使用omnet++模拟大型Fabric存储区域网络的光纤通道2级光纤通道交换机建模:初步结果

T. Brothers, S. Muknahallipatna, J. Hamann
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引用次数: 28

摘要

使用光纤通道的中型存储区域网络已经成为企业数据中心数据存储的常用实现。对大型存储池不断增长的需求为实现大型分布式存储区域网络(也称为大型结构)的想法铺平了道路。大型织物似乎会遇到织物结垢和织物稳定性问题。这些可伸缩性和稳定性问题与fabric服务的各种fabric服务器的性能有关,例如fabric控制器、fabric登录、目录等,它们是光纤通道协议的光纤通道2级的一部分。为了确定大型织物的缩放程度和稳定性问题,需要一个适当的工具。该工具可以是分析模型、硬件模拟器或离散事件软件模拟器。与分析模型和硬件模拟器相比,离散事件软件模拟器提供了许多优点。本文利用omnet++离散事件模拟器对光纤交换机进行建模,并对大型光纤交换机进行仿真。作为第一步,只对光纤通道交换机的光纤通道2级进行建模,因为它是包含处理fabric构建和管理的各种fabric服务的层。本文讨论了网络结构的构建和管理过程,以及如何在仿真器中实现。此外,还将仿真结果与试验台流量进行了初步分析,显示了仿真器对实际大型织物的准确性和代表性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fibre Channel Switch Modeling at Fibre Channel-2 Level for Large Fabric Storage Area Network Simulations using OMNeT++: Preliminary Results
Medium sized storage area networks using fibre channel have been a common implementation for data storage in enterprise data centers. The ever increasing demand for large storage pools has paved to the idea of implementing large distributed storage area networks also known as large fabrics. The large fabrics seem to experience fabric scaling and fabric stability issues. These scaling and stability issues are related to the performance of various fabric servers of fabric services, such as fabric controller, fabric login, directory, etc., which are part of the fibre channel-2 level of the fibre channel protocol. To determine the extent of scaling and stability issues of a large fabric an adequate tool is required. The tool could be an analytical model, a hardware simulator, or a discrete event software simulator. The discrete event software simulator provides a number of benefits over the analytical model and hardware simulator. In this paper, the modeling of a fibre channel switch using the OMNeT++ discrete event simulator and simulation of large fabric are presented. As a first step, only the fibre channel-2 level of the fibre channel switch is modeled since it is the layer containing various fabric services dealing with fabric building and managing. In this paper, the process of building a fabric and managing and how it is implemented in the simulator are discussed. Also, a preliminary analysis of the results in comparison to the test bed traffic is presented showing the accuracy and representation of an actual large fabric by the simulator.
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