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Safeguards for the Internal Communication of IP-Based Transmission and Cross-Connect Systems

机译:基于IP的传输和交叉连接系统内部通信的保障

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Optical transmission and cross-connect systems form the backbone of today¿s telecommunication infrastructure. Offering transport capacities of up to 100 Gbit/s per port and several Terabits of switching capacity per network node, they are critical components interconnecting the aggregation points and routers of the Internet and are thus attractive targets for attackers. Compared to legacy designs, the use of standard technologies for system controllers and for the exchange of control, surveillance, and diagnostics data makes network nodes more susceptible to the 'common' threats and attacks of the Internet. In this paper, we briefly consider the threat model, resulting security requirements, and a security architecture for high-capacity telecommunication systems. We present several measures for safeguarding the network node¿s internal data communication for a variety of system configurations, in particular single-shelf and multi-shelf setups. After characterization of potential safeguards on the data-link, network, and application layer, we discuss the approach that best promises versatility, flexibility, and crypto-agility.
机译:光学传输和交叉连接系统构成了当今电信基础架构的骨干。它们可提供每个端口高达100 Gbit / s的传输能力,每个网络节点可提供数兆兆位的交换容量,是互连Internet的聚合点和路由器的关键组件,因此是攻击者的诱人目标。与传统设计相比,将标准技术用于系统控制器以及交换控制,监视和诊断数据,使网络节点更容易受到Internet的“常见”威胁和攻击。在本文中,我们简要考虑了威胁模型,由此产生的安全性要求以及大容量电信系统的安全性体系结构。我们提出了多种措施来保护网络节点内部数据通信的各种系统配置,特别是单层和多层设置。在描述了数据链路,网络和应用层上的潜在安全措施之后,我们讨论了最能保证多功能性,灵活性和加密敏捷性的方法。

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