A dynamic adaptive acknowledgment strategy for TCP over multihop wireless networks

R. Oliveira, T. Braun
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引用次数: 108

Abstract

Multihop wireless networks based on the IEEE 802.11 MAC protocol are promising for ad hoc networks in small scale today. The 802.11 protocol minimizes the well-known hidden node problem but does not eliminate it completely. Consequently, the end-to-end bandwidth utilization may be quite poor if the involved protocols do not interact smoothly. In particular, the TCP protocol does not manage to obtain efficient bandwidth utilization because its congestion control mechanism is not tailored to such a complex environment. The main problems with TCP in such networks are the excessive amount of both spurious retransmissions and contention between data and acknowledgment (ACK) packets for the transmission medium. In this paper, we propose a dynamic adaptive strategy for minimizing the number of ACK packets in transit and mitigating spurious retransmissions. Using this strategy, the receiver adjusts itself to the wireless channel condition by delaying more ACK packets when the channel is in good condition and less otherwise. Our technique not only improves bandwidth utilization but also reduces power consumption by retransmitting much less than a regular TCP does. Extensive simulation evaluations show that our scheme provides very good enhancements in a variety of scenarios.
基于多跳无线网络的TCP动态自适应确认策略
基于IEEE 802.11 MAC协议的多跳无线网络在目前的小规模自组织网络中很有前景。802.11协议最小化了众所周知的隐藏节点问题,但并没有完全消除它。因此,如果所涉及的协议不能顺利交互,端到端带宽利用率可能会很低。特别是,TCP协议无法获得有效的带宽利用,因为它的拥塞控制机制不适合这种复杂的环境。在这种网络中,TCP的主要问题是大量的虚假重传以及传输介质的数据和确认(ACK)数据包之间的争用。在本文中,我们提出了一种动态自适应策略,以减少传输中的ACK数据包数量和减少虚假重传。使用这种策略,当信道处于良好状态时,接收方通过延迟更多的ACK数据包来调整自己以适应无线信道条件,否则延迟更少的ACK数据包。我们的技术不仅提高了带宽利用率,而且通过比常规TCP更少的重传减少了功耗。大量的仿真评估表明,我们的方案在各种场景下提供了非常好的增强。
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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