5G-V2X网络自适应波束形成性能评估

Ilmari Maskulainen, P. Luoto, P. Pirinen, M. Bennis, K. Horneman, M. Latva-aho
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引用次数: 18

摘要

汽车是继智能手机和平板电脑之后增长第三快的联网设备类型。此外,汽车行业有兴趣让更多的车辆连接到互联网,以提高交通安全和效率。这就产生了对车联网(V2X)通信的需求。在这项工作中,考虑了在LTE-V2X中利用波束形成的可能性。在LTE-A系统级模拟器中实现了奇异值分解(SVD)接收机和预编码器,并在下行车对基础设施(V2I)场景下对多车道公路场景下的性能进行了仿真分析。将其性能与传统的最大比组合(MRC)和LTE码本预编码最小均方误差(MMSE)接收机进行了比较。此外,采用改进的7和15窄波束天线方向图模拟了开关波束形成。结果表明,在理想情况下,SVD接收机比传统的MRC和MMSE接收机具有更高的增益。此外,与默认天线方向图相比,修改后的天线方向图性能得到了提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of adaptive beamforming in 5G-V2X networks
Vehicles are the third fastest growing connected device type after smart phones and tablets. Also, automotive industry is interested to get more vehicles connected to the internet to improve traffic safety and efficiency. This creates a need for Vehicle-to-Everything (V2X) communications. In this work, the possibility of exploiting beamforming in LTE-V2X is considered. Singular value decomposition (SVD) receiver and precoder is implemented in an LTE-A system level simulator and the performance on multi-lane highway scenario is simulated and analyzed in downlink Vehicle-to-Infrastructure (V2I) scenario. The performance is compared to the conventional maximum-ratio combining (MRC) and LTE codebook precoded minimum mean square error (MMSE) receivers. In addition, the switched-beam beamforming is imitated by modified antenna patterns with 7 and 15 narrow beams. The results show that the SVD receiver provides gain compared to the conventional MRC and MMSE receivers in ideal scenario. Furthermore, with modified antenna patterns, the performance was enhanced when compared to the default antenna pattern.
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