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The performance of TCP congestion control algorithm over high-speed transmission links

机译:高速传输链路上TCP拥塞控制算法的性能

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In the Internet, many applications use TCP (Transmission Control Protocol) as the main transport protocol. TCP congestion control algorithm has proved to be inadequate as the speed of the transmission links increases and users demand higher throughput. The main feature of TCP congestion control algorithm is its additive increase/multiplicative decrease (AIMD) property. AIMD requires very low packet loss rates, which is not possible with the present optical transmission links, in order to achieve higher throughputs. The proposed solutions for this problem fail to protect bandwidth share of the low throughput users. We propose that low and high throughput user traffic is stored in separate queues and the two queues are served according to the weighted-round-robin (WRR) service discipline. The simulation results show that this improves the performance of TCP over high-speed links and preserves fairness to the low-throughput users.
机译:在Internet上,许多应用程序都使用TCP(传输控制协议)作为主要传输协议。随着传输链路速度的增加和用户要求更高的吞吐量,TCP拥塞控制算法已被证明是不够的。 TCP拥塞控制算法的主要特征是其加性增加/乘性减少(AIMD)属性。 AIMD要求非常低的分组丢失率,这对于当前的光传输链路是不可能的,以便实现更高的吞吐量。针对该问题的所提出的解决方案不能保护低吞吐量用户的带宽份额。我们建议将低吞吐量和高吞吐量的用户流量存储在单独的队列中,并根据加权轮循(WRR)服务准则为这两个队列提供服务。仿真结果表明,这提高了高速链路上TCP的性能,并保持了对低吞吐量用户的公平性。

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