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Asymmetric Directional Multicast for Capillary Machine-to-Machine Using mmWave Communications

机译:使用mmWave通信的毛细管机器对机器的非对称定向组播

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摘要

The huge demand for high data rate machine-to-machine (M2M) services has led to the use of millimeter Wave (mmWave) band communications with support for a multi-Gbps data rate through the use of directional antennas. However, unnecessary sector switching in multicast transmissions with directional antennas results in a long delay, and consequently a low throughput. We propose asymmetric directional multicast (ADM) for capillary M2M to address this problem in mmWave communications. ADM provides asymmetric sectorization that is optimized for the irregular deployment pattern of mulicast group members. In ADM, an M2M gateway builds up asymmetric sectors with a beamwidth of a different size to cover all multicast group members with the minimum number of directional transmissions. The performance of ADM under various simulation environments is evaluated through a comparison with legacy mmWave multicast. The results of the simulation indicate that ADM achieves a better performance in terms of the transmission sectors, the transmission time, and the aggregate throughput when compared with the legacy multicast method.
机译:对高数据速率机对机(M2M)服务的巨大需求已导致使用毫米波(mmWave)频段通信,并通过使用定向天线来支持多Gbps数据速率。但是,在使用定向天线的多播传输中不必要的扇区切换会导致较长的延迟,从而导致吞吐量较低。我们为毛细管M2M提出了一种非对称定向多播(ADM),以解决毫米波通信中的这一问题。 ADM提供了不对称扇区划分,该扇区分区针对mulicast组成员的不规则部署模式进行了优化。在ADM中,M2M网关建立具有不同大小波束宽度的不对称扇区,以最少的定向传输覆盖所有多播组成员。通过与传统mmWave多播进行比较,可以评估ADM在各种仿真环境下的性能。仿真结果表明,与传统的组播方法相比,ADM在传输扇区,传输时间和总吞吐量方面实现了更好的性能。

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