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Hybrid Control and Reservation Architecture for Multidomain Burst Switched Network

机译:多域突发交换网络的混合控制和预留架构

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摘要

Optical burst switching realizes all-optical communication by dividing data transmission system into control plane and data plane. In order to implement control plane two controlling mechanisms such as distributed and centralized control and reservation models have been presented in literature. Both of the architectures have pros and cons associated such as distributed model lacks efficient resource utilization while centralized model is nonscalable. In order to overcome these, a new hybrid control and reservation mechanism has been presented by the authors. The proposed model is based on clustering technique where each cluster consists of cluster head and member nodes. Cluster head performs major functionalities in the network such as path establishment, routing and resource management, fault management, etc., while member nodes perform data switching functionality. In order to implement the architecture, a signaling protocol is also presented. In this paper, we discuss different scenarios required for the implementation of the proposed hybrid model. These scenarios detail the message dialogs exchange between different network nodes and between different software modules during lightpath establishment, data transmission, and connection teardown operations. The goal of efficient resource utilization is achieved through centralized control of network resources while scalability is achieved through dividing the network into multiple domains. Finally, the simulation section shows the mechanism of designing the multidomain architecture, network bandwidth utilization comparison and reduction in end-to-end data transmission latency.
机译:光突发交换通过将数据传输系统分为控制平面和数据平面来实现全光通信。为了实现控制平面,文献中提出了两种控制机制,例如分布式和集中式控制及预留模型。两种架构都有优缺点,例如分布式模型缺乏有效的资源利用,而集中式模型则不可扩展。为了克服这些问题,作者提出了一种新的混合控制和保留机制。提出的模型基于聚类技术,其中每个聚类由聚类头和成员节点组成。群集头执行网络中的主要功能,例如路径建立,路由和资源管理,故障管理等,而成员节点执行数据交换功能。为了实现该架构,还提出了信令协议。在本文中,我们讨论了实现建议的混合模型所需的不同方案。这些方案详细说明了在光路径建立,数据传输和连接拆除操作期间,不同网络节点之间以及不同软件模块之间的消息对话框交换。通过集中控制网络资源来实现有效资源利用的目标,而通过将网络划分为多个域来实现可伸缩性。最后,仿真部分展示了设计多域架构的机制,网络带宽利用率比较以及端到端数据传输等待时间的减少。

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