Software/hardware defined network (SHINE): A novel adaptive optical network framework for future internet

Yixuan Qin, Yan Yan, G. Zervas, B. Rofoee, N. A. Gonzalez, D. Simeonidou
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引用次数: 1

Abstract

A novel Software/Hardware defIned NEtwork (SHINE) framework for future optical network is proposed in this paper. An FPGA based SHINE adaptive network element (SANE) carrying time shared optical network (TSON) service and 10G Ethernet service is implemented. A cross-platform C++/Qt based SHINE IDE incorporating fine/coarse granular instruction set is developed to simply compose node/network manually or automatically. Five types of SHINE working flows, i.e. node on demand, network on demand, node self-adaptation, node generation, and network generation, are depicted, then demonstrated and selectively evaluated. Particularly, a hitless switch-over between sub-wavelength service (TSON) and low latency fat pipe service (10G Ethernet) (network on demand), and a receiver automatically detects transmitter's change (i.e. switch-over from TSON to Ethernet), then adjusts itself (node self-adaption), are highlighted.
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软件/硬件定义网络(SHINE):面向未来互联网的一种新型自适应光网络框架
提出了一种面向未来光网络的新型软件/硬件定义网络(SHINE)框架。实现了一种基于FPGA的SHINE自适应网元(SANE)承载时间共享光网络(TSON)业务和10G以太网业务。开发了一个基于c++ /Qt的跨平台SHINE IDE,结合细/粗粒度指令集,可以手动或自动简单地组合节点/网络。本文描述了五种SHINE工作流,即节点随需应变、网络随需应变、节点自适应、节点生成和网络生成,然后进行了演示和选择性评估。特别强调了亚波长服务(TSON)和低延迟管道服务(10G以太网)(网络按需)之间的无碰撞切换,以及接收器自动检测发送器的变化(即从TSON切换到以太网),然后进行自我调整(节点自适应)。
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Analytical model for anycast service provisioning in data center interconnections Routing in dynamic future flexi-grid optical networks Fair scheduling of dynamically provisioned WDM connections with differentiated signal quality Software/hardware defined network (SHINE): A novel adaptive optical network framework for future internet The role of network topology on the energy efficiency of IP-over-WDM architectures
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