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Phase Plane Analysis of Quantized Congestion Notification for Data Center Ethernet

机译:数据中心以太网量化拥塞通知的相平面分析

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Currently, Ethernet is being enhanced to become the unified switch fabric in data centers. With the unified switch fabric, the cost on redundant devices is reduced, while the design and management of data center networks are simplified. Congestion management is one of the indispensable enhancements on Ethernet, and Quantized Congestion Notification (QCN) has just been ratified as the formal standard. Though QCN has been investigated for several years, there exist few in-depth theoretical analyses on QCN. The most possible reason is that QCN is heuristically designed and involves the property of variable structure. The classic linear analysis method is incapable of handling the segmented nonlinearity of the variable structure system. In this paper, we use the phase plane method, which is suitable for systems of segmented nonlinearity, to analyze the QCN system. The overall dynamic behaviors of the QCN system are presented, and the sufficient conditions for the stable QCN system are deduced. These sufficient conditions serve as guidelines toward proper parameters setting. Moreover, we find that the stability of QCN is mainly promised by the sliding mode motion, which is the underlying reason for QCN's stable queue shown in numerous simulations and experiments. Experiments on the NetFPGA platform verify that the analytical results can explain the complex behaviors of QCN.
机译:当前,以太网正在增强,成为数据中心的统一交换结构。使用统一的交换结构,可以减少冗余设备的成本,同时简化数据中心网络的设计和管理。拥塞管理是以太网上必不可少的增强功能之一,而量化拥塞通知(QCN)刚刚被批准为正式标准。尽管对QCN进行了多年研究,但对QCN的深入理论分析却很少。最可能的原因是QCN是启发式设计的,并且涉及可变结构的属性。经典的线性分析方法无法处理可变结构系统的分段非线性。在本文中,我们使用适用于分段非线性系统的相平面方法来分析QCN系统。给出了QCN系统的整体动力学行为,并推导了稳定QCN系统的充分条件。这些足够的条件可作为正确设置参数的准则。此外,我们发现QCN的稳定性主要由滑模运动保证,这是QCN的稳定队列在众多模拟和实验中均显示出来的根本原因。在NetFPGA平台上进行的实验证明,分析结果可以解释QCN的复杂行为。

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