延迟容忍网络中基于拥塞级别的端到端确认机制

Ying An, Jiawei Huang, Hong Song, Jianxin Wang
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引用次数: 7

摘要

在间歇性连接的移动环境中,由于延迟容忍网络的高延迟和缺乏稳定的端到端路径,使得端到端可靠性问题具有挑战性和复杂性。一些现有的确认机制使用主动转发来提供端到端的可靠性,同时会产生过多的重传或复制。其他被动机制的目的是减少存储开销,但可能会有很大的延迟。为了改善存储延迟的权衡,我们提出了一种基于拥塞水平的端到端确认(CL-ACK)机制,该机制根据丢失与复制的比率自适应调整ACK数据包的传播方式。仿真结果表明,CL-ACK有效地控制了资源消耗,降低了端到端延迟,实现了较高的消息传发率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Congestion Level based end-to-end acknowledgement mechanism for Delay Tolerant Networks
End-to-end reliability in Delay Tolerant Networks (DTNs) is challenging and complicated because of high delay and absence of stable end-to-end path in the intermittently-connected mobile environment. Some existing acknowledgement mechanisms use active forwarding to provide the end-to-end reliability, while incurring excessive retransmissions or replications. The other passive mechanisms aim to reduce the storage overhead but may suffer a large delay. To improve the storage-delay tradeoff, we propose a Congestion Level based end-to-end ACKnowledgement (CL-ACK) mechanism, which adaptively adjusts the spread manner of ACK packets according to the ratio of drops over replications. Simulation results show that CL-ACK effectively controls resources consumption, reduces end-to-end delay, and achieves high message delivery rate.
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