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Precoding-Based Network Alignment for Three Unicast Sessions

机译:三个单播会话的基于预编码的网络对齐

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We consider the problem of network coding across three unicast sessions over a directed acyclic graph, where the sender and receiver of each unicast session are both connected to the network via a single edge of unit capacity. We consider a network model in which the middle of the network can only perform random linear network coding, and restrict our approaches to precoding-based linear schemes, where the senders use precoding matrices to encode source symbols. We adapt a precoding-based interference alignment technique, originally developed for the wireless interference channel, to construct a precoding-based linear scheme, which we refer to as precoding-based network alignment scheme (PBNA). A primary difference between this setting and the wireless interference channel is that the network topology can introduce dependencies among the elements of the transfer matrix, which we refer to as coupling relations, and can potentially affect the achievable rate of PBNA. We identify all these coupling relations and interpret them in terms of network topology. We then present polynomial-time algorithms to check the presence of these coupling relations in a particular network. Finally, we show that, depending on the coupling relations present in the network, the optimal symmetric rate achieved by precoding-based linear scheme can take only three possible values, all of which can be achieved by PBNA.
机译:我们考虑在有向非循环图上的三个单播会话之间进行网络编码的问题,其中每个单播会话的发送者和接收者都通过单位容量的单个边缘连接到网络。我们考虑一种网络模型,其中网络的中间部分只能执行随机线性网络编码,并且将我们的方法限制为基于预编码的线性方案,其中发送方使用预编码矩阵来编码源符号。我们采用了最初为无线干扰信道开发的基于预编码的干扰对齐技术,以构建基于预编码的线性方案,我们将其称为基于预编码的网络对齐方案(PBNA)。此设置与无线干扰信道之间的主要区别在于,网络拓扑可以在传输矩阵的各个元素之间引入依赖性,我们将其称为耦合关系,并且可能会影响PBNA的可实现速率。我们确定所有这些耦合关系,并根据网络拓扑对其进行解释。然后,我们提出多项式时间算法,以检查特定网络中这些耦合关系的存在。最后,我们表明,根据网络中存在的耦合关系,通过基于预编码的线性方案实现的最佳对称速率只能采用三个可能的值,而所有这些都可以通过PBNA来实现。

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