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Connectivity of Millimeter Wave Networks With Multi-Hop Relaying

机译:毫米波网络与多跳中继的连通性

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This letter presents a novel stochastic geometry approach to the connectivity of milimeter wave (mmWave) networks with multi-hop relaying. The random positions and shapes of obstacles in the radio environment are modeled as a Boolean model, whose germs are distributed according to a Poisson point process and grains are random rectangles. The derived analytical results shed light on how the connectivity of mmWave networks depends on key system parameters such as the density and size of obstacles as well as —the range of distances in which routing relays are selected. We find that multi-hop relaying can greatly improve the connectivity versus single hop mmWave transmission. We show that to obtain near-optimal connectivity the relaying route window should be about the size of the obstacles.
机译:这封信提出了一种新颖的随机几何方法,用于通过多跳中继实现毫米波(mmWave)网络的连接。无线电环境中障碍物的随机位置和形状被建模为布尔模型,其细菌根据泊松点过程进行分布,并且颗粒为随机矩形。得出的分析结果揭示了毫米波网络的连通性如何取决于关键系统参数,例如障碍物的密度和大小以及-选择路由中继的距离范围。我们发现,与单跳毫米波传输相比,多跳中继可以大大改善连接性。我们表明,要获得接近最佳的连通性,中继路线窗口应约为障碍物的大小。

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