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Low-Cost and Long-Range Node-Assisted WiFi Backscatter Communication for 5G-Enabled IoT Networks

机译:低成本和远程节点辅助WiFi反向散射通信为5G启用的IOT网络

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The fifth-generation-enabled Internet of Things (5G-enabled IoT) has been considered as a key enabler for the automation of almost all industries. In 5G-enabled IoT, resource-limited passive devices are expected to join the IoT using the WiFi backscatter communication (WiFi-BSC) technology. However, WiFi-BSC deployment is currently limited due to high equipment cost and short transmission range. To address these two drawbacks, in this paper, we propose a low-cost and long-range node-assisted WiFi backscatter communication scheme. In our scheme, a WiFi node can receive backscatter signals using two cheap regular half-duplex antennas (instead of using expensive full-duplex technique or collaborating with multiple other nodes), thereby reducing the equipment cost. Besides, WiFi nodes can help relay backscatter signals to remote 5G infrastructure, greatly extending the backscatter’s transmission range. We then develop a theoretical model to analyze the throughput of WiFi-BSC. Extensive simulations verify the effectiveness of our scheme and the accuracy of our model.
机译:启用了第五代的事物(启用5G的IOT)被认为是几乎所有行业的自动化的关键推动者。在启用5G的IOT中,资源有限的被动设备预计将使用WiFi反向散射通信(WiFi-BSC)技术加入IOT。然而,由于设备成本高,传输范围短,目前WiFi-BSC部署目前受到限制。为了解决这两个缺点,本文提出了一种低成本和远程节点辅助WiFi反向散射通信方案。在我们的方案中,WiFi节点可以使用两个廉价常规半双工天线接收反向散射信号(而不是使用昂贵的全双工技术或与多个其他节点协作),从而降低设备成本。此外,WiFi节点可以帮助将反向散射信号中继到远程5G基础架构,大大扩展了反向散射的传输范围。然后,我们开发一个理论模型来分析WiFi-BSC的吞吐量。广泛的模拟验证了我们计划的有效性和模型的准确性。

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