一种改进的无线自组网中TCP性能测量方法

N. Sengottaiyan, R. Somasundaram, S. Arumugam
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引用次数: 10

摘要

传输控制协议(TCP)的设计目的是在不可靠的网络上提供可靠的端到端数据传输。在实践中,大多数TCP部署都是在有线网络环境中精心设计的。忽略无线自组织网络的特性可能导致TCP实现性能低下。本文概述了这一问题,并对涉及的主要因素进行了详细的讨论。特别是,它已经显示了TCP如何受到移动性和较低层协议的影响。为了使路由协议意识到丢失的数据包和ACK,并帮助减少由于移动导致的丢失而导致的TCP超时,有两种机制:早期丢包通知(EPLN)和最佳努力ACK交付(best effort ACK delivery, BEAD)。EPLN试图通知TCP发送方丢失的数据包。本文提出了一种改进自组织网络中TCP性能的新技术,该网络采用表驱动型路由协议,关注短时间链路故障。延迟ACK抑制了数据包与ACK报文碰撞的影响,并对ACK报文优先重发进行了评估。通过仿真表明,这些改进的组合可以使TCP吞吐量提高约20%。本文探讨了移动无线链路在不同实际场景下的TCP性能。使用网络模拟器ns-2来结合物理层建模和网络仿真的简单方法。文中给出了基于TCP协议的传播信道仿真结果和相应的网络仿真结果。提出的方法表明,为了提高TCP在无线链路上的性能,不仅需要调整TCP的参数,还需要修改TCP的语义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Modified Approach for Measuring TCP Performance in Wireless Adhoc Network
The Transmission Control Protocol (TCP) was designed to provide reliable end-to-end delivery of data over unreliable networks. In practice, most TCP deployments have been carefully designed in the context of wired networks. Ignoring the properties of wireless Ad Hoc Networks can lead to TCP implementations with poor performance. In this paper, an overview of this issue and a detailed discussion of the major factors involved have been presented. In particular, it has been shown how TCP can be affected by mobility and lower layers protocols. To make routing protocols aware of lost data packets and ACKs and help reduce TCP timeouts for mobility induced losses, there are two mechanisms: early packet loss notification (EPLN) and best effort ACK delivery (BEAD). EPLN seeks to notify TCP senders about lost data packets. A new technique for improving TCP performance in an ad hoc network that uses a table driven type of routing protocol paying attention to short-duration link failure has been described. The effect of the collision of a data packet and an ACK packet is suppressed by Delayed ACK and resending the ACK packet preferentially has also been evaluated. Through simulation, it has been shown that the combination of these improvements can increase TCP throughput about 20%. TCP performance over a mobile wireless link in different realistic scenarios has been explored in the paper. A simple method to combine a physical layer modeling and a network simulation using the network simulator ns-2 is being used. The results of the propagation channel simulation and the results of the corresponding network simulation using TCP protocol have been presented. The proposed approach demonstrates that in order to improve TCP performance over wireless links, one need not only to tune the parameters of TCP but also to modify the TCP semantics.
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