Enhanced congestion control method for servers and network lines with DPI technology

S. Kato, Kenichiro Hida, S. Kuribayashi
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引用次数: 1

Abstract

The use of Deep Packet Inspection (DPI) equipment in a network could simplify the conventional work load for system management and accelerate the control action. The authors proposed a congestion control method that uses a DPI device installed in a network to estimate overload conditions of servers or network links and, upon detecting an overload condition, resolves congestion by moving some virtual machines to other servers or rerouting some communication flows. However, since the previous paper was focused on confirming the effectiveness of using DPI technology, it assumed some restrictive conditions. This paper proposes to enhance the existing DPI-based congestion control, in order to select a solution optimal for the current conditions for cases where there are multiple candidates available for: virtual machines to be moved, physical servers to which virtual machines are to be moved, communication flows to be diverted, and routes to which communication flows are to be diverted. The paper also considers server congestion for cases where computing power congestion and bandwidth congestion occur simultaneously in a server, and link congestion for cases where the maximum allowable network delay of each communication flow is taken into consideration. Finally, the feasibility of the proposed methods is demonstrated by an evaluation system with a real DPI equipment.
使用DPI技术增强服务器和网络线路的拥塞控制方法
在网络中使用深度包检测(DPI)设备可以简化系统管理的常规工作量,加快控制动作。作者提出了一种拥塞控制方法,该方法使用安装在网络中的DPI设备来估计服务器或网络链路的过载情况,当检测到过载情况时,通过将一些虚拟机移动到其他服务器或重新路由一些通信流来解决拥塞问题。但是,由于前一篇论文的重点是确认使用DPI技术的有效性,因此假设了一些限制性条件。本文提出增强现有的基于dpi的拥塞控制,以便在存在多个候选的情况下选择最优的解决方案:要移动的虚拟机、要移动的虚拟机的物理服务器、要转移的通信流和要转移的通信流的路由。在服务器上同时发生计算能力拥塞和带宽拥塞的情况下,本文还考虑了服务器拥塞;在考虑每个通信流的最大允许网络延迟的情况下,本文还考虑了链路拥塞。最后,通过实际DPI设备的评估系统验证了所提方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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