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An Adaptive Transmission Control Scheme Based on TCP Vegas in MANETs

机译:MANETs中基于TCP Vegas的自适应传输控制方案

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摘要

Traditional transmission control protocol reduces its performance by misinterpreting mobility losses due to node motion as congestion losses in wireless mobility network. While it has been shown that TCP Vegas provides better performance compared to TCP Reno, studies have identified various issues associated with the protocol in mobile ad hoc networks. This paper proposed adaptive congestion control scheme based on Traditional TCP. The key idea of our approach is to monitor permanently the TCP flow and record useful data to infer the current state of mobility ad hoc networks when packet losses are perceived, distinguish losses packets between bit error and congestion based on fuzzy logic theory, then based on wireless network link state, such as bit error, network congestion, or rerouting, Appropriate congestion control algorithm be choose to overcome limitations. Our experiments show that the scheme is able to avoid oscillation of TCP sender congestion window, and obtain more throughput than traditional transmission control protocol.
机译:传统的传输控制协议通过将由于节点运动而引起的移动性损失误解为无线移动性网络中的拥塞损失来降低其性能。尽管已经显示TCP Vegas与TCP Reno相比提供了更好的性能,但研究发现了与移动ad hoc网络中的协议相关的各种问题。提出了一种基于传统TCP的自适应拥塞控制方案。我们的方法的关键思想是永久监控TCP流并记录有用的数据,以在感知到丢包时推断出自组织Ad hoc网络的当前状态,根据模糊逻辑理论,然后基于对于无线网络链路状态(例如误码,网络拥塞或重新路由),应选​​择适当的拥塞控制算法来克服限制。我们的实验表明,与传统的传输控制协议相比,该方案能够避免TCP发送方拥塞窗口的振荡,并获得更大的吞吐量。

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