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首页> 外文期刊>IEEE transactions on wireless communications >Interference and SINR in Millimeter Wave and Terahertz Communication Systems With Blocking and Directional Antennas
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Interference and SINR in Millimeter Wave and Terahertz Communication Systems With Blocking and Directional Antennas

机译:带有阻塞和定向天线的毫米波和太赫兹通信系统中的干扰和SINR

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摘要

The fifth generation wireless systems are expected to rely on a large number of small cells to massively offload traffic from the cellular and even from the wireless local area networks. To enable this functionality, mm-wave (EHF) and Terahertz (THF) bands are being actively explored. These bands are characterized by unique propagation properties compared with microwave systems. As a result, the interference structure in these systems could be principally different to what we observed so far at lower frequencies. In this paper, using the tools of stochastic geometry, we study the systems operating in the EHF/THF bands by explicitly capturing three phenomena inherent for these frequencies: 1) high directivity of the transmit and receive antennas; 2) molecular absorption; and 3) blocking of high-frequency radiation. We also define and compare two different antenna radiation pattern models. The metrics of interest are the mean interference and the signal-to-interference-plus-noise (SINR) ratio at the receiver. Our results reveal that: 1) for the same total emitted energy by a Poisson field of interferers, both the interference and SINR significantly increase when simultaneously both transmit and receive antennas are directive and 2) blocking has a profound impact on the interference and SINR creating much more favorable conditions for communications compared with no blocking case.
机译:预计第五代无线系统将依靠大量的小型小区来从蜂窝甚至无线局域网中大量分担流量。为了实现此功能,正在积极探索毫米波(EHF)和太赫兹(THF)频段。与微波系统相比,这些频带具有独特的传播特性。结果,这些系统中的干扰结构可能与我们迄今为止在较低频率下观察到的原理主要不同。在本文中,我们使用随机几何工具,通过明确捕获这些频率固有的三种现象,研究了在EHF / THF频带中运行的系统:1)发送和接收天线的高方向性; 2)分子吸收; 3)阻挡高频辐射。我们还定义和比较了两种不同的天线辐射方向图模型。感兴趣的指标是接收机的平均干扰和信噪比(SINR)。我们的结果表明:1)对于相同的干扰者的泊松场总发射能量,当同时发送和接收天线均定向时,干扰和SINR都会显着增加; 2)阻塞对干扰和SINR的产生产生深远影响与无阻塞情况相比,通信条件更为有利。

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