Beyond network equivalence

R. Koetter, M. Effros, M. Meadard
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引用次数: 5

Abstract

In earlier work, we described an equivalence result for network capacity. Roughly, that result is as follows. Given a network of noisy, memoryless, point-to-point channels, replace each channel by a noiseless, memoryless bit pipe of the same capacity yields a new network such that any collection of demands can be met on the network of noisy links if and only if the same demands can be met on the network of noiseless links. We here expand on these ideas to provide a framework for studying more general networks, including networks containing memoryless broadcast, multiple access, and interference channels. For each network in this broader class, we design two corresponding networks of noiseless, memoryless point-to-point links. These two networks provide upper and lower bounds in the following sense. Fix an arbitrary collection of demands. If the given demands can be met on the lower bounding network, then they can also be met on the original network. Likewise, if the given demands can be met on the original network, then they can also be met on the upper bounding network.
超越网络等价
在早期的工作中,我们描述了网络容量的等效结果。结果大致如下。给定一个有噪声的、无记忆的、点对点信道的网络,用相同容量的无噪声的、无记忆的位管代替每个信道,产生一个新的网络,这样,当且仅当在无噪声链路网络上可以满足相同的需求时,在有噪声链路网络上可以满足任何需求的集合。我们在这里扩展这些想法,为研究更一般的网络提供一个框架,包括包含无记忆广播,多址和干扰信道的网络。对于这个更广泛的类别中的每个网络,我们设计了两个相应的无噪声,无记忆的点对点链路网络。这两个网络在以下意义上提供了上界和下界。固定一个任意的需求集合。如果给定的需求能在下限网络上得到满足,那么在原网络上也能得到满足。同样,如果给定的需求在原始网络上可以满足,那么在上限网络上也可以满足。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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