论文标题

多射线收到了MMWave室内和室外场景的电源建模

Multiple Ray Received Power Modeling for mmWave Indoor and Outdoor Scenarios

论文作者

Khawaja, Wahab, Ozdemir, Ozgur, Erden, Fatih, Ozturk, Ender, Guvenc, Ismail

论文摘要

由于较大的未使用频谱的可用性,预计将用于未来的5G网络。但是,mmwave频率的衰减很高。为了解决这个问题,文献中广泛研究了高增益天线和波束形成机制的利用。在这项工作中,我们考虑了MMWave端到端的传播,该传播是由单个光线源建模的,并探索了部署天线对接收功率的模型和辐射模式中射线数的影响。结果表明,与室外开放区域的通道相比,与室内走廊相比,需要五个主要的射线以适合测量和仿真结果。据观察,天线的辐射模式会影响路径损耗的斜率。多路径组件增加了接收的功率,因此,对于室内走廊的场景,由于反射成分的接收增加而导致较低的增益天线的路径损失较小。对于室外开放区域,发现路径损失的斜率非常接近自由空间。

Millimeter-wave (mmWave) frequency bands are expected to be used for future 5G networks due to the availability of large unused spectrum. However, the attenuation at mmWave frequencies is high. To resolve this issue, the utilization of high gain antennas and beamforming mechanisms are widely investigated in the literature. In this work, we considered mmWave end-to-end propagation modeled by individual ray sources, and explored the effects of the number of rays in the model and radiation patterns of the deployed antennas on the received power. It is shown that taking the dominant two rays is sufficient to model the channel for outdoor open areas as opposed to the indoor corridor which needs five dominant rays to have a good fit for the measurement and simulation results. It is observed that the radiation pattern of the antenna affects the slope of the path loss. Multi-path components increase the received power, thus, for indoor corridor scenarios, path loss according to the link distance is smaller for lower gain antennas due to increased reception of reflected components. For an outdoor open area, the slope of the path loss is found to be very close to that of the free space.

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