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Design and Implementation of a Full-Duplex Pipelined MAC Protocol for Multihop Wireless Networks

机译:多跳无线网络全双工流水线MAC协议的设计与实现

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摘要

In multihop wireless networks, data packets are forwarded from a source node to a destination node through intermediate relay nodes. With half-duplex relay nodes, the end-to-end delay performance of a multihop network degrades as the number of hops increases, because the relay nodes cannot receive and transmit at the same time. Full-duplex relay nodes can reduce their per-hop delay by starting to forward a packet before the whole packet is received. In this paper, we propose a pipelined medium access control (PiMAC) protocol, which enables the relay nodes on a multihop path to simultaneously transmit and receive packets for full-duplex forwarding. For pipelined transmission over a multihop path, it is important to suppress both the self-interference of each relay node with the full-duplex capability and the intra-flow interference from the next relay nodes on the same path. In the PiMAC protocol, each relay node can suppress both the self- and intra-flow interference for full-duplex relaying on the multihop path by estimating the channel coefficients and delays of the interference during a multihop channel acquisition phase. To evaluate the performance of the PiMAC protocol, we carried out extensive simulations and software-defined radio-based experiments.
机译:在多跳无线网络中,数据包通过中间中继节点从源节点转发到目标节点。对于半双工中继节点,多跳网络的端到端延迟性能会随着跳数的增加而降低,因为中继节点无法同时接收和发送。全双工中继节点可以通过在接收到整个数据包之前开始转发数据包来减少其每跳延迟。在本文中,我们提出了一种流水线媒体访问控制(PiMAC)协议,该协议使多跳路径上的中继节点能够同时发送和接收用于全双工转发的数据包。对于多跳路径上的流水线传输,重要的是抑制具有全双工功能的每个中继节点的自干扰和来自同一路径上下一个中继节点的流内干扰。在PiMAC协议中,每个中继节点可以通过估计多跳信道获取阶段的信道系数和干扰延迟,来抑制多跳路径上全双工中继的自流干扰和流内干扰。为了评估PiMAC协议的性能,我们进行了广泛的仿真和基于软件的基于无线电的实验。

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