首页> 外文期刊>Computer standards & interfaces >An extended software defined optical networks slicing architecture
【24h】

An extended software defined optical networks slicing architecture

机译:扩展软件定义光网络切片架构

获取原文
获取原文并翻译 | 示例

摘要

Optical Networks are composed of multiple devices, from multiple vendors. Normally these networks have a huge transmission capacity. The Slicing of Optical Networks is not a new concept, but continues to be very important, since the capacity of Optical Networks keeps evolving. Most of the time the slicing is manually configured by system operators. Besides being laborious and error-prone, such configuration limits the clients' ability to customize and configure the network according to their own needs. One way out of this problem is to separate from these devices the control of and the data from the planes. The Software Defined Networks (SDNs) propose the separation of planes while also offering network operators the flexibility to create and manage applications, enabling them to reduce the network costs by globally optimizing the network's resources, reducing the staff needed to configure it, and contributing for less violation of the service level agreement (SLA). SDN can also help operators to maximize their profit by generating more revenue through mechanisms that increase availability and failure resiliency, maximize throughput, allow for fast dynamic reprovisioning and enable network virtualization. The goal of this paper is to propose a Software Defined Optical Networks Slicing Architecture (SONA) extension (eSONA). that permits defining components such as topology manager, inventory manager, slice manager and path provisioner, and thus enable Optical Networks slicing. It has proved to be capable of managing different slices and provisioning a path on a given slice over the same physical optical network. It has showed an excellent performance, taking little time to provision paths, even with a large number of nodes, which are crucial for optical environments.
机译:光网络由来自多个供应商的多个设备组成。通常这些网络具有巨大的传输能力。光学网络的切片不是一个新的概念,但继续非常重要,因为光网络的容量不断发展。大部分时间都是由系统运算符手动配置的切片。除了慢性和容易出错的情况下,这种配置限制了客户的定制和配置网络的能力,根据自己的需求。出于此问题的一种方法是与这些设备分离,控制来自平面的数据和数据。软件定义的网络(SDNS)提出了平面的分离,同时还提供网络运营商创建和管理应用程序的灵活性,使它们能够通过全局优化网络的资源来降低网络成本,从而减少配置它所需的工作人员以及为其提供贡献所需的工作人员违反服务级别协议(SLA)。 SDN还可以帮助运营商通过通过提高可用性和故障弹性的机制产生更多收入来最大限度地提高其利润,最大限度地提高吞吐量,允许快速动态的重新配置和实现网络虚拟化。本文的目标是提出一种软件定义的光网络切片架构(SONA)扩展(ESONA)。这允许定义拓扑管理器,库存管理器,切片管理器和路径配置文件等组件,从而使光学网络切片。事实证明,它能够在相同的物理光网络上管理不同的切片并在给定切片上提供路径。它表现出优异的性能,即使具有大量节点,也表现出很少的时间来提供路径,这对于光学环境至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号