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Distributed Algorithms for Stable and Secure Network Coordinates

机译:用于稳定和安全网络坐标的分布式算法

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Since its inception, the concept of network coordinates has been proposed to solve a wide variety of problems such as overlay optimization, network routing, network localization, and network modeling. However, two practical problems significantly limit the applications of network coordinates today. First, how can network coordinates be stabilized without losing accuracy so that they can be cached by applications? Second, how can network coordinates be secured such that legitimate nodes' coordinates are not impacted by misbehaving nodes? Although these problems have been discussed extensively, solving them in decentralized network coordinates systems remains an open problem. This paper presents new distributed algorithms to solve the coordinates stability and security problems. For the stability problem, we propose an error elimination model that can achieve stability without hurting accuracy. A novel algorithm based on this model is presented. For the security problem, we show that recently proposed statistical detection mechanisms cannot achieve an acceptable level of security against even simple attacks. We propose to address the security problem in two parts. First, we show how the computation of coordinates can be protected by a customized Byzantine fault detection algorithm. Second, we adopt a triangle inequality violation detection algorithm to protect delay measurements. These algorithms can be integrated together to provide stable and secure network coordinates.
机译:自成立以来,已经提出了网络坐标的概念来解决各种各样的问题,例如覆盖优化,网络路由,网络本地化和网络建模。然而,两次实际问题显着限制了网络坐标的应用。首先,如何稳定网络坐标而不会减少准确性,以便它们可以通过应用程序缓存?其次,如何保护网络坐标,使得合法节点的坐标不会受到行为不端的节点影响?虽然已经广泛讨论了这些问题,但在分散的网络坐标系统中解决它们仍然是一个公开问题。本文介绍了解决坐标稳定性和安全问题的新分布式算法。对于稳定性问题,我们提出了一个错误消除模型,可以实现稳定性而不伤害精度。提出了一种基于该模型的新型算法。对于安全问题,我们显示最近提出的统计检测机制无法实现甚至简单攻击的可接受的安全水平。我们建议在两部分解决安全问题。首先,我们展示了如何通过定制的拜占庭故障检测算法保护坐标的计算。其次,我们采用三角形不等式违规检测算法来保护延迟测量。这些算法可以集成在一起,以提供稳定和安全的网络坐标。

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