Network Coding in Minimal Multicast Networks

S. Rouayheb, C. Georghiades, A. Sprintson
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引用次数: 11

Abstract

We investigate the network coding problem in a certain class of minimal multicast networks. In a multicast coding network, a source S needs to deliver h symbols, or packets, to a set of destinations T over an underlying communication network modeled by a graph G. A coding network is said to be h-minimal if it can deliver h symbols from S to the destination nodes, while any proper subnetwork of G can deliver at most h — 1 symbols to the set of destination nodes. This problem is motivated by the requirement to minimize the amount of network resources allocated for a multicast connections. We show that surprisingly, minimal multicast networks have unique properties that distinguish them from the general case of multicast networks. In particular, we show that it is possible to determine whether a 2-minimal network has a routing solution (i.e., a solution without encoding nodes) in polynomial time, while this problem is NP-hard in general. In addition, we show that if a 2-minimal network is planar, then the minimum size of the required field for linear network codes is at most 3. Also, we investigate several structural properties of 2-minimal networks and generalize our results for h > 2.
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最小组播网络中的网络编码
研究了一类最小组播网络的网络编码问题。在组播编码网络中,源S需要通过图G建模的底层通信网络向一组目标T传递h个符号或数据包,如果一个编码网络能从S向目标节点传递h个符号,则称其为h-minimal,而G的任何合适的子网最多能向目标节点集传递h- 1个符号。产生这个问题的原因是为了尽量减少分配给多播连接的网络资源。令人惊讶的是,最小组播网络具有区别于一般组播网络的独特属性。特别是,我们证明了在多项式时间内确定2-极小网络是否具有路由解(即不编码节点的解)是可能的,而这个问题通常是np困难的。此外,我们还证明了如果2-极小网络是平面的,那么线性网络码的所需域的最小大小不超过3。此外,我们还研究了2-极小网络的几个结构性质,并推广了h > 2时的结果。
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