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End-to-End Throughput with Cooperative Communication in Multi-channel Wireless Networks

机译:多通道无线网络中协作通信的端到端吞吐量

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Although cooperative communication has been proposed at the physical layer to address multi-path fading effects, how physical layer gains with cooperative communication can translate to tangible performance benefits in end-to-end flows remains to be an open problem. This paper represents one step forward towards a deeper understanding of the interplay between end-to-end throughput and physical layer cooperative communication, in the general context of multi-hop multi-channel wireless networks. Based on a decode-and-forward physical layer design with rateless codes, we reformulate the problem of routing and channel assignment to account for physical layer cooperation. We design a distributed protocol to solve the new problem. Our simulation results have validated the effectiveness of our protocol to offer a substantial gain with respect to stabilizing the offered aggregate throughput in the network.
机译:尽管已经在物理层上提出了协作通信来解决多径衰落效应,但是通过协作通信获得的物理层如何在端到端流中转化为明显的性能优势仍然是一个悬而未决的问题。在多跳多信道无线网络的一般情况下,本文代表了朝着更深入了解端到端吞吐量与物理层协作通信之间相互作用的方向迈出的一步。基于具有无速率代码的解码和转发物理层设计,我们重新设计了路由和信道分配问题,以解决物理层协作问题。我们设计了一个分布式协议来解决新问题。我们的仿真结果已经验证了我们的协议在稳定网络中提供的总吞吐量方面可提供实质性收益的有效性。

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