制的不同资源分配策略下的停电概率。本文研究了一种基于认知的两层HCN,其中宏基站(mbs)和认知微基站(cpbs)由两个独立的齐次空间泊松点过程(HSPPPs)分布。同信道资源分配策略考虑了跨层和协层干扰,而正交信道策略只考虑协层干扰来计算中断概率。此外,根据中断概率表达式,计算了共信道和正交信道部署时的面积频谱效率(ASE)和EE。分析结果表明,在最小瞬时信号功率约束下,与同信道资源分配策略相比,正交资源分配策略具有更好的中断性能和EE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical outage performance of cognitive small cell network
Spectral efficiency (SE) and energy efficiency (EE) are the critical challenges for the next generation cellular network (NGCN). Small cells deployment and cognitive radio which facilitates efficient utilization of radio spectrum are the promising techniques for evolution of the NGCN. In a heterogeneous cellular network (HCN) design where interference is an important issue, outage probability is a fundamental performance measure. In this paper, stochastic geometry based model is used for deriving the outage probability for different resource allocation strategies, which are both interference and instantaneous signal power limited. This paper considers a cognitive based two tier HCN where the macro base stations (MBSs) and cognitive pico base stations (CPBSs) are distributed by two independent homogeneous spatial Poisson point processes (HSPPPs). Co-channel resource allocation strategy considers cross-tier and co-tier interference, while orthogonal channel strategy considers only co-tier interference to calculate the outage probability. Moreover, depending on the outage probability expression, the area spectral efficiency (ASE) and EE are calculated for co-channel and orthogonal channel deployment. Analytical results, with a constraint on minimum instantaneous signal power, show that the outage performance and EE are better for orthogonal resource allocation compare to the co-channel resource allocation strategy.
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