A Hierarchical DHT for Fault Tolerant Management in P2P-SIP Networks

Ibrahima Diane, I. Niang, B. Gueye
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引用次数: 6

Abstract

This paper focuses on fault tolerance of super-nodes in P2P-SIP systems. The large-scale environments such as P2P-SIP networks are characterized by high volatility (i.e. a high frequency of failures of super-nodes). Most fault-tolerant proposed solutions are only for physical defects. They do not take into account the timing faults that are very important for multimedia applications such as telephony. We propose HP2P-SIP which is a timing and physical fault tolerant approach based on a hierarchical approach for P2P-SIP systems. Using the Oversim simulator, we demonstrate the feasibility and the efficiency of HP2P-SIP. The obtained results show that our proposition reduces significantly the localization time of nodes, and increases the probability to find the called nodes. This optimization allows to improve the efficiency of applications that have a strong time constraints such as VoIP systems in dynamic P2P networks.
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用于P2P-SIP网络容错管理的分层DHT
本文主要研究了P2P-SIP系统中超级节点的容错问题。P2P-SIP网络等大规模环境具有高波动性(即超级节点故障频率高)的特点。大多数提出的容错解决方案仅针对物理缺陷。它们没有考虑到定时故障,而定时故障对于电话等多媒体应用非常重要。我们提出了一种基于P2P-SIP系统分层方法的定时和物理容错方法HP2P-SIP。利用Oversim仿真器验证了HP2P-SIP协议的可行性和有效性。结果表明,该算法显著降低了节点的定位时间,提高了被调用节点的查找概率。这种优化可以提高具有较强时间限制的应用程序的效率,例如动态P2P网络中的VoIP系统。
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