Systematic network coding for transmission over two-hop lossy links

Ye Li, W. Chan, S. Blostein
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引用次数: 4

Abstract

Packet transmission over two-hop lossy link is increasingly important in communication networks. In this paper, we present a systematic network coding scheme for packet-level transmissions over two-hop lossy links. In the scheme, a source node sends out uncoded packets in their original order first, followed by a potentially unlimited number of coded packets using random linear network coding. The intermediate node forwards a packet if it receives an uncoded packet, and sends a coded packet from previously buffered packets using random linear network coding if it does not receive a packet or the received packet is coded. We show that, compared to the scheme in which random linear network coding is used all the time at the source and intermediate nodes, the proposed method requires much less computation in encoding and decoding and also achieves a higher end-to-end rate. The benefit is appreciable when the number of source packets is not large and the finite field in which network coding is performed is small. To analytically assess the performance, we employ a Markov chain based technique to calculate the expected completion time of the proposed scheme given the number of source packets, link erasure rates and finite field size.
在两跳有损链路上传输的系统网络编码
在通信网络中,双跳有损链路上的分组传输越来越重要。在本文中,我们提出了一个系统的网络编码方案,用于在两跳有损链路上的分组级传输。在该方案中,源节点首先以原始顺序发送未编码的数据包,然后使用随机线性网络编码发送可能无限数量的编码数据包。如果中间节点收到未编码的数据包,则转发数据包,如果没有收到数据包或收到的数据包被编码,则使用随机线性网络编码从先前缓冲的数据包中发送编码的数据包。研究表明,与在源节点和中间节点始终使用随机线性网络编码的方案相比,所提出的方法编码和解码所需的计算量大大减少,并且实现了更高的端到端速率。当源数据包的数量不大并且执行网络编码的有限域很小时,这种好处是明显的。为了分析评估性能,我们采用基于马尔可夫链的技术来计算给定源数据包数量,链路擦除率和有限字段大小的拟议方案的预期完成时间。
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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