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首页> 外文期刊>Internet of Things Journal, IEEE >A Distributed Ambient Backscatter MAC Protocol for Internet-of-Things Networks
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A Distributed Ambient Backscatter MAC Protocol for Internet-of-Things Networks

机译:用于Internet-Internet-Internet网络的分布式环境反向散射MAC协议

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摘要

Ambient backscatter communication enabling device-to-device (D2D) communications via the ambient radio frequency (RF) signal has revealed its numerous application potential in the Internet-of-Things (IoT) networks. However, the work on the link layer for the backscatter communication is in its infancy due to the constraints of ultralow power and cost in such a system, especially a channel access protocol in the backscatter communication system for IoT networks is rarely mentioned. In this article, a distributed multiple access control (MAC) protocol is presented, which allows multiple backscatter devices (BDs) to connect with each other by relying on the ambient RF signal. By combining an analog channel sensing strategy with the dual-backoff mechanism, each BD can switch among the transmission, receiving, and energy harvesting (EH) states. Specifically, each BD starts a randomly designated time for EH once the channel is sensed to be busy. As the timer expires, the BD ceases the EH and continues its sensing and backoff procedures. With the consideration of the false alarm and the miss detection problems occurring while sensing, an enhanced 3-D Markov model is built to analyze the saturation throughput performance of the proposed MAC protocol. Extensive simulations verify the analysis and demonstrate the advantage of the proposed backscatter MAC protocol.
机译:通过环境射频(RF)信号启用设备到设备(D2D)通信的环境反向散射通信已经在互联网上揭示了其互联网(IOT)网络中的许多应用潜力。然而,由于在这种系统中的超级功率和成本中的约束,对反向散射通信的链路层的工作是初值,特别提到了用于IOT网络的反向散射通信系统中的信道访问协议。在本文中,提出了一种分布式多访问控制(MAC)协议,其允许通过依赖于环境RF信号来彼此连接多个反向散射设备(BDS)。通过将模拟通道感测策略与双回退机构组合,每个BD可以在传输,接收和能量收集(EH)状态之间切换。具体地,一旦感测到频道忙,每个BD就开始用于EH的随机指定时间。随着计时器到期,BD停止了EH并继续其传感和退避程序。考虑到误报和感测时发生的错误检测问题,建立了增强的3-D马尔可夫模型,以分析所提出的MAC协议的饱和吞吐量性能。广泛的模拟验证了分析并演示了所提出的反向散射MAC协议的优势。

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