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Scalable Multicast in Highly-Directional 60 GHz WLANs

机译:高定向60 GHz WLAN中的可扩展组播

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摘要

60 GHz bands target multi-gigabit rate applications such as high definition video streaming. Unfortunately, to provide multicast service, the strong directionality required at 60 GHz precludes serving all clients in a multicast group with a single transmission. Instead, a multicast transmission is comprised of a sequence of beam-formed transmissions (a beam group) that together cover all multicast group members. In this paper, we design, implement, and experimentally evaluate Scalable Directional Multicast (SDM) as a technique to (i) train the access point with per-beam per client RSSI measurements via partially traversing a codebook tree. The training balances the objectives of limiting overhead with collecting sufficient data to form efficient beam groups. (ii) Using the available training information, we design a scalable beam grouping algorithm that approximates the minimum multicast group data transmission time. We implement the key components of SDM and evaluate with a combination of over the-air experiments and trace-driven simulations. Our results show that the gains provided by SDM increase with group size and provide near-optimal group selection with significantly reduced training time, yielding up to 1.8x throughput gains over exhaustive-search training and grouping.
机译:60 GHz频段针对的是数千兆位速率的应用,例如高清视频流。不幸的是,为了提供多播服务,在60 GHz处需要强大的方向性,因此无法通过一次传输为多播组中的所有客户端提供服务。取而代之的是,多播传输由一系列波束形成的传输(波束组)组成,这些序列一起覆盖了所有多播组成员。在本文中,我们设计,实施和实验评估可伸缩定向多播(SDM),以作为一种技术(i)通过部分遍历码本树来训练每个客户端RSSI测量的每个波束的接入点。训练在限制开销与收集足够的数据以形成有效波束组的目标之间取得了平衡。 (ii)使用可用的训练信息,我们设计了一种可伸缩的波束分组算法,该算法近似于最小的组播组数据传输时间。我们实施SDM的关键组件,并结合无线实验和跟踪驱动的仿真进行评估。我们的结果表明,SDM所提供的收益随着小组规模的增加而增加,并提供了接近最优的小组选择,同时训练时间也大大减少,与详尽搜索训练和分组相比,吞吐量提高了1.8倍。

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