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Exploiting channel diversity for rate adaptation in backscatter communication networks

机译:在反向散射通信网络中利用信道分集进行速率适配

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Backscatter communication networks receive much attention recently due to the small size and low power of backscatter nodes. As backscatter communication is often influenced by the dynamic wireless channel quality, rate adaptation becomes necessary. Most existing approaches share a common drawback: they do not distinguish channel qualities from different nodes or sub-channels. Consequently, the transmission rate may be improperly selected, resulting in low network throughput. Through extensive experimental studies, we observe that channel diversity plays a significant role in rate selection. Therefore, there are opportunities of exploiting channel diversity for better rate adaptation, improving network throughput. In this paper, we propose a Channel-Aware Rate Adaptation framework (CARA) for backscatter communication networks. By employing a lightweight channel probing scheme, we are able to obtain fine-grained channel information that enables accurate channel estimation. We further design a novel channel selection algorithm, benefiting as many backscatter nodes as possible. On each selected channel, CARA chooses data rate with respect to the node that has the best channel condition. We implement CARA on commercial readers and the experiment results show that CARA achieves up to 4× goodput gain compared with state-of-the-art rate adaptation scheme.
机译:由于后向散射节点的小尺寸和低功率,近来反向通信网络受到了广泛的关注。由于反向散射通信通常受动态无线信道质量的影响,因此速率适配变得必要。大多数现有方法都有一个共同的缺点:它们无法将信道质量与不同的节点或子信道区分开。因此,传输速率可能选择不当,导致网络吞吐量低。通过广泛的实验研究,我们观察到信道多样性在速率选择中起着重要作用。因此,存在利用信道分集来更好地进行速率适配,提高网络吞吐量的机会。在本文中,我们提出了一种用于反向散射通信网络的信道感知速率自适应框架(CARA)。通过采用轻量级信道探测方案,我们能够获得能够进行精确信道估计的细粒度信道信息。我们进一步设计了一种新颖的信道选择算法,使尽可能多的反向散射节点受益。在每个选定的信道上,CARA选择具有最佳信道条件的节点的数据速率。我们在商业阅读器上实现了CARA,实验结果表明,与最新的速率自适应方案相比,CARA可获得高达4倍的吞吐量。

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