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FPC-BI: Fast Probabilistic Consensus within Byzantine Infrastructures

机译:FPC-BI:拜占庭基础设施内的快速概率共识

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This paper presents a novel leaderless protocol (FPC-BI: Fast Probabilistic Consensus within Byzantine Infrastructures) with a low communicational complexity and which allows a set of nodes to come to a consensus on a value of a single bit. The paper makes the assumption that part of the nodes are Byzantine, and are thus controlled by an adversary who intends to either delay the consensus, or break it (this defines that at least a couple of honest nodes come to different conclusions). We prove that, nevertheless, the protocol works with high probability when its parameters are suitably chosen. Along this the paper also provides explicit estimates on the probability that the protocol finalizes in the consensus state in a given time. This protocol could be applied to reaching consensus in decentralized cryptocurrency systems. A special feature of it is that it makes use of a sequence of random numbers which are either provided by a trusted source or generated by the nodes themselves using some decentralized random number generating protocol. This increases the overall trustworthiness of the infrastructure. A core contribution of the paper is that it uses a very weak consensus to obtain a strong consensus on the value of a bit, and which can relate to the validity of a transaction.
机译:本文介绍了一种具有低通信复杂性的新型无线协议(FPC-BI:拜占此基础设施的快速概率协商),并且允许一组节点在单个位的值上达成共识。本文的假设是节点的一部分是拜占庭的,因此由旨在延迟共识或破坏它的对手控制(这定义了至少几个诚实的节点来得出不同的结论)。 We prove that, nevertheless, the protocol works with high probability when its parameters are suitably chosen.沿此本文还提供了关于在给定时间在共识状态下最终确定的概率的明确估计。本协议可以应用于在分散的加密货系统中达成共识。其中的特点是它利用由可信源提供的一系列随机数,或者使用一些分散的随机数生成协议由节点本身生成。这增加了基础设施的整体可信度。本文的核心贡献是,它使用非常薄弱的​​共识,以获得对比例的价值的强烈共识,并与交易的有效性有关。

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