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Multi-Beam On-Demand Power Allocation MAC Protocol for MIMO Terahertz Communication Networks

机译:MIMO太赫兹通信网络的多波束按需功率分配MAC协议

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Terahertz (THz) communication is envisioned as one of the key technologies to achieve Terabit-per-second (Tbps) wireless data transmission speed. However, the communication distance in THz networks is constrained by the severe path loss in THz frequencies and the limited transmission power, which results in the network deployment issue. In recent years, researchers have shown a growing interest in the utilization of adaptive transmission power as well as multi-connectivity THz communication. In this paper, a multi-beam on-demand power allocation medium access control (MAC) protocol for Multiple-Input Multiple-Output (MIMO) THz communication in distributed wireless networks is presented. The proposed dual-band protocol relies on a multi-beam antenna structure, which utilizes the limited transmission power to achieve multiple concurrent THz connections by applying the proposed distance-aware power allocation scheme and redesigning the frame formats. The simulation results demonstrate the relationship between the number of beams with SNR threshold and average node distance. The results concluded by comparing the total throughput of the proposed multi-beam network with classical single-beam network show that the proposed protocol maximize the THz channel utilization and achievable throughput.
机译:太赫兹(THz)通信被视为实现每秒兆位(Tbps)无线数据传输速度的关键技术之一。但是,太赫兹网络中的通信距离受到太赫兹频率中严重的路径损耗和有限的传输功率的限制,这导致了网络部署问题。近年来,研究人员对自适应传输功率以及多连接THz通信的利用表现出越来越浓厚的兴趣。本文提出了一种用于分布式无线网络中多输入多输出(MIMO)THz通信的多波束按需功率分配媒体访问控制(MAC)协议。所提出的双频带协议依赖于多波束天线结构,该结构通过应用所提出的距离感知功率分配方案并重新设计帧格式,利用有限的发射功率来实现多个并发的THz连接。仿真结果证明了具有SNR阈值的波束数量与平均节点距离之间的关系。通过比较拟议的多波束网络与经典单波束网络的总吞吐​​量得出的结果表明,所提议的协议可以最大程度地提高THz信道利用率和可实现的吞吐量。

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