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Reliable Physical Layer Network Coding

机译:可靠的物理层网络编码

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When two or more users in a wireless network transmit simultaneously, their electromagnetic signals are linearly superimposed on the channel. As a result, a receiver that is interested in one of these signals sees the others as unwanted interference. This property of the wireless medium is typically viewed as a hindrance to reliable communication over a network. However, using a recently developed coding strategy, interference can in fact be harnessed for network coding. In a wired network, (linear) network coding refers to each intermediate node taking its received packets, computing a linear combination over a finite field, and forwarding the outcome towards the destinations. Then, given an appropriate set of linear combinations, a destination can solve for its desired packets. For certain topologies, this strategy can attain significantly higher throughputs over routing-based strategies. Reliable physical layer network coding takes this idea one step further: using judiciously chosen linear error-correcting codes, intermediate nodes in a wireless network can directly recover linear combinations of the packets from the observed noisy superpositions of transmitted signals. Starting with some simple examples, this paper explores the core ideas behind this new technique and the possibilities it offers for communication over interference-limited wireless networks.
机译:当无线网络中的两个或多个用户同时发送时,他们的电磁信号线性叠加在信道上。结果,对这些信号之一感兴趣的接收机将其他信号视为有害干扰。无线媒体的这种特性通常被视为阻碍网络上可靠通信的障碍。但是,使用最近开发的编码策略,实际上可以利用干扰进行网络编码。在有线网络中,(线性)网络编码是指每个中间节点获取其接收到的数据包,在有限域上计算线性组合,并将结果转发到目的地。然后,给定一组适当的线性组合,目标可以求解其所需的数据包。对于某些拓扑,此策略可以比基于路由的策略获得更高的吞吐量。可靠的物理层网络编码使这一想法更进一步:使用明智选择的线性纠错码,无线网络中的中间节点可以从观察到的发射信号的噪声叠加中直接恢复数据包的线性组合。从一些简单的示例开始,本文探讨了这项新技术背后的核心思想以及它为通过干扰受限的无线网络进行通信提供的可能性。

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