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Coverage and Capacity Impact of Mobility and Human Body Blocking at Millimeter Waves

机译:毫米波移动性和人体阻塞的覆盖范围和容量影响

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We investigate the impact of human body blocking on the performance of millimeter wave wireless systems in an urban hotspot scenario. The effects of human body blocking at higher frequency bands are expected to be more severe than at traditional cellular bands because of worse signal propagation through the human body. To study the temporal behaviour of signals with blocking in a realistic setting, we employ a video clip of human activity in a public square and model the spatio-temporal distribution of individuals by extracting the locations of the people in each frame of the clip and embedding that information within various environment models in a ray tracing tool. This approach enables us to study the human body blocking effects in the context of realistic pedestrian trajectories taking into account the social interactions among people. We present extensive results from the ray tracing tool on the signal to noise ratio statistics and their temporal variation from multiple transmission points in various environments involving human body blocking. Our results show that maintaining good signal to noise ratio requires frequent switching between transmission points, and joint transmission may be preferred over switching to eliminate handover interruption. Our study also shows that multipath propagation through reflections from structures in the surrounding environment can mitigate to some extent but not eliminate the losses because of human body blocking.
机译:我们研究了在城市热点场景中,人体阻挡对毫米波无线系统性能的影响。由于信号在人体中的传播较差,因此在较高频段上,人体阻塞的影响预计会比在传统蜂窝频段上更为严重。为了研究在现实环境中具有阻塞的信号的时间行为,我们在公共广场上使用了人类活动的视频剪辑,并通过在剪辑的每个帧中提取人的位置并进行嵌入来对个体的时空分布进行建模光线跟踪工具中各种环境模型中的信息。这种方法使我们能够在考虑到人与人之间的社会互动的情况下,在现实的行人轨迹的背景下研究人体的阻滞作用。我们从射线追踪工具获得了广泛的结果,这些结果涉及信噪比统计数据以及它们在涉及人体阻挡的各种环境中的多个传输点的时间变化。我们的结果表明,要保持良好的信噪比,需要在传输点之间频繁切换,并且联合传输可能比切换更可取,以消除切换中断。我们的研究还表明,通过周围环境中结构反射产生的多径传播可以在一定程度上缓解但不能消除由于人体阻塞而造成的损失。

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