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An Agreement Protocol to Handle Byzantine Failures in Authenticated Hierarchical Configuration

机译:处理经过身份验证的分层配置中的拜占庭式故障的协议协议

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摘要

Consensus algorithms that, essentially, endeavor agreement or commit on a particular transaction, are preeminent building blocks of distributed systems. It poses more severe threats, in case, the distributed network possesses some arbitrary behaving (malicious) nodes. The proposed article adds up a non-faulty agreement decision to the requesting client nodes from the coordinator replicas. The work is divided into two-phases, namely, a fault-free and fair cluster formation which employs authenticated key management scheme and secondly, an authenticated agreement among the cluster heads resulting in secure and correct outcome of a transaction. We assume a two-layer hierarchy with different clusters of replicas in one layer associated with their cluster heads on another layer. Multiple levels of encryption are incorporated by means of two keys: (1) a unique pair-wise key between the processes, and (2) a communication key that provides more authenticity and enables a secure communication among the processes. The necessary correctness proof has also been presented. The protocol is robust and exhibits better efficiency for long-lived systems.
机译:从本质上讲,努力达成特定交易的共识或承诺的共识算法是分布式系统的重要组成部分。如果分布式网络拥有一些任意表现(恶意)节点,它将带来更严峻的威胁。拟议的文章为协调器副本中的请求客户端节点添加了非故障协议决定。这项工作分为两个阶段,即采用认证密钥管理方案的无故障且公平的集群形成,其次,集群负责人之间的认证协议可以确保交易的安全性和正确性。我们假设一个两层的层次结构,其中一层具有不同的副本簇,而另一层的簇头与此相关。通过两个密钥合并了多个级别的加密:(1)进程之间的唯一成对密钥,以及(2)通信密钥,可提供更高的真实性并实现进程之间的安全通信。还提供了必要的正确性证明。该协议是健壮的,并且对于寿命长的系统表现出更好的效率。

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