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SybilGuard: Defending Against Sybil Attacks via Social Networks

机译:SybilGuard:通过社交网络防御Sybil攻击

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Peer-to-peer and other decentralized, distributed systems are known to be particularly vulnerable to sybil attacks. In a sybil attack, a malicious user obtains multiple fake identities and pretends to be multiple, distinct nodes in the system. By controlling a large fraction of the nodes in the system, the malicious user is able to “out vote” the honest users in collaborative tasks such as Byzantine failure defenses. This paper presents SybilGuard, a novel protocol for limiting the corruptive influences of sybil attacks. Our protocol is based on the “social network” among user identities, where an edge between two identities indicates a human-established trust relationship. Malicious users can create many identities but few trust relationships. Thus, there is a disproportionately small “cut” in the graph between the sybil nodes and the honest nodes. SybilGuard exploits this property to bound the number of identities a malicious user can create. We show the effectiveness of SybilGuard both analytically and experimentally.
机译:对等和其他分散的分布式系统已知特别容易受到sybil攻击。在sybil攻击中,恶意用户获得多个伪造身份,并假装为系统中多个不同的节点。通过控制系统中大部分节点,恶意用户可以在协作任务(如拜占庭式故障防御)中“诚实”地拒绝诚实的用户。本文介绍了SybilGuard,这是一种用于限制sybil攻击的破坏性影响的新颖协议。我们的协议基于用户身份之间的“社交网络”,其中两个身份之间的边缘表示人类建立的信任关系。恶意用户可以创建许多身份,但很少建立信任关系。因此,图形中的sybil节点和诚实节点之间存在不成比例的小“剪切”。 SybilGuard利用此属性来绑定恶意用户可以创建的身份数量。我们通过分析和实验证明SybilGuard的有效性。

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