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Performance Evaluation of Multi-Antenna Receivers for Vehicular Communications in Live LTE Networks

机译:实时LTE网络中用于车载通信的多天线接收器的性能评估

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Cellular Vehicle to Everything (C-V2X) communications with its safety and infotainment services will require a high performance receivers to cope with challenging throughput, latency and reliability requirements. With increasing levels of interference due to cell densification and introduction of the roadside units, single antenna receivers may not be able to provide the required quality of service. In this work we experimentally study the performance of multi antenna receivers based on more than 150 km of data recorded during experiments using a customized software defined radio testbed. The performance of sixteen antennas Maximum Ratio Combiner (MRC) is compared with the receive beamforming technique for the live cellular signals in the 1.8 GHz band. This study is followed by an analysis of the impact of interference and measurement environment on the receiver’s performance. The results show that receive beamforming can outperform MRC in low- interfered scenarios with high Line of Sight (LoS) probability, like highways or rural areas, while ensuring comparable performance even in dense urban scenarios where LoS communication cannot be guaranteed.
机译:蜂窝车辆到万向(C-V2X)通信及其安全性和信息娱乐服务将需要高性能的接收器来应对具有挑战性的吞吐量,延迟和可靠性要求。由于小区致密化和路边单元的引入,干扰水平不断提高,单天线接收器可能无法提供所需的服务质量。在这项工作中,我们使用定制的软件定义的无线电测试台,基于在实验过程中记录的150多公里数据,实验性地研究了多天线接收器的性能。将16个天线最大比合并器(MRC)的性能与1.8 GHz频带中的实时蜂窝信号的接收波束成形技术进行了比较。这项研究之后,分析了干扰和测量环境对接收机性能的影响。结果表明,在具有高视线(LoS)概率的低干扰场景(如高速公路或农村地区)中,接收波束成形可以胜过MRC,即使在无法保证LoS通信的密集城市场景中,也能确保可比的性能。

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