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Resource management in an integrated optical network

机译:集成光网络中的资源管理

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We propose a novel integrated optical network switching architecture. The proposal offers an approach to signaling for the purpose of transport on an all-optical network of optical and nonoptical legacy network traffic. In order to provide effective end-to-end control and efficient transport services, new signaling and control techniques are required. Standard organizations such as Optical Interworking Forum (OIF) and Internet Engineering Task Force have developed interface methods between client and transport networks, as well as signaling processes for resource allocation. We propose a network controller, which implements interfaces for such integration in the intermediate future, as well as provides a feasible path for the long-term objective of all optical networking. Performance and capacity issues for these systems introduce new dimensions to the existing set of networking problems, since optical paths can now be set up in real-time. There are two main contributions in this paper: (1) functional composition of a network controller, which translates legacy signaling to optical connection signaling and path establishment and (2) determining when to issue an optical connection request based on the current network conditions such as link utilization, so that the integrated optical network can operate efficiently. Analytical approximations, as well as simulation results for call blocking performance are also presented.
机译:我们提出了一种新颖的集成光网络交换架构。该提议提供了一种用于在光和非光传统网络业务的全光网络上进行传输的信令方法。为了提供有效的端到端控制和有效的传输服务,需要新的信令和控制技术。诸如光学互通论坛(OIF)和Internet工程任务组之类的标准组织已经开发了客户端和传输网络之间的接口方法,以及用于资源分配的信令过程。我们提出了一种网络控制器,该控制器将在中间的将来实现用于此类集成的接口,并为所有光网络的长期目标提供可行的途径。这些系统的性能和容量问题为现有的网络问题带来了新的维度,因为现在可以实时设置光路。本文有两个主要贡献:(1)网络控制器的功能组成,它将传统信令转换为光连接信令和路径建立;(2)根据当前的网络状况(例如:链路利用率,使集成光网络可以高效运行。还介绍了呼叫阻塞性能的分析近似值和仿真结果。

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