The millimeter wave (mmWave) band will be exploited to address the growing demand for high data rates and low latency. The higher frequencies, however, are prone to limitations on the propagation of the signal in the environment. Thus, highly directional beamforming is needed to increase the antenna gain. Another crucial problem of the mmWave frequencies is their vulnerability to blockage by physical obstacles. To this aim, we studied the problem of modeling the impact of second-order effects on mmWave channels, specifically the susceptibility of the mmWave signals to physical blockers. With respect to existing works on this topic, our project focuses on scenarios where mmWaves interact with multiple, dynamic blockers. Our open source software includes diffraction-based blockage models and interfaces directly with an open source Radio Frequency (RF) ray-tracing software.
翻译:毫米波(mmWave)波段将被用来应对对高数据率和低悬浮度不断增长的需求。但是,较高的频率容易限制信号在环境中的传播。因此,需要高度定向波束来增加天线的增益。毫米波段的另一个关键问题是它们容易受到物理障碍的阻塞。为此,我们研究了模拟二阶波段对毫米波段的影响的问题,特别是毫米波段信号对物理阻塞器的易感性。关于这个专题的现有工作,我们的项目侧重于毫米波段与多个动态阻塞器发生相互作用的情景。我们的开放源软件包括基于二折射管的阻塞模型和直接与开放源无线电频率(RF)射线追踪软件的接口。