Multi packet reception and network coding†

Arman Rezaee, L. Zeger, M. Médard
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引用次数: 17

Abstract

We consider throughput and delay gains resulting from network coding used to complement multi-packet reception in a fully connected network with broadcast traffic. The network is comprised of N nodes, J of which have data packets to be distributed to all other nodes. Owing to half-duplex constraints, a transmitting node is not able to receive data from other transmitting nodes in the same time slot. This requires a node to be back-filled with the information that it is missing. We consider singlepacket reception, (for which network coding alone yields no gain), multi-packet reception without network coding, and combined multi-packet reception and network coding. We show that the initial transmissions and the back-filling process can be greatly sped up through a combination of network coding and multi-packet reception. In particular, we show that MPR capability of 2 will not reduce the total delivery time for packets within a data network unless network coding is used. We also demonstrate that a combination of network coding and multi-packet reception can reduce this time by a factor of m, where m is the MPR capability of the system. We demonstrate that network coding can substitute for some degree of MPR and achieve the same, or almost the same, performance as the higher degree of MPR without network coding. In effect, network coding allows almost double the traffic for a given level of MPR.
多包接收和网络编码†
我们考虑了在具有广播流量的全连接网络中用于补充多包接收的网络编码所带来的吞吐量和延迟增益。网络由N个节点组成,其中J个节点有数据包需要分发给所有其他节点。由于半双工约束,一个发送节点不能在同一时隙接收来自其他发送节点的数据。这需要用它缺失的信息对节点进行反向填充。我们考虑了单包接收(单独进行网络编码不会产生增益)、不进行网络编码的多包接收,以及多包接收和网络编码的结合。通过网络编码和多包接收的结合,可以大大加快初始传输和回填过程。特别是,我们表明MPR能力为2不会减少数据网络中数据包的总传递时间,除非使用网络编码。我们还证明了网络编码和多包接收的组合可以将此时间减少m的因数,其中m是系统的MPR能力。我们证明了网络编码可以替代一定程度的MPR,并获得与没有网络编码的更高程度MPR相同或几乎相同的性能。实际上,对于给定的MPR水平,网络编码允许几乎两倍的流量。
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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