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Unresponsive Flow Control in Internet Using APS Algorithm

机译:使用APS算法的Internet无响应流控制

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摘要

In this paper, an architecture is proposed for bursty traffic control which consists of an adaptive packet scheduler and bursty traffic slicing algorithm. In Internet, unresponsive flows easily occupy the limited buffers, there by reducing the Quality of Service (QoS). In this paper, first the incoming traffic is checked and the unresponsive flows are detected and penalized using a dropping policy. By using the bursty traffic slicer algorithm, the load balancer reroutes the high priority aggressive flows into the least loaded best path. Based on a split vector, the bursty traffic slicing algorithm splits the aggressive flows over multiple parallel paths. Since the high rate aggressive traffic flows are splitted along multiple parallel paths, load balancing is obtained in the system in order to achieve fair bandwidth allocations. The proposed switching technique is performed along the edge and core routers. By our simulation results, our packet scheduler achieves better than the standard fair queuing techniques.
机译:本文提出了一种突发流量控制的体系结构,该体系结构由自适应分组调度器和突发流量分片算法组成。在Internet中,无响应的流很容易占用有限的缓冲区,从而降低了服务质量(QoS)。在本文中,首先检查传入的流量,并使用丢弃策略对无响应的流量进行检测和惩罚。通过使用突发流量切片器算法,负载均衡器会将高优先级主动流重新路由到负载最小的最佳路径。突发流量分片算法基于拆分向量,将主动流拆分为多个并行路径。由于高速率积极的业务流沿多个并行路径分配,因此在系统中获得了负载平衡,以实现公平的带宽分配。所提出的交换技术是沿着边缘和核心路由器执行的。根据我们的仿真结果,我们的数据包调度程序比标准公平排队技术具有更好的性能。

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