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Improve Performance of TCP New Reno Over Mobile Ad-Hoc Network Using ABRA

机译:使用ABRA通过移动自组织网络提高TCP New Reno的性能

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In a mobile ad hoc network, temporary link failures and route changes occur frequently. With the assumption that all packet losses are due to congestion, TCP performs poorly in such an environment. There are many versions of TCP which modified time to time as per need. In this paper modifications introduced on TCP New Reno over mobile ad-hoc networks using calculation of New Retransmission Time out (RTO), to improve performance in term of congestion control. To calculate New RTO, adaptive backoff response approach (ABRA) in TCP New Reno was applied which suggest ABRA New Reno. It utilizes an ABRA by which congestion window and slow start threshold values were decreased whenever an acknowledgement is received and new backoff value calculate from smoothed round trip time. Evaluation based on comparative study of ABRA New Reno with other TCP Variants like New Reno and Reno was done using realistic parameters like TCP Packet Received, Packet Drop, Packets Retransmitted, Throughput, and Packet Delivery Ratio calculated by varying attributes of Node Speed, Number of Nodes and Pause Time. Implementation and simulations were performed in QualNet 4.0 simulator.
机译:在移动自组织网络中,临时链路故障和路由更改经常发生。假设所有数据包丢失都是由于拥塞造成的,则TCP在这种环境下的性能很差。 TCP有许多版本,可以根据需要不定期地进行修改。在本文中,通过使用新重传超时(RTO)的计算在移动自组织网络上对TCP New Reno进行了修改,以改善拥塞控制方面的性能。为了计算New RTO,应用了TCP New Reno中的自适应退避响应方法(ABRA),该方法建议使用ABRA New Reno。它利用ABRA,每当接收到确认并通过平滑的往返时间计算出新的退避值时,就会降低拥塞窗口和慢启动阈值。根据ABRA New Reno与其他TCP变体(如New Reno和Reno)的比较研究进行的评估,使用了现实的参数,如TCP数据包接收,数据包丢弃,数据包重传,吞吐量和数据包传输率,这些参数是通过更改节点速度,节点和暂停时间。实施和模拟在QualNet 4.0仿真器中进行。

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