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Towards End-to-End Connectivity for Overlays Across Heterogeneous Networks

机译:朝向异构网络覆盖的端到端连接

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The incremental adoption of IPv6, middle boxes (e.g., NATs, Firewalls) as well as completely new network types and protocols paint a picture of a future Internet that consists of extremely heterogeneous edge networks (e.g. IPv4, IPv6, industrial Ethernet, sensor networks) that are not supposed or able to communicate directly. This increasing heterogeneity imposes severe challenges for overlay networks, which are considered as a potential migration strategy towards the future Internet since they can add new functionality and services in a distributed and self-organizing manner. Unfortunately, overlays are based on end-to-end connectivity and, thus, their deployment is hindered by network heterogeneity. In this paper, we take steps towards a solution to enable overlay connections in such heterogeneous networks, building upon a model of heterogeneous networks that comprises several connectivity domains with direct connectivity, interconnected by relays. As major contribution, we present a distributed protocol that detects the boundaries of connectivity domains as well as relays using a gossiping approach. Furthermore, the protocol manages unique identifiers of connectivity domains and efficiently handles domain splitting and merging due to underlay changes. Simulation studies indicate that the algorithm can handle splitting and merging of connectivity domains in reasonable time and is scalable with respect to control overhead.
机译:IPv6,中箱(例如,NAT,防火墙)以及完全新的网络类型和协议的增量采用绘制了由极其异构的边缘网络(例如IPv4,IPv6,工业以太网,传感器网络)组成的未来互联网的图片这不应该直接沟通或能够沟通。这种增加的异构性对覆盖网络施加了严重的挑战,这被认为是对未来互联网的潜在迁移策略,因为它们可以以分布式和自组织方式添加新的功能和服务。不幸的是,叠加基于端到端的连接,因此,通过网络异质性阻碍了它们的部署。在本文中,我们采取措施朝向这种异构网络中的覆盖连接来实现解决方案,在异构网络的模型上构建,其包括具有直接连接的多个连接域,由继电器互连。作为主要贡献,我们介绍了一种分布式协议,可检测连接域的边界以及使用闲聊方法的继电器。此外,协议管理连接域的唯一标识符,并有效地处理域拆分和由于底层变化而合并。仿真研究表明,该算法可以在合理的时间内处理连接域的分割和合并,并且相对于控制开销可扩展。

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