Modeling and simulation of optical networks using a virtual GMPLS-based optical switching router

Ralph Martinez, Kevin M. McNeill, Wenji Wu, P. Y. Choo
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引用次数: 1

Abstract

This paper discusses the design and implementation of a simulation-based virtual optical switching router (VOSR). We built our VOSR model using the OPNET/spl trade/ process models that represent the GMPLS control plane functions. The GMPLS virtual model interfaces with a forwarding plane virtual model that represents the optical switching router in an optical core network. The VOSR model gives an integrated and realistic simulation of wavelength routing, wavelength assignment, wavelength switching, dynamic label switching path (LSP) setup and tear-down, distributed routing table calculation, and blocking mechanisms light paths. The VOSR models and simulations provide a framework for the analysis and evaluation of various wavelength routing and assignment algorithms. The basic VOSR model can be used to evaluate performance of optical network core models with hundreds of optical switching nodes. The forwarding plane model can be varied and includes different types of switching fabrics. The VOSR model can be set to represent internal optical switching routers, similar to label switched router (LSRs) in an electrical network world, except they switch wavelengths not labels. The VOSR model also represents label edge routers (LERs) that drop or add wavelengths to and from electrical edge networks, such as a GigE, ATM, or SONET. Our simulation results include the blocking rate, OSPF-TE bandwidth analysis, CPU utilization, which is highly comparable to a real GMPLS optical network. As the requirements for terahertz reach back emerges in DoD systems, the VOSR models and simulation environment can be applied to analysis and evaluation of optical core networks, such as carrier networks, gigabit expansion project, the global information grid (GIG), exploratory C5 grid (EC5G) core networks, and emerging enterprise and Internet backbones. In addition, research is being conducted that applies these concepts to interconnected islands of transparency with optical and wireless domains [R. Martinez et al., June 23-26 2003]. The U. S. Army Information Systems Engineering Command, Technology Integration Center (TIC) at Fort Huachuca, AZ, sponsored this research.
基于虚拟gmpls光交换路由器的光网络建模与仿真
本文讨论了基于仿真的虚拟光交换路由器(VOSR)的设计与实现。我们使用代表GMPLS控制平面功能的OPNET/spl交易/流程模型构建了VOSR模型。GMPLS虚拟模型与转发平面虚拟模型接口,转发平面虚拟模型代表光核心网中的光交换路由器。VOSR模型对波长路由、波长分配、波长交换、动态标签交换路径(LSP)的建立和拆除、分布式路由表计算以及光路阻塞机制进行了完整而逼真的仿真。VOSR模型和仿真为分析和评估各种波长路由和分配算法提供了一个框架。该基本VOSR模型可用于具有数百个光交换节点的光网络核心模型的性能评估。转发平面模型可以多种多样,包括不同类型的交换fabric。VOSR模型可以设置为表示内部光交换路由器,类似于电子网络世界中的标签交换路由器(lsr),除了它们交换波长而不是标签。VOSR模型还表示标签边缘路由器(ler),它们在GigE、ATM或SONET等电边缘网络中减少或增加波长。我们的仿真结果包括阻塞率、OSPF-TE带宽分析、CPU利用率,与真实的GMPLS光网络具有很高的可比性。随着国防部系统对太赫兹回达需求的出现,VOSR模型和仿真环境可应用于光核心网的分析和评估,如载波网、千兆扩展工程、全球信息网格(GIG)、探索性C5网格(EC5G)核心网以及新兴企业和互联网骨干网。此外,正在进行的研究将这些概念应用于具有光学和无线域的相互连接的透明岛屿[R]。马丁内斯等人,June 23-26 2003]。位于亚利桑那州华楚卡堡的美国陆军信息系统工程司令部技术集成中心(TIC)赞助了这项研究。
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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