下一代网络上下一代业务的测试平台和研究网络

B. Ionescu, Marcel Ionescu, S. Veres, D. Ionescu, F. Cuervo, Maike Luiken-Miller
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引用次数: 25

摘要

当今数据通信网络的复杂性需要完整、现实和复杂的测试场地来验证和验证其功能。网络测试场地仅限于实验室和与现实生活场景隔离的环境。在生产和商业网络中进行测试通常是被禁止的,因为它们对服务的可用性存在高度的风险因素。此外,当今大多数通信网络测试平台缺乏适当表示真实网络环境所需的规模和灵活性。在部署实际网络之前,需要有一个可扩展和足够灵活的网络测试环境,其中包括:网络设计、供应商互操作性、耐久性、多协议层互连性、供应商的特定标准实现和网络设计可行性等问题,以满足要求。本文描述了一种测试流量和生产流量并存的下一代网络的设计与实现。NCIT*net 2是一种通过以太网、SONET、MPLS和DWDM等技术支持端到端服务的光传输网络。本文还从业务的角度讨论了与设备和网络功能相关的关键技术问题。这包括物理层和网络操作,以及体系结构和控制。测试平台网络用于在上述技术上部署网络服务,以验证服务的实现、提供和服务质量需求的保证。该网络还允许在各种互连中测试和评估来自不同供应商的系统、子系统和组件。作为一个例子,本文进一步描述了为分析下一代网络中基于MPLS的业务而设计和实现的测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A testbed and research network for next generation services over next generation networks
The complexity of today's data communication networks necessitates complete, realistic and sophisticated testing grounds for verifying and validating their functionality. Network testing grounds are restricted to laboratories and environments isolated from real life scenarios. Testing in production and commercial networks is typically forbidden since they present a high degree of risk factors for service availability. Additionally, the majority of today's communication network testbeds lack the scale and flexibility needed to properly represent a true networking environment. Before deploying live networks there is a need to have a network testing environment scalable and flexible enough where issues such as: network design, vendor interoperability, endurance, multiprotocol layer interconnectivity, a vendor's specific implementations of standards and network design viability have been verified to meet the requirements. In this paper a design and implementation of a next generation network is described, where both testing and production traffic coexist. NCIT*net 2 is an optical transmission network supporting end-to-end services over technologies such as Ethernet, SONET, MPLS and DWDM. The paper also discusses key technology aspects related to the functionality of equipment and network from a service point of view. These include the physical layer and network operation, as well as architecture and control. The testbed network is used for the deployment of networking services over the above technologies in order to verify service implementation, provisioning and assurance of quality of service requirements. This network also allows testing and evaluating systems, subsystems and components from different vendors in various interconnections. The paper goes further to describe, as an example, the tests designed and implemented for the analysis of MPLS based services over next generation networks.
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