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Channel reservation protocol for over-subscribed channels and destinations

机译:超订频道和目的地的频道预留协议

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Channels in system-wide networks tend to be over-subscribed due to the cost of bandwidth and increasing traffic demands. To make matters worse, workloads can overstress specific destinations, creating hotspots. Lossless networks offer attractive advantages compared to lossy networks but suffer from tree saturation. This led to the development of explicit congestion notification (ECN). However, ECN is very sensitive to its configuration parameters and acts only after congestion forms. We propose channel reservation protocol (CRP) to enable sources to reserve bandwidth in multiple resources in advance of packet transmission and with a single request, but without idling resources like circuit switching. CRP prevents congestion from ever occurring and thus reacts instantly to traffic changes, whereas ECN requires 300,000 cycles to stabilize in our experiments. Furthermore, ECN may not prevent congestion formed by short-lived flows generated by a large combination of source-destination pairs.
机译:由于带宽成本和流量需求的增加,系统范围网络中的信道往往被超额订购。更糟糕的是,工作负载可能会使特定的目的地承受压力,从而形成热点。与有损网络相比,无损网络具有吸引人的优势,但会遭受树饱和的困扰。这导致了显式拥塞通知(ECN)的发展。但是,ECN对它的配置参数非常敏感,并且仅在拥塞形成后才起作用。我们提出了信道保留协议(CRP),以使源能够在数据包传输之前并通过单个请求在多种资源中保留带宽,而又不会像电路交换那样闲置资源。 CRP可以防止拥塞的发生,因此可以对流量变化立即做出反应,而在我们的实验中,ECN需要300,000个周期才能稳定下来。此外,ECN可能无法阻止由源-目标对的大量组合所产生的短寿命流形成的拥塞。

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