在链路故障下与书面消息达成一致

Bettina Weiss, U. Schmid
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引用次数: 6

摘要

本文证明了在存在链路故障和妥协签名的情况下,与书面消息的确定性一致是可能的。基于一个合适的基于感知的混合故障模型,该模型为节点和链路故障提供了不同的类别,我们证明了Gong, Lincoln和Rushby(1995)的认证拜占庭协议算法OMHA和ZA通过分别添加3f/sub /和2f/sub /节点,可以使每个节点对f/sub / l/链路故障具有弹性。如果受影响的节点被认为是任意故障,这两种算法还可以处理受损的签名。因此,即使在链路故障和入侵是主要错误来源的无线系统中,协商一致的认证算法也合理地适用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Consensus with written messages under link faults
This paper shows that deterministic consensus with written messages is possible in presence of link faults and compromised signatures. Relying upon a suitable perception-based hybrid fault model that provides different categories for both node and link faults, we prove that the authenticated Byzantine agreement algorithms OMHA and ZA of Gong, Lincoln and Rushby (1995) can be made resilient to f/sub l/ link faults per node by adding 3f/sub l/ and 2f/sub l/ nodes, respectively. Both algorithms can also cope with compromised signatures if the affected nodes are considered as arbitrary faulty. Authenticated algorithms for consensus are therefore reasonably applicable even in wireless systems, where link faults and intrusions are the dominating source of errors.
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