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Reducing Redundant Control Messaging for Fast Response in SDN

机译:减少冗余控制消息传递以实现SDN中的快速响应

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The control mechanism of SDN tends to be distributed when the network scale expands. As the number of controllers grows, how to efficiently respond to network events in a timely fashion becomes challenging. Specifically, distributed controllers should reach a consensus on network states before making a network update decision in legacy consensus algorithm, which causes unexpected latency. While eventual correctness algorithms relies on Gossip schemes for fast recovery from network failures, leading to highly redundant controller responses when handling one single network event. In this paper, we aim at developing efficient control algorithm that eliminates unnecessary controller processing, facilitating rapid response to network events. To this end, we design a joint controller selection and message forwarding scheme, which identifies a subset of controllers for control message dissemination. An optimization problem is formulated with the objective of minimizing the total control overhead, which is found to be reducible to the K-center problem. Simulation results show that our method reduces up to 61% of the control overhead compared with legacy benchmarks.
机译:随着网络规模的扩大,SDN的控制机制趋于分散。随着控制器数量的增加,如何及时有效地响应网络事件变得具有挑战性。具体来说,分布式控制器应在传统共识算法中做出网络更新决策之前就网络状态达成共识,这会导致意外的延迟。尽管最终的正确性算法依靠Gossip方案从网络故障中快速恢复,但在处理一个网络事件时会导致高度冗余的控制器响应。在本文中,我们旨在开发一种有效的控制算法,该算法可消除不必要的控制器处理,促进对网络事件的快速响应。为此,我们设计了一个联合的控制器选择和消息转发方案,该方案标识了用于控制消息分发的控制器子集。提出了一个优化问题,其目的是使总控制开销最小,这可以减少到K中心问题。仿真结果表明,与传统基准测试相比,我们的方法最多可减少61%的控制开销。

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