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Methods for improving resilience in communication networks and P2P overlays

机译:改善通信网络和P2P覆盖层弹性的方法

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摘要

Resilience to failures and deliberate attacks is becoming an essential requirement in most communication networks today. This also applies to P2P Overlays which on the one hand are created on top of communication infrastructures, and therefore are equally affected by failures of the underlying infrastructure, but which on the other hand introduce new possibilities like the creation of arbitrary links within the overlay.In this article, we present a survey of strategies to improve resilience in communication networks as well as in P2P overlay networks. Furthermore, our intention is to point out differences and similarities in the resilience-enhancing measures for both types of networks.By revising some basic concepts from graph theory, we show that many concepts for communication networks are based on well-known graph-theoretical problems. Especially, some methods for the construction of protection paths in advance of a failure are based on very hard problems, indeed many of them are in NP and can only be solved heuristically or on certain topologies.P2P overlay networks evidently benefit from resilience-enhancing strategies in the underlying communication infrastructure, but beyond that, their specific properties pose the need for more sophisticated mechanisms. The dynamic nature of peers requires to take some precautions, like estimating the reliability of peers, redundantly storing information, and provisioning a reliable routing.
机译:如今,在大多数通信网络中,对故障和故意攻击的恢复能力已成为必不可少的要求。这也适用于P2P覆盖,P2P覆盖一方面是在通信基础结构之上创建的,因此同样受到基础基础结构故障的影响,但另一方面引入了新的可能性,例如在覆盖内创建任意链接。在本文中,我们对提高通信网络以及P2P覆盖网络的弹性的策略进行了概述。此外,我们的目的是指出两种网络的弹性增强措施之间的差异和相似之处。通过对图论的一些基本概念进行修改,我们发现通信网络的许多概念都基于众所周知的图论问题。尤其是,一些在故障发生之前构建保护路径的方法是基于非常困难的问题,实际上许多问题都在NP中,只能通过启发式或某些拓扑来解决.P2P覆盖网络显然受益于弹性增强策略在基础通信基础架构中,但除此之外,它们的特定属性提出了对更复杂机制的需求。对等方的动态性质需要采取一些预防措施,例如估计对等方的可靠性,冗余存储信息以及提供可靠的路由。

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