The current analysis of wireless networks whose transceivers are confined to streets is largely based on Poissonian models, such as Poisson line processes and Poisson line Cox processes. We demonstrate important scenarios where a model with a finite and deterministic number of streets, termed binomial line process, is more accurate. We characterize the statistical properties of the BLP and the corresponding binomial line Cox process and apply them to analyze the performance of a network whose access points are deployed along the streets of a city. Such a deployment scenario will be typical for 5G and future wireless networks. In order to obtain a fine-grained insight into the network performance, we derive the meta distribution of the signal-to-interference and noise ratio. Accordingly, we investigate the mean local delay in transmission and the density of successful transmission. These metrics, respectively, characterize the latency and coverage performance of the network and are key performance indicators of next-generation wireless systems.
翻译:目前对无线网络的分析主要基于Poisson模式,如Poisson线进程和Poisson线Cox进程。我们展示了一种数量有限和确定性的街道模式(称为二线进程)更为准确的重要情景。我们描述BLP的统计特性和相应的二线式Cox进程,并运用这些特征来分析一个接入点部署在城市街道上的网络的性能。这种部署情景对于5G和未来的无线网络来说将是典型的。为了对网络性能进行精细的洞察,我们得出了信号对干扰和噪音比率的元分布。因此,我们调查了信号对干扰和噪音比率的元分布。因此,我们调查了传输的当地平均延迟和成功传输密度。这些尺度分别描述了网络的惯性性和覆盖性,是下一代无线系统的主要性能指标。