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On the performance of network coding and forwarding schemes with different degrees of redundancy for wireless mesh networks

机译:无线网状网络中不同冗余度的网络编码和转发方案的性能

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摘要

This work explores the throughput and delay that can be achieved by various forwarding schemes, employing multiple paths and different degrees of redundancy, focusing on linear network coding. The key contribution of the study is an analytical framework for modeling the throughput and delay forvarious schemes, considering wireless mesh networks where unicast traffic is forwarded and hop-by-hop retransmissions are employed for achieving reliability. The analytical framework is generalized for an arbitrary number of paths and hops per path. Another key contribution of the study is the evaluation and extension of the numerical results, drawn from the analysis, through system-level simulations. Our results show that, in scenarios with significant interference, the best throughput-delay tradeoff is achieved by single path forwarding. Moreover, when significant interference is present and network coding employs the larger packet generation size, it experiences higher delay than the other schemes. This is due to the inter-arrival times aggregating over all coded packets required to decode a packet generation. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项工作探索了通过采用多路径和不同冗余度的各种转发方案可以实现的吞吐量和延迟,重点是线性网络编码。这项研究的主要贡献是一个分析框架,用于对各种方案的吞吐量和延迟进行建模,并考虑了无线网状网络,其中转发了单播流量,并采用逐跳重传来实现可靠性。该分析框架适用于任意数量的路径和每个路径的跃点。该研究的另一个主要贡献是通过系统级仿真,对分析得出的数值结果进行了评估和扩展。我们的结果表明,在存在严重干扰的情况下,通过单路径转发可以实现最佳的吞吐量延迟权衡。而且,当存在明显的干扰并且网络编码采用较大的分组生成大小时,与其他方案相比,其经历更高的延迟。这是由于到达间隔时间汇总了解码一个数据包生成所需的所有编码数据包。 (C)2015 Elsevier B.V.保留所有权利。

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