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Enhanced intermediate packet delivery in delay tolerant networks

机译:增强延迟容忍网络中的中间分组传递

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Recently, rateless codes have been employed in packet forwarding protocols of delay tolerant networks (DTNs) to improve the network reliability and to cope with packet loss. However, in intermediate range, where the number of received coded packets is less than the number of source packets, rateless decoder cannot recover any source packets. However, in some applications such as multimedia content delivery partial recovery of source packets from the incomplete received encoded packets is still desired. In this paper, we propose to deliver rateless coded symbols in a certain order to improve the intermediate packet recovery rate. We propose sorted packet forwarding (SPF) and improved SPF (ISPF) that aim to sort coded symbols at source and destination, respectively. Next, we propose modified SPF (MSPF) and modified ISPF (MISPF), which employ a new class of rateless codes to achieve even higher recovery rates compared to SPF and ISPF. Finally, we evaluate the proposed algorithms' performance using numerical simulations, and discuss the pros and cons of each algorithm.
机译:最近,已经在延迟容忍网络(DTN)的分组转发协议中采用了无数代码,以提高网络可靠性并应对零件丢失。然而,在中间范围内,在接收的编码分组的数量小于源分组的数量的情况下,没有RAB的解码器不能恢复任何源分组。然而,在一些应用中,诸如来自不完整的接收的编码分组的多媒体内容递送部分恢复源分组。在本文中,我们建议以某种顺序提供不可取的编码符号,以提高中间分组恢复速率。我们提出了分类的数据包转发(SPF)和改进的SPF(ISPF),其目的分别在源和目的地分别进行编码符号。接下来,我们提出了修改的SPF(MSPF)和修改的ISPF(MISPF),其采用了一类新的无数代码,以实现与SPF和ISPF相比的更高的恢复率。最后,我们使用数值模拟评估所提出的算法的性能,并讨论每个算法的优点和缺点。

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