可扩展私有再现覆盖网络的自举体系结构研究

C. Min, T. Lim, A. Mauthe
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引用次数: 3

摘要

在媒体分发和文件共享方面,采用点对点(P2P)系统已经有了巨大的增长。然而,P2P现在也被用作其他用途的底层技术,如软件更新的分发或分布式信息存储库的基础设施。本文介绍的研究是由后一个领域的一个用例推动的。这个用例解决了马来西亚教育机构之间文档和信息共享的问题。另外的挑战是,除了没有任何中心实例之外,对等节点每天都有固定的停机时间。到了晚上,所有的同伴都消失了。因此,如何建立一个有效的P2P信息和文件共享系统是一个挑战,同时考虑到已经消失和重新出现的对等体的特点。在本文中,我们研究了所提出的可扩展私有再现覆盖网络(SPRON)的各种自启动架构。自启动需要自组织、可扩展,并在其网络形成期间处理确定的流失率,用于教育部各个操作级别的同行(或计算机)。将确定性流失率定义为P2P系统中节点到达和离开模式的连续过程。在本文中,我们介绍了研究主题的背景信息、问题陈述和提议的可扩展私有再现覆盖网络(SPRON)设计,以说明一个专门的P2P网络及其独特的需求集。本文的主要重点是介绍我们对Chord, Chord with Aggressive Join和Kademlia的自举性能的调查结果,以便建立最合适的P2P结构来构建我们的系统。通过这一点,我们确定了这些结构化网络的适用性,作为所提出的可扩展私有再现覆盖网络设计的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study on the Bootstrapping Architectures for Scalable Private Reappearing Overlay Network
There has been a tremendous growth in the adoption of Peer-to-Peer (P2P) systems for media distribution and file sharing. However, P2P is now also being used as underlying technology for other purposes such as the distribution of software updates or as infrastructure for a distributed information repository. The research introduced in this paper is motivated by a use case in the latter area. This use case addresses the problem of document and information sharing between educational institutions in Malaysia. The additional challenge is that apart from not having any central instance peers have regular, daily down-times. During the night all peers disappear altogether. Hence the challenge is to find an effective way to set-up a P2P information and document sharing system taking into account the special characteristic of the dis- and re-appearing peers. In this paper, we investigate various bootstrapping architectures for the proposed Scalable Private Reappearing Overlay Network (SPRON). The bootstrapping needs to be self-organize, scalable and handle deterministic churn rate during its network formation period for peers (or computers) in various operational levels of the ministry of education. The deterministic churn rate is defined as the continuous process of node arrival and departure pattern of a P2P system. Within this paper we present the background information of the research theme, problem statements, and a proposed Scalable Private Reappearing Overlay Network (SPRON) design to illustrate a specialized P2P network and its unique set of requirements. The main focus of the paper is the presentation of the finding of our investigation regarding the bootstrapping performance of Chord, Chord with Aggressive Join, and Kademlia in order to establish the most appropriate P2P structure to base our system on. Through this we determine the suitability of these structured networks as the foundation in the proposed Scalable Private Reappearing Overlay Network design.
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