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Control traffic balancing in software defined networks

机译:控制软件定义网络中的流量平衡

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To promise on-line and adaptive traffic engineering in software defined networks (SDNs), the control messages, e.g., the first packet of every new flow and network traffic statistics, should be forwarded from software defined switches to the controller(s) in a fast and robust manner. As many signaling events and control plane operations are required in SDNs, they could easily generate a significant amount of control traffic that must be addressed together with the data traffic. However, the usage of in-band control channel imposes a great challenge into timely and reliable transmissions of control traffic, while out-band control is usually cost-prohibitive. To counter this, in this paper, the control traffic balancing problem is first formulated as a nonlinear optimization framework with an objective to find the optimal control traffic forwarding paths for each switch in such a way the average control traffic delay in the whole network is minimized. This problem is extremely critical in SDNs because the timely delivery of control traffic initiated by Openflow switches directly impacts the effectiveness of the routing strategies. Specifically, the fundamental mathematical structures of the formulated nonlinear problem and solution set are provided and accordingly, an efficient algorithm, called polynomial-time approximation algorithm (PTAA), is proposed to yield the fast convergence to a near optimal solution by employing the alternating direction method of multipliers (ADMM). Furthermore, the optimal controller placement problem in in-band mode is examined, which aims to find the optimal switch location where the controller can be collocated by minimizing the control message delay. While it is not widely researched except quantitative or heuristic results, a simple and efficient algorithm is proposed to guarantee the optimum placement with regards of traffic statistics. Simulation results confirm that the proposed PTAA achieves considerable delay reduction, greatly facilitating controller's traffic engineering in large-scale SDNs. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了保证软件定义网络(SDN)中的在线和自适应流量工程,应将控制消息(例如,每个新流量和网络流量统计信息的第一个数据包)从软件定义的交换机转发到网络中的控制器。快速而强大的方式。由于SDN需要许多信令事件和控制平面操作,因此它们很容易生成大量必须与数据流量一起处理的控制流量。然而,带内控制信道的使用给控制业务的及时和可靠的传输带来了很大的挑战,而带外控制通常是成本高昂的。为了解决这个问题,本文首先将控制流量平衡问题表述为非线性优化框架,其目的是为每个交换机找到最佳控制流量转发路径,以使整个网络中的平均控制流量延迟最小。这个问题在SDN中极为重要,因为由Openflow交换机启动的控制流量的及时交付会直接影响路由策略的有效性。具体来说,提供了所公式化的非线性问题和解集的基本数学结构,因此,提出了一种有效的算法,称为多项式时间逼近算法(PTAA),可以通过采用交替方向将其快速收敛到近似最优解。乘数法(ADMM)。此外,研究了带内模式下的最佳控制器放置问题,该问题旨在通过最小化控制消息延迟来找到可以并置控制器的最佳开关位置。尽管除了定量或启发式结果外,尚未广泛研究,但提出了一种简单有效的算法来保证交通统计方面的最佳位置。仿真结果证实,所提出的PTAA可以显着减少延迟,从而极大地促进了大型SDN中控制器的流量工程。 (C)2015 Elsevier B.V.保留所有权利。

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