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MODELING AND PERFORMANCE ANALYSIS OF DYNAMIC RANDOM EARLY DETECTION (DRED) GATEWAY FOR CONGESTION AVOIDANCE

机译:动态随机早期检测(DRED)网关的拥塞避免建模与性能分析

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One of the most prominent congestion avoidance schemes in the Internet architecture is the Random Early Detection (RED) algorithm. Several modifications and enhancements have been made to the original RED so as to make it more responsive to congestion avoidance at the gateways. In this paper, we introduced the Dynamic Random Early Detection (DRED) model which uses a newly introduced parameter i.e. warning line. A robust and efficacious technique to measure the burstiness of incoming traffic has been developed and tested. This involves the estimation of the average queue size, avg, which is dynamically adjusted hence the name of our scheme. The empirical results obtained from the simulations show that our DRED scheme responds early enough to the increased number of packets at the gateway. Also, the maximum drop probability of packets show improved performance over the original RED. It was concluded that our scheme demonstrated superiority by avoiding global synchronization and their is great reduction in the fluctuations of the actual queue size. Also, its early response avoids buffer overflow at the gateways when the queue is near full.
机译:互联网体系结构中最著名的拥塞避免方案之一是随机早期检测(RED)算法。已对原始RED进行了一些修改和增强,以使其对网关处的拥塞避免更加敏感。在本文中,我们介绍了动态随机早期检测(DRED)模型,该模型使用了新引入的参数即警告线。已经开发并测试了一种强大而有效的技术来测量传入流量的突发性。这涉及对平均队列大小avg的估计,它是动态调整的,因此是我们的方案的名称。从模拟获得的经验结果表明,我们的DRED方案对网关处增加的数据包数量做出了足够早的响应。而且,数据包的最大丢弃概率显示出比原始RED更高的性能。结论是,我们的方案通过避免全局同步而显示出优越性,并且极大地减少了实际队列大小的波动。同样,它的早期响应避免了队列接近满时网关上的缓冲区溢出。

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