DCS: A Distributed Coordinate System for Network Positioning

Negar Hariri, J. Habibi, S. Shirmohammadi, B. Hariri
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Abstract

Predicting latency between nodes on the internet can have a significant impact on the performance of many services that use latency distances among nodes as a decision making input. Coordinate-based approaches are among the family of latency prediction techniques where latency between each pair of nodes is modeled as the virtual distance among those nodes over a virtual system. This article proposes the Decentralized Coordinate System (DCS) as a fully distributed system that does not rely on any infrastructure support from the underlying network. DCS uses a two-phase algorithm: first, each host is assigned rough coordinates, then, the rough estimation is refined in a way that it gradually converges to the accurate relative position of nodes. Simulation results demonstrate that the accuracy of DCS is competitive with existing network coordinate systems and that it can be considered as a good alternative for some applications.
DCS:用于网络定位的分布式坐标系
预测互联网上节点之间的延迟会对许多使用节点之间的延迟距离作为决策输入的服务的性能产生重大影响。基于坐标的方法是延迟预测技术家族中的一员,其中每对节点之间的延迟被建模为虚拟系统上这些节点之间的虚拟距离。本文提出分散式坐标系统(DCS)是一个完全分布式的系统,它不依赖于底层网络的任何基础设施支持。DCS采用两阶段算法:首先为每个主机分配粗略坐标,然后对粗略估计进行细化,使其逐渐收敛到节点的准确相对位置。仿真结果表明,DCS的精度可与现有的网络坐标系统相媲美,在某些应用中是一种很好的替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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