具有最小通信成本的无协调拜占庭复制

Jelle Hellings, Mohammad Sadoghi
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引用次数: 11

摘要

最先进的容错和联邦数据管理系统依赖于完全复制的设计,其中所有参与者都具有相同的角色。因此,这些系统只有有限的可伸缩性,不适合高性能数据管理。作为替代方案,我们提出了一种分层设计,其中拜占庭集群管理数据,而任意数量的学习者可以可靠地学习这些更新并使用相应的数据。为了实现我们的设计,我们提出了延迟复制算法,这是对拜占庭学习器问题的有效解决方案,这是我们设计的核心。延迟复制算法不需要协调,可扩展,并且所有参与者的通信成本最小。这样,延迟广播算法为新的高性能容错和联邦数据管理系统打开了大门。为了说明这一点,我们表明延迟复制算法不仅对支持专门的学习器有用,而且还可用于降低许可区块链的总体通信成本并提高其存储可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordination-Free Byzantine Replication with Minimal Communication Costs
State-of-the-art fault-tolerant and federated data management systems rely on fully-replicated designs in which all participants have equivalent roles. Consequently, these systems have only limited scalability and are ill-suited for high-performance data management. As an alternative, we propose a hierarchical design in which a Byzantine cluster manages data, while an arbitrary number of learners can reliable learn these updates and use the corresponding data. To realize our design, we propose the delayed-replication algorithm, an efficient solution to the Byzantine learner problem that is central to our design. The delayed-replication algorithm is coordination-free, scalable, and has minimal communication cost for all participants involved. In doing so, the delayed-broadcast algorithm opens the door to new high-performance fault-tolerant and federated data management systems. To illustrate this, we show that the delayed-replication algorithm is not only useful to support specialized learners, but can also be used to reduce the overall communication cost of permissioned blockchains and to improve their storage scalability.
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