Failure recovery for structured P2P networks: protocol design and performance evaluation

S. Lam, Huaiyu Liu
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引用次数: 51

Abstract

Measurement studies indicate a high rate of node dynamics in p2p systems. In this paper, we address the question of how high a rate of node dynamics can be supported by structured p2p networks. We confine our study to the hypercube routing scheme used by several structured p2p systems. To improve system robustness and facilitate failure recovery, we introduce the property of K-consistency, K ≥ 1, which generalizes consistency defined previously. (Consistency guarantees connectivity from any node to any other node.) We design and evaluate a failure recovery protocol based upon local information for K-consistent networks. The failure recovery protocol is then integrated with a join protocol that has been proved to construct K-consistent neighbor tables for concurrent joins. The integrated protocols were evaluated by a set of simulation experiments in which nodes joined a 2000-node network and nodes (both old and new) were randomly selected to fail concurrently over 10,000 seconds of simulated time. In each such "churn" experiment, we took a "snapshot" of neighbor tables in the network once every 50 seconds and evaluated connectivity and consistency measures over time as a function of the churn rate, timeout value in failure recovery, and K. Storage and communication overheads were also evaluated. We found our protocols to be effective, efficient, and stable for an average node lifetime as low as 8.3 minutes (the median lifetime measured for Napster and Gnutella was 60 minutes [10]).
结构化P2P网络的故障恢复:协议设计与性能评估
测量研究表明,在p2p系统中,节点动态率很高。在本文中,我们讨论了结构化p2p网络可以支持多高的节点动态速率的问题。我们的研究仅限于几个结构化p2p系统使用的超立方体路由方案。为了提高系统的鲁棒性和便于故障恢复,我们引入了K-一致性的性质,K≥1,推广了之前定义的一致性。(一致性保证从任何节点到任何其他节点的连接。)我们设计并评估了基于局部信息的k -一致网络故障恢复协议。然后将故障恢复协议与连接协议集成,该连接协议已被证明可以为并发连接构建k -一致的邻居表。通过一组模拟实验来评估集成协议,其中节点加入2000个节点的网络,随机选择节点(包括旧节点和新节点)在10,000秒的模拟时间内同时失效。在每个这样的“流失”实验中,我们每隔50秒对网络中的邻居表进行一次“快照”,并随着时间的推移,将连接性和一致性度量作为流失率、故障恢复超时值和k的函数进行评估。存储和通信开销也进行了评估。我们发现我们的协议在平均节点寿命低至8.3分钟的情况下是有效、高效和稳定的(Napster和Gnutella的中位寿命为60分钟[10])。
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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