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A Spatial-Spectral Interference Model for Millimeter Wave 5G Applications

机译:毫米波5G应用的空间光谱干扰模型

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The potential of the millimeter wave (mmWave) band in meeting the ever growing demand for high data rate and capacity in emerging fifth-generation (5G) wireless networks is well-established. Since mmWave systems are expected to use highly directional antennas with very focused beams to overcome severe pathloss and shadowing in this band, the nature of signal propagation in mmWave wireless networks may differ from current networks. One factor that is influenced by such propagation characteristics is the interference behavior, which is also impacted by the simultaneous use of the unlicensed portion of the spectrum by multiple users. Therefore, considering the propagation characteristics in the mmWave band, we propose a spatial-spectral interference model for 5G mmWave applications, in the presence of Poisson field of blockages and interferers operating in licensed and unlicensed mmWave spectrum. Consequently, the average bit error rate of the network is calculated. Simulation is also carried out to verify the outcomes of the paper.
机译:毫米波(mmWave)频段在满足新兴的第五代(5G)无线网络中对高数据速率和容量不断增长的需求方面的潜力已广为人知。由于人们期望毫米波系统使用具有高度聚焦波束的高度定向天线来克服该频带中的严重路径损耗和阴影,因此毫米波无线网络中信号传播的性质可能与当前网络有所不同。受这种传播特性影响的一个因素是干扰行为,该行为也受到多个用户同时使用频谱的未许可部分的影响。因此,考虑到毫米波频带中的传播特性,在存在许可和未许可毫米波频谱中存在的阻塞和干扰物的泊松场的情况下,我们提出了适用于5G毫米波应用的空间光谱干扰模型。因此,计算出网络的平均误码率。还进行了仿真以验证论文的结果。

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