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Network border patrol: preventing congestion collapse and promoting fairness in the Internet

机译:网络边界巡逻:防止拥塞崩溃并促进互联网的公平性

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The Internet's excellent scalability and robustness result in part from the end-to-end nature of Internet congestion control. End-to-end congestion control algorithms alone, however, are unable to prevent the congestion collapse and unfairness created by applications that are unresponsive to network congestion. To address these maladies, we propose and investigate a novel congestion-avoidance mechanism called network border patrol (NBP). NBP entails the exchange of feedback between routers at the borders of a network in order to detect and restrict unresponsive traffic flows before they enter the network, thereby preventing congestion within the network. Moreover, NBP is complemented with the proposed enhanced core-stateless fair queueing (ECSFQ) mechanism, which provides fair bandwidth allocations to competing flows. Both NBP and ECSFQ are compliant with the Internet philosophy of pushing complexity toward the edges of the network whenever possible. Simulation results show that NBP effectively eliminates congestion collapse and that, when combined with ECSFQ, approximately max-min fair bandwidth allocations can be achieved for competing flows.
机译:Internet出色的可伸缩性和鲁棒性部分是由于Internet拥塞控制的端到端性质造成的。但是,仅端到端拥塞控制算法无法防止拥塞崩溃和对网络拥塞无响应的应用程序所造成的不公平。为了解决这些疾病,我们提出并研究了一种称为网络边界巡逻(NBP)的新型拥塞避免机制。 NBP要求在网络边界的路由器之间交换反馈,以便在无响应的通信流进入网络之前对其进行检测和限制,从而防止网络内的拥塞。此外,NBP还与提议的增强型无状态核心公平队列(ECSFQ)机制相辅相成,该机制为竞争流提供了公平的带宽分配。 NBP和ECSFQ都符合Internet的哲学,即尽可能将复杂性推向网络边缘。仿真结果表明,NBP有效地消除了拥塞崩溃,并且当与ECSFQ结合使用时,可以为竞争流实现大约最大-最小公平带宽分配。

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