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Brief Announcement: Induced Churn to Face Adversarial Behavior in Peer-to-Peer Systems

机译:简短公告:在P2P系统中诱发流失面对对抗行为

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摘要

Awerbuch and Scheideler [2] have shown that peer-to-peer overlays networks can only survive Byzantine attacks if malicious nodes are not able to predict what will be the topology of the network for a given sequence of join and leave operations. A prerequisite for this condition to hold is to guarantee that nodes identifiers randomness is continuously preserved. However targeted join/leave attacks may quickly endanger the relevance of such an assumption. Inducing churn has been shown to be the other fundamental ingredient to preserve randomness. Several strategies based on these principles have been proposed. Most of them are based on locally induced churn. However either they have been proven incorrect or they involve a too high level of complexity to be practically acceptable [2]. The other ones, based on globally induced churn, enforce limited lifetime for each node in the system. However, these solutions keep the system in an unnecessary hyper-activity, and thus need to impose strict restrictions on nodes joining rate which clearly limit their applicability to open systems.
机译:Awerbuch和Scheideler [2]表明,如果恶意节点无法预测给定的加入和离开操作序列的网络拓扑,对等覆盖网络只能经受拜占庭式攻击。保持此条件的前提是确保连续保留节点标识符的随机性。但是,有针对性的加入/离开攻击可能很快危及这种假设的相关性。事实证明,引起流失是保持随机性的另一个基本要素。已经提出了基于这些原理的几种策略。它们中的大多数是基于局部诱发的流失。但是,要么证明它们不正确,要么它们涉及的复杂性太高而无法实际接受[2]。其他基于全局引起的流失,则对系统中的每个节点强制执行有限的生存期。但是,这些解决方案使系统处于不必要的过度活动状态,因此需要对节点加入速率施加严格限制,这明显限制了它们对开放系统的适用性。

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