自组织网络中基于代理的TCP的有意窗口流控制

Yuta Yamamoto, M. Yamamoto
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引用次数: 0

摘要

在自组织无线网络中,端到端TCP是众所周知的,随着跳数的增加,它可以获得非常低的吞吐量。解决TCP吞吐量下降这一技术问题的一个有希望的方法是基于代理的TCP。在基于代理的TCP协议中,一个端到端的TCP会话由一个中间代理主机划分,这样可以减少每个划分会话的跳数,提高TCP吞吐量。然而,令人惊讶的是,在代理主机缓冲区空间有限的现实情况下,基于代理的TCP并没有带来性能改进,而且比传统的端到端TCP获得更低的吞吐量。这种退化的原因是由于代理主机周围的无线信道捕获引起的段传输中断。为了解决这个问题,我们提出了有意识的窗口流控制,以防止代理主机周围的无线信道捕获。在我们提出的有意窗口流控制方法中,代理主机和目标主机返回的广告窗口大小被有意设置为小值,几乎独立于其空闲缓冲区空间。性能评估结果表明,我们提出的具有小广告窗口大小的有意流量控制可以防止代理主机周围的无线通道捕获,并显着提高基于代理的TCP性能。
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Intentional window flow control for proxy-based TCP in ad hoc networks
In ad hoc wireless networks, end-to-end TCP is well-known that it can obtain very low throughput with increase of the number of hops. One promising way to resolve this technical problem of TCP throughput degradation is proxy-based TCP. In proxy-based TCP, an end-to-end TCP session is divided by (an) intermediate proxy host(s), which leads to reduction of hop-count of each divided session and improvement of TCP throughput. However, we show that proxy-based TCP surprisingly does not bring performance improvement and obtain lower throughput than conventional end-to-end TCP in a realistic situation of limited buffer space in proxy host(s). The reason for this degradation is interruption of segment transmission caused by wireless channel capture around the proxy host. In this paper, for resolving this problem, we propose intentional window flow control which prevents wireless channel capture around the proxy host. In our proposed intentional window flow control method, the proxy host and the destination host return advertised window size which is intentionally set to small value almost independently from its vacant buffer space. Performance evaluation results show that our proposed intentional flow control with small advertised window size prevents wireless channel capture around the proxy host and significantly improves proxy-based TCP performance.
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