动态Delaunay三角剖分协议设计

Dong-Young Lee, S. Lam
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引用次数: 29

摘要

Delaunay三角剖分(DT)是网络应用中非常有用的几何结构。本文研究了连接、离开和维护协议的设计,以动态地构建和维护分布式数据仓库。我们定义了分布式DT,并给出了分布式DT正确的充分必要条件。此条件用作协议设计的指导。我们给出了连接和离开协议以及串行连接和离开的正确性证明。此外,为了处理并发连接和并发叶子以及节点故障,我们提出了一种维护协议。定义了分布式DT的精度度量。实验结果表明,我们的连接、离开和维护协议具有可扩展性,并且对于存在节点故障的系统具有较高的精度。我们还提出了贪婪路由、集群、广播和组播在半径内的应用协议,并讨论和证明了它们的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protocol Design for Dynamic Delaunay Triangulation
Delaunay triangulation (DT) is a useful geometric structure for networking applications. In this paper we investigate the design of join, leave, and maintenance protocols to construct and maintain a distributed DT dynamically. We define a distributed DT and present a necessary and sufficient condition for a distributed DT to be correct. This condition is used as a guide for protocol design. We present join and leave protocols as well as correctness proofs for serial joins and leaves. In addition, to handle concurrent joins and leaves as well as node failures, we present a maintenance protocol. An accuracy metric is defined for a distributed DT. Experimental results show that our join, leave and maintenance protocols are scalable, and they achieve high accuracy for systems under churn and with node failures. We also present application protocols for greedy routing, clustering, broadcast, and multicast within a radius, and discuss and prove their correctness.
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