针对路由器主动队列调度算法WFQ(Weighted Fair Queuing)在链路拥塞时无法保证低速率实时业务的QoS(Quality of Service)要求以及实时性业务突发时会导致延迟抖动加大的问题,提出了一种队长和权值调整的算法LW-WFQ。该算法增加了自适应...针对路由器主动队列调度算法WFQ(Weighted Fair Queuing)在链路拥塞时无法保证低速率实时业务的QoS(Quality of Service)要求以及实时性业务突发时会导致延迟抖动加大的问题,提出了一种队长和权值调整的算法LW-WFQ。该算法增加了自适应队列管理器和应对突发机制,减少了分组的排队等待时间。最后以NS2为平台,对WFQ及LW-WFQ算法的性能进行大量的仿真对比分析,调节并确定合适的参数,实验结果证明LW-WFQ算法在延迟、抖动等方面的性能有一定程度的提高。展开更多
IP Quality of Service (QoS) guarantee is realized by managing and avoiding congestion in network. In thispaper ,the primary queue algorithms are compared in managing congestion. On the basis of these theories, a newLL...IP Quality of Service (QoS) guarantee is realized by managing and avoiding congestion in network. In thispaper ,the primary queue algorithms are compared in managing congestion. On the basis of these theories, a newLLQ+CBWFQ algorithm is achieved, and the minimum bandwidth is assigned according to priority or request.展开更多
文摘针对路由器主动队列调度算法WFQ(Weighted Fair Queuing)在链路拥塞时无法保证低速率实时业务的QoS(Quality of Service)要求以及实时性业务突发时会导致延迟抖动加大的问题,提出了一种队长和权值调整的算法LW-WFQ。该算法增加了自适应队列管理器和应对突发机制,减少了分组的排队等待时间。最后以NS2为平台,对WFQ及LW-WFQ算法的性能进行大量的仿真对比分析,调节并确定合适的参数,实验结果证明LW-WFQ算法在延迟、抖动等方面的性能有一定程度的提高。
文摘IP Quality of Service (QoS) guarantee is realized by managing and avoiding congestion in network. In thispaper ,the primary queue algorithms are compared in managing congestion. On the basis of these theories, a newLLQ+CBWFQ algorithm is achieved, and the minimum bandwidth is assigned according to priority or request.