Self-Adaptable and Intrusion Tolerant Certificate Authority for Mobile Ad Hoc Networks

F. C. Pereira, J. Fraga, Ricardo Felipe Custódio
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引用次数: 7

Abstract

Dynamic distributed systems like peer-to-peer systems, overlay networks and mobile ad hoc networks must execute their applications using distributed resources and in a decentralized way. The structure (composition and topology) of these systems changes frequently due to nodes joining or leaving the network, or due to mobility, faults and networks partitions. Distributed algorithms projected to this class of systems must be able to deal with the occurrence of these events and to self-adapt dynamically the application according to changes in its execution environment. In this paper, we propose a dynamic, self-adaptable and intrusion tolerant certificate authority (CA) designed to operate in mobile ad hoc networks. This CA is composed by a set of mobile devices present in the network, which forms a group of servers that supports CA functions. This architecture is based on a dynamic systems model and was conceived to manage changes in the membership of the servers group. This paper introduces an algorithmic base that allows the CA to reconfigure itself, guaranteeing the availability and the inviolability of the certification service.
移动Ad Hoc网络的自适应和入侵容忍证书颁发
动态分布式系统,如点对点系统、覆盖网络和移动自组织网络,必须使用分布式资源并以分散的方式执行其应用程序。由于节点加入或离开网络,或者由于移动性、故障和网络分区,这些系统的结构(组成和拓扑)经常发生变化。投射到这类系统的分布式算法必须能够处理这些事件的发生,并根据其执行环境的变化动态地自适应应用程序。本文提出了一种动态的、自适应的、可容忍入侵的证书颁发机构(CA),用于移动自组织网络。该CA由网络中存在的一组移动设备组成,这些设备形成了一组支持CA功能的服务器。该体系结构基于动态系统模型,旨在管理服务器组成员的更改。本文介绍了一种允许CA重新配置自身的算法库,保证了认证服务的可用性和不可侵犯性。
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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