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AAMcon: an adaptively distributed SDN controller in datacenter networks

机译:AAMcon:数据中心网络中的自适应分布式SDN控制器

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When evaluating the performance of distributed software-defined network (SDN) controller architecture in data center networks, the required number of controllers for a given network topology and their location are major issues of interest. To address these issues, this study proposes the adaptively adjusting and mapping controllers (AAMcon) to design a stateful data plane. We use the complex network community theory to select a key switch to place the controller which is closer to switches it controls in a subnet. A physically distributed but logically centralized controller pool is built based on the network function virtualization (NFV). And then we propose a fast start/overload avoid algorithm to adaptively adjust the number of controllers according to the demand. We performed an analysis for AAMcon to find the optimal distance between the switch and controller. Finally, experiments show the following results. (1) For the number of controllers, AAMcon can greatly follow the demand; for the placement location of controller, controller can respond to the request of switch with the least distance to minimize the delay between the switch and it. (2) For failure tolerance, AAMcon shows good robustness. (3) AAMcon requires less delay to the network with more significant community structure. In fact, there is an inverse relationship between the community modularity and average distance between the switch and controller, i.e., the average delay decreases when the community modularity increases.(4) AAMcon can achieve the load balance between the controllers. (5) Compared to DCP-GK and k-critical, AAMcon shows good performance.
机译:在评估数据中心网络中的分布式软件定义网络(SDN)控制器体系结构的性能时,给定网络拓扑所需的控制器数量及其位置是主要的关注问题。为了解决这些问题,本研究提出了自适应调整和映射控制器(AAMcon)以设计有状态数据平面。我们使用复杂的网络社区理论选择一个关键交换机来将控制器放置在更接近子网中它所控制的交换机的位置。基于网络功能虚拟化(NFV)构建物理上分散但逻辑上集中的控制器池。然后我们提出了一种快速启动/过载避免算法,以根据需求自适应地调整控制器的数量。我们对AAMcon进行了分析,以找到开关和控制器之间的最佳距离。最后,实验表明以下结果。 (1)对于控制器的数量,AAMcon可以极大地满足需求;对于控制器的放置位置,控制器可以以最小的距离响应开关的请求,以最大程度地减少开关与其之间的延迟。 (2)对于容错能力,AAMcon具有良好的鲁棒性。 (3)AAMcon要求对网络的延迟更少,而社区结构更为重要。实际上,社区模块性与交换机和控制器之间的平均距离之间存在反比关系,即,随着社区模块性的增加,平均延迟会减小。(4)AAMcon可以实现控制器之间的负载平衡。 (5)与DCP-GK和k-critical相比,AAMcon具有良好的性能。

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