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Energy and Spatial Spectral Efficiency Analysis of Random MIMO Cellular Networks

机译:随机MIMO蜂窝网络的能量和空间频谱效率分析

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In this work, we investigate the performance of Multiple-Input Multiple-Output (MIMO) systems in Random Cellular Networks in terms of Spatial Spectral Efficiency (SSE) and Energy Efficiency (EE). In this model, M-antenna Base Stations (BS) are randomly distributed in R(exp 2) based on a Poisson Point Process (PPP). Each BS forms a cell in this Poisson-Voronoi Tessellation (PVT) random cellular network and serves K single-antenna Mobile Stations (MS). Firstly, we provide expressions for the coverage probability and the ergodic capacity using stochastic geometry techniques. Then, a Markov Chain (MC) model is considered to derive the blocking probability, SSE and EE. Simulation results reveal that a random network with multi-antenna nodes is more susceptible to interference than to noise. Although a higher path-loss exponent degrades the coverage probability in a noisy network, it results in better coverage probability in a noise-free scenario. Besides, our results show a higher SSE and EE of MIMO compared to Single-Input Single-Output (SISO), while an equal sum power constraint is considered at the BSs.
机译:在这项工作中,我们从空间频谱效率(SSE)和能源效率(EE)的角度研究随机蜂窝网络中多输入多输出(MIMO)系统的性能。在此模型中,基于泊松点过程(PPP),M天线基站(BS)随机分布在R(exp 2)中。每个BS在此Poisson-Voronoi镶嵌(PVT)随机蜂窝网络中形成一个小区,并为K个单天线移动站(MS)服务。首先,我们使用随机几何技术提供了覆盖概率和遍历能力的表达式。然后,考虑使用马尔可夫链(MC)模型来得出阻塞概率SSE和EE。仿真结果表明,具有多天线节点的随机网络比噪声更容易受到干扰。尽管较高的路径损耗指数会降低嘈杂网络中的覆盖率,但在无噪声的情况下会导致更好的覆盖率。此外,我们的结果表明,与单输入单输出(SISO)相比,MIMO的SSE和EE更高,而在BS处考虑了相等的总功率约束。

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