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首页> 外文期刊>Internet of Things Journal, IEEE >Passive Relaying Game for Wireless Powered Internet of Things in Backscatter-Aided Hybrid Radio Networks
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Passive Relaying Game for Wireless Powered Internet of Things in Backscatter-Aided Hybrid Radio Networks

机译:反向散射辅助混合无线网络中无线物联网的无源中继游戏

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摘要

In this paper, we consider wireless powered Internet of Things (IoT) by a power beacon station (PBS). Each IoT device can be a sensor node that has continuous data transmission using a dual-mode radio, which operates in either active radio frequency (RF) communications or passive backscatter communications. The flexibility in the radio mode switching provides an additional degree of freedom to improve the overall network performance. To exploit the radio's diversity gain, we formulate the sum throughput maximization by jointly optimizing the transmission strategy of each node, the time allocation, and beamforming strategies of the PBS. Besides, capitalizing the fact that two nodes in different modes can complement each other, we propose the passive relaying scheme to exploit the user's cooperation gain that leverages the passive radios to relay for active RF communications. Though the backscatter-aided throughput maximization is nonconvex due to the coupling among different nodes, we design the passive relaying game to balance energy harvesting and relay performance. The simulation results verify that it can significantly enhance the sum throughput of a hybrid radio network, along with the optimal time allocation and beamforming strategies at the PBS.
机译:在本文中,我们考虑了由电力信标站(PBS)提供的无线物联网(IoT)。每个物联网设备可以是一个传感器节点,该传感器节点使用双模无线电进行连续数据传输,该双模无线电以主动射频(RF)通信或被动反向散射通信进行操作。无线电模式切换的灵活性为改善整体网络性能提供了额外的自由度。为了利用无线电的分集增益,我们通过联合优化每个节点的传输策略,时间分配和PBS的波束成形策略来制定总吞吐量最大化。此外,利用两个模式不同的节点可以互补的事实,我们提出了一种无源中继方案,以利用用户的协作增益,利用无源无线电为有源RF通信进行中继。尽管由于不同节点之间的耦合,后向散射辅助的吞吐量最大化不是凸的,但我们设计了无源中继游戏来平衡能量收集和中继性能。仿真结果证明,它可以显着提高混合无线电网络的总吞吐​​量,以及PBS处的最佳时间分配和波束成形策略。

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